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11
A-basis  A°ò·Ç¡G¦b±Ä¥Î§÷®Æ¤§¾÷±ñ©Ê½è®É¡A¨ä­È¥²¶·¬O²Î­p­È¦Ü¤Ö99%¥H¤W¡A¥B³o¨Ç
²Î­p­È©Ò¹w´ú¤§¸¨ÂI¦³95%¤§¥i«H«×
Abhesive Â÷«¬½¤
ABL Bottle ABL²~
Ablate  ¼¯À¿¡A¿i·l
Ablation ¤Á°£¡A«d¿i
Ablative plastic ­@¿i¶ì½¦
Abrasion  ¼¯À¿¡A¿i·l
Absolute rate constant µ´¹ï³t²v±`¼Æ
   in anionic chain polymerization ³±Â÷¤lÃì»E¦X¤ÏÀ³¤§µ´¹ï¤ÏÀ³³t²v±`¼Æ
   in cationic chain polymerization ¶§Â÷¤lÃì»E¦X¤ÏÀ³¤§µ´¹ï¤ÏÀ³³t²v±`¼Æ
   in coordination polymerization °t¦ì»E¦X¤ÏÀ³¤§µ´¹ï¤ÏÀ³³t²v±`¼Æ
   in radical chain polymerization ¦Û¥Ñ°òÃì»E¦X¤ÏÀ³¤§µ´¹ï¤ÏÀ³³t²v±`¼Æ
   in ring-opening polymerization ¶}Àô»E¦X¤ÏÀ³¤§µ´¹ï¤ÏÀ³³t²v±`¼Æ
   in step polymerization ³v¨B»E¦X¤ÏÀ³¤§µ´¹ï¤ÏÀ³³t²v±`¼Æ
Accelerator «P¶i¾¯¡A¥[³t¾¯
Acetylene polymerization ÍPÄÝ»E¦X¤ÏÀ³
Acidity function »Ä©Ê§@¥Î¡A»Ä©Ê¥\¯à
Acousic  ­µÅT¾Çªº
Acousic Microscopy ­µ¾ÇÅã·LÀË´ú»ö
Acrolein polymerization ¤þ²mîÇ»E¦X¤ÏÀ³
Acrylamide polymerization ¤þ²mñQÓi»E¦X¤ÏÀ³
Actinometry  ¥ú¶q´ú©w
Activated monomer  ¸g¶Ê¤Æ³æÅé¡A¸g¬¡¤Æ³æÅé
Activation ¶Ê¤Æ¡A¬¡¤Æ
Activation Energy ¬¡¤Æ¯à
   in anionic chain polymerization ³±Â÷¤lÃì»E¦X¤ÏÀ³¤§¬¡¤Æ¯à
   in cationic chain polymerization ¶§Â÷¤lÃì»E¦X¤ÏÀ³¤§¬¡¤Æ¯à
   in coordination polymerization °t¦ì»E¦X¤ÏÀ³¤§¬¡¤Æ¯à
   in radical chain polymerization ¦Û¥Ñ°òÃì»E¦X¤ÏÀ³¤§¬¡¤Æ¯à
   in ring-opening polymerization ¶}Àô»E¦X¤ÏÀ³¤§¬¡¤Æ¯à
   in step polymerization ³v¨B»E¦X¤ÏÀ³¤§¬¡¤Æ¯à
Activator ¶Ê¤Æ¾¯¡A¬¡¤Æ¾¯
Activity of catalyst IJ´C¤§¬¡©Ê
Addition polymer ¥[¦¨»E¦Xª«
Addition polymerization ¥[¦¨»E¦X¤ÏÀ³
Additive ¶ñ¥R¾¯
Adherend ÂHµÛ¾¯¡BªþµÛ
Adhesion ÂHµÛ
Adhesive  ½¦®Æ¡AÂHµÛ¾¯
Adhesive film ÂHµÛ½¤
Adhesive Shear ÂHµÛ°Å¤O±j«×
Adhesiveness ÂHµÛ©Ê
Advanced composite  °ª¯Å½Æ¦X§÷®Æ
After-affect technique  «á®ÄÀ³§Þ³N
After Bake «áµw¤Æ¡A¦Ppost-cure
Aggregate ¶°¦XÅé
Aging  ¦Ñ¤Æ¡A§÷®Æ¨üÀô¹Ò¼vÅT¡]ª«²z¡B¤Æ¾Ç¡^¦Ó¨Ï±j«×°I´î¤§²{¶H
Air-Bubble Void ®ðªw¤Õ
Air-drying of alkyds ¾J»Ä¤§ªÅ®ð°®Àêªk
Air Lock ®ð¹h
Air Vent ±Æ®ð¤Õ
Airworthiness 
Aligned discontinuous fiber »PLong discontinuous fiber (²ºÙLDF)-±Æ¦C¦ý¤£³sÄòÅÖºû©Îªø¤£³sÄòÅÖºû¡C¬°
§ù¨¹¤½¥q©Ò¶}µo-Gr / PEKK
Alkyd plastic ¾J»Ä¶ì½¦¡Aà­Ãþ¶ì½¦
Alkyd Resin  ¾J»Ä¾ð¯×¡Aà­Ãþ¾ð¯×
Allylic polymerization  ²m¤þ°òÄݤ§»E¦X¤ÏÀ³
All-Composite airframe ¥þ½Æ§÷¾÷¨­
Allowable  ¥i®e³\ªº
Allowables 
Allyl plastic ²m¤þ°ò¶ì½¦
Alternating intro-intermolecular  ¥æ´À¦¡¦@»E¦Xª«
     polymerization ¥æ´À¦¡¤À¤l¤º-¤À¤l¶¡»E¦X¤ÏÀ³
image
Alternating Stress Amplitude
¥æ´À¦¡À³¤O®¶´T
Alternating tendency-in copolymerization ¦@»E¦X¤ÏÀ³¤§¥æ´À¦¡¶É¦V
Alternative stress ¥æ´À¦¡À³¤O
Alumina  Äs¤g©Î®ñ¤Æ¾TAl2O3¡A¤@ºØµL¾÷¤Æ¦Xª«¡A©âµ·«á¬°¤@ºØ­@°ª·Å¤§µL¾÷ÅÖºû
Aluminum  ¾T¡Gª÷Äݤ¸¯À¡A­ì¤l§Ç¬°13
Ambient ©P¾Dªº
Ambient condition  «Ç·Å±ø¥ó
Amine Resin  Ói¾ð¯×
Amorphous  «Dµ²´¹ª¬ºA
Amorphous polymer «Dµ²´¹©Êªº»E¦Xª«
Amylose  ª½Ãì¾ý¯»
Anchimeric assistance 
Angle-ply ¨¤«×Å|¸m
Angle-ply laminate  ¨¤«×Å|¼h¿n¼h
Angle strain  ¨¤À³ÅÜ
Anion-radical  ³±Â÷¤l°ò
Anionic chain polymerization  ³±Â÷¤lÃì»E¦X¤ÏÀ³
   of acrolein    ¤þ²mîǤ§³±Â÷¤lÃì»E¦X¤ÏÀ³
   of acrylamide ¤þ²mñQÓi¤§³±Â÷¤lÃì»E¦X¤ÏÀ³
   activation parameters in ³±Â÷¤lÃì»E¦X¤ÏÀ³¤§¬¡¤Æ°Ñ¼Æ
   association phenomena in ³±Â÷¤lÃì»E¦X¤ÏÀ³¤§µ²¦X²{¶H
   of carbonyl monomers æó°ò³æÅ餧³±Â÷¤lÃì»E¦X¤ÏÀ³
   comparison with radical polymerization  ³±Â÷¤lÃì»E¦X¤ÏÀ³»P¦Û¥Ñ°ò»E¦X¤ÏÀ³¤§¤ñ¸û
   of dimethylketene Âù¥Ò°ò²mତ§³±Â÷¤lÃì»E¦X¤ÏÀ³
   effect of reaction media in ³±Â÷¤lÃì»E¦X¤ÏÀ³¤§¤ÏÀ³¤¶½è¤§®ÄÀ³
   effect of temperature in ³±Â÷¤lÃì»E¦X¤ÏÀ³¤§·Å«×®ÄÀ³
   initiation in ³±Â÷¤lÃì»E¦X¤ÏÀ³¤§°_©l¤ÏÀ³
   of isocyanates ²§Ùæ»Ä¤§³±Â÷¤l»E¦X¤ÏÀ³
   -use of acylating agent in  ñQ¤Æ¾¯¤§¨Ï¥Î©óÀôª¬ñQÓi³±Â÷¤l¶}Àô»E¦X¤ÏÀ³
   of cyclic esters Àôª¬¯×¤§³±Â÷¤l¶}Àô»E¦X¤ÏÀ³
   of cyclosiloxanes  Àôª¬Öº®ñÖJÄݤ§³±Â÷¤l¶}Àô»E¦X¤ÏÀ³
   of epoxides  Àô®ñª«¤§³±Â÷¤l¶}Àô»E¦X¤ÏÀ³
     -chain transfer to monomer  ÃìÂಾ¦Ü³æÅ餧Àô®ñª«³±Â÷¤l¶}Àô»E¦X¤ÏÀ³
     -characteristics of Àô®ñª«³±Â÷¤l¶}Àô»E¦X¤ÏÀ³¤§¯S¼x
     of oxides ®ñ¤Æª«¤§³±Â÷¤l¶}Àô»E¦X¤ÏÀ³
     exchange reaction in ³±Â÷¤l¶}Àô»E¦X¤ÏÀ³¤§¥æ´«¤ÏÀ³
     Kinetics of ³±Â÷¤l¶}Àô»E¦X¤ÏÀ³¤§°Ê¤O¾Ç
     of phosphonitrilic chloride ´â¤ÆÁC¡]¡H¡^¤§³±Â÷¤l¶}Àô»E¦X¤ÏÀ³
Anisotropic  «D§¡ºAªº¡A¤Î§÷®Æ¤§§÷½è¨ä²Õ¦¨¦¨¥÷«D§¡¤Ãªº¡A¨ä¦U¤è¦V¤§±j«×¤£¤@
Anisotropic laminate «D§¡ºAªº¿n¼h
Anisotropy  «D§¡ºAªº¡A§Y§÷®Æ¦b¤T­Ó¤è¦V¤§±j«×¤£¤@©w
Anisotropy of Laminate ¿n¼h«D§¡ºA©Ê
Anti-static Agent §ÜÀR¹q¾¯
Antisymmetry  ¤Ï¹ïºÙ©Ê
ARALL ªüù¡A¤@ºØ¾T§÷¿n¼h¡A«Y¥Ñ¾T§÷7075-T6»P§J©ÔÅÖºû / Àô®ñ¾ð¯×©Ò²Õ¦¨¤§²V¦X
¿n¼h§÷®Æ¡A¥Ñ¬ü°êAlcoa co©Ò¶}µo
Aramid  ªÚ­»±ÚñQÓi¡A¦p§J©ÔÅÖºû§Y¬°¨ä¥Nªí¡F­@°ª·Å¤§¦³¾÷ÅÖºû
Aramid-Epoxy ªÚ­»±ÚñQÓi / Àô®ñ¾ð¯× ½Æ¦X§÷®Æ
Arc Resistance ­@©·¥ú©Ê
Arcing 
A-scan A±½ºË¡A¥Î¥H°»´ú½Æ¦X§÷®Æ¤º³¡¯Ê³´¤§¤@ºØ«D¯}Ãa©ÊÀË´ú»ö¾¹
Ash Content ¦Ç¥÷§t¶q
Aspect Ratio Áa¾î¤ñ¡AÅÖºû¤§ªø»Pª½¸g¤ñ
Assembly Concept ²Õ¸Ë·§©À
A-stage A-¶¥¬q¡G§Y¼ö©T©Ê¾ð¯×¦b°_©lº²¿Ä©Î·»©ó¬Y¨Ç²GÅé®É¤§ª¬ºA
A-stage polymer A¶¥¬q»E¦Xª«
Asymmetric center ¤£¹ïºÙ¤¤¤ß
Asymmetric induction  ¤£¹ïºÙªº·PÀ³¡A¤£¹ïºÙ¤§»¤¾É
Atactic polymer ¤£³W«h±Æ¦C¤§»E¦Xª«
Atecticity ¶Ã«×
attenuation µ}Á¡¤Æ¡A°I´î
Autoacceleration  ¦Û°Ê¥[³t¤ÏÀ³
Autoclave  ¯uªÅ¦¨§Î°y¡A¥Î©ó¦¨§Î½Æ¦X§÷®Æ¿n¼h©Î¹s¥ó¤§¤@ºØ¸Ë³Æ
Autoclave forming ¯uªÅ¦¨«¬¡A¥H¯uªÅ¦¨§Î°y¨Ó¦¨§Î¹s¥ó¤§¹Lµ{©Î¤èªk
Autoclave Molding ¯uªÅ¦¨§Î
autoclave ¯uªÅ¦¨§Î°y
Autoinhibition  ¦Û°Ê²×¤î¤ÏÀ³
Automated systems  ¦Û°Ê¤Æ¨t²Î
Automatic Mold ¦Û°Ê¦¨§Î¡A¦p®g¥X¦¨§Îµ¥
Automatic press ¦Û°Ê¥[À£
Automation  ¦Û°Ê¤Æ¡A¦Û°Ê¾Þ§@
Avamid-N ¤@ºØ¨ã¦nªº¼ö¿±µÈ«Y¼Æ¥B§C»s§@¦¨¥»¤§»s¼Ò¨ã§÷®Æ
Average functionality ¥­§¡ªº¾÷¯à
Axes ¶b¦V
Axial Winding ¶b¦VÄñ¶
Axisymmetry  ¶b¹ïºÙ
Azeotropic copolymerization  ¦@ªm²V¦Xª«¤§¦@»E¦X¤ÏÀ³
B-stage  B-¶¥¬q
¡¥B¡¦basis B°ò·Ç¡G¦b±Ä¥Î§÷®Æ¤§¾÷±ñ©Ê½è®É¡A¨ä­È¥²¶·¬O²Î­p­È¦Ü¤Ö90%¥H¤W¡A¥B³o¨Ç
²Î­p­È©Ò¹w´ú¤§¸¨ÂI¦³95%¤§¥i«H«×
Back Draft °_¯óª«¡A¤è®×
Back-biting ring-expansion ­I¨ë¦¡Àô¿±µÈ¡A¤Ï«r¦¡Àô¿±µÈ
Back-biting self-transfer ­I¨ë¦¡¦Û¨­Âಾ¡A¤Ï«r¦¡Àô¿±µÈ¦Û¨­Âಾ
Bag  «Ê³U¡A½Æ§÷¯uªÅ¦¨§Î®É©Ò¨Ï¥Î¤§¤@ºØ±K«Ê¸Ë¸m
Bag Molding «Ê³U¦¨§Î
Bagging  «Ê³U±K«Ê
Balanced (laminate) ¥­¿Å¡]¿n¼h¡^¡A½Æ¦X§÷®Æ¿n¼h¦b°µÅ|¼h³]­p®É¡A¥²¶·¤W¤U¹ïºÙ¡A¥HÁ×§K¿n¼hªO
©Î¹s¥ó§á¦±
Balanced Construction ¥­¿Åªºµ²ºcª«
Balanced Design  ¥­¿Åªº³]­p
Balanced laminate  ¥­¿Å¿n¼h¡A§Y¥¿¨¤«×¤§Á¡¼h»P­t¨¤«×¤§Á¡¼h¬Û¦P
Balanced symmetric laminate  ¹ïºÙ¥­¿Å¤§¿n¼h
Balanced Twist §á¦±Â\¥­¡A§á¦±Â\¥¿
Balanced-in-plane Contour  ¥­¿Å­±½ü¹ø¡A¥­¿Å­±¥~§Î
Ballistic impact  ¤l¼u¼²À»
Bank pressure ­IÀ£
Barcol Hardness ¤Ú§Jµw«×
Bare Glass »r¬ÁÅÖ
Bar-grid panels
Base  ÆP©Ê
Base unit °ò¥»³æ¦ì
Batch  §å
Batt  ´Öµ¶
Battle damage repair ¤l¼u·l¶Ë­×¸É
Bearing Area ¤ä¼µ°Ï°ì
Bearing reduction factor
Bearing Strength ¤ä¼µ±j«×
Bearing Stress ¤ä¼µÀ³¤O
Bearing test  ¤ä¼µ±j«×´ú¸Õ
Bend radii Ås¦±¥b®|
Bending Moment Ås¦±¤O¯x
Bending Stretching Coupling 
Bending Twisting Coupling
BFRA Boron fiber-reinforced aluminum¤§Â²ºÙ¡A¸NÅÖºû±j¤Æ¾T
BFRP Boron fiber-reinforced plastic¤§Â²ºÙ¡A¸NÅÖºû±j¤Æ¶ì½¦
Bi-axial  Âù¶b
Biaxial Load Âù¶b¦V­t¸ü
Biaxial Winding Âù¶b¦VÄñ¶
Bi-directional Laminate Âù¦V¿n¼h
Bimetallic mechanism for isotacticity ¶¶¦¡©ÊÂùª÷Äݾ÷ºc
Binder  ¶°§ô¾¯
Binder fiber ôµ²¥ÎÅÖºû¡A§Y¥Î¨Ó®¹¸jÅÖºû§ô©ÎÅÖºû¥¬¡A¨Ï¤£­P·Æ°Ê©ÎÃP°Ê¤§ÅÖºû¡A¤@¯ë¬Ò
¬O¦³¾÷ÅÖºû¡A¦p¥§Às¡B»E୩ΧJ©ÔÅÖºû
Bisphenol A Âù×ô-A
Bladder ®ðÅn
Blanket  ¤ò´à
Bleed system §l½¦¨t²Î¡A½Æ§÷µw¤Æ¹Lµ{¡A©Ò¨Ï¥Î¤§¾ã®M§l½¦³]¸m
Bleeder cloth §l½¦¥¬
Bleeder ply §l½¦¼h¡A³q±`«Y¬°¬Á¼þ½s´¥¬¡A¦b¾ð¯×µw¤Æ¹Lµ{¤¤¥Î¨Ó§l¦¬¹L¶q¤§·¸¥X¾ð¯×
¨Ã¨Ï´§µo¥÷¶h¥X
Bleedout  ·¸¥X
Blind fastener ª¼¹g°v
Blister  ¤ôªwª¬
Block copolymer ¶ôª¬¦@»E¦Xª«
Blooming ´³ÂI
Blush  ¥´¼Ë
Boardy 
Bolted joint ¹g±µ¡A¨âµ²ºc¥ó¥Î¹g°v±µ¦X¤§¤è¦¡
Bolted repair ¹g±µ­×¸É
Bond strength Áäµ²±j«×
Bonded joint ½¦¦X¡A¨âµ²ºc¥ó¥Î½¦®Æ±µ¦X¤§¤è¦¡
Bonded repair ½¦®Æ­×¸É
Bonding Áäµ²
Boron  ¸N¤¸¯À¡A¤@ºØ«Dª÷Äݤ¸¯À¡A­ì¤l§Ç¬°5
Boron filament  ¸NÅÖºû
Borsic  ¸N»ÄÆQ
Boss  ¬P¼Ð¡A¼Ð°O
Bottom plate ©³ªO
Boundary condition  ¬É­­±ø¥ó
Braided pultrusion  ½s´©ÔÀ½¦¨«¬¡A¹w¥ý±NÅÖºû±j¤Æª«½s´«á§t®û¾ð¯×¦A©ÔÀ½¦¨«¬
Braided tube panel 
Braiding ½s´¡A§Y±N±j¤ÆÅÖºû¥Î¾÷¾¹Â´¦¨ºÞª¬¥H¥N´À¥­­±Â´ª«
Brake «b¨®¤ù¡A¤@¯ë«Y¥Î¤£ù׿ûµ¥ª÷Äݩһs¡A­¸¾÷¥Î¤§«b¨®¤ù¡A¥Ø«e¥HºÒ / ºÒ½Æ¦X
§÷®Æ»s§@
Branch unit  ¤À¤e³æ¦ì¡A¤ÀªK³æ¦ì
Branched polymer ¤ÀªK¦¡»E¦Xª«
Branching
   in cationic chain polymerization ¶§Â÷¤lÃì»E¦X¤ÏÀ³¤§¤ÀªK
   in graft polymerization ±µªK»E¦X¤ÏÀ³¤§¤ÀªK
   in radical chain polymerization ¦Û¥Ñ°òÃì»E¦X¤ÏÀ³¤§¤ÀªK
   in step polymerization ³v¨B»E¦X¤ÏÀ³¤§¤ÀªK
   molecular weight distribution in ¤ÀªK¤§¤À¤l¶q¤À§G
Branching coefficient ¤ÀªK«Y¼Æ
Branching density ¤ÀªK±K«×
Breaking Extension ¯}Ãa©µ¦ù
  function
Breaking Factor ¯}Ãa¦]¯À
Breather  ³z®ð¥¬
Breather ply ³z®ð¥¬¡A¤@¯ë¬O¬Á¼þÅÖºû¥¬©Î¦X¦¨ÅÖºû¥¬¡A¬O¥Î¨ÓÅý¹w®û®Æ¦bµw¤Æ¹Lµ{¤¤Åý´§
µo¥÷©ÎªÅ®ð¶h¥X
Breathing  ³z®ð
Bridying
Brittle  ¯Ü©Êªº
Broad good  ½s´ªº¬ÁÅÖ¡A½s´ªº¤H³yÅÖºû
B-scan B±½ºË¡A¤@ºØÀË´ú½Æ§÷¤º³¡¯Ê³´¤§«D¯}Ãa©ÊÀË´ú¤è¦¡
B-stage B-¶¥¬q¡G§Y¼ö©T©Ê¾ð¯×¹w¥ý±±¨î¬Y ½è¤§µw¤Æ¡A¨Ï¾ð¯×¸û¨ãÂH«×¡A¦bµw¤Æ¹L
µ{¤¤¤£¦]¥[À£¦Ó¨Ï¾ð¯×¤j¶q¬y¥¢
B-stage polymer B¶¥¬q¤§»E¦Xª«¡AB¶¥¬q¤§°ª¤À¤l
Bubble ®ðªw
Buckling  ®À¦±¡A½Æ§÷¥ó¨ü¤O®É¡AÅÖºûÅs¦±©Î²æ¼h¤§²{¶H
Building Block testing 
Bulk density ®e¿n±K«×¡A°ï¿n±K«×
Bulk Factor ®e¿n¦]¯À
Bulk Modulus ¾ãÅé¼Ò¼Æ
image
Bulk polymerization ®e¿n»E¦X¤ÏÀ³
Bundle strength  ¾ã®¹±j«×¡A¾ã§ô±j«×
Burned ¿U¿N
Burn-off ¿NºÉ
Burst pressure  ¯}µõÀ£¤O
Burst strength ¼¹µõ±j«×
Bushing  ¶bŨ¡A®MºÞ
Butt joint  ºÝÂI·f±µ
Butt Wrap ¦hºÝÄñ¶
Bypass load ¨±°j­t¸ü
Bypass stress ¨±°jÀ³¤O
Carbon ºÒ¡A¤@ºØ«Dª÷Äݤ¸¯À¡A¤¸¯À²Å¸¹¬°C¡A¦s¦b©ó¦ÛµM¬Éªº¦³C12¡AC13¡AC14µ¥¤T
ºØ¡Aµ´¤j³¡¥÷¬°C12
Carbon fiber reinforced ºÒÅÖºû±j¤Æ
Carbon/ Carbon ºÒ / ºÒ½Æ¦X§÷®Æ¡A¤@ºØ­@°ª·Å¤§½Æ¦X§÷®Æ¡A¥Ø«e¥Î©ó­¸¾÷¤§«b¨®¤ù¤Î¤ÓªÅ±ô
¤§«e½t¡B»óÀ@¸n¤Î¤ÞÀº¥~´ßµ¥
Carbonization  ºÒ¤Æ¤ÏÀ³¡AºÒ¤Æ
Carbonyl polymerization æó°ò»E¦X¤ÏÀ³
   by ionic chain reaction ÂÇ¥ÑÂ÷¤lÃì¤ÏÀ³¤§æó°ò»E¦X¤ÏÀ³
   by radical chain reaction ÂǥѦۥѰò¤ÏÀ³¤§æó°ò»E¦X¤ÏÀ³
   by step reaction Âǥѳv¨B¤ÏÀ³¤§æó°ò»E¦X¤ÏÀ³
CARE-MOLD
Carothers equation ³v¨B»E¦X°ª¤À¤l¥æ³s¤§¥dù¯À¤èµ{¦¡
     -experimental results for ³v¨B»E¦X°ª¤À¤l¡]»E¦Xª«¡^¥æ³s¤§¹êÅçµ²ªG
     -molecular weight distribution in  ³v¨B»E¦X°ª¤À¤l¥æ³s¤§¤À¤l¶q¤À§G
     -statistical approach
     -technology of ³v¨B»E¦X»E¦Xª«¥æ³s¤§§Þ³N
Carpet plot  ¦a´à¦¡­pµe
Carpet plots
Catalyst IJ´C¡A¶Ê¤Æ¾¯
Catastropic Failure ¿EÅܪº¯}Ãa¡A¥¼¥i¹wª¾ªº¯}Ãa
Catenary  ««¦±½u
Cationic chain polymerization  ¶§Â÷¤lÃì»E¦X¤ÏÀ³
   of acrolein ¤þ²mîǤ§¶§Â÷¤lÃì»E¦X¤ÏÀ³
   of carbonyl monomer æó°ò³æÅ餧¶§Â÷¤lÃì»E¦X¤ÏÀ³
   chain transfer in ¶§Â÷¤lÃì»E¦X¤ÏÀ³¤§ÃìÂಾ
   comparison with radical reaction ¶§Â÷¤lÃì»E¦X¤ÏÀ³»P¦Û¥Ñ°ò¤ÏÀ³¤§¤ñ¸û
   of diazoalkane ­«´áÖJÄݤ§¶§Â÷¤lÃì»E¦X¤ÏÀ³
   effect of electric field in  ¶§Â÷¤lÃì»E¦X¤ÏÀ³¤§¹q³õ®ÄÀ³
   effect of gegen-ion in ¶§Â÷¤lÃì»E¦X¤ÏÀ³¤§¡]¡H¡^
   effect of solvent in ¶§Â÷¤lÃì»E¦X¤ÏÀ³¤§·»¾¯®ÄÀ³
   effect of temperature in ¶§Â÷¤lÃì»E¦X¤ÏÀ³¤§·Å«×®ÄÀ³
   inhibition in ¶§Â÷¤lÃì»E¦X¤ÏÀ³¤§°_©l¤ÏÀ³
   Kinetics of ¶§Â÷¤lÃì»E¦X¤ÏÀ³¤§°Ê¤O¾Ç
   molecular weight of ¶§Â÷¤lÃì»E¦X¤ÏÀ³¤§¤À¤l¶q
   propagation in ¶§Â÷¤lÃì»E¦X¤ÏÀ³¤§¥Íªø¡]Ác´Þ¡^
   pseudocationic reaction in ¶§Â÷¤lÃì»E¦X¤ÏÀ³¤§ÀÀ¶§Â÷¤l¤ÏÀ³
   rate constants in ¶§Â÷¤lÃì»E¦X¤ÏÀ³³t²v±`¼Æ
   termination in ¶§Â÷¤lÃì»E¦X¤ÏÀ³¤§²×¤î¡]¤ÏÀ³¡^
Cationic coordination polymerization  ¶§Â÷¤l°t¦ì»E¦X¤ÏÀ³
Cationic ring-opening polymerization ¶§Â÷¤l¶}Àô»E¦X¤ÏÀ³
   copolymerization ¶§Â÷¤l¶}Àô»E¦X¤§¦@»E¦X¤ÏÀ³
   of cyclic acetals and formals Àôª¬ÁYîÇ»P¥ÒîǤ§¶§Â÷¤l¶}Àô»E¦X¤ÏÀ³
   of cyclic amides Àôª¬ñQÓi¤§¶§Â÷¤l¶}Àô»E¦X¤ÏÀ³
     -equilibrium polymerization in Àôª¬ñQÓi¤§¶§Â÷¤l¶}Àô»E¦X¤§¥­¿Å¤ÏÀ³
     -initiation of Àôª¬ñQÓi¤§¶§Â÷¤l¶}Àô»E¦X¤§°_©l¤ÏÀ³
     -molecular weight in Àôª¬ñQÓi¤§¶§Â÷¤l¶}Àô»E¦X¤ÏÀ³¤§¤À¤l¶q
     -thermodynamics of Àôª¬ñQÓi¤§¶§Â÷¤l¶}Àô»E¦X¤ÏÀ³¤§¼ö¤O¾Ç
   of cyclic amines  Àôª¬Ói¤§¶§Â÷¤l¶}Àô»E¦X¤ÏÀ³
of cyclic esters Àôª¬à­¤§¶§Â÷¤l¶}Àô»E¦X¤ÏÀ³
   of cyclic ethers Àôª¬îŤ§¶§Â÷¤l¶}Àô»E¦X¤ÏÀ³
     -back-biting ring-expansion in Àôª¬îŶ§Â÷¤l¶}Àô»E¦X¤ÏÀ³¤§¤Ï¨ëÀô¿±µÈ
     -chain transfer in Àôª¬îŶ§Â÷¤l¶}Àô»E¦X¤ÏÀ³¤§ÃìÂಾ
     -energetics of Àôª¬îŶ§Â÷¤l¶}Àô»E¦X¤ÏÀ³¤§°Ê¤O¾Ç
     -equilibrium polymerization in Àôª¬îŶ§Â÷¤l¶}Àô»E¦X¤§¥­¿Å»E¦X¤ÏÀ³
     -initiation of Àôª¬îŶ§Â÷¤l¶}Àô»E¦X¤§°_©l¤ÏÀ³
     -Kinetics of Àôª¬îŶ§Â÷¤l¶}Àô»E¦X¤ÏÀ³¤§°Ê¤O¾Ç
     -rate constants in Àôª¬îŶ§Â÷¤l¶}Àô»E¦X¤§¤ÏÀ³³t²v±`¼Æ
     -termination in Àôª¬îŶ§Â÷¤l¶}Àô»E¦X¤§²×¤î¤ÏÀ³
   of cyclic sulfide Àôª¬²¸¤Æª«¶§Â÷¤l¶}Àô»E¦X¤ÏÀ³
   of cyclosilazanes ÀôÖº®òÖJ¶§Â÷¤l¶}Àô»E¦X¤ÏÀ³
   of cyclosiloxanes ÀôÖº®ñÖJ¶§Â÷¤l¶}Àô»E¦X¤ÏÀ³
   of imino cyclic compounds ¨È®ò°òÀôª¬¤Æ¦Xª«¤§¶§Â÷¤l¶}Àô»E¦X¤ÏÀ³
Caul   ºô½¤
Caul plate ºôªO¡B»\ªO¡C¤@¥­¾ã¤§ª÷ÄݪO¥Î¥H±µÄ²¿n¼h¡A¨Ï¿n¼h¦bµw¤Æ¹Lµ{¤¤±o¨ì§¡¤Ã¤§
À£¤O»P±j«×
Cavity  ¥Þ
CCRF §YCarbon or graphite cloth reinforced plastic¤§Â²ºÙ¡A·N§YºÒÅÖºû¥¬©Î¥Û¾¥ÅÖ
ºû¥¬±j¤Æ¶ì½¦
Ceiling temperature ¤ÑªáªO·Å«×¡A¤W­­·Å«×
Cellulose  ÅÖºû¯À
   reactions of ÅÖºû¯À¤§¤ÏÀ³
   structure of ÅÖºû¯À¤§µ²ºc
Cellulose triacetate ¤T¾L»ÄÅÖºû¯À
Centerless Grinding ½VÀ£
Centrifugal Casting Â÷¤ß©ßű
Ceramic  ³³²¡
Certification  »{ÃÒ¡AÃÒ©ú
CFRP Carbon or graphite fiber reinforced plastic¤§Â²ºÙ¡A§YºÒÅÖºû©Î¥Û¾¥ÅÖºû±j¤Æ¶ì½¦
CFRTP Carbon or graphite fiber reinforced Thermoplastic¤§Â²ºÙ¡A§YºÒÅÖºû©Î¥Û¾¥
ÅÖºû±j¤Æ¼ö¶ì©Ê¶ì½¦
Chain copolymerization Ãì¦@»E¦X¤ÏÀ³
   by anionic reaction Âdz±Â÷¤l¤ÏÀ³¤§Ãì¦@»E¦X¤ÏÀ³
   of carbonyl monomer æó°ò³æÅ餧Ãì¦@»E¦X¤ÏÀ³
   of cationic reaction ÂǶ§Â÷¤l¤ÏÀ³¤§Ãì¦@»E¦X¤ÏÀ³
   of coordination catalysts  Âǰt¦ìIJ´C§@¥Î¤§Ãì¦@»E¦X¤ÏÀ³
   copolymerization equation in Ãì¦@»E¦X¤ÏÀ³¤§¦@»E¦X¤èµ{¦¡
   crosslinking by  ¸gÃì¦@»E¦X¤ÏÀ³¤§¥æ³s§@¥Î
   of dienes ¤G²m¤§Ãì¦@»E¦X¤ÏÀ³
     -crosslinking in ¤G²m¤§Ãì¦@»E¦X¤ÏÀ³¤§¥æ³s§@¥Î
     -cyclopolymerization in ¤G²m¤§Ãì¦@»E¦X¤ÏÀ³¤§Àô»E¦X
   microstructure of copolymer Ãì¦@»E¦X¤ÏÀ³¤§¦@»E¦Xª«·Lµ²ºc
   multi-component ¦h¦¨¤ÀÃì¦@»E¦X¤ÏÀ³
   by radical reaction  ¸g¦Û¥Ñ°ò¤§Ãì¦@»E¦X¤ÏÀ³
     -of miscellaneous monomers ¦UºØ³æÅéÂǦۥѰò¤ÏÀ³¤§Ãì¦@»E¦X¤ÏÀ³
     -monomer and radical reactivities in ¸g¦Û¥Ñ°ò¤§Ãì¦@»E¦X¤ÏÀ³ªº³æÅé©M¦Û¥Ñ°òªº¤ÏÀ³©Ê
     -rate of ¸g¦Û¥Ñ°ò¤§Ãì¦@»E¦X¤ÏÀ³³t²v
   types of behavior in ¸g¦Û¥Ñ°ò¤§Ãì¦@»E¦X¤ÏÀ³¤§¦æ¬°¼Ò¦¡
     -alternating  ¥æ´À¦¡Ãì¦@»E¦X¤ÏÀ³¤§¦æ¬°¼Ò¦¡
     -azeotropic ¦@ªm²V¦Xª«Ãì¦@»E¦X¤ÏÀ³¤§¦æ¬°¼Ò¦¡
     -block ¶ôª¬Ãì¦@»E¦X¤ÏÀ³¤§¦æ¬°¼Ò¦¡
     -consecutive ³sÄò¦¡Ãì¦@»E¦X¤ÏÀ³¤§¦æ¬°¼Ò¦¡
     -ideal ²z·QªºÃì¦@»E¦X¤ÏÀ³¤§¦æ¬°¼Ò¦¡
     -stereoblock ¥ßÅé¶ôª¬Ãì¦@»E¦X¤ÏÀ³¤§¦æ¬°¼Ò¦¡
   utility of Ãì¦@»E¦X¤ÏÀ³¤§¹ê¥Î©Ê
Chain initiation     Ãì°_©l
   in anionic polymerization ³±Â÷¤l»E¦X¤ÏÀ³¤§Ãì°_©l
     -effect of temperature on ³±Â÷¤l»E¦X¤ÏÀ³Ãì°_©l¤§·Å«×®ÄÀ³
     -by election transfer ³±Â÷¤l»E¦XÂǹq¤lÂಾ¤§Ãì°_©l
     -by metal alkyls ³±Â÷¤l»E¦XÂǥѪ÷ÄÝÖJ°ò¤§Ãì°_©l
     -by metal amides ³±Â÷¤l»E¦XÂǥѪ÷ÄÝñQÓi¤§Ãì°_©l
   in cationic polymerization ¶§Â÷¤l»E¦X¤§Ãì°_©l
     -effect of temperature on ¶§Â÷¤l»E¦XÃì°_©l¤§·Å«×®ÄÀ³¡]©Î¡^·Å«×¹ï¶§Â÷¤l»E¦XÃì°_©l¤§¼vÅT
     -by Lewis acids ¶§Â÷¤l»E¦XÂǥѸô©ö¤ó»Ä¤§Ãì°_©l
     -by protonic acids ¶§Â÷¤l»E¦XÂǥѽè¤l»Ä¤§Ãì°_©l
   in emulsion polymerization ¨Å¤Æ»E¦X¤§Ãì°_©l
   in radical polymerization ¦Û¥Ñ°ò»E¦X¤ÏÀ³¤§Ãì°_©l
     -activation energies for ¦Û¥Ñ°ò»E¦X¤ÏÀ³Ãì°_©l¤§¬¡¤Æ¯à
     -definition of ¦Û¥Ñ°ò»E¦X¤ÏÀ³Ãì°_©l¤§·N¸q
     -effect of autoacceleration on ¦Û°Ê¥[³t¹ï¦Û¥Ñ°ò»E¦X¤ÏÀ³Ãì°_©l¤§¼vÅT
     -effect of pressure ¦Û¥Ñ°ò»E¦X¤ÏÀ³Ãì°_©l¤§À£¤O®ÄÀ³
     -initiator efficiency in ¦Û¥Ñ°ò»E¦X¤ÏÀ³Ãì°_©l¤§°_©l¾¯®Ä²v
     -by ionizing radiation ¦Û¥Ñ°ò»E¦X¤ÏÀ³ÂǥѹqÂ÷¤Æ·Ó®g¤§Ãì°_©l
     -Kinetics of ¦Û¥Ñ°ò»E¦X¤ÏÀ³Ãì°_©l¤§°Ê¤O¾Ç
     -photochemical ¦Û¥Ñ°ò»E¦X¤ÏÀ³Ãì°_©l¥ú¤Æ¾Ç
     -purely thermal ¦Û¥Ñ°ò»E¦X¤ÏÀ³Ãì°_©l¤§¯Â¼ö
     -redox ¦Û¥Ñ°ò¡]¡H¡^
     -thermal catalyzed Ã즨ªø
Chain length Ãìªø
Chain propagation
   in anionic polymerization ³±Â÷¤l»E¦X¤ÏÀ³¤§Ã즨ªø
     -effect of reaction conditions on ¤ÏÀ³±ø¥ó¹ï³±Â÷¤l»E¦X¤ÏÀ³Ã즨ªø¤§¼vÅT
     -rate constants for  ³±Â÷¤l»E¦X¤ÏÀ³Ã즨ªø¤§¤ÏÀ³³t²v±`¼Æ
   in cationic polymerization  ¶§Â÷¤l»E¦X¤ÏÀ³¤§Ã즨ªø
     -effect of gegen-ion on gegen-ion¹ï¶§Â÷¤l»E¦X¤ÏÀ³Ã즨ªø¤§¼vÅT
     -effect of solvent on ·»¾¯¹ï¶§Â÷¤l»E¦X¤ÏÀ³Ã즨ªø¤§¼vÅT¡]©Î¡^¶§Â÷¤l»E¦X¤ÏÀ³Ã즨ªø¤§·»¾¯®ÄÀ³
     -isomerization in ¶§Â÷¤l»E¦X¤ÏÀ³Ã즨ªø¤§²§ºc¤Æ
     -monomer reactivity in ¶§Â÷¤l»E¦X¤ÏÀ³Ã즨ªø¤§³æÅ鬡©Ê
   in emulsion polymerization ¨Å¤Æ»E¦X¤§Ã즨ªø
   in radical polymerization ¦Û¥Ñ°ò»E¦X¤§Ã즨ªø
     -activation parameters for ¦Û¥Ñ°ò»E¦XÃ즨ªø¤§¬¡¤Æ°Ñ¼Æ
     -definition of ¦Û¥Ñ°ò»E¦XÃ즨ªø¤§©w¸q
     -effect of substituents on ­l¥Íª«¹ï¦Û¥Ñ°ò»E¦XÃ즨ªø¤§¼vÅT
     -rate constants for ¦Û¥Ñ°ò»E¦XÃ즨ªø¤§³t²v±`¼Æ
Chain scission Ãì¤ÁÂ_
Chain segment Ãì¤Àµõ¡AÃì¤À³Î
Chain termination  Ãì²×¤î¡]§@¥Î¡^
   in anionic polymerization ³±Â÷¤l»E¦X¤§Ãì²×¤î
     -effect of temperature on ³±Â÷¤l»E¦XÃì²×¤î¤§·Å«×®ÄÀ³¡]©Î¡^·Å«×¹ï³±Â÷¤l»E¦XÃì²×¤î¤§¼vÅT
     -non-termination
   in cationic polymerization ¶§Â÷¤l»E¦X¤ÏÀ³¤§Ãì²×¤î
     -by chain transfer ¶§Â÷¤l»E¦X¤ÏÀ³ÂÇÃìÂಾ¤§Ãì²×¤î
     -effect of temperature on ·Å«×¹ï¶§Â÷¤l»E¦X¤§Ãì²×¤î¤§¼vÅT
     -non-termination of Kinetic chain
     -termination of Kinetic chain
   in emulsion polymerization ¨Å¤Æ»E¦X¤ÏÀ³¤§Ãì²×¤î
   in radical chain polymerization ¦Û¥Ñ°òÃì»E¦X¤ÏÀ³¤§Ãì²×¤î
     -activation parameters for ¦Û¥Ñ°òÃì»E¦XÃì²×¤î¤§¬¡¤Æ°Ñ¼Æ
     -definition of ¦Û¥Ñ°òÃì»E¦XÃì²×¤î¤§©w¸q
     -diffusion-control of ¦Û¥Ñ°òÃì»E¦XÃì²×¤î¤§ÂX´²±±¨î
     -effect of conversion on ¦Û¥Ñ°òÃì»E¦XÃì²×¤î¤§Âà¤Æ®ÄÀ³
     -rate constants for ¦Û¥Ñ°òÃì»E¦XÃì²×¤î¤§³t²v±`¼Æ
Chain transfer ÃìÂಾ
   in cationic polymerization ¶§Â÷¤l»E¦X¤ÏÀ³¤§ÃìÂಾ
   in emulsion polymerization ¨Å¤Æ»E¦X¤§ÃìÂಾ
   in radical polymerization ¦Û¥Ñ°ò»E¦X¤§ÃìÂಾ
     -activation parameters for ¦Û¥Ñ°ò»E¦XÃìÂಾ¤§¬¡¤Æ°Ñ¼Æ
     -applications of ¦Û¥Ñ°ò»E¦XÃìÂಾ¤§À³¥Î
     -back-biting self-transfer in ¦Û¥Ñ°ò»E¦XÃìÂಾ¤§¤Ï¨ë¦Û¨­Âಾ
     -branching by ¤ÀªKÂǥѦۥѰò»E¦X¤§ÃìÂಾ
     -chain transfer agents ¦Û¥Ñ°ò»E¦XÃìÂಾ¤§ÃìÂಾ¾¯
     -chain transfer constants ¦Û¥Ñ°ò»E¦XÃìÂಾ¤§ÃìÂಾ±`¼Æ
     -degradative transfer ¦Û¥Ñ°ò»E¦XÃìÂಾ¤§µõ¸ÑÂಾ
     -effect on molecular weight and rate ¦Û¥Ñ°ò»E¦XÃìÂಾ¹ï¤À¤l¶q¤Î¤ÏÀ³³t²v¤§¼vÅT
     -to initiator
     -to monomer
     -to polymer
     -to solvent
     -structure and reactivity in
Chain transfer agent ÃìÂಾ¾¯
Chain transfer constant ÃìÂಾ±`¼Æ
Chainstitch  ÃìÁ_¦X¡A§Y¥HÅÖºû±Nªþ¤~¿n¼hÁ_¦X¦b¤@°_¡A¦PLock stitch
Chalking  ¥Õ°îª¬
Characteristic length ¯S©wªºªø«×
Charge  ¥R¹q¡A¸ü¹B
Chase  ¯BÀJ¡A¥´ªá¯¾
Chember system  ¦¨§Î¿µ¨t²Î¡C¥¼¦¨¤Æ¤§½Æ§÷¥Í®Æ©Îµ²ºc¥ó¡A¸m©ó¯uªÅ¦¨§Î°y¤º©Î¿µ¤º¡A¦¹¿µ¥i
¥[¼ö¤Î¥[À£¡A½Æ§÷¨Ì¦¨§Î¶g´Á¦b¿µ¤º§¹¦¨µw¤Æµ{§Ç
Chemical vapor deposition  ¤Æ¾Ç»]Áá
Chill  §N«o
Chopped fibers µuªº©Î­é¸HªºÅÖºû
Circuit  ¨µ°j¸ô½u¡A¨±¸ô
Circumferential (¡©Circ¡ª) Winding ©PÃ䪺Äñ¶
Cis polymer ¶¶¦¡»E¦Xª«
Clamping plate §¨ªO
Clamping pressure §¨¼ÒÀ£
Clamp-up force  §¨¦í¤O¡Aºã¨î¤O
Classification of polymers »E¦Xª«¤§¤ÀÃþ
   by polymerization mechanism ÂǥѻE¦X¤ÏÀ³¾÷ºc°µ»E¦Xª«¤§¤ÀÃþ¡]¤À¯Å¡^
   by structures Âǥѵ²ºc°µ»E¦Xª«¤§¤ÀÃþ
Cleavage  ¼A¶}¡A½Æ§÷¹g±µ¨ü¤O§e©Ô¦ù¯}Ãa²{¶H
Cocatalyst ¦@IJ´C
Cocure  ¦@µw¤Æ
Cocuring  ¦@µw¤Æ¡A¤Î½Æ§÷µ²ºc¥ó¤@¦¸µw¤Æ¦¨§Î¤§¹Lµ{
Coefficient of cubical Expansion ¥ß¤èÅ鿱µÈ«Y¼Æ
Coefficient of elasticity ¼u©Ê«Y¼Æ
Coefficient of Friction ¼¯À¿«Y¼Æ
Coefficient of Linear Expansion ½u©Ê¿±µÈ«Y¼Æ
Coefficient of thermal expansion ¼ö¿±µÈ«Y¼Æ¡A²ºÙCTE
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Cohesion ¾®»E¤O¡A¤º»E¤O
Cold / dry °® / §Nª¬ºA¡A½Æ§÷¥ó¦b°µ´ú¸Õ®É¤§Àô¹Ò±ø¥óªí¥Üªk
Cold flow
Cold-setting Adhesive §N¸mÂHµÛ¾¯
Collar  ¶bÀô¡AÀôºÞÁî
Collimate  ¨Ï¦¨¥­¦æ¡AºË·Ç
Collision frequency factor ¸I¼²ÀW²v«Y¼Æ¡]¦]¤l¡^
Combined stresses µ²¦XÀ³¤O
Commingled fabric ²V¦XÅÖºû¡A§Y±N¨âºØÅÖºû²V¯¼©Î½s´¦Ó¦¨¤§ÅÖºû¦¨¥¬
Compatibility ¬Û®e©Ê
Complex Root ½Æ¼Æªº®Ú
Compliance  ©}±q©Ê¡A¬X¶¶©Ê
Component test  ¤¸¥ó¸ÕÅç
Composite  ½Æ¦X§÷®Æ
Composite material  ½Æ¦X§÷®Æ
Composite mold tooling ½Æ§÷¦¨§Î¼Ò¨ã¡A§Y¥H½Æ§÷»s§@¤§¼Ò¨ã
Composite ½Æ¦X§÷®Æ
Compression mold ¥[À£¦¨§Î
Compression molding  ¥[À£¦¨§Î
Compression test À£ÁY¸ÕÅç¡A½Æ¦X§÷®Æ¾÷±ñ±j«×¤§¤@ºØ¤è¦¡
Compressive Modulus (Ec) À£ÁY¼Ò¼Æ¡A§ÜÀ£¼Ò¼Æ
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Compressive strength À£ÁY±j«×¡A§ÜÀ£±j«×
Compressive stress À£ÁYÀ³¤O¡A§ÜÀ£À³¤O
Computerized technique  ¹q¸£¤Æ§Þ³N
Computer-tomography  ¹q¸£Â_¼hÄá¼v¸Ë¸m
Concentrated load  ¶°µ²­t¸ü¡A§Yµ²ºc¥ó¨ü¤O¶°¤¤©ó¬Y¤@¯S©w¤§ÂI
Concurrent engineering  ¨ó¦P¤uµ{¡A¤@ºØ²V²c¥Î»y¡A¥¦¥]§t³]­p¡B»s³y¤u¨ã§÷®Æ»P»sµ{ºû­×¡A­×¸É¤Î
À³¤O¤uµ{µ¥
Condensation agent ÁY¦X¾¯
Condensation polymer ÁY¦X»E¦Xª«
Condensation polymerization ÁY¦X»E¦X¤ÏÀ³
Condensation Resin ÁY¦X¾ð¯×
Conductivity  ¶Ç¾É©Ê
Confidence interval  ¥i«H¥ôªº¶ZÂ÷¡A¥i«H¥ôªº¶¡¹j
Conformational isomers ºc§Î²§ºcª«
Conjunct polymerization ²V¦Xªº»E¦X¤ÏÀ³
Constant Life diagram 
Constituent  ²Õ¦¨¥÷
Constituent material §÷®Æ²Õ¦¨¦¨¥÷
Contact Adhesive ±µÄ²ªºÂHµÛ¾¯
Contact Molding ±µÄ²¦¨§Î
Contact pressure Resin IJÀ£¾ð¯×
Contamination  ¦Ã¬V¡A½Æ§÷¥Í®Æ©Îµ²ºc¥ó¤º¤§¤£¼äª«¡A¥¦¤§¦s¦b¼vÅTµ²ºc¥ó±j«×¤§¤U­°
Continuous Filament ³sÄò©Êªº³æÅÖºû
Continuous Filament Yarn ³sÄò©Êªº³æµ·
Contracted Notation  ²²¤°O¿ý¡A²²¤µù¸Ñ
Convergent and divergent concept ¦¬ÀÄ»Pµo´²¤§·§©À
Cooling Fixture §N«o§¨¨ã
Coordination catalysts °t¦ìIJ´C
   components of °t¦ìIJ´C¤§¦¨¤À
   definition of °t¦ìIJ´C¤§©w¸q
   heterogeneous vs homogeneous ²§½èªº»P¦P½èªº°t¦ìIJ´C
   mechanism of stereospecificity with ¥ßÅé¯S©w©Ê¾÷ºc»P°t¦ìIJ´C
Coordination polymerization °t¦ì»E¦X¤ÏÀ³
Copolymer  ¦@»E¦XÅé¡A¦@»E¦Xª«
   alternating  ¥æ´À¦¡¦@»E¦Xª«
   block ¶ôª¬¦@»E¦Xª«
   graft ±µªK¦@»E¦Xª«
   microstructure of ¦@»E¦Xª«¤§·Lµ²ºc
   nomenclature of ¦@»E¦Xª«¤§©R¦W
   random ¶Ã±Æ¦@»E¦Xª«
   stereoblock ¥ßÅé¶ôª¬¦@»E¦Xª«
Copolymer composition equation ¦@»E¦Xª«²Õ¦¨¦¨¥÷¤èµ{¦¡
Copolymerization  ¦@»E¦X¤ÏÀ³
Copolymerization equation ¦@»E¦X¤ÏÀ³¤èµ{¦¡
   applicability of ¦@»E¦X¤ÏÀ³¤èµ{¦¡¤§¾A¥Î©Ê
   derivation of ¦@»E¦X¤ÏÀ³¤èµ{¦¡¤§­l¥Í
Copper  »É¡A¤@ºØª÷Äݤ¸¯À
Core  ¿¶¤ß
Core-Retainer Plate ¿¶¤ß«O¯d¥­ªO
Corrosion  »G»k¡Aª÷ÄݩΧ÷®Æ¦bÀô¹Ò¤§¤U¨ü·l¤§ª¬ªp
Cost  ¦¨¥»
Count  ¤ä¡A¯½¼Æ¡A®Ú¼Æ
Countersunk head fastener ®IÀY¹g°v
Coupling     °¸¦X
Coupling Agent °¸¦X¾¯
Coupon test 
Coweaving   ¦@´¡A¦@½s´
Crack  ¯}µõ
Crack density  ¯}µõ±K«×
Cracking  ¯}µõ
Crash worthiness 
Crazing  µõÁ_¡Aµõ¯¾
Creel  ¯½¬[¡A¤ä¼µ¯½§ô¤§¤u¨ã
Creep  ¼çÅÜ¡A§÷®Æ¦bªø´Á¨ü¤O¤U©µ®i¤§²{¶H
Creep forming  ¼çÅܦ¨§Î
Crimp ªi¯¾¡A½KºP
Criteria  ¼Ð·Ç¡A·Ç³W½d
Critical branching coefficient Á{¬É¤ä¤Æ«Y¼Æ
Critical Buckling Load Á{¬É®À¦±­t¸ü
Critical extent of reaction ¤ÏÀ³¤§Á{¬Éµ{«×¡]½d³ò¡^
Critical Longitudinal Stress Á{¬Éªø¶bÀ³¤O
Critical micelle concentration Á{¬É½¦§ô¿@«×
Critical Strain Á{¬ÉÀ³ÅÜ
Cross-laminated ¥æ¤e¿n¼h
Crosslink  ¥æ³s
Crosslinked polymer ¤w¥æ³s¤§»E¦Xª«
Crosslinking  ¥æ³s§@¥Î
   of polymer »E¦Xª«¤§¥æ³s¡A°ª¤À¤l¤§¥æ³s
     -by copolymerization ÂǥѦ@»E¦X¤ÏÀ³¤§»E¦Xª«¡]°ª¤À¤l¡^¥æ³s
     -of fluoro polymer ¬t»E¦Xª«¤§°ª¤À¤l¥æ³s
     -by oxygen ÂǥѮñ¤§°ª¤À¤l¥æ³s
     -by peroxides ÂǥѹL®ñ¤Æª«¤§°ª¤À¤l¥æ³s
     -by radiation ÂǥѷӮg¤§°ª¤À¤l¥æ³s
     -by sulfur ÂǥѲ¸¤§°ª¤À¤l¥æ³s
   in step chain copolymerization of dienes  ¤G²m¦Û¥Ñ°òÃì¦@»E¦X¤§°ª¤À¤l¥æ³s
   in step polymerization ³v¨B»E¦X¤§°ª¤À¤l¥æ³s
Crossover point ¥æ¤eÂI
Crossover reaction ¥æ¤e¤ÏÀ³
Cross-plies ¥æ¤eÅ|¼h
Cross-ply Laminate  ¥¿¥æÅ|¼h¿n¼h
Cross-propagation ¥æ³s¦¨ªø
Cross-termination ¥æ³s²×¤î
Crosswise Direction ¥æ¤e¤è¦V¡AÁa¾î¤è¦V
Crowding repulsion ¸sÀ½±Æ¥¸
Crowfoot
Crystalline-amorphous behavior µ²´¹-«Dµ²´¹¦æ¬°
   crystalline melting temperature µ²´¹º²¿Ä·Å«×
   determinants of µ²´¹-«Dµ²´¹¦æ¬°¤§¨M©w¦]¯À
   effect on reactivity of polymers
   glass transition temperature ¬Á¼þÂà¤Æ·Å«×
   nature of µ²´¹-«Dµ²´¹¦æ¬°¤§©Ê½è
   significance of µ²´¹-«Dµ²´¹¦æ¬°¤§­«­n©Ê
Crystalline melting temperature µ²´¹º²¿Ä·Å«×
Crystallinity  µ²´¹«×
Crystallite ¤pªºµ²´¹¡Aµ²´¹Á¡¼h
C-scan  C-±½ºË¡A¤@ºØÀË´ú§÷®Æ¤º³¡¯Ê³´¤§¤u¨ã
C-stage  C-¶¥¬q¡A¾ð¯×§¹¥þµw¤Æ¤§ª¬ªp
C-stage polymer C-¶¥¬q»E¦Xª«
Cull ´z¥X
Cumulative distribution Function ²Ö¿n¤À°t¨ç¼Æ
Cumulative weight fraction ²Ö¿n­«¶q¤§¤À¼Æ
Cuprammonium process »ÉÓi»sµ{
Cure  µw¤Æ¡A¼ö©T©Ê¾ð¯×¥Ñ²Gª¬Åܦ¨©TÅ骬ºA¤§¹Lµ{
Cure Agent µw¤Æ¾¯
Cure Temperature µw¤Æ·Å«×
Cure Time µw¤Æ®É¶¡
Cure-cycle  µw¤Æ¶g´Á
Cure-in-place repair
Cure-pressure  µw¤ÆÀ£¤O
Cure-temperature  µw¤Æ·Å«×
Currature  ¦±²v
Cut ¤Á³Î
Cut-off ¤Á¶}¡AºIÂ_
Cutout  ³Î±¼¡A°£¥h
Cutting  ¤Á³Î
Cycle  ¶g´Á
Cyclic acetal polymerization Àôª¬ÁYîÇ»E¦X¤ÏÀ³
Cyclic amide polymerization Àôª¬ñQÓi»E¦X¤ÏÀ³
Cyclic amine polymerization Àôª¬Ói»E¦X¤ÏÀ³
Cyclic ester polymerization Àôª¬à­»E¦X¤ÏÀ³
Cyclic ether polymerization Àôª¬îÅ»E¦X¤ÏÀ³
Cyclic formal polymerization Àôª¬¥ÒîÇ»E¦X¤ÏÀ³
Cyclic sulfide polymerization Àôª¬²¸»E¦X¤ÏÀ³
Cyclization  Àô¤Æ
Cyclopolymerization  Àô»E¦X¤ÏÀ³
Cyclosilazine polymerization ÀôÖº´á»E¦X¤ÏÀ³
Cyclosiloxane polymerization ÀôÖº®ñÖJ»E¦X¤ÏÀ³
1,3 Dipolar addition polymerization 1,3¤G·¥¥[¦¨»E¦X¤ÏÀ³
Dacron  ¹F§JÀs
Dam  ¾×¤ù
Damage  ·l¶Ë
Damage tolerance  ·l¶Ë®e§Ô«×
Damping  ªý¥§
D-and L-configurations D©MLµ²ºc
Daylight  ªÅ¶¡¡AªÅ»Ø
Dead polymer ¦ºªº»E¦Xª«
Dead-end polymerization ¦ººÝ»E¦X¤ÏÀ³
Debond  ²æ½¦
Debulk  ®øµÈ¡A§Y§Q¥ÎÀ£¤O´î¤Ö¿n¼h¤§«p«×
Deep drawing forming  ²`®i¦¨§Î
Deep-Draw Mold
Defect  ¯Ê³´
Deflection  ¶É±×
Deflection Temperature Under Load ­t¸ü¤U¤§°¾±×·Å«×
Deflection Under Load ­t¸ü¤U¤§ÅܧÎ
Deformation  ÅܧÎ
Degassing  °£®ð
Degradation  ¤Àµõ¡A¤À¸Ñ¡C¶ì½¦µ¥§÷®Æ¨ü¼ö©Îµµ¥~½uµ¥¥~¦b¦]¯À¤§¼vÅT¡A¨Ï±o¨äµ²ºcµo¥ÍÅÜ
¤Æ¡A¥Ñ¤j¤À¤lµõ¸Ñ¦¨¸û¤p¤À¤l¶q¤§¶ì½¦¡C
Degradation  µõ¸Ñ
Degradative chain transfer µõ¸ÑÃìÂಾ
Degree of polymerization »E¦X«×
Delaminate, Delamination ²æ¼h
Delamination  ²æ¼h¡A¿n¼hªO¨ü¥~¤O¦Ó¨Ï±o¼h¶¡¤À¶}¤§²{¶H
Denier ¤¦¥§¡A¨C9000¦Ìªø¤§µ·¡A­«¶q1¤½§J¿×¤§1¤¦¥§
Densification  ¼W±K¤Æ¡CºÒ / ºÒ½Æ¦X§÷®Æ¦b»s³y¹Lµ{¤¤¡A¥ý±NÅÖºû½s´¦¨¹w¦¨§Îª«¡A¦A±N×ô
µ¥¾ð¯×ª`¤J¿Nµ²ºÒ¤Æ¡A¥H´£°ª½Æ¦X§÷®Æ±K«×¤§¤@ºØ¹Lµ{
Density  ±K«×¡A§Y¤@ª«Å餧­«¶q°£¥HÅé¿n¤§³æ¦ì
Dent  ¥W³´³B¡A¤@ª«Åé¨ü¥~¬É¼²À»©Ò¯d¤U¤§¥W²ª
Depolymerization  ¤Ï»E¦X¡A®ø·À»E¦X
Depropagation  ¤Ï¦¨ªø¡A®ø·À¦¨ªø
   in radical copolymerization ¦Û¥Ñ°ò¦@»E¦X¤§¤Ï¦¨ªø
   in radical polymerization ¦Û¥Ñ°ò»E¦X¤§¤Ï¦¨ªø
Design ³]­p
Desizing  °£¼ß
D-Glass D¬Á¼þ¡AD¬Á¼þÅÖºû
Diad tacticity ¤G»ù°ò
Diamagnetic Susceptibility  ¤ÏºÏÆF±Ó©Ê¡A¤ÏºÏ¤Æ©Ê
Diaphragm forming  ¹j½¤¦¨§Î¡G¤@ºØ¼ö¶ì©Ê½Æ§÷¤§¦¨§Î§Þ³N¡A¥¦«Y±N¹w¦¨§Î¤§¼ö¶ì©Ê½Æ§÷¥Í®Æ¨Ã
©ó¨â¤ù°ª¤À¤l»V½¤¶¡¥[¼ö¡B¬IÀ£¡A¨Ï½Æ§÷¹w®û®Æ»P»V½¤¦P®ÉÅܧΡA¨ÃªA¶K©ó¼Ò
¨ã¤W­±¦Ó¦¨§ÎÃä
Diazoalkane polymerization ¤G´áÖJÄÝ»E¦X¤ÏÀ³
Die  ¼Ò¨ã
Dielectric  ¤¶¹q
Dielectric Constant ¤¶¹q±`¼Æ
Dielectric Curing ¤¶¹qµw¤Æ
Dielectric Heating  ¤¶¹q¥[¼ö
Dielectric Loss Angle ¤¶¹q·l¥¢¨¤«×
Dielectric loss ¤¶¹q·l¥¢
Dielectric Phase Angle ¤¶¹q¬Û¦ì¨¤
Dielectric Strength ¤¶¹q±j«×
Diels-Alder polymerization ¨fº¸-ªü¦h»E¦X¤ÏÀ³
Dienes ¤G²m
   copolymerization of ¤G²m¤§¦@»E¦X¤ÏÀ³
   polymerization of ¤G²m¤§»E¦X¤ÏÀ³
     -stereoisomerism in ¤G²m»E¦X¤ÏÀ³¤§¥ßÅé²§ºc©Ê
Diffusion bonding ÂX´²Áäµ²¡AÂX´²µ²¦X
diffusion-controlled termination ÂX´²±±¨î²×¤î§@¥Î
   in radical copolymerization ¦Û¥Ñ°ò¦@»E¦X¤§ÂX´²±±¨î²×¤î
   in radical polymerization ¦Û¥Ñ°ò»E¦X¤§ÂX´²±±¨î²×¤î
Di-isotactic polymer ¤G¦P±Æ»E¦Xª«¡A¤G¦P±Æ°ª¤À¤l
Dimensional stability  ¤Ø¤o¦w©w©Ê
Dimethyl Ketene polymerization ¤G¥Ò°ò¡]¡H¡^»E¦X¤ÏÀ³
Dimpled hole  ¥W³´¬}
Diol prepolymers ¤G¾J¹w»E¦Xª«
Disbond  ¥¼½¦¦X¡A¥¼Áäµ²
Discontinuous fiber ¤£³sÄòÅÖºû¡C§YµuÅÖºû±Æ¦C¦b¦P¤@¤è¦V¡A¦ý¤£³sÄò
Displacement  ²¾°Ê¡A¸m´«
Displacement Angle ¸m©ñ¨¤«×
Disproportionation  ¤£§¡¿Å¡A¤£¥­¿Å
Dissipation Factor ®ø´²²v¡]De¡^
Distortion  ¬n±×¡A§á¦±
Di-syndiotactic polymer ¤G¹ï±Æ»E¦Xª«
Diverter 
Doctor Roll ½Õ¸`ºu½ü
Doily  ªáÃä
Dome  ¶ê³»
Double-lap joint ÂùÅ|±µ¡Cµ²ºcÅé·f±µ¤Î´ú¸Õ½¦®Æ½¦¦X±j«×¤§¤@ºØ¤è¦¡
Doubler 
Draft 
Draft Angle 
Drapability  Âл\©Ê
Drape  Âл\
Drilling  Æp¤Õ
Dry  °®ªº
Dry layup °®¦¡Å|¼h
Dry Spot °®´³ÂI
Dry Winding °®¦¡Äñ¶
Dual-resin bonding Âù­«¾ð¯×½¦¦X¡A¤GÅé¾ð¯×½¦¦X
Durability  «ù¤[©Ê¡A­@¤[©Ê
Dwell  º¢¯d
Dwell time  º¢¯d®É¶¡¡A°±¯d®É¶¡
Dynamic Modulus °ÊºA¼Ò¼Æ
E.S.C. Environmental Stress Cracking Àô¹ÒÀ³¤O¯}Ãa
Eccentricity °¾¤ß²v¡AÂ÷¤ß²v
Eddy-current ºx´õ¹q¬y
Edge closeout
Edge distance  Ãä½t¶ZÂ÷
Edge distance Ratio ºÝÃä¶ZÂ÷¤ñ
Edge effect  Ãä½t®ÄÀ³
Edgewise 
Effective properties ¦³®Äªº©Ê½è¡A¹ê»Úªº©Ê½è
Effector 
Egg crating 
E-glass  E¬Á¼þ¡AE-¬Á¼þÅÖºû
Ejection  °h¼Ò
Ejection plate °h¼ÒªO
Ejection Ram °h¼Ò¼Î
Elastic constant  ¼u©Ê±`¼Æ
Elastic Deformation ¼u©ÊÅܧÎ
Elastic elongation ¼u©Ê¦ùªø«×
Elastic limit ¼u©Ê·¥­­
Elastic Recovery ¼u©Ê¦^´_
Elastic relation  ¼u©ÊÃö«Y¡A§¹¥þ¥i°f³æ¤@¤§À³¤O / À³ÅÜÃö«Y
Elastic trough  ¼u©Ê¥W¼Ñ
Elasticity  ¼u©Ê
Elasticity, Coefficient of ¼u©Ê«Y¼Æ
Elastomer  ¼u©ÊÅé
Elastomeric (rubber) tooling  ¼u©ÊÅé¤u¨ã
Elastomeric forming  ¼u©ÊÅ馨§Îªk
Electrical conductivity  ¹qªº¶Ç¾É©Ê¡A¾É¹q©Ê
Electro-deposited nickel  ¹qÁáÂì¡A¹q¨H¿nÂì¡]¡H¡^
Electroformed Mold ¹qÁá¼Ò
Electroformed nickel tooling  ¹qÁáÂì¤u¨ã
Electrolytic polymerization ¹q¸Ñ»E¦X¤ÏÀ³
Electromagnetic interference (EMI) ¹qºÏ¤zÂZ
Electron transfer ¹q¤lÂಾ
Electroplated nickel tooling ¹qÁáÂì¤u¨ã
Element test  ¤¸¥ó´ú¸Õ
Elementary Theory  °ò¥»²z½×
Elongation  ©µ¦ù«×
Elongation at Break ¯}Â_¦ùªø«×
Elongation Between Gages ¤Ø«×¶¡¤§¦ùªø«×
Emisivity  ©ñ®g²v
Emissivity 
Emulsifier  ¨Å¤Æ¾¯
   inhibition by ÂǨŤƾ¯§í¨î
Emulsion polymerization ¨Å¤Æ»E¦X¤ÏÀ³
   chain transfer in ¨Å¤Æ»E¦X¤§ÃìÂಾ
   components of ¨Å¤Æ»E¦X¤§¦¨¤À
   emulsifier in ¨Å¤Æ»E¦X¤§¨Å¤Æ¾¯
   energetics of ¨Å¤Æ»E¦X¤§¼ö¤O¾Ç
   Kinetics of ¨Å¤Æ»E¦X¤§°Ê¤O¾Ç
   initiation in ¨Å¤Æ»E¦X¤§°_©l¤ÏÀ³
   inhibition in  ¨Å¤Æ»E¦X¤§§í¨î§@¥Î
   inverse emulsion system ¨Å¤Æ»E¦X¤§Âà¤Æ¨Å¤Æ¨t²Î
   Medvedev-Sheinker theory in ¨Å¤Æ»E¦X¤§Medvedev-Sheinker²z½×
   molecular weight in  ¨Å¤Æ»E¦X¤§¤À¤l¶q
   molecular weight distribution in ¨Å¤Æ»E¦X¤§¤À¤l¶q¤À§G
   number of particles in ¨Å¤Æ»E¦X¤§²É¤l¼Æ
   propagation in ¨Å¤Æ»E¦X¤§¦¨ªø¤ÏÀ³
   Smith-Ewart behavior ¨Å¤Æ»E¦X¤§Smith-Ewart¡]¥v±K´µ-·R¤¬¯S¡^¦æ¬°
   termination in ¨Å¤Æ»E¦X¤§²×¤î¤ÏÀ³
   utility of ¨Å¤Æ»E¦X¤§¹ê¥Î©Ê
Encapsulate  ¸Ë¤J½¦Ån
End  ºÝÂI
End count  ºÝÂI¼Æ
End-groups ¥½ºÝ°ò¹Î
Endurance Limit «ù¤[·¥­­¡A­@¤[·¥­­
Energy absorption  ¯à¶q§l¤J
Engineering Constant ¤uµ{¥Î±`¼Æ
Environment  Àô¹Ò
Environmental chamber  Àô±±¿µ
Environmental condition  Àô¹Ò±ø¥ó
Environmental Stress Cracking Àô¹ÒÀ³¤O¯}Ãa
Epichlorohydrin  ªí´â¾J¡A3-´â-1,2-Àô®ñ¤þ¾J
Epoxide  Àô®ñ¤Æª«
Epoxide Equivalent Àô®ñ·í¶q
Epoxide polymerization  Àô®ñ¤Æª«¤§»E¦X¤ÏÀ³
Epoxy  Àô®ñ¾ð¯×¡A¨ã¦³©x¯à°ò¤§°ª¤À¤l¿×¤§
Epoxy plastic Àô®ñ¶ì½¦
Epoxy prepolymer Àô®ñ¹w»E¦Xª«
Equator  ¨ª¹D¦¡
Equilibrium monomer concentration ¥­¿Å³æÅé¿@«×
Equilibrium polymerization ¥­¿Å»E¦X¤ÏÀ³
Erosion  »G»k
Erythro-di-isotactic polymer ¨ª․¤G¦P±Æ»E¦Xª«
Erythro-dio-syndiotactic polymer ¨ª․¤G¹ï±Æ»E¦Xª«
Eutectic salt  ¦@¿ÄÆQ
Even Tension §¡¤@±i¤O¡A¦P¤@±i¤O
Even-hollow-grid 
Exotherm  ©ñ¼ö
Expansion coefficient  ¿±µÈ«Y¼Æ
Extend  ©µ¦ù¡A©µªø
Extender  ²K¥[ª«¡A²V¦X¾¯
Extensibility  ©µ®i©Ê
Extensometer  ¦ù®i¶q´ú¾¹
Fabric  ´ª«
Fabricating, Fabrication »s³y
Fabrication  »s³y
Fail-safe design  ¤Ï¦w¥þ¯}Ãa³]­p
Failure criteria  ¯}Ãa¼Ð·Ç¡A¯}Ãa³W½d
Failure criterion  ¯}Ãa¼Ð·Ç
Failure envelope
Failure mode  ¯}Ãa¼Ò¦¡
Failure strain  ¯}ÃaÀ³ÅÜ
Fan  Á³±Û¼Õ
Fastener  ©Ô°v¡A¹g°v
Fastener bending ¹g°vÅs¦±
Fastener construction  µL¹g°vµ²ºc
Fastener hole  ¹g°v¤Õ
Fastener load transfer  ¹g°v­t¸üÂಾ
Fastener shear failure  ¹g°v°Å¤O¯}Ãa
Fatigue  ¯h³Ò
Fatigue Life ¯h³Ò¹Ø©R
Fatigue limit ¯h³Ò·¥­­
Fatigue Notch Factor ¯h³ÒV«¬¥W²ª¦]¯À
Fatigue Notch Sensitivity ¯h³ÒV«¬¥W²ª±Ó·P«×
Fatigue Ratio ¯h³Ò¤ñ
Fatigue Strength Ratio ¯h³Ò±j«×¤ñ
Fatigue Strength ¯h³Ò±j«×
Fatigue stress ¯h³ÒÀ³¤O
Fatigue Stress Ratio ¯h³ÒÀ³¤O
Feather edge  Á¡Ãä
Felt  ¤òÀÖ
Female tooling  ³±¼Ò¤u¨ã
Fiber  ÅÖºû
Fiber content  ÅÖºû§t¶q¡A¤@¯ë¥HÅé¿n¤ñªí¥Ü
Fiber Diameter ÅÖºûª½®|
Fiber Glass ¬Á¼þÅÖºû
Fiber Orientation ÅÖºû¤è¦V
Fiber orientation concept ÅÖºû¤è¦V·§©À
Fiber Pattern  ÅÖºûªá¼Ë
Fiber Strain in Flexure ¼¸¦±ÅÖºûÀ³ÅÜ
Fiber Stress in Flexure Ås¦±ÅÖºûÀ³¤O¡A¼¸¦±ÅÖºûÀ³¤O
Fiber tow placement ÅÖºû§ô¦w¸m
Fiber variation ÅÖºûÅܤÆ
Fiber winding  ÅÖºûÄñ¶
Fiber-placement laying ÅÖºû¦w¸mÅ|¼hªk
Fibrillar  ¤pÅÖºû¡AŽ®Ú
Fick¡¦s Equation  Fick¤èµ{¦¡
Field repair  ³õªº­×¸É©Î­¸¾÷¥æ¾Ô·l¶Ë­×¸É
Filament  ³æµ·¡A³æÅÖºû
Filament Weight Ratio ÅÖºû­«¶q¤ñ
Filament Winding Äñ¶¦¨§Î
Fill  ¶ñº¡¡A¸Ëº¡
Fill direction  ««ª½©ó¸gªº¤è¦V
Filler  ¶ñ¥Rª«
Fillet ½ü¹ø
Filling Yarn ½n¯½
Film Adhesive ¤ù½¦¡AÁ¡½¤ÂHµÛ¾¯
Finish  ¿i¥ú¡A¥[¤u
First ply failure  ²Ä¤@¼h¯}Ãa
Fish-Eye ³½²´ÃèÀY
Fits-in-frame  ¦w¸Ë©ó°©¬[¤W
Fit-up ¸Ë³Æ¡A¸Ë¸m
Flame Resistance ­@¤õ¡A­@¿U
Flame Retardant ªý¤õ¾¯¡A­@¿U¾¯
Flame Retarded Resin ­@¿U¾ð¯×
Flame Spraying ¤õµK¼QÅx
Flammability ¥i¿U©Ê¡A©ö¿U©Ê
Flash Äéª`
Flash Mold ª`½¦¼Ò¨ã¡AÄéª`¼Ò¨ã
Flatwise 
Flaw  ¯Ê³´¡A·å²«
Flexibilizer  ¼W¼¸¾¯¡A¼W¶´¾¯
Flexible Mold ¥iÅܧμҡA©öÅs¦±½¤
Flexural Rigidity ¼¸¦±­è©Ê¡AÅs¦±­è©Ê
Flexural Strength ¼¸¦±±j«×¡AÅs¦±±j«×
Flexural test  ¼¸¦±´ú¸Õ
Flory distribution  ¦òù¨½¤À§G
Flow  ¥Rº¡¡Aª`º¡
Flow Chart ¬yµ{¹Ï
Flow line ª`½¦½u
Fluid heating  ¬yÅé¥[¼ö
Fluidized-Bed Coating ¬y§É³QÂСA¬y§É¤W½¦
Flush repair  ¹q¶q­×¸É
Fluted Core ¥W¼Ñ¿¶¤ß
Foam  µoªw
Foamed plastic µoªw¶ì½¦
Foam-in-plac µoªw¦w¸m
Foil  ºä¡AÁ¡ª÷Äݤù
Folded-chain lamella §éÅ|ÃìÁ¡¼h¡]Á¡ªO¡^
Force  ¤O
Form  §Î¦¡¡A¥~Æ[
Forming  ¦¨«¬¡A¦¨§Î
Fourier¡¦s equation  ³Å¥ß¸­¤èµ{¦¡
Fracture  µõÁ_
Fracture toughness ¯}Ãa¶´©Ê
Free expansion  ¦Û¥Ñ¿±µÈ
Free-Radical Polymerization ¦Û¥Ñ°ò»E¦X¤ÏÀ³
Frequency  ÀW²v
Friction  ¼¯À¿
Fringed-micelle ¥[ò±¹¢ªº·Lªw
FRP  Fibrous-glass-reinforced plastic¤§Â²ºÙ¡A§YÅÖºû±j¤Æ¶ì½¦
Fuel tank  ªo½c
Full-scale test  ¥þ¤Ø¤o¸ÕÅç
Functional group reactivity ©x¯à°ò¹Î¤§¬¡©Ê
Functionality  ©x¯à©Ê
Fungus Resistance §Üµß
Furane plastic
Gage length ¶q³Wªø
Galvanic corrosion  ¹q¦ì»G»k¡C¨âºØ§÷®Æ¨ã¤£¦P¹q¦ì®É¦Ó·f±µ¦b¤@°_¡A¦]¹q¦ì®t¦Ó¤Þ°_»G»k²{¶H
Gap  Á_»Ø
Gegen-ion
Gel  ½¦¤Æ¡A¾®½¦
Gel coat ½¦¤Æ¶î§G
Gel effect ¾®½¦®ÄÀ³
Gel point ½¦¤ÆÂI¡A¾®½¦ÂI
Gelation  ½¦¤Æ
Gelation time ½¦¤Æ®É¶¡
Gelcoat 
Geodesic  ¶q´ú¡A´ú¦a½u
Geodesic-isotensoid µ¥±i¤O½u
Geodesic-isotensoid Contour  µ¥±i¤O½u¦±­±¡Aµ¥±i¤O§Î½u
Geometrical isomerism in polymer  »E¦Xª«¤§´X¦ó²§©Ê
GFRP Glass fiber reinforce plastic¤§Â²ºÙ¡A¬Á¼þÅÖºû±j¤Æ¶ì½¦
Glass  ¬Á¼þ
Glass / percent by volume ¬Á¼þÅé¿n¦Ê¤À¤ñ
Glass Fiber ¬Á¼þÅÖºû
Glass Filament ¬Á¼þÅÖºû
Glass Filament Bushing ¬Á¼þµ·¶bŨ
Glass finish ¬Á¼þ¥[¤u¡A¬Á¼þºëªî
Glass Flake ¬Á¼þÁ¡¤ù
Glass Former
Glass Stress ¬Á¼þÀ³¤O
Glass transition temperature ¬Á¼þÂà¤Æ·Å«×
Glassy Temperature ¬Á¼þ·Å«×©Î¬Á¼þÂà¤Æ·Å«×
GPD¡]Grams per denier¡^ ¨C¤¦¥§¤§§J¼Æ
Graphite  ¥Û¾¥
Graphite filament  ¥Û¾¥ÅÖºû
Graphitization  ¥Û¾¥¤Æ
Gravity Closing ¡]¡H¡^­«¶q¡A¤Þ¤O
Greige, Gray
Grex 
Grind-down  ¿i¸H
Grommet  ª÷Äݦ©
Groove seal  ¥H¥W¼Ñ±K«Ê
Guide pin ¾É®ê
Guide pin Bushing ¾É®ê¶bŨ¡A¾É®ê®Mµ©
Gusset ¨¤ªO¡A¶¨ªO
Hail damage  ªF¦è¸¨¤U©Ò³y¦¨¤§·l¶Ë
Hand  ¥Î¤â»¤¾É
Hand Layup ¤â¿nªk
Hardener  µw¤Æ¾¯
Hardness  µw«×
Harness satin 
Hat Type Corrugated Core ´U¤lª¬ªi®ö§Î¿¶¤ß
Hde  ¤Õ
Head to tail structure ÀY±µ§Àµ²ºc
Health  °·±d
Heat Build-up ¼ö´£ª@
Heat Distortion Point ¼öÅܧÎÂI
Heat Endurance ­@«ù¤[©Ê
Heat Resistance ­@¼ö©Ê
Heat sink  ¥[¼ö¼Ñ
Heat system  ¥[¼ö¨t²Î
Heat-convertible Resin ¼ö¥iÂà´«¤§¾ð¯×
Heating pad  ¥[¼ö¹Ô¤l
Helical winding  Á³±Ûª¬Äñ¶¡AÄñ¶§Þ³N¤§¤@ºØ¤è¦¡
Heterogeneity  «D§¡½è¡A²§½è
Heterotactic triad
Hexa  ¡©¤»¡ª
High-Frequency Heating °ªÀW¥[¼ö
High pressure cure  °ªÀ£µw¤Æ
High pressure Laminate  °ªÀ£«¬¿n¼h
High pressure Molding °ªÀ£¦¨«¬
High pressure Spot °ªÀ£ÂI
High-temperature polymers °ª·Å»E¦Xª«
   by Diels-Alder reaction §Q¥Î¨f¼Ú-ªü¦h¤ÏÀ³¤§°ª·Å»E¦Xª«
   by 1,3 dipolar addition §Q¥Î1,3¤G·¥¥[¦¨¤§°ª·Å»E¦Xª«
   inorganic systems µL¾÷¨t²Î¤§°ª·Å»E¦Xª«
   polyamides »EñQÓi¤§°ª·Å»E¦Xª«
   polybenzimidazoles »E­f¨Ã¨ýÐü°ª·Å»E¦Xª«
   polybenzoxazoles »E­f¨ÃäúÐü°ª·Å»E¦Xª«
   polybenzthiazoles »E­f¨Ã¡]¡H¡^äúÐü¡A»E¶¡´áÂø²¸¡]¡H¡^
   polycarbonates
   polyethers »EîÅ
   polyimidazopyrrolones »E¨ýÐü¨Ã¡]¡H¡^«£à¬
   polyimides »E¨ÈñQÓi
   polyoxadiazoles »Eäú¤GÐü
   polyquinoxalines »E¡]¡H¡^äú¡]¡H¡^¡A»E¹ï¤G´á­f
   polysiloxanes »EÖº®ñÖJ
   polytriazoles »E¤TÐü
   poly (p-xylylene) »E­f¤G¥Ò°ò
   requirements of °ª·Å»E¦Xª«¤§»Ý¨D
   spiro Á³±Ûª¬°ª·Å»E¦Xª«
Hollow microsphere  ¤¤ªÅ·L¤p²yÅé
Holography  ¹p®gÄá¼v³N
Homogeneity  §¡½è
Homopolymerization §¡ºA»E¦X¤ÏÀ³¡A§¡¤Ã»E¦X¤ÏÀ³
Honeycomb  ¸Á±_
Honeycomb Core ¸Á±_¿¶¤ß
Hooke¡¦s law  ªê§J©w«ß F=KX¡A¤O¶q»P¦ì²¾¦¨¥¿¤ñ
Hoop Stress ºuãTÀ³¤O
Hoop tension stress ¿û°é©Ô¦ùÀ³¤O
Hoop Winding ºu°ÊÄñ¶
Horizontal shear strength  ¤ô¥­°Å¤Á±j«×
Hot / wet ¼ö / Àã±ø¥ó¤@ºØ´ú¸Õ§÷®Æ±j«×¤§Àô±±±ø¥ó
Hot melt processing ¼öº²»sµ{
Hot-cured prepreg  ¼öµw¤Æ¹w®û®Æ
Hot-roll ¼öºuµ©
Hot-wire saw  ¼öÅKµ·¿÷¤l
Humidity  §lÀã©Ê
Hybrid  ²V¦¨
Hybrid-fabric ²V¦¨ÅÖºû
Hybridization ²V¦¨¤Æ
Hybridized fabrication  ²V¦¨¤Æ»s³y
Hydraulic press ¤ôÀ£¾÷
Hydraulic ram  ¤ôÀ£©â¤ô¾÷
Hydrocarbon ºÒ²B¤Æ¦Xª«
Hydroclave
Hydroforming 
Hydrogen transfer polymerization ²B­ì¤lÂಾ»E¦X¤ÏÀ³
Hydrophilic  ¿Ë¤ô©Êªº
Hydrophobic  ²¨¤ô©Êªº¡A©Ú¤ô©Ê
Hydroscopic
Hydrostatic  ¬yÅéÀR¤O¾Ç
Hydrotherm
Hygroscopic §lÀ㪺
Hygrothermal effect ¼öÀã®ÄÀ³
Ideal copolymerization ²z·Qªº¦@»E¦X¤ÏÀ³
Ignition loss ¨`¿N·l¥¢
IITRI Compression fixture IITRI»sÀ£ÁY§¨¨ã
Immediate Set  ¤¤¶¡´­°_¡A¤¤¶¡ÅܧÎ
Immersed inspection  ®û¤ô¦¡ÀË´ú¡A®û¤ô¦¡°»´ú
Impact  ¼²À»¡A½ÄÀ»
Impact Bar ½ÄÀ»´Î¡A¼²À»´Î
Impact Shock ¿E¯P½ÄÀ»
Impact Strength ½ÄÀ»±j«×
Impact Test ½ÄÀ»¸ÕÅç
Impregnate  ®û³z¡A§t®û
Impregnated Fabric  ¤w§t®û¾ð¯×¤§ÅÖºû
Impregnation  ®û³z¡A§t®û
Inclusion  §t¦³ª«¡A¥]§tª«
Indicial Notation  ¼Ð°Oªk
Induced decomposition of initiator °_©l¾¯¤§»¤¾É¤À¸Ñ
Induction heating  ·PÀ³¥[¼ö
Induction period »¤¾É´Á¶¡¡A»¤¾É®É´Á
Induction welding  ·PÀ³²k±µ
Inert Filler ´k©Ê¶ñ¥R¾¯¡A´k©Ê¶ñ®Æ
Infiltration  ®û³z¡A®ûÀã
Inflatable mandrel  ¥i¿±µÈ¤§¤ß¶b
Infrared (IR) heating ¬õ¥~½u¥[¼ö
Infra-Red ¬õ¥~½u
Inhibition constants ²×¤î±`¼Æ
Inhibition of radical polymerization ¦Û¥Ñ°ò»E¦X¤ÏÀ³¤§²×¤î
Inhibitor  §í¨î¾¯
Inhibitors ²×¤î¾¯
Initial Modulus °_©l¼Ò¼Æ
Initiation  °_©l§@¥Î¡A°_©l¤ÏÀ³
Initiator  °_©l¾¯
Initiator efficiency °_©l¾¯®Ä²v
   definition of °_©l¾¯®Ä²v¤§©w¸q
   determination of °_©l¾¯®Ä²v¤§´ú©w
   mechanism of °_©l¾¯®Ä²v¤§¾÷ºc
Injection mold  ®g¥X¦¨§Î¡C¶ì½¦¥[¤u¤è¦¡¤§¤@¡A¦b°ª·Å°ªÀ£¤Uµu®É¶¡§Ö³t¦¨§Î
Injection repair ®g¥X­×¸É
Innovative design  ­²©R©Êªº³]­p
Inorganic  µL¾÷
Inorganic Pigment µL¾÷ÃC®Æ
Inorganic polymer µL¾÷»E¦Xª«
Insert  ´O¤J¡B´¡¤J¡B´O¤Jª«
Insert, Eyelet-Type °w¤Õ«¬´Oª«
Instron  ¸U¯à¸ÕÅç¾÷¡A©Ô¤O¸ÕÅç¾÷
Insulating blanket  µ´½t¤ò´à
Insulation Resistance ­@µ´½t
Insulator  µ´½tÅé
Integrally heated tooling  ¾ãÅé¥[¼ö¤u¨ã
Inter ply  ¼h¶¡
Interaction  ¬Û¤¬§@¥Î
Interchange reaction ¥æ´«¤ÏÀ³¡A¤¬´«¤ÏÀ³
Interface  ¤¶­±
Interfacial polymerization ¬É­±»E¦X¤ÏÀ³
   description of ¬É­±»E¦X¤ÏÀ³¤§´y­z
   utility of ¬É­±»E¦X¤ÏÀ³¤§¹ê¥Î©Ê
Interference fit fastener  ¤z¯A½Õ¾A¹g°v
Interlacing fabric ¥æ¿ù½s´¥¬
Interlaminar stress ¿n¼h¶¡À³¤O
Interlaminar Shear Strength ¼h¶¡°Å¤O±j«×
Interlock  ³sµ²¡A³sÂê
Intermesh  ¤¤¶¡¿z
Internal Stress ¤ºÀ³¤O
Intramolecular cyclization ¤À¤l¤ºÀô¤Æ¤ÏÀ³
Intraply  ¼h¤º
Invar  ¤£ÅÜ¿û¡C¤@ºØ¿û©MÂ줧¦Xª÷¡A¿±µÈ«Y¼Æ«Ü¤p¤§ª÷ÄÝ
Invariant  µLÅܤƪº¡A¤£Åܪº
Inverse emulsion systems °fÂध¨Å¤Æ¨t²Î
Ionizing radiation Â÷¤l¤Æ¿ç®g
Ionomer unit Â÷¤lÅ鳿¤¸
Ionometallic mechanism for isotacticity  ¦P±Æ©Ê¤§Â÷¤lª÷Äݾ÷ºc
Ion-pair  Â÷¤l¹ï
Iosipescu Shear Test Iosipescu°Å¤O´ú¸Õ
Irradiation  ·Ó®g
Irreversible  ¤£¥i°fªº
Isocyanate Plastic ²§Ùæ»Ä¶ì½¦
Isocyanate polymerization  ²§²B»Ä»E¦X¤ÏÀ³
Isogrid µ¥®æ¤l¡Aµ¥¬]·¥
Isomeric  ¦P¤À²§ºcª«ªº
Isomerization polymerization ²§ºc¤Æ»E¦X¤ÏÀ³
Isotactic polymer ¦P±Æ»E¦Xª«¡A¶¶¦¡µ²ºc»E¦Xª«
Isotropic  µ¥¤è¦V©Êªº
Isotropic Laminate §¡ºA¿n¼h
Isotropy  §¡ºA
Izod Impact Test ÄaÁu¼Ù½ÄÀ»¸ÕÅç
Joggle ·n¦²¡A»´·n
Joinning  ±µ¦X¡A¦X¨Ö
Joint  ·f±µ
Joint, Butt ±µ¦X¡A¾F±µ
Joint, Edge ºÝÃä·f±µ¡AºÝÃä±µ¦X
Joint, Lap Å|±µ
Joint, Scarf ´O±µ¡Aºg±µ
Kapton ¤@ºØ­@°ª·Å¤§¶ì½¦§÷®Æ¡A¬°§ù¨¹¤½¥q©Ò¶}µo¤§»E¨ÈñQÓiÁ¡½¤
Kevlar  §J©ÔÅÖºû¡A¬°¨¾¼u¦ç¤Î±j¤ÆÅÖºû§÷®Æ
Kevlar Fiber  §J©ÔÅÖºû
KFRP  Kevlar fiber reinforced plastic¡A§J©ÔÅÖºû±j¤Æ¶ì½¦
Kinetic chain length °Ê¤O¾ÇÃìªø
Kinetics  °Ê¤O¾Ç
of anionic chain polymerization ³±Â÷¤lÃì»E¦X¤ÏÀ³¤§°Ê¤O¾Ç
   of cationic chain polymerization   ¶§Â÷¤lÃì»E¦X¤ÏÀ³¤§°Ê¤O¾Ç
   of coordination polymerization °t¦ì»E¦X¤ÏÀ³¤§°Ê¤O¾Ç
   of radical chain polymerization ¦Û¥Ñ°òÃì»E¦X¤ÏÀ³¤§°Ê¤O¾Ç
   of reversible polymerization ¥i°f»E¦X¤ÏÀ³¤§°Ê¤O¾Ç
   of ring-opening polymerization ¶}Àô»E¦X¤ÏÀ³¤§°Ê¤O¾Ç
   of step polymerization ³v¨B»E¦X¤ÏÀ³¤§°Ê¤O¾Ç
Kit plane ¤p­¸¾÷¡A14¤H®y¤§­¸¾÷
Knit  ½s´
Knitting  ½s´¡A½s´«~ÃPºò¥¬
Knock-down factor  «Ý¼Ð¦]¯À¡A­°»ù¦]¯À
L/D ratio ªø«×»Pª½®|¤§¤ñ¨Ò
Lack of Fillout ¯Ê½¦°Ï°ì
lacquer º£®Æ
Ladder polymer ±èª¬¡]µ²ºc¡^»E¦Xª«
Lamina  Á¡ªO¡AÁ¡¤ù¡AÁ¡¼h
Lamina interaction Á¡ªO¬Û¤¬§@¥Î
Laminate  »s¦¨¿n¼hªO¡A¿n¼h
Laminate design  ¿n¼h³]­p
Laminate Molding ¿n¼h¦¨«¬
Laminate Ply ¿n¼hÁ¡ªO
Laminate thickness ¿n¼h«p«×
Laminate ¿n¼h¡A»s¦¨¿n¼h
Laminated Parallel ¥­¦æ¿n¼h
Laminated plate Theory  Á¡ªO²z½×¡A¿n¼hªO²z½×
Lamination theory  Á¡ªO²z½×
Lamrank 
Land   ¨ø¼Ò
Land Area ¥Y½t°Ï°ì
Landed Force
Lap  ­«Å|³¡¥÷
Lap-Flat ­«Å|¥­ªO¡A­«Å|¥­­±
Laser  ¹p®g¬°light amplification by stimulated emission of Radiation¤§ÁY¼g
Laser cutting  ¹p®g¤Á³Î
Last ply Failure  ³Ì«á¼h¯}Ãa
Layup Å|¼h
Layup-over-foam method 
Lengthwise Direction Áa¦V¤è¦V
Level Winding ¥­Â¶
Light-Fastness ­@¥ú©Ê
Lightning  °{¹q
Lightning-protection °{¹q«OÅ@¡AÁ×¹p
Lightning-strike  ¹qÀ»
Line Pressure ¿é°eºÞÀ£¤O
Linear Expansion ½u©Ê¿±µÈ
Linear polymer ½u©Ê¡]µ²ºc¡^»E¦Xª«
Linear relation ½u©ÊÃö«Y
Liner  Ũ¹Ô¡A¹Ô°é
Liquid crystal  ²G´¹
Liquid impregnation ²GÅ麯³z¡A²GÅé¦X®û
Liquid shim  ²GÅé¶ñ»Ø
Liquidus Temperature ²G¤Æ·Å«×
Living polymer ¬¡ªº»E¦Xª«¡A¦³¥Í©Rªº»E¦Xª«
Load  ­t¸ü
Load-Deflection Curve ­t¸ü-¼¸¦±¦±½u¡A­t¸ü-Ås¦±¦±½u
Loaded  ­t²ü
Loading path ¨ü¤O³~®|
Loading rate ­t¸ü¤ñ
Lockstitch  Âù½u³sÂêÁ_¦Xªk
Logand-monomer interaction model °t¦X°ò-³æÅé¬Û¤¬§@¥Î¼Ò¦¡
Longitudinal Modulus ªø¶b¼Ò¼Æ
Longos  ªø¶bÄñ¶¡A¤p¨¤«×Äñ¶
Loop Tenacity Àô½u±i¤O¡AÀô½u©T©w¤O
Loss Angle ·l¥¢¨¤
Loss factor  ·l¥¢¦]¯À
Loss Modulus ·l¥¢¼Ò¼Æ
Loss on Ignition ¿U¿N·l¥¢¡A¿N¥¢¶q
Loss Tangent ¥¿¤Á·l¥¢
Lot  §å¡A°ï
Low pressure cure  §CÀ£µw¤Æ
Low-pressure Laminate §CÀ£¦¨«¬¿n¼h
Low-pressure Molding §CÀ£¦¨«¬
Macerate  ®ûº{
Machining  ¾÷±ñ¥[¤u
Macromechanic  ¥¨Æ[¾÷±ñ©Ê¡A§»Æ[¾÷±ñ©Ê
Magneforming 
Magnesium matrix Áâ°ò§÷¡C¦bª÷Äݰò½Æ¦X§÷®Æ¡A¥HÁâ·í°ò§÷¥Î
Magnetic  ºÏ©Ê
Magneto Resistance §ÜºÏ¤Æ
Male tooling  ¶§¼Ò
Mandrel  ¤ß¶b¡AÄñ¶¥Î¤§¼Ò¨ã
Manufacturing  »s³y
Mass fraction  ½è¶q¤À²v
Mass polymerization ¤j¶ô»E¦X¡A¥»Åé»E¦X
Mass Stress ­«¶qÀ³¤O¡A§J / ¤¦¥§
Master model  ¥À¼Ò
Mat  ÅÖºû»V
Mat Binder ÅÖºû»Vµ²¦X¾¯¡AÅÖºû»V¶°§ô¾¯
Matched die forming  ¦¨¹ï¼Ò¨ã¦¨§Î¡A¤W¤U¼Ò¨ã¦¨§Î
Matched die tool ¦¨¹ï¼Ò¨ã¤u¨ã
Matched metal mold  ¦¨¹ïª÷Äݽ¤
Matched Metal Molding ¦X¼Òª÷Äݦ¨«¬
Material  §÷®Æ
Material form  §÷®Æ¦¨§Î
Material safety data sheet (MSDS) §÷®Æ¦w¥þ¼Æ¾ÚªO
Material use efficiency §÷®Æ¨Ï¥Î®Ä²v
Matrix  °ò§÷
Matrix degradation factor °ò§÷µõ¸Ñ¦]¯À
Matrix inversion °ò§÷¸m´«
Matte  ªÈÄñ¡AªÈµ²
Maximum Fatigue Stress ³Ì¤j¯h³ÒÀ³¤O
Maximum Strain ³Ì¤jÀ³ÅÜ
Maximum Stress ³Ì¤jÀ³¤O
Mean Strain  ¥­§¡À³ÅÜ
Mean Stress (£m) ¥­§¡À³¤O
Mechanical Adhesion ¾÷±ñÂHµÛ
Mechanical Load ¾÷±ñ­t¸ü
Mechanical properties ¾÷±ñ©Ê½è
Medvedev-Sheinker theory
Melamine Formaldehye
Melamine plastic ¤T»EÙæÓi¶ì½¦
Melamine-formaldehyde polymer ¬ü­@Ói-¥ÒîÇ»E¦Xª«
Melt polymerization º²¿Ä»E¦X
Mesh  ºô¤Õ
Metal matrix composite (MMC) ª÷Äݰò½Æ¦X§÷®Æ¡A¥Hª÷Äݬ°°ò§÷¤§½Æ¦X§÷®Æ
M-Glass  M¬Á¼þ¡AM¬Á¼þÅÖºû
Micelle  ·Lªw
Mic-Mac-
Microballon  ·L®ðÅn
Microcracking ·LµõÁ_
Microgel  ·L²É¾®½¦
Micrograph Åã·L·Ó¬Û
Micromechanic  ·LÆ[¾÷±ñ©Ê
Microminiaturization  ·L¤p«¬¤Æ
Micron  ·L¥½¡A¦Ê¸U¤À¤§¤@
Microwave heating ·Lªi¥[¼ö
Middle plane ¤¤¶¡¥­­±¡A¤¤¶¡¥­ªO
Mid-plane ¿n¼h¤¤¶¡ªí­±
Mil  ¤d¤À¤§¤@¦T
Milled Fiber ¯»¥½ÅÖºû¡A¯»¸HÅÖºû
Minimum Fatigue Stress ³Ì¤p¯h³ÒÀ³¤O
Modifier  §ï¨}¾¯
Modular concept ¼Ò¼Æ·§©À
Module  ³æ¦ì¡A°ò·Ç
Modulus  ¼Ò¼Æ
Modulus in Compression À£ÁY¼Ò¼Æ¡A§ÜÀ£¼Ò¼Æ
Modulus in Flexure ¼¸¦±¼Ò¼Æ¡AÅs¦±¼Ò¼Æ
Modulus in Tension ©Ô¦ù¼Ò¼Æ¡A±i¤O¼Ò¼Æ
Modulus of Elasticity ¼u©Ê¼Ò¼Æ
Modulus of Elasticity in Torsion §á¤O¼u©Ê¼Ò¼Æ
Modulus of Resilience ¼u¦^¼Ò¼Æ
Modulus of Rigidity ­è©Ê¼Ò¼Æ
Modulus of Rupture ¯}µõ¼Ò¼Æ¡A¯}Ãa¼Ò¼Æ
Modulus, Dynamic °ÊºA¼Ò¼Æ
Modulus, initial ªì©l¼Ò¼Æ
Moen system
Mohr¡¦s circle ¼¯º¸ªº´`Àô½×
Mohs Hardness ¼¯´µµw«×
Moisture  Àã®ð
Moisture Absorption §lÀã¡AÀã®ð§l¦¬
Moisture distribution  Àã®ð¤À§G
Moisture Vapor Transmission Àã®ð»]®ð¶Ç°e
Moisture-absorption §lÀã
Moisture-content ¤ô¤À§t¶q¡A§lÀã§t¶q
Moisture-effect Àã®ð®ÄÀ³
Moisture-resistance ­@Àã©Ê
Moisture-sensitivity Àã®ð±Ó·P«×
Mold  ¼Ò¤l¡Aű¼Ò
Mold forming ¼Ò¤l¦¨§Î
Mold release Agent ¼Ò¨ãÂ÷«¬¾¯
Mold Seam ¦¨«¬±µ¦X½u¡A¦¨«¬Á_¦X½u
Mold Shrinkage ¦¨«¬¦¬ÁY¡A¼Ò»s¦¬ÁY
Moldable shim
Molding Compound ¦¨«¬²V®Æ¡A¼Ò»s²V®Æ
Molding Cycle ¦¨«¬¶g´Á
Molding Pressure ¦¨«¬À£¤O
Molding Pressure, Compression ¥[À£¦¨«¬À£¤O
Molding ¼Ò»s
Molding, Pressure Bag ¦Ppressure Bag Molding¡AÀ£¤O«Ê³U¦¨«¬
Mold-Release agent ²æ¼Ò¾¯
Molecular Weight  ¤À¤l¶q
Molecular Weight distribution ¤À¤l¶q¤À§G
Molecule-induced homolysis  ¤À¤l»¤¾É¤§§¡¤Ã¤À¸Ñ
Moment  ¤O¯x
Monitoring system  ÀË´ú¨t²Î
Monoclinic material  ³æ¤è¦V§÷®Æ
Monofilament ³æµ·¡A³æÅÖºû
Monofunctional monomer ³æ©x¯à°ò¤§³æÅé
Monolithic  ¾ãÅ骺
Monolithic assembly ¾ãÅ骺²Õ¸Ë
Monolithic-graphite  ¾ã¶ô¥Û¾¥¡A¥i°µ¼Ò¨ã¤§¥Î
Monomer  ³æÅé
Monomer- monomer interaction model ³æÅé-³æÅé¬Û¤¬§@¥Î¤§¼Ò¦¡
Monomer reactivities ³æÅ餧¬¡©Ê
Monomer reactivity ratios ³æÅ鬡©Ê¤ñ
Mosites rubber caul
Multi-Circuit Winding ¦h°j¸ôÄñ¶
Multidirectional  ¦h¤è¦V©Êªº
Multifilament Yarn ¦h¼Æ²Ó¤¦¥§µ·
Multiple Load ¦h¤è¦V¬I¤O
Multiple-Cavity Mold ¦h¥Þ¼Ò¨ã
MVT (moisture vapor transmission) Àã®ð»]®ð¶Ç»¼¡A¤ô¤À»]®ð¶Ç»¼
Mylar 
Natta catalysts ¯Ç¶ðIJ´C¡A¯Ç¶ð¶Ê¤Æ¾¯
Natural rubber ¤ÑµM¾ó½¦
NDE ¬°Non-destructive Evaluation¤§Â²ºÙ¡A§Y«D¯}Ãaµû¦ô
NDI ¬°Non-destructive Inspection¤§Â²ºÙ¡A§Y«D¯}Ãa©ÊÀˬd
NDT ¬°Non-destructive Testing¤§Â²ºÙ¡A§Y«D¯}Ãa©Ê¸ÕÅç
Near-net-shape ªñ²b§Îª¬
Neighboring group effect ¾Fªñ¹Î¤§®ÄÀ³
Nesting  ¦w¸m
Net tension failure  ²b©Ô¦ù¯}Ãa
Netting Analysis ²b­È¤ÀªR
Network polymer ºôª¬¡]µ²ºc¡^»E¦Xª«
Neutral plane ¦ÛµMªº¥­­±¡A¦ÛµMªº¥­ªO
Nickel  Âìª÷ÄÝ
Nickel coated fiber  ¶îÂ줧ÅÖºû
Nitrile polymerization ¡]¡H¡^°ò»E¦X¤ÏÀ³
Nol Ring
Nomenclature of polymer »E¦Xª«©R¦W
Nomex  »E­fñQÓi¤À¤l¤§¥O¤@ºØ­l¥Í¤§­@°ª·Å¾ð¯×§÷®Æ¡A¥Ø«e±M°µ¬°¦³¾÷¸Á±_¥ó§÷®Æ
Non-bleed bagging  ¥¼·¸½¦¤§«Ê³U¥]¸Ë
Non-Hygroscopic ¤£§lÀ㪺
Nonmechanical Stress «D¾÷±ñÀ³¤O
Non-metallic tooling «Dª÷Äݤu¨ã
Nonpolar  «D·¥©Êªº
Nonrigid plastic «Dµw½èªº¶ì½¦
Non-Woven Fabric  ¤£Â´¥¬
Notation  °O¸¹ªk¡Aªí¥Üªk
Notch  V«¬¨è²ª
Notch Factor ¨è²ª­n¦]¡A¨è²ª«Y¼Æ
Notch Sensitivity ¨è²ªÆF±Ó©Ê
Notched strength ¦³¥W²ª¤§±j«×
Novolacs resin ×ôîǾð¯×
Novolak 
Nozzle  ¼Q¼L
Nuclear exposure ®Ö¤l¼ÉÅS
Number-average degree of polymerization »E¦X¤ÏÀ³¤§¼Æ¥Ø¥­§¡«×
Number-average molecular weight ¼Æ¥Ø¥­§¡¤À¤l¶q
Nutplate 
Nylon  ¥§Às¡A¤@ºØ¤H¤u¦X¦¨ÅÖºû
Nylon salt ¥§ÀsÆQ
Observable  ¥iÆ[¹î¡A¥iºÊµø
Off-axis Â÷¶b
Offset Yield Strength ©è¾P­°¥ñ±j«×¡A¸ÉÀv­°¥ñ±j«×
Oil Resistance  ­@ªo
On-axis ¶b¤W¡A¦P¶b
Open Cell Foamed
Open hole ¶}¤Õ
Optic fiber ¥úÅÖºû
Optical activity in polymer »E¦Xª«¤§¥ú¾Ç¬¡©Ê
Optical isomerism in polymer »E¦Xª«¤§¥ú¾Ç²§ºc©Ê
Optimum Laminate ³Ì¨Îªº¿n¼h
Orange Peel ­é¾ï
Orbited winding  ­y¹D¦¡Äñ¶
Organic  ¦³¾÷ªº
Organic fiber ¦³¾÷ÅÖºû
Organic matric ¦³¾÷°ò§÷
Organic ¦³¾÷ªº
Orientation  ¤è¦V©Ê
Oriented Material  ¤è¦V©Ê§÷®Æ
Orthogonally reinforced weaving  ª½¨¤±j¤Æ½s´¡Aª½¥æ±j¤Æ½s´
Orthogrid  ¥¿¥æªº®æ¤l
Orthotropic  ¥¿¥æªº
Orthotropic layer ¥¿¥æ¤è¦V¿n¼h
Orthotropic plate Theory ¥¿¥æ¤è¦V¥­ªO²z½×
Orthotropy ¥¿¥æ¤è¦V
Outgassing  °£®ð
Oven  ¯M½c¡AÄl¤l
Oven-Dry Weight ¯M½c°®Àꤧ­«¶q
Overcuring  ¹L«×µw¤Æ
Overflow groove ·¸½¦·¾¼Ñ
Overlap  ­«Å|
Overlay Sheet ³QÂлV¡AÂл\»V
Oxidation  ®ñ¤Æ
Oxidative coupling ®ñ¤Æ°¸¦X
1,2-polybutadiene 1,2»E¤B¤G²m
1,4-poly 1,3-dienes 1,4»E1,3¤G²m±Ú
1,4-polybutadiene 1,4»E¤B¤G²m
Package  ¥]¸Ë¡A¥]²Ï
Padup 
Paint stripper  ªoº£°£¤ò®Þ¡AÃC®Æ°£¤ò®Þ
Pallet 
PAN (Polyacrylonitrile) »E¤þ²m¡]¡H¡^¡A»sºÒÅÖºû¤§¥À§÷
Panel configuration  ¥­ªOµ²ºc¡A¥­ªO³y§Î
Parallel-axis Theorem ¥­¦æ¶b©w²z
Parallel-laminated  ¥­¦æ¿n¼h¡A¦P¦V¿n¼h
Parameter  °Ñ¼Æ
Particle  Áû²É
Parting Agent ¤ÀÂ÷¾¯¡AÂ÷«¬¾¯
Parting line ¤À³Î½u
Patch  ¸É¤ù¡A­×¸É¥Î¤§§÷®Æ
Patent protection ±M§Q«OÅ@
Pattern  ªá¼Ë¡AÀËÅç¹Ï
Peel Ply ­éÂ÷¼h
Peel Strength ­éÂ÷±j«×
Peel stress  ¼¹¶}À³¤O
Penultimate effect in copolymerization ¦@»E¦X¤§
Per forate ³e¬ï¡A¬ï¤Õ
Permanence  ­@¤[ªº¡A¥Ã¤[ªº
Permanent Set ¥Ã¤[ÅܧÎ
Permeability  º¯³z©Ê¡A¾ÉºÏ©Ê
Phase Angle ¬Û¦ì¨¤¡A¬Û¨¤
Phenol-formaldehyde polymer ×ôîÇ»E¦Xª«
Phenolic  ×ô¾ð¯×
Phenolic, Phenolic Resin  ×ô¾ð¯×
Phenylsilane Resin
Photo chemical polymerization   ¥ú¤Æ¾Ç»E¦X¤ÏÀ³
Photo sensitizer ·P¥ú¾¯
Photoelasticity  ¥ú¼u
Physical Catalyst ª«²z©ÊªºÄ²´C
Pick  ­ç
Picture frame shear test
Pigtail  ±µÄò¥Î»Éµ·
Pilot part  ¸ÕÅç¥ó
Pin, Insert
Pinch-off À¾°_
Pinhole  °w¤Õ
Pit  §|¡A¤p¬}
Pitch  Ãw«C¡A¥Î¨Ó»s§@ºÒÅÖºû¤§§÷®Æ
Placement  ¸m©ñ¡A¦w¸m
Plain Weave ¥­Â´¡A¯¼Â´¤è¦¡¤§¤@
Planar Helix Winding ¥­­±Á³±Ûª¬Äñ¶
Planar Winding ¥­­±Äñ¶
Plane strain  ¥­ªOÀ³ÅÜ
Plane stress ¥­ªOÀ³¤O
Plaster  ½¦ªd¡A»Iª¬½¦
Plastic  ¶ì½¦
Plastic Deformation ¶ì©ÊÅܧÎ
Plastic film  ¶ì½¦½¤
Plastic flow ¶ì½¦©Ê¬y°Ê
Plastic Tooling ¶ì½¦¤u¨ã
Plastic, Rigid µw½èªº¶ì½¦
Plastic, Semirigid  ¥bµw½èªº¶ì½¦
Platen  À£½L¡Aºuµ©
Plied matrix 
Plied Yarn ½s´¯½
Ply drop
Ply group Á¡¼h¸s
Ply level test 
Ply strain  Á¡¼hÀ³ÅÜ
Ply stress Á¡¼hÀ³¤O
Plywood  §¨ªO¡A¦XªO
PMR »E¨ÈñQÓi¤§­@°ª·Å§÷®Æ¡A¥H°Ó«~¤Æªº¦³PMR-15
Poise  ªy¼Æ¡AÂH«×³æ¦ì
Poisson¡¦s Ratio ¬fªQ¤ñ
Polar effects in radical reactions ¦Û¥Ñ°ò¤ÏÀ³¤§·¥©Ê®ÄÀ³
Polar weave ·¥½s´
Polar winding  ·¥Â¶½u¡A·¥Äñ¶
Polar Winding ·¥Äñ¶
Polarity  ·¥©Ê
Poly (?-caprotactam) »EÀô¤v¤ºñQÓi
Poly (1,4-phenylene) »E1,4­f¼µ
Poly (1,4- phenylene pyromellitimide) »E¡]1,4­f¼µ§¡¥|»Ä¨ÈñQÓi¡^
Poly (1-butene) »E¤B²m
Poly (2,6 dimethyl phenylene oxide) »E¡]2,6¤G¥Ò°ò­f¼µ®ñ¤Æª«¡^
Poly (2-pentene) »E2-¥³²m
Poly (3,3-bis (chloromethyl) oxetane) »E¡]3,3¤G´â¤Æ¥Ò°ò¡^
Poly (3-methyl-1-pentene) »E3-¥Ò°ò-1-¥³²m
Poly (4-4¡¦-isopropylidene diphenylene carbonate)
Poly (6-aminocaproic acid) »E6-®ò°ò¤v»Ä
Poly (chlorotrifluoro ethylene) »E¡]¤@´â¤T¬t¤A²m¡^
Poly (ethylene glycol-co-terephthalic acid) »E¡]¤A¤G¾J-¦@-¹ï­f¤G¥Ò»Ä¡^
Poly (ethylene oxide) »E¤A²m®ñ¤Æª«
Poly (ethylene terephthalate) »E¹ï­f¤G¥Ò»Ä¤Aà­¡A²ºÙPET
Poly (hexamethylene adipamide) »E¤»¨È¥Ò°ò¤v¤GñQ¤GÓi
Poly (hexamethylene diamino-co-sebacic acid)  »E¡]¤»¥Ò°ò¤G®ò°ò-¦@-¬Ñ¤G»Ä¡^
Poly (methacrylic acid) »E¥Ò°ò¤þ²m»Ä©Î»E²§¤B²m»Ä
Poly (methyl methacrylate) »E¥Ò°ò¤þ²m»Ä¥Ò«ü
Poly (methyl vinyl ketone) »E¥Ò°ò¤A²m°ò¥Òà¬
Poly (methylacrylate) »E¤þ²m»Ä¥Òà­
Poly (m-phenylene isophthalamide) »E­f¼µ®ñ¤Æª«
Poly (phosphonitrilic chloride) »E´â¤ÆÁC¡]¡H¡^
Poly (propylene oxide) »E¡]®ñ¤Æ¤þ²m¡^¡A»E¡]¤þ²m®ñ¤Æª«¡^
Poly (trimethylene ethylene-urethane) »E¡]¤T¨È¥Ò¤A²m-§¿ÖJ¡^¡A»E¡]¤T¨È¥Ò¤A²m®ò°ò¥Ò»Ä¤Aà­¡^
Poly (trimethylene glycol-co-ethylene  diisocyanate)    »E¡]¤T¨È¥Ò¤A¤G¾J-¦@-¤A²m¤G²§Ùæ»ÄÆQ¡^
Poly (vinyl acetate) »E¤A»Ä¤A²mà­
Poly (vinyl alcohol) »E¤A²m¾J
Poly (vinyl chloride) »E´â¤A²m¡A²ºÙPVC
Poly (vinyl fluroide) »E¬t¤A²m¡A²ºÙPVF
Poly (vinylidene chloride) »E´â¨È¤A²m¡A»E´â¤A²m¤e
Poly (vinylidene fluroide) »E¬t¨È¤A²m¡A»E¬t¤A²m¤e
Poly(hexamethylene sebacamide) »E¡]¤»¨È¥Ò°ò¬Ñ¤GñQÓi¡^
Polyacetaldehyde  »E¤AîÇ
Polyacetals »EÁYîÇ
Polyacrylonitrile »E¤þ²m腈
Polyamide »EñQÓi
Polyarylenesufide (PAS) »EªÚ­»±Ú²¸
Polybenzamidazole 
Polybenzimidazoles »E­f¨Ã«}Ðü
Polybenzothiazoles »E­f¨Ã¡]¡H¡^äúÐü
Polybenzoxazoles »E­f¨ÃäúÐü
Polycarbonate
Polycyclobutene »EÀô¤B²m
Polycyclohexene »EÀô¤v²m
Polydimethylsiloxane »E¤G¥Ò°òÖº®ñÖJ
Polyester  »Eà­
Polyesteramides »Eà­ñQÓi
Polyesterification »E୤ƤÏÀ³
Polyesters »Eà­
Polyetherether Ketone (PEEK) »EîÅîÅଡA»E¤GîÅà¬
Polyetherimide (PEI) »EîŨÈñQÓi
Polyethers »EîÅ
Polyethersulfone »EîÅ¡]¡H¡^
Polyethylene »E¤A²m¡A²ºÙPE
Polyformaldehyde »E¥ÒîÇ
Polyimidazopyrrolones »E¨ýÐü¨Ã¡]¡H¡^«£à¬
Polyimide »E¨ÈñQÓi
Polyimides »E¨ÈñQÓi
Polyisobutylene »E²§¤B²m
Polyisoprene »E²§¥³¶¡¤G²m¡A»E2-¥Ò°ò¤B¤G²m
Polymer  »E¦Xª«¡A°ª¤À¤l
Polymer reaction »E¦Xª«¤ÏÀ³
Polymerization  »E¦X¤ÏÀ³
Polymerize  »E¦X
Polymetallosiloxanes »Eª÷ÄÝÖº®ñÖJ
Polymethylene »E¥Ò¤e¡A»E¨È¥Ò
Polyoxadiazoles »Eäú¤GÐü¡]¡H¡^
Polyoxymethylene »E®ñ¨È¥Ò
Polyphenylene oxide »E¡]¶¡-­f¼µ¡A¶¡­f¤GñQÓi¡^
Polyphenylenssulfide (PPS) »E­f²¸
Polyphosphazenes »E°¸ÁC´á°ò²m
Polypropylene »E¤þ²m¡A²ºÙPP
Polyquinoxalines »E¡]¡H¡^äú¡]¡H¡^©Î»E¹ï¤G´á¡]¡H¡^
Polysiloxanes »EÖº®ñÖJ
Polystyrene »E­f¤A²m¡A²ºÙPS
Polysulfide  »E²¸
Polysulfone »E¡]¡H¡^
Polytetrafluoroethylene »E¥|¬t¤A²m¡A©ÎÅK¬tÀsÐü
Polytriazoles »E¤TÐü¡A»E´áÂø¥³Àô¨t
Polyurethane 
Polyurethanes »E®ò°ò¥Ò»Ä¤Aà­
Pop rivet  ¯y¶}¤§¹g°v
Porosity  ¦h¤Õ©Ê¡AªÅ¤Õ
Porous  ¦h¤Õ©Êªº¡A¦³®ð¤Õªº¡AªÅ¤Õªº
Positive Mold  ¶§¼Ò
Post cure  «áµw¤Æ¡C§Y½Æ§÷µw¤Æ©w§Î«á¡A¦A¥H§ó°ªªº·Å«×¡A§¹¦¨µw¤Æ
Post-Cure «áµw¤Æ
Postforming  «á¦¨§Î
Pot life  §@·~´Á­­¡A¾Þ§@´Á­­
Powder prepreg  ¯»¥½¹w®û®Æ¡C¥H¯»¥½¶î§G»s¦¨¤§¹w®û§÷®Æ
Power Factor ¥\²v
Precusor ¥À§÷¡C»s¦¨¦¨«~¤§­ì®Æ¡A¨Ò¦pÃw«C¡BÁ]¿¢¡B»E¤þ²m腈¡]PAN¡^¬Ò¬°»sºÒÅÖºû¤§¥À§÷
Precure  ¹wµw¤Æ
Preform ¹w¦¨§Îª«¡A¹w¦¨§ÎÅé¡C§Y¥HÅÖºû½s´¦¨¦¨«~¤§§Îª¬
Preform Binder ¹w¦¨§Îª«¤§³sµ²¾¯¡A¹w¦¨§Îª«¤§¶°§ô¾¯
Pregel  ¹w½¦¤Æ
Preimpregnate  ¹wº¯³z¡A¹w§t®û
Preimpregnation  ¹w®û³z¡A¹w§t®û
Premix   ¹w²V¦X
Pre-plus fabric ¹w¤Á³Î¦nÅ|¼h¤§Â´ª«
Prepolymer  ¹w»E¦Xª«
Prepreg  ¹w®ûª«¡A¹w®û®Æ¡C§YÅÖºû¹w¥ý§t®û¾ð¯×«á¤§¥Í®Æ
Press forming  À£¥X¦¨§Î
Pressure  À£¤O
Pressure Bag Molding À£¤O«Ê³U¦¨«¬
Pressure effects on radical polymerization À£¤O¹ï¦Û¥Ñ°ò»E¦X¤§¼vÅT¡A¦Û¥Ñ°ò»E¦X¤§À£¤O®ÄÀ³
Pressure vessel À£¤O®e¾¹¡AÀ£¤O¾ÉºÞ
Pressure- vessel forming À£¤O¾ÉºÞ¦¨§Î
Pressure-bag forming  À£¤O³U¦¨§Î
Pre-stressed panel ¹wÀ³¤O¥­ªO
Primary radical ªì¯Å¦Û¥Ñ°ò
Primer  ¥ý´Á¶î¼h
Process condition »sµ{±ø¥ó
Process control testing  »sµ{±±¨î¸ÕÅç
Processing  »sµ{
Producibility  ¥i¥Í²£
Projectile  §ë®gª«¡A®g¥Xª«
Promoter  «P¶i¾¯
Propagation  ¼Wªø¡A¦¨ªø
Proportional Limit §¡¿Å·¥­­
Prototype  ­ì«¬
Protruding head fastener ¥YÀY¹g°v
Pseudo-thermoplastic ÀÀ¶ì½¦
Pulforming 
Pull-off strength ©Ô¥X±j«×
Pull-through failure ©Ô¬ï¯}Ãa
Pulp Molding ªd¼ß¦¨«¬
Pulse-echs Ultrasonic ¯ß°Ê¤Ï®g¶W­µªi
Pultrusion  ©ÔÀ½¦¨«¬
Push-through test À£¬ï¸ÕÅç
Pyrrones  ¡]¡H¡^«£à¬
Q-e scheme Q-eÅé¨t
Quadvax  ¤@ºØ½Æ§÷²£«~
Quality assurance (Q.A)  «~½è«OÃÒ
Quality «~½è
Quartz  ¥Û­^
Quasi-isotropic  ÀÀ§¡ºA
Quasi-isotropic Laminate  ÀÀ§¡ºA¿n¼h
Radical chain polymerization ¦Û¥Ñ°òÃì»E¦X¤ÏÀ³
Radical lifetime ¦Û¥Ñ°ò¹Ø©R
Radical polymerization ¦Û¥Ñ°ò»E¦X¤ÏÀ³
Radical reactivities  ¦Û¥Ñ°ò¬¡©Ê
Radical scavenger ¦Û¥Ñ°ò²M°£¾¯
Radio graphy  X¥ú½u·Ó®g³N
Radome  ¹p¹F¸n
Rail shear test Âù­y°Å¤O¸ÕÅç¡A½Æ§÷°Å¤O±j«×¸ÕÅç¤è¦¡¤§¤@
Rain erosion  «B²O»G»k¡A«B²O«I»k
Ram force 
Ram Travel 
R-and S-configuration R»PS²ÕºA¡]ºc«¬¡^
Random copolymer ¶Ã±Æ»E¦Xª«
Random Pattern ÀH¾÷ªá¼Ë¡AÀH¾÷«¬
Ranking  ¶¶§Ç¡A±Æ¦C
Rate constants ¤ÏÀ³³t²v±`¼Æ
Rattan  Ãòô
Rayon  Á]¿¢
Reactivity  ¬¡©Ê
Reactivity ratio ¬¡©Ê¤ñ
Redox initiation ®ñ¤ÆÁÙ­ì°_©l§@¥Î
Redox polymerization ®ñ¤ÆÁÙ­ì»E¦X¤ÏÀ³
Refrigeration  §N­á¡A§NÂÃ
Regular Grid Core ³W«h®æ¤l¤§¿¶¤ß
Regulator  ½Õ¾ã¾¹
Reinforced Molding Compound  ±j¤Æ¦¨«¬¶ì®Æ¡A±j¤Æ¦¨«¬²V®Æ
Reinforced plastic ±j¤Æ¶ì½¦
Reinforcement  ¸É±j§÷®Æ
Release Agent Â÷«¬¾¯
Release film  Â÷«¬½¤
Repair  ­×¸É
Repeating unit ­«½Æ³æ¤¸
Residual Fatigue Strength ´Ý¯d¯h³Ò±j«×
Residual Strength  ´Ý¯d±j«×
Residual Stress ´Ý¯dÀ³¤O
Resilience  ¼u¦^¡A¼u©Ê
Resin  ¾ð¯×
Resin Applicator ¾ð¯×§t®û¾÷
Resin content ¾ð¯×§t¶q
Resin Pocket ¾ð¯×½F
Resin, Liquid  ²GºA¾ð¯×
Resin-content ¾ð¯×§t¶q
Resin-injection molding (RIM) ¾ð¯×®g¥X¦¨§Î
Resin-rich ¾ð¯×¹L¦h
Resin-Rich Area ¦h¾ð¯×°Ï°ì¡A´I¾ð¯×°Ï
Resin-Staved ¾ð¯×¯Ê¥F°Ï°ì¡A³h¾ð¯×°Ï
Resin-starved Area ¾ð¯×¯Ê¥F°Ï°ì
Resin-transfer molding (RTM) ¾ð¯×Âàª`¦¨§Î
Resistance welding  ¹qªý²k±µ
Resistivity ¹qªý«Y¼Æ
Resole prepolymer ×ôîǹw»E¦Xª«
Retardation  §í¨î§@¥Î
Retarder  §í¨î¾¯
Retarders  §í¨î¾¯
Retrofit testing 
Reusable bag ¥i¦A¨Ï¥Î¤§«Ê³U
Reverse Helical Winding ¥i°f¦¡ªºÁ³±ÛÄñ¶
Reverse Impact Test ¥i°f¦¡ªº½ÄÀ»¸ÕÅç
Reversible polymerization ¥i°fªº»E¦X¤ÏÀ³
Rib  ¦Ø
Rib Laminate §U¿n¼h
Rigid plastic µw½èªº¶ì½¦
Rigid-Body Rotation µwÅé±ÛÂà
Ring-opening copolymerization ¶}Àô¦@»E¦X¤ÏÀ³
Ring-opening polymerization ¶}Àô»E¦X¤ÏÀ³
Rivet-bonded joint ¹g°v-½¦¦X·f±µ
Robot  ¾÷±ñ¡A¾÷¾¹¤H
Rockwell Hardness Number ¬¥§J«Âº¸µw«×¼Æ
Roll forming ºu½ü¦¨§Î
Room Temperature Curing Adhesive «Ç·Åµw¤ÆÂHµÛ¾¯
Rosin  ªQ­»
Rotating sector method  ±ÛÂà¥ú¹hªk
Roughness  ²ÊÁW
Roving  ÅÖºû§ô
Roving  ÅÖºû§ô
Roving Ball  °j±Û²y
Roving Cloth ÅÖºû´¥¬
Rubber  ¾ó½¦
Rubber bagging  ¾ó½¦«Ê³U
Rubber forming ¥Î¾ó½¦¦¨§Î
Rule-of-mixture ²V¦X²v
Safety  ¦w¥þ
Safety factor ¦w¥þ«Y¼Æ
Safety Hardener ¦w¥þ©Êªºµw¤Æ¾¯
Salt  ÆQ
Sand erosion  ¬â»G»k
Sandwich Construction ¤T©úªvµ²ºcª«
Sandwich Heating ¤T©úªv¥[¼öªk
Sandwich panel  ¤T§¨ªO
Satin  ½v¤l
Satin weave  ½v´
Sawing  ¿÷¶}
Scarf Joint ´O±µ¡Aºg±µ
Scarf repair ´O§Î­×¸É
Scatter  ´²®g¡A´²¶}
Scavenger  ²M°£¾¯¡A®ø°£¾¯
S-Cis configuration S-¶¶¦¡ºc«¬
Scrap  ¯}¤ù¡A¸H¤ù
Scratch  ¼¯À¿
Screen  ¾B½ª
Scrim  ´Ö´«~
Secant Modulus ¥¿³Î¼Ò¼Æ
Secondary Bonding ²Ä¤G¦¸½¦¦X
Secondary curing ²Ä¤G¦¸µw¤Æ
Self-consistent Model ¦Û¨­½Õ¾A¤§¼Ò«¬
Self-contained tooling ¦Û§t¤u¨ã¡A¤Î¥»¨­¥i¥[À£¥[¼ö¤§¤u¨ã
Self-destruct ¦Û¨­¯}Ãa¡A¦Û¦æ¯}Ãa
Self-Extinguishing Resin ¦Ûº¶©Ê¾ð¯×
Self-propagation ¦Û¨­¼Wªø¡A¦Û¨­¦¨ªø
Semi-crystalline polymer ¥bµ²´¹ªº»E¦Xª«
Semi-crystalline ¥bµ²´¹
Semi-ladder polymer ¥b±èª¬ªº»E¦Xª«
Semipositive Mold ¥b¶§¼Ò
Sensor  ÀË´ú¾¹
Sequential Winding ¨Ó¦^Äñ¶¡A¤ÏÂÐÄñ¶
Serration  ¿÷¾¦ª¬
Set  ¾®©T¡A½¦µÛ
Set at Break 
Set-up µw¤Æ
Sewing  Á_¦X
S-Glass S-¬Á¼þÅÖºû¡AS-¬Á¼þ
Shear coupling °Å¤Á°¸¦X
Shear Edge °Å¤ÁºÝ½t
Shear head fastener
Shear Modulus °Å¤O¼Ò¼Æ
Shear Modulus ratio °Å¤Á¼Ò¼Æ¤ñ
Shear °Å¤Á¡A°Å¤O
Shear stiffness  °Å¤Á«l«×
Shear stress °Å¤ÁÀ³¤O
Shearography  °Å¤Á·Ó¬Û³N¡A¤@ºØÀË´ú§÷®Æ¨ü½ÄÀ»·l¶Ë¤§»ö¾¹
Sheet Molding Compound (SMC) ¤ùª¬¼Ò»s²V®Æ¡]¶ì®Æ¡^
Shelf life Àx¦s´Á
Shim  ¶ñ»Ø¥Î¤ì¤ù
Shoe  Å@®M¡A®M¤l
Shore Hardness ³»¤Wµw«×¡A¤ä¼µµw«×
Short Beam Shear Strength  µu¼Ù°Å¤O±j«×
Short beam shear test  µu¼Ù°Å¤Á¸ÕÅç
Shredder  ¼¹¸H¾÷
Shrinkage  ¦¬ÁY²v
Silicon  ª¿¡Aª¿¤¸¯À¡]Si¡^
Silicon carbide  ºÒ¤Æª¿¡A¤@ºØ­@°ª·Å§÷®Æ©ÎÅÖºû
Silicon elastomer  ª¿¼u©ÊÅé
Silicon heating blanket  ª¿¥[¼ö´à
Silicon rubber  ª¿¾ó½¦
Silicone plastic  ª¿¶ì½¦
Silicone ª¿¾ð¯×
Silk  µ·
Simply supported structure °Å¤@¤ä¼µµ²ºc
Sine wave beam (spar) ¥¿©¶ªiª¬¼Ù
Single Circuit Winding ³æ¨µ°jÄñ¶
Single Load ³æ¦V¬I¤O¡A³æ¦V­t¸ü
Single-lap joint ³æÅ|±µ
Sink Mark ¥W³´¼Ð°O
Sinusoidally corrugated core ¥¿©¶ªi§Î¿¶¤ß
Site of steric isomerism ¦ìªý²§ºc¤Æ¤§¦ì¸m
Size  ¼ß½k
Size distribution ¤Ø¤o¤À§G¡A¤j¤p¤À§G
Sizing  ¤W¼ß
Sizing Content ¤W¼ß§t¶q
Skein  I¦r§Î±²½u¶b
Skin  »X¥Ö¡A´ß¡A¥~ªO
Skirt  ½t¡A¥½ºÝ
Sleeve fastener ®Mµ©¹g°v
Slippage  ·Æ°Ê
Slurry preforming ªd¼ß¹w¦¨§Î
Smart structure  ´¼¼zµ²ºc
Smith-Ewart behavior ¥v±K´µ-·R¤¬¯S¦æ¬°
Smoothness  ¥­·Æ
S-N curve  S-N¦±½u
Sodium-nitrate mixture  µv»Ä¶u²V¦Xª«
Soft flow  ³n©Êªº¬y°Ê
Solid-state polymerization ©TºA»E¦X¤ÏÀ³
Solution polymerization ²GºA»E¦X¤ÏÀ³
Solvated electron ·»¾¯¤Æ¹q¤l
Solvent  ·»¾¯
Solvent Resistance  ­@·»¾¯©Ê
Space network  ªÅ¶¡ºôª¬µ²ºc
Span to depth ratio ¸ó¶Z / «p«×¤ñ
Sparking  ¤õªá
Specific Gravity  ¤ñ­«
Specific Heat ¤ñ¼ö
Specific Stress ¤ñÀ³¤O(£m/£l, £m¡GÀ³¤O¡F£l¡G¤ñ­«)
Specification   ³W½d
Specimen ¸Õ¤ù
Spectra fiber ¥úÃÐÅÖºû¡A¬°°ª«×¤è¦V©Ê¤À¤l±Æ¦C¤§PEÅÖºû
Spilt Mold ¤ÀÂ÷¼Ò¨ã¡A¤À³Î¼Ò¨ã
Spilt-Ring Mold ¤ÀÂ÷°é¼Ò¨ã
Spinneret  ¯¼¼L
Spinning  ¯¼Â´
Spiral  Á³±Û§Îªº¡A´õª¬½uªº
Spiro polymer Á³±Ûª¬¡]µ²ºc¡^»E¦Xª«
Splice  ±µ¦X¡AÅ|±µ
Spline  ¸Ë¥H¨¤®ê¡A¾¦±ø
Split-Cavity Block ¤ÀÂ÷µÄªý¶ë
Spool  ½u¶b
Spray  ¼QÃú¾¹
Sprayed Metal Mold ¸g¼Q¶îª÷ÄݼҨã
Spray-metal tooling ª÷ÄݼQÅx¤u¨ã
Spray-up ¼QÅx
Spring back  ¼u¦^
Spring Constant  ¼u©Ê±`¼Æ¡A¼u©Ê«Y¼Æ
Spun Roving ¯¼Â´½s´¯½§ô
Square packing or array ¤è§Î¥]¸Ë©Î±Æ¦C
Square-symmetry ¥|¤è¹ïºÙ
SRF strength reduction factor¡A±j«×»¼´î²v
Stability  ¦w©w©Ê
Stabilization  í©w§@¥Î
Stacking  °ï¿n¡A¿n¼hÅ|¸m¤§¤è¦¡
Stacking sequence  ¿n¼h±Æ¦C¡AÅ|¼h¶¶§Ç
Stamping  ¨RÀ£¡AÀ£¦L
Standard  ¼Ð·Ç
Standard Deviation  ¼Ð·Ç°¾®t
Standard Laboratory Atmosphere  ¼Ð·Ç¹êÅç«Ç®ðÀ£
Staple fiber  µuÅÖºû
Starch  ¾ý¯»
Starred Area ¾ð¯×¯Ê¥F°Ï
Starred Joint ³h¾ð¯×·f±µ
Static Fatigue  ÀRºA¯h³Ò
Static Modulus ÀRºA¼Ò¼Æ
Static Stress  ÀRºAÀ³¤O
Static test  ÀR¤O¸ÕÅç
Statistical approach to gelation ²Î­pªñ¦ü½¦¤Æ
Steady-state assumption í©wª¬ºA¤§°²»¡¡]°²©w¡^
Steel  ¿û
Step copolymerization ³v¨B¦@»E¦X¤ÏÀ³
Step polymerization ³v¨B»E¦X¤ÏÀ³
Step-hollow grid 
Step-lap repair
Stepped-lap joint
Stereoblock polymer ¥ßÅé¶ôª¬»E¦Xª«
Stereoisomerism in polymer »E¦Xª«¤§¥ßÅé²§ºc¤Æ
Stereoregular polymer ¥ßÅé³W«h¡]±Æ¦C¡^ªº»E¦Xª«
Stereoregular sequence-length distribution ¥ßÅé³W«h§Ç¦Cªø«×¤À§G
Stiffened panel  Åܵwªº¥­ªO
Stiffness  «l«×¡A°íµw
Stitched fabric Á_¦X½s´
Stitching  Á_¦X
Stoichiometric imbalance ¤Æ¾Ç­p¶q¤£§¡¿Åª¬ºA
Storage life Àx¦s´Á
Strain  À³ÅÜ
Strain invariant
Strain rate À³Åܲv
Strain Relaxation  À³ÅÜÃP¦¢
Strain to-failure À³ÅÜ / ¯}Ãa
Strand  ªÑ¡]ÅÖºû¡^
Strand Count  ÅÖºûªÑ¤§¯½¼Æ
Strand Integrity  ÅÖºûªÑ§¹¾ã©Ê
S-Trans conformation S-¤Ï¦¡²ÕºA
Strength  ±j«×
Strength in Compression À£ÁY±j«×
Strength parameter ±j«×ÅܼÆ
Strength ratio or strength / stress ratio ±j«×¤ñ¡A©Î±j«× / À³¤O¤ñ
Strength, Flexural  ¼¸¦±±j«×
Stress  À³¤O
Stress Concentration  À³¤O¶°¤¤
Stress Concentration Factor À³¤O¶°¤¤²v
Stress Corrosion  À³¤O»G»k
Stress Relaxation À³¤OÃP¦¢
Stress À³¤O
Stress-Crack À³¤O¯}µõ
Stress-Strain Curve  À³¤O-À³Åܦ±½u
Stress-strain properties À³¤O-À³Åܩʽè
Stress-strain Relation  À³¤O-À³ÅÜÃö«Y
Stress-Strain À³¤O-À³ÅÜ
Striaght-through concept
Structopendant prepolymer
Structoset prepolymer
Structoterminal prepolymer
Structural Bond µ²ºc½¦¦X
Structural unit µ²ºc³æ¤¸
Sub-laminate ¦¸¿n¼h
Successive ply Failure ³sÄòÁ¡¼h¯}Ãa
Supension polymerization
Super forming ¶W¶ì©Ê¦¨§Î
Supported metal oxide catalysts ¤ä¼µª÷ÄÝ®ñ¤Æª«Ä²´C
Surface depression  ªí­±´îÀ£
Surface Resistance  ªí­±¹qªý
Surface Resistivity ªí­±¹qªý«Y¼Æ
Surface Treatment ªí­±³B²z
Surfacing Mat ªí­±ÅÖºû»V
Swelling  ¿±µÈ
Symmetric Laminate ¹ïºÙ©Ê¿n¼h
Symmetric Matrix ¹ïºÙ©Ê°ò§÷
Symmetrical balanced laminate ¹ïºÙ¥­¿Å¤§¿n¼h
Symmetrical laminate ¹ïºÙ¿n¼h
Symmetry in material  ¹ïºÙ©Ê§÷®Æ
Symmetry in ply stacking ¹ïºÙ©Ê¿n¼hÅ|¼h
Symmetry in transformed properties ¹ïºÙÂà´«©Ê½è
Syn Core
Syndiotactic polymer ¶¡³W»E¦Xª«
Syntactic foam  ºc¦¨µoªw¡Aµ²ºcµoªw
Synthetic  ¦X¦¨ªº
Synthetic Resin ¦X¦¨¾ð¯×
Tab 
Tack  ÂH©Ê
Tack Range ÂH©Ê½d³ò
Tack Stage ÂH©Ê¶¥¬q
Tacticity  ²§ºc©Ê
Tag-end Test §ÀºÝ¼ÐÅÒ¸ÕÅç
Tailor  µô°Å¡A­×¹¢
Tangent Modulus ¥¿¤Á¼Ò¼Æ
Tangent of Loss Angle ·l¥¢¨¤¤§¥¿¤Á
Tangential stress ¥¿¤ÁªºÀ³¤O
Tape  ±a¤l¡A¹w®û±a
Tape laying ¹w®û±aÅ|¼h¡A¹w®û±a¦w¸m
Teflon  ÅK¬tÀs©Î»E¥|¬t¤A²m¡A¤@ºØ­@°ª·Å¥B¼í·Æ©Ê¨Î¤§¶ì½¦§÷®Æ
Telomer  ²§ª«Åé
Telomeric reaction ½Õ»E¤ÏÀ³
Telomerization  ½Õ»E»E¦X¤ÏÀ³
Temperature 
Temperature-effect ·Å«×®ÄÀ³
Temperature-resistance ­@·Å©Ê
Template  ¼ÒªO
Ten percent (10%) rule ¦Ê¤À¤§¤Qªk«h
Tenacity  ±i¤O
Tensile Bar ±i¤O±ì¡A±i¤O´Î
Tensile Strength  ±i¤O±j«×¡A©Ô¦ù±j«×
Tensile test  ©Ô¦ù¸ÕÅç
Tension head fastener
Termination  ²×¤î¤ÏÀ³
Terpolymerization  ¤T»E¦X¤ÏÀ³
Test  ¸ÕÅç
Textile  ¯¼Â´¡A´«~
Thermal Conductivity  ¼ö¶Ç¾É©Ê
Thermal contraction ¼ö¦¬ÁY
Thermal Decomposition ¼ö¤À¸Ñ
Thermal distortion ¼ö¬n¦±¡A¼ö§á¦±
Thermal Expansion ¼ö¿±µÈ
Thermal inertia ¼ö´k©Ê
Thermal load ¼ö­t¸ü
Thermal polymerization ¼ö»E¦X¤ÏÀ³
Thermal resistance ­@¼ö©Ê
Thermal shock ¼ö¨RÀ»
Thermal stability ¼ö¦w©w©Ê
Thermo Electric Power ¼ö¹q¤O
Thermoclave  ¼ö¤À¬y
Thermocouple ¼ö¹q°¸
Thermodynamics of polymerization »E¦X¤ÏÀ³¼ö¤O¾Ç
Thermoforming  ¼öÀ£¦¨§Î
Thermography  ·Å«×°O¿ý¾¹
Thermoplastic  ¼ö¶ì©Ê¶ì½¦
Thermoplastic fastener ¼ö¶ì©Ê¹g°v
Thermoplastic ¼ö¶ì©Ê
Thermoplastics  ¼ö¶ì©Ê¶ì½¦
Thermoset ¼ö©T©Ê
Thermoset sleeve fastener ¼ö©T©Ê®Mµ©¹g°v
Thermosetting plastic ¼ö©T©Ê¶ì½¦
Thermosetting polymers ¼ö©T©Ê»E¦Xª«
Therm-X process (forming) X-¼ö»sµ{¡AX-¼ö¦¨§Î
Thero-di-syndiotactic polymer Ĭ¤G¹ï±Æ»E¦Xª«
Thixotropic  ·nÅܩʪº
Thixotropy  ·nÅÜ©Ê
Thread  ±É½u¡A±ø¯¾
Thread count ¯½¼Æ
Threo-di-isotactic polymer Ĭ¤G¦P±Æ»E¦Xª«
Through-transmission ¬ï³z¶Ç°e
Titanium  Üg¡A¤@ºØ­@°ª·Åª÷Äݧ÷®Æ
Toggle Action ¯ÁÀô°Ê§@
Tolerance   ®e§Ô«×
Tool design  ¤u¨ã³]­p
Tool life expectancy  ¤u¨ã¹Ø©R¹w¦ô
Tooling  ¤u¨ã
Tooling master ¥À¤u¨ã
Torsional Rigidity  §áÂà«l«×
Toughened material  ¥[¶´©Ê§÷®Æ
Toughness  ¶´©Ê
Toughness  ¶´©Ê
Tow  ÅÖºû§ô
Toxic  ¬r©Ê
Trans polymer ¤Ï¦¡ªº»E¦Xª«
Transannular migration during »E¦X¤¤¤§¸óÀô²¾¦ì
polymerization
Transfer Molding Âàª`¦¨«¬
Transfer Pot 刻`ž
Transformation  Âà´«
Transition Temperature Âಾ·Å«×
Transverse crack  ªø¶b¯}µõ¡A¾î¶b¯}µõ
Transverse isotropy ªø¶b§¡ºA¡A¾î¶b§¡ºA
Triad tacticity  ¤T²ÕÅé²§ºc©Ê
Trial part  ¸Õ»s¥ó
Triaxial braiding  ¤T¶b½s´
Triclinic Material  ±×´¹¨t§÷®Æ
Trommsdorff effect
Tuck  ÂH©Ê
Turbostratic  ´õ½ü¦¡¦¨¼h
Turns Per Inch (TPI) ¨C¦T¤§Âà§é¼Æ
Twist, Balanced ¥H¥­¿Å¤§¼¿½u
Twisted  §á¦±
Two-rail shear fixture ¤G½ü°Å¤O¸ÕÅ秨¨ã
Two-strand polymer ÂùªÑ»E¦Xª«
Ultimate Elongation ³Ì¤j©µ¦ù«×¡A³Ì¤j¦ùªø«×
Ultimate strength ·¥­­±j«×
Ultrasonic cutting  ¶W­µªi¤Á³Î
Ultrasonic inspection ¶W­µªiÀËÅç
Ultrasonic testing ¶W­µªi¸ÕÅç
Ultrasonic welding  ¶W­µªi²k±µ
Ultra-Violet  µµ¥~½u
Ultraviolet (UV) µµ¥~½u
Unbalanced bonded joint ¥¼¥­¿Å½¦¦X·f±µ
Unbalanced Laminate ¥¼¥­¿Å¿n¼h¡A¥¼¹ïºÙ¿n¼h
Undercut  ¬å¤f
Unidirectional composite  ³æ¤è¦V½Æ¦X§÷®Æ
Unidirectional fabric ³æ¤è¦VÅÖºû
Unidirectional Laminate ³æ¤è¦V¿n¼h
Unidirectional tape ³æ¤è¦V¹w®û±a
Unitape  ³æ¤è¦V¹w®û±a
Unnotched strength ¥¼¤Á¥W²ª¤§±j«×
Unsymmetric laminate ¥¼¹ïºÙ¿n¼h
Upilex-R »E¨ÈñQÓiÁ¡½¤¡A¬°¬ü°êUBE¤½¥q¥Í²£
Urea-formaldehyde polymer §¿¯À¥ÒîÇ»E¦Xª«
U-V Stabilizer µµ¥~½u¦w©w¾¯
Vacuum  ¯uªÅ
Vacuum Bag ¯uªÅ«Ê³U
Vacuum Bag Molding ¯uªÅ«Ê³U¦¨§Î
Vacuum-forming ¯uªÅ¦¨§Î
Vacuum-gauge ¯uªÅ­p
Vacuum-line ¯uªÅ½u
Vacuum-oven cure ¯uªÅ¦¨§Î°yµw¤Æ
Vacuum-port
Veil  Á¡ÅÖºû»V¡A­±¯½
Vent  ±Æ®ð¤f
Vent line  ±Æ®ð¸ô½u
Very-complex-shape ½ÆÂø§Îª¬
Vessel performance efficiency ¾ÉºÞ¥\¯à¡]°õ¦æ¡^®Ä²v
Vibration welding ®¶°Ê²k±µ
Vinyl ester ¤A²mà­
Virgin Filament ¯ÂÅÖºû¡A»r³æÅÖºû
Viscose process ÂH½¦ªk
Viscosity  ÂH«×
Viscosity-average molecular weight ÂH«×-¥­§¡¤À¤l¶q
Visual inspection  ¥ÎµøÄ±ÀËÅç
Void  ªÅ¤Õ
Void content ªÅ¤Õ§t¶q
Volatile  ´§µo©Êªº
Volatile Content ´§µo¥÷§t¶q
Volatile Loss ´§µo¥÷·l¥¢
Volume Fraction Åé¿n¤À²v
Volume of activation ¬¡¤ÆÅé¿n
Volume Resistance  ®e¿n¹qªý
Vulcanization of elastomers ¼u©ÊÅ餧²¸¤Æ
Wall Thickness ratio ¾À«p¤ñ
Warp  ¸g¦V¡A¬n¦±
Warp direction ¸gªº¤è
Warpage  ¼¦±
Warp-around concept  ¶¸g½u·§©À
Warpping  ¼¦±¡AÅs¦±
Wash-out mandrel  ¥i¨R¬~ªº¤ß¶b
Wash-out mandrel molding ¥i¨R¬~¤ß¶b¦¨§Î
Water Absorption  §l¤ô©Ê
Water heating  ¥Î¤ô¥[¼ö
Water jet cutting  ¤ô¤M¤Á³Î
Wear  ¿i·l
Weather  ¤Ñ®ð¡A®ð­Ô
Weathering  ­·¤Æ
Weathering, Artificial ¤H¤u­·¤Æ
Weave  ½s´
Weaving  ½s´
Web  ´«~¡Aºôª¬ª«
Weft  ½n½u
Weibull parameter  ­³§BÅܼÆ
Weight Fraction ­«¶q¤À²v
Weight-average molecular weight ­«¶q¥­§¡¤À¤l¶q
Welding  ²k±µ
Wet  À㪺
Wet Flexural Strength (WFS) À㪬ºAªº¼¸¦±±j«×
Wet Layup  À㦡Å|¼h
Wet Strength À㪬ºA¤§±j«×
Wet Winding À㦡Äñ¶
Wet-crush-rivet ÀãÀ£¹g°v
Wet-layup À㦡Å|¼h
Wet-out ¼íÀã
Wet-out Rate  ¼íÀã²v
Whirling winding ±ÛÂডÄñ¶
Whisker  ´¹Å½
Winding  ¶½u¡AÄñ¶
Winding Angle Äñ¶¨¤«×¡A¶½u¨¤«×
Winding Pattern Äñ¶¸Õ¼Ë
Winding Tension Äñ¶±i¤O
Winding, Biaxial ¨â¶bÄñ¶
Wire  ¹q½u¡AÅKµ· </