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²ÄÁϵÄÀàÐÍTypes of materials, metals, ceramics, polymers, composites, elastomer
²¿·Ö²ÄÁÏÐÔÖʸ´Ï°Review of selected properties of materials,
µçµ¼Âʺ͵ç×èÂÊconductivity and resistivity,
Èȵ¼ÂÊthermal conductivity,
Ó¦Á¦ºÍÓ¦±ästress and strain,
µ¯ÐÔÓ¦±äelastic strain,
ËÜÐÔÓ¦±äplastic strain,
Çü·þÇ¿¶Èyield strength,
×î´ó¿¹À­Ç¿¶Èultimate tensile strength,
×î´óÇ¿¶Èultimate strength,
ÑÓÕ¹ÐÔductility,
É쳤ÂÊelongation,
¶ÏÃæÊÕËõÂÊreduction of area,
¾±Ëõnecking,
¶ÏÁÑÇ¿¶Èbreaking strength,
ÈÍÐÔtoughness,
Ó²¶Èhardness,
Æ£ÀÍÇ¿¶Èfatigue strength,
·äÎÑhoneycomb,
ÈÈ´àÐÔheat shortness,
¾§°ûÖеÄÔ­×ÓÊýatoms per cell,
µãÕólattice, Õóµãlattice point,
µãÕó²ÎÊýlattice parameter,
ÃÜÅÅÁù·½hexagonal close-packed,
Áù·½¾§°ûhexagonal unit cell,
ÌåÐÄÁ¢·½body-centered cubic,
ÃæÐÄÁ¢·½face-centered cubic,
ÃÖÀÕÖ¸ÊýMiller indices,
¾§Ãæcrystal plane,
¾§Ïµcrystal system,
¾§Ïòcrystal direction,
Ïà±ä»úÀíPhase transformation mechanism:
³ÉºËÉú³¤Ïà±änucleation¨Cgrowth transition,
˹±öÄǶà·Ö½âspinodal decomposition,
ÓÐÐòÎÞÐòת±ädisordered-order transition,
ÂíÊÏÌåÏà±ämartensite phase transformation£¬
³ÉºËnucleation,
³ÉºË»úÀínucleation mechanism,
³ÉºËÊÆÀÝnucleation barrier,
¾§ºË£¬½á¾§ÖÐÐÄnucleus of crystal,
£¨½ðÊô×éÖ¯µÄ£©»ùÌåquay,
»ùÌ壬»ù¿é£¬»ùÖÊ£¬½áºÏ¼Ámatrix,
×Ó¾§£¬³û¾§matted crystal,
ñè¾§£¬¾§ÖÖseed crystal,
ñè¾§È¡Ïòseed orientation,
×Ѿ§Éú³¤seeded growth,
¾ùÖʺ˻¯homogeneous nucleation,
ÒìÖʺ˻¯heterogeneous nucleation,
¾ùÔÈ»¯ÈÈ´¦Àíhomogenization heat treatment,
ÊìÁÏgrog,
×ÔÇ¡³¡self-consistent field
¹ÌÈÜÌåSolid solution:
ÓÐÐò¹ÌÈÜÌåordered solid solution,
ÎÞÐò¹ÌÈÜÌådisordered solid solution,
ÓÐÐòºÏ½ðordered alloy,
ÎÞÐòºÏ½ðdisordered alloy.
ÎÞÐòµãÕódisordered lattice,
·ÖÉ¢£¬À©É¢£¬ÃÖÉ¢dispersal,
·ÖÉ¢¼Ádispersant,
·ÖÉ¢¼Á£¬Ìí¼Ó¼Ádispersant additive,
·ÖÉ¢¼Á£¬ ÃÖÉ¢¼Ádispersant agent
ȱÏÝdefect, imperfection,
µãȱÏÝpoint defect,
ÏßȱÏÝ line defect, dislocation,
ÃæÈ±ÏÝinterface defect, surface defect,
ÌåȱÏÝvolume defect,
λ´íÅÅÁÐdislocation arrangement,
λ´íÕóÁÐdislocation array,
λ´íÆøÍÅdislocation atmosphere,
λ´íÖádislocation axis,
λ´í°ûdislocation cell,
λ´íÅÀÒÆdislocation climb,
λ´í»¬ÒÆdislocation slip, dislocation movement by slip,
λ´í¾Û½ádislocation coalescence,
λ´íºËÐÄÄÜÁ¿dislocation core energy,
λ´íÁÑÎÆdislocation crack,
λ´í×èÄádislocation damping,
λ´íÃܶÈdislocation density,
Ìå»ýÅòÕÍvolume dilation,
Ìå»ýÊÕËõvolume shrinkage,
»Ø»ðtempering,
ÍË»ðannealing,
ÍË»ðµÄ£¬Èí»¯µÄsoftened,
Èí»¯ÍË»ð£¬Èí»¯£¨´¦Àí£©softening,
´ã»ðquenching,
´ã»ðÓ²»¯quenching hardening,
Õý»ðnormalizing, normalization,
ÍË»ðÖ¯¹¹annealing texture,
È˹¤Ê±Ð§artificial aging,
ϸ³¤±Èaspect ratio,
ÐαäÈÈ´¦Àíausforming,
µÈÎÂÍË»ðaustempering,
°ÂÊÏÌåaustenite,
°ÂÊÏÌ廯austenitizing,
±´ÊÏÌåbainite,
ÂíÊÏÌåmartensite,
ÂíÊÏÌå´ã»ðmarquench,
ÂíÊÏÌåÍË»ðmartemper,
ÂíÊÏÌåʱЧ¸Ömaraging steel,
ÉøÌ¼Ìåcementite,
¹ÌÈÜÇ¿»¯solid solution strengthening,
¸Öм»ìÄýÍÁsteel chips concrete,
Ë®²£Á§£¬¹èËáÄÆsodium silicate,
Ë®²£Á§Õ³½á¼Ásodium silicate binder,
¹èËáÄÆÀà·ÀË®¼Ásodium silicate waterproofing agent,
À©É¢diffusion,
À©É¢ÏµÊýdiffusivity,
Ïà±äphase transition,
ÉÕ½ásintering,
¹ÌÏà·´Ó¦solid-phase reaction,
ÏàͼÓëÏà½á¹¹phase diagrams and phase structures ,
Ïàphase,
×é·Öcomponent,
×ÔÓɶÈfreedom,
ÏàÆ½ºâphase equilibrium,
¼ª²¼Ë¹ÏàÂÉGibbs phase rule,
¼ª²¼Ë¹×ÔÓÉÄÜGibbs free energy,
¼ª²¼Ë¹»ìºÏÄÜGibbs energy of mixing,
¼ª²¼Ë¹ìØGibbs entropy,
¼ª²¼Ë¹º¯ÊýGibbs function,
ÏàÆ½ºâphase balance,
Ïà½çphase boundary,
Ïà½çÏß phase boundary line,
Ïà½ç½»Áª phase boundary crosslinking,
Ïà½çÓÐÏÞ½»Áªphase boundary crosslinking,
Ïà½ç·´Ó¦phase boundary reaction,
Ïà±äphase change,
Ïà×é³Éphase composition,
¹²¸ñÏà phase-coherent,
½ðÏàÏà×éÖ¯ phase constentuent,
Ïà³Äphase contrast,
Ïà³ÄÏÔ΢¾µphase contrast microscope,
Ïà³ÄÏÔ΢Êõphase contrast microscopy,
Ïà·Ö²¼phase distribution,
ÏàÆ½ºâ³£Êýphase equilibrium constant,
ÏàÆ½ºâͼphase equilibrium diagram,
Ïà±äÖͺóphase transition lag, Al-Si-O-N
ϵͳÏà¹ØÏµphase relationships in the Al-Si-O-N system,
Ïà·ÖÀëphase segregation, phase separation,
²£Á§·ÖÏàphase separation in glasses,
ÏàÐòphase order, phase sequence,
ÏàÎȶ¨ÐÔphase stability,
Ïà̬phase state,
ÏàÎȶ¨Çøphase stabile range,
Ïà±äζÈphase transition temperature,
Ïà±äѹÁ¦phase transition pressure,
ͬÖʶྦྷת±äpolymorphic transformation,
ÏàÆ½ºâÌõ¼þphase equilibrium conditions,
ÏÔ΢½á¹¹microstructures,
²»»ìÈܹÌÈÜÌåimmiscible solid solution,
תÈÛÐ͹ÌÈÜÌåperitectic solid solution,
µÍ¹²ÈÛÌåeutectoid£¬crystallization,
²»»ìÈÜÐÔimmiscibility,
¹Ì̬·´Ó¦solid state reaction,
ÉÕ½ásintering,
Ïà±ä»úÀíPhase transformation mechanism:
³ÉºËÉú³¤Ïà±änucleation¨Cgrowth transition,
˹±öÄǶà·Ö½âspinodal decomposition,
ÓÐÐòÎÞÐòת±ädisordered-order transition,
ÂíÊÏÌåÏà±ämartensite phase transformation£¬
³ÉºËnucleation,
³ÉºË»úÀínucleation mechanism,
³ÉºËÊÆÀÝnucleation barrier,
¾§ºË£¬½á¾§ÖÐÐÄnucleus of crystal,
£¨½ðÊô×éÖ¯µÄ£©»ùÌåquay,
»ùÌ壬»ù¿é£¬»ùÖÊ£¬½áºÏ¼Ámatrix,
×Ó¾§£¬³û¾§matted crystal,
ñè¾§£¬¾§ÖÖseed crystal,
ñè¾§È¡Ïòseed orientation,
×Ѿ§Éú³¤seeded growth,
¾ùÖʺ˻¯homogeneous nucleation,
ÒìÖʺ˻¯heterogeneous nucleation,
¾ùÔÈ»¯ÈÈ´¦Àíhomogenization heat treatment,
ÊìÁÏgrog,
»Ø¸´´ËÂ¥

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