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1)  static recrystallization grain
静态再结晶晶粒
1.
The following up grain growth with the deformation temperature,holding time and the influence of deformation temperature,deformation value,initial grain size on static recrystallization grain size have been investigated by means of thermal simulator“ Gleeble-1500” for nuclear steel SA508c1 3 The necessary material models for numerical simulation of recrystallization have been establishe
3核电用钢进行了恒温压缩模拟,分析了变形温度、变形程度、原始晶粒直径对静态再结晶晶粒尺寸的影响,另外还研究了晶粒的长大随温度、时间的变化情况。
2)  static recrystallization
静态再结晶
1.
Studies of static recrystallization of new nickel-based alloy;
新型镍基合金静态再结晶规律研究
2.
Effect of C and N on static recrystallization in vanadium microalloyed non-quenched/tempered steels;
C和N含量对V微合金非调质钢静态再结晶量的影响
3.
Behavior of Static Recrystallization of 0.75C-0.11V Microalloy Steel;
0.75C-0.11V微合金钢的静态再结晶行为
3)  recrystallized grains
再结晶晶粒
1.
Effects of solution treatment temperature on the recrystallized grains,the second phases,electrical conductivity and tensile properties of cold rolled Al-1.
结果表明:合金在520℃~560℃之间进行固溶处理时,随着固溶温度的升高,其再结晶晶粒尺寸变化不大,而第二相粒子的数量明显减少;且固溶态合金的伸长率也随着固溶温度的升高而增大,560℃固溶后伸长率最大。
4)  Static melt crystallization
静态结晶
5)  austenite static recrystallization
奥氏体静态再结晶
6)  static recrystallization critical temperature
静态再结晶临界温度
1.
The results show that the static recrystallization critical temperature of tested steels decreases with increasing the strain and increass with increasing the initial austenite grain size.
结果表明:含Nb微合金钢静态再结晶临界温度随应变量增大而降低;随原始奥氏体晶粒尺寸增加而升高。
补充资料:二次再结晶(见再结晶晶粒长大)


二次再结晶(见再结晶晶粒长大)
secondary recrystallization

erCI 201」le」Ing二次再结晶(seeondary reerystallization) 见再结晶晶杠长大。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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