1) activation energy of grain growth
晶粒生长活化能
2) activation energy for grain growth
晶粒长大激活能
3) grain growth
晶粒生长
1.
Monte Carlo simulation of grain growth in calcination process;
焙烧过程晶粒生长的Monte Carlo模拟
2.
Study advance of Monte Carlo method simulating the grain growth of ceramics;
蒙特卡罗方法模拟陶瓷晶粒生长研究进展
3.
A computer simulation method of grain growth based on MC technology;
一种基于蒙特卡罗技术的晶粒生长计算机模拟方法
4) crystal growth
晶粒生长
1.
The effect of amount of metal oxide Co2O3 on the crystal growth & electrical performance of ZnO varistors are evaluated.
研究了金属氧化物Co2O3含量对ZnO压敏陶瓷中晶粒生长和电学性能的影响。
6) activation energy
晶化激活能
1.
The experimental results show that the crystallization temperature( T p) and activation energy ( E c) of the crystalline phases ( α Fe and Sm 2Fe 17 C x ) can be decreased going through pre annealing, the trend of activation energy change of α Fe phase can be changed in the crystallization process, which is helpful to formati.
结果表明 ,预退火处理使非晶合金晶化相α Fe和Sm2 Fe17Cx 的晶化温度 (Tp)和晶化表观激活能(Ec)值降低 ,且改变晶化相α Fe在晶化过程中晶化激活能的变化趋势 ,有助于该合金在晶化退火中形成晶粒尺寸较小的α Fe相。
2.
The activation energy of glass transition,crystallization and peak crystallization are 390.
2kJ/mol、晶化激活能Ex为325。
补充资料:晶粒
grain:多晶体金属材料内的每个晶体,由于它们在形核后的长大过程中都受到相邻的、也在长大着的晶体的妨碍,以致都不能在三维空间自由地长大,所以最后长到相互接触时都没有规则的外形,故称晶粒。
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参考词条