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1)  isothermal solidification
等温凝固
1.
Dynamic simulation of isothermal solidification in steel/Cu/steel system rolling-diffusion bonding process;
碳钢/Cu/碳钢系统轧制——扩散复合等温凝固过程的动力学模拟计算
2.
Simulation of isothermal solidification of ternary alloy with phase-field model;
三元合金等温凝固过程的相场法模拟
3.
Phase-field simulation of isothermal solidification of binary alloy based on KKS model;
基于KKS模型二元合金等温凝固过程的相场法模拟
2)  non-isothermal solidification
非等温凝固
1.
Phase-field simulation of influence of anisotropy on process of non-isothermal solidification;
各向异性影响非等温凝固过程的相场法模拟
2.
Phase-field Simulation of Non-isothermal Solidification of Binary Alloy;
二元合金非等温凝固过程的相场法模拟
3.
Phase-field simulation of non-isothermal solidification dendrite growth of binary alloy under the force flow
强迫对流影响二元合金非等温凝固枝晶生长的相场法模拟
3)  setting point
凝固温度(水泥等),凝固点
4)  non-isothermal crystallization/solidification process
非等温结晶/凝固过程
5)  solidification temperature
凝固温度
1.
Solidification Temperature of Concasting Mold Fluxes;
连铸结晶器保护渣的凝固温度
2.
The results show that with increasing amounts of added TiO2, the viscosity and solidification temperature (θs) of the MF decrease gradually, and then increase rapidly.
研究表明:随着TiO2加入量的增加,MF的黏度和凝固温度(θs)先逐渐减小而后迅速增大。
3.
The results showed that the viscosity of mold fluxes could be decreased by TiO2,except that perovskite was precipitated that could increase viscosity and solidification temperature.
研究表明,TiO2可以降低连铸保护渣的粘度,但随着钙钛矿的析出,会增加凝固温度和粘度。
6)  isothermal solidifying
保温凝固
1.
As electromagnetic stirring was applied in the course of isothermal solidifying, the refin.
在保温凝固过程中进行电磁搅拌时,晶粒细化效果更明显,其原因是在凝固过程中晶粒发生了部分重熔和大量晶粒游离。
补充资料:等温染色
分子式:
CAS号:

性质:在整个染色过程中温度保持不变的染色方法。这对研究染料的染色性能具有重要意义。

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