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1)  isothermal solidifying
保温凝固
1.
As electromagnetic stirring was applied in the course of isothermal solidifying, the refin.
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。
2)  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
3)  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。
4)  liquid/solid coexistence zone
凝固温区
1.
The rheologic mechanical behavior of alloys in the liquid/solid coexistence zone is revealed through rheo-logic tests.
通过高温流变实验,揭示了合金凝固温区不同阶段的流变特性;提出准液相及准固相为五元件流变模型,而其过渡温区为六元件流变模型。
5)  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
6)  low temperature non_solidifying
低温不凝固
补充资料:EPS夹芯保温板用于体育馆屋面


EPS夹芯保温板用于体育馆屋面


  EPs夹芯保温板用于体育馆屋面
  
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