recalescence

recalescence

1. It has been presented that the recalescence temperature difference between (1010)edge plane and (0001)basal plane of graphite in graphite growing procedure is an important influencing factor on the growth morphology of graphite.

从而得出,石墨在生长过程中,(1010)棱面与(0001)基面的再辉温度差是影响石墨生长形态的重要因素。

2. point of recalescence

再辉点

3. Numerical Simulation of Recalescence During Alloy Solidification Process

合金凝固过程再辉现象的数值模拟

4. Rapid growth of “mother dendrites” in a given location of a melt at just below the liquidus temperature, that growth being the result of rapid heat extraction from the melt, or from recalescence.

在特定的熔点,以低于液相线的温度快速生成“母晶枝”,这是使熔融金属或复辉快速散热的结果。

5. recalescence curve

复辉曲线

6. The simulated results show that using the method can not only reveal dendrite morphology and micro-segregation but also represent the recalescence phenomenon.

模拟结果显示这种方法可以显示出枝晶形貌和显微偏析,同时可以再现凝固过程中的再辉现象。

7. Keywords undercooling;hypomonotectic alloy;recalescence;nucleation;

深过冷;亚偏晶合金;再辉;形核;

8. Keywords phase-field method;binary alloy;recalescence;

相场法;二元合金;再辉现象;

9. recalescence point

突放热量临界温度 再辉点 复辉点

10. Keywords negative temperature gradient;supercooling degree;supercooling solidification;recalescence;

负温度梯度;过冷度;过冷凝固;再辉;

11. The Conduct of Nucleation and Recalescence in the Process of the Negative Temperature Gradient Melt Solidification

负温度梯度熔体凝固过程中的形核与再辉行为

12. Keywords metallic materials;hypereutectic alloy;high undercooling;recalescence;anomalous eutectic;decoupled growth;

金属材料;过共晶合金;深过冷;再辉行为;非规则共晶;非耦合生长;

13. Keywords atomization;recalescence;segregated solidification;eutectic solidification;heat balance equation;

雾化;再辉;偏析凝固;共晶凝固;热平衡方程;

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