1) constant temperature control
等时控温
1.
The research and implementation of constant temperature control system for preheating process of extruder
挤出机预热阶段等时控温系统研究与实现
2) synchronous temperature rise control
等时到温控制
3) time and temperature controlling
控时控温
4) short isothermal time
短时等温
1.
The results show that the upper bainite formed with short isothermal time has rod-like micromorphology.
结果表明,380℃短时等温获得短棒状上贝氏体组织;随等温时间延长,新的上贝氏体小棒于原贝氏体棒两侧形成,上贝氏体小棒的平行排列使上贝氏体变为粗棒;随等温时间的进一步延长,粗棒状上贝氏体平行排列组合近似羽毛状;长时间等温,贝氏体碳化物析出使上贝氏体组织具有羽毛状形貌。
2.
Fine structures of upper and lower bainite formed within short isothermal time have been observed by transmission electron microscopy.
针对工业用9SiCr钢,通过X射线衍射分析、金相组织观察研究了奥氏体化后的冷却速度与贝氏体转变等温时间等因素对贝氏体相变产物显微组织形态的影响,采用透射电子显微镜观察分析了短时等温获得的上、下贝氏体组织的精细结构。
5) isothermal aging
等温时效
1.
Microstructure evolution and mechanical properties of Sn-Ag based composite solder joints during isothermal aging;
等温时效对新型Sn-Ag基复合钎料显微组织和力学性能的影响
2.
1% Ce were studied for Cu-substrate during soldering at 543 K and isothermal aging at 453 K.
10%Ce,能抑制等温时效过程中界面IMC的形成与生长;焊点最初形成的界面IMC为Cu6Sn5,时效10d后,Sn-0。
3.
43Mn(wt%) alloy and its mechanical properties during extrusion and following isothermal aging at 200℃ was investigated using optical microscope(OM),scanning electron microscopy(SEM),transmission electron microscopy(TEM) and tensile test.
43Mn(wt%)合金热挤压及随后200℃等温时效过程中的组织演变与力学性能。
6) time-temperature equivalence
时温等效
1.
The material\'s parameters were obtained for a broad range of temperatures by using the time-temperature equivalence rule.
基于时温等效原理,由不同温度下测得的低频材料动力学参数值预测了某一温度下高频范围内的值。
补充资料:等时
1.犹顿时﹑立刻。
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参考词条