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1)  room temperature ageing
常温时效
2)  aging temperature
时效温度
1.
Effect of Aging Temperature on Structure and Properties of 14Co-11Ni-2Cr-3Mo Secondary Hardening Ultra-high Strength Steel;
时效温度对14Co-11Ni-2Cr-3Mo超高强度钢组织与性能的影响
2.
The effects of aging temperature on microstructure and properties of K487 alloy have been investigated.
研究了不同时效温度对K487合金组织和性能的影响。
3.
The influences of aging temperature of direct aging and strain aging on the microstructure and shape memory effect in Fe-13Mn-5Si-8Cr-4Ni-0.
研究了直接时效和形变时效温度对Fe-13Mn-5Si-8Cr-4Ni-0。
3)  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。
4)  high temperature aging
高温时效
1.
The evolution of microstructure especially the IMC at high temperature aging process had been systematically investigated and the effect of trace amount rare earth Y also had been studied.
7Cu高温时效过程中显微组织,特别是金属间化合物(IMC)的演化规律,以及稀土Y的添加对其产生的影响。
2.
The results show that the aging response of the experimental alloy is greatly accelerated by high temperature aging,but this treatment decreases the peak aging strength of the alloy.
研究结果表明:合金在250℃时效有很高的时效响应速度,但是,在250℃时效后的峰值强度要明显低于165℃时效的峰值强度;在相同条件下高温时效后的合金在峰值状态的持久寿命最长,并且其持久强度要远远高于低温欠时效态的持久强度;Ω相为合金高温时效后的主要强化相,高温时效抑制了θ′的析出;高温短时间人工时效能够极大地提高合金的高温持久性能。
5)  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。
6)  ageing temperature
时效温度
1.
Effect of ageing temperature on fracture behavior of 2.25Cr1Mo steel;
时效温度对2.25Cr1Mo钢断裂行为的影响
补充资料:铂电阻温度表(见电阻温度表)


铂电阻温度表(见电阻温度表)


表。bod旧nZu wendubiao铂电阻温度表见电阻温
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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