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1)  Coarsening temperature
粗化温度
1.
Effects of Ti content on austenite coarsening temperature in AH36 steel were studied with Gleeble 1500 thermal simulator.
利用 Gleeble-15 0 0热模拟试验机 ,研究了 Ti含量对 AH3 6钢粗化温度的影响 ,同时利用二辊轧机研究了轧制温度、变形量对 AH3 6钢的奥氏体晶粒大小的影响。
2)  grain coarsening temperature
晶粒粗化温度
1.
The Influences of Ti content on austenite gain size and grain coarsening temperature in medium-carbon boron steel have been investigated.
研究了钛含量对中碳硼钢奥氏体晶粒度及晶粒粗化温度的影响。
2.
The influences of titanium content on austenite grain size and grain coarsening temperature in 20MnMoB steel have been investigated.
研究了钛含量对20 Mn Mo B钢奥氏体晶粒度及奥氏体晶粒粗化温度的影响。
3)  critical grain coarsening temperature
临界粗化温度
1.
The critical grain coarsening temperature is about 950℃ by using the Arrhenius equation.
利用Arrhehius公式求得了该钢的奥氏体晶粒临界粗化温度(Tc)约为950℃。
4)  austenite coarsening temperature
奥氏体粗化温度
1.
The austenite coarsening temperature and orthogonal experiment of heat treatment of 60Si2MnA spring steel were investigated.
进行了60Si2MnA弹簧钢的奥氏体粗化温度和热处理正交试验,模拟了余热淬火工艺,并确定了最佳热处理工艺。
5)  roughing rolling temperature
粗轧温度
6)  austenitic grain coarsening tem-perature
奥氏体晶粒粗化温度
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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