1) bainitic heat-resistant steel
![点击朗读](/dictall/images/read.gif)
贝氏体耐热钢
1.
The creep damage and characteristics of interfacial failure and early failure of welded joints of martensitic heat-resistant steel (9Cr1MoVNbN) and bainitic heat-resistant steel(12Cr2MoWVTiB) with different creep strength of weld have been investigated by means of argon tungsten pulsed arc welding and high temperature accelerated simulation test.
采用脉冲氩弧焊接工艺、高温加速模拟、扫描电镜观察研究了不同焊缝蠕变强度匹配条件下,马氏体耐热钢(9Cr1MoVNbN)与贝氏体耐热钢(12Cr2MoWVTiB)焊接接头的界面蠕变损伤、破坏特征及早期失效倾向。
2) bainite wear resistant steel plate
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贝氏体耐磨钢板
1.
Effects of different cooling medium on microstructure and mechanical properties of bainite wear resistant steel plate were investigated.
研究了不同冷却介质对贝氏体耐磨钢板组织和力学性能的影响。
3) bainitie weathering steel
![点击朗读](/dictall/images/read.gif)
贝氏体耐候钢
4) martensitic heat-resistant steel
![点击朗读](/dictall/images/read.gif)
马氏体耐热钢
1.
The creep damage and characteristics of interfacial failure and early failure of welded joints of martensitic heat-resistant steel (9Cr1MoVNbN) and bainitic heat-resistant steel(12Cr2MoWVTiB) with different creep strength of weld have been investigated by means of argon tungsten pulsed arc welding and high temperature accelerated simulation test.
采用脉冲氩弧焊接工艺、高温加速模拟、扫描电镜观察研究了不同焊缝蠕变强度匹配条件下,马氏体耐热钢(9Cr1MoVNbN)与贝氏体耐热钢(12Cr2MoWVTiB)焊接接头的界面蠕变损伤、破坏特征及早期失效倾向。
2.
The creep rupture strength,creep damage and characteristics of interfacial failure of dissimilar welded joint between martensitic heat-resistant steel(9CrlMoVNbN)and bainitic heat- resistant steel(12Cr2MoWVTiB)were investigated by means of argon gas shielded tungsten pulsed arc welding,high temperature accelerated simulation and creep rupture test.
采用脉冲氩弧焊接工艺、高温加速模拟、高温持久实验研究了不同焊缝蠕变强度匹配条件下马氏体耐热钢9CrlMoVNbN与贝氏体耐热钢12Cr2MoWVTiB异种钢焊接接头的高温强度、界面蠕变损伤及破坏特征。
5) martensite heat-resistant steel
![点击朗读](/dictall/images/read.gif)
马氏体耐热钢
1.
Microstructure of a Fe-Cr-Co martensite heat-resistant steel heated in 850~1200 ℃ was studied by means of OM,SEM and XRD.
用光学显微镜、扫描电镜和X射线衍射仪分析了Fe-Cr-Co马氏体耐热钢在850~1200℃加热后的组织,用G leeble1500热模拟试验机对该钢在此温度范围内的压缩行为进行了研究。
6) austenitic heat resistant steel
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奥氏体耐热钢
1.
Effects of solid solution/aging on microstructure and properties of austenitic heat resistant steel were studied by X-ray diffraction meter,optical microscope and electron-chemical analysis.
采用X射线衍射仪、光学显微镜和电化学分析等方法,研究了固溶/时效处理对奥氏体耐热钢组织与性能的影响。
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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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