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1)  heat resistant steel matrix
耐热钢基体
2)  Fe-Cr based heat-resisting steel
Fe-Cr基耐热钢
1.
The oxidation resistance of three kinds of Fe-Cr based heat-resisting steel at 1250℃ was analyzed and studied using XRD,SEM and EDS techniques.
采用X射线衍射(XRD)、扫描电镜(SEM)及能谱分析(EDS)等方法对三种Fe-Cr基耐热钢在1250℃的抗氧化性能进行了分析和研究。
3)  martensitic heat-resistant steel
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。
4)  bainitic heat-resistant steel
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。
5)  T91 ferritic heat-resistant steel
T91铁素体耐热钢
1.
The influences of quenching rate in a wide range of 10-6000℃/min on martensite transformation starting temperature,Ms,of T91 ferritic heat-resistant steel were studied by DIL805A/D high-resolution differential dilatometer.
利用Baehr DIL805高精度差分膨胀仪,通过对线膨胀行为的测量与分析,获得相关动力学信息,系统研究了不同淬火速率(10~6000℃/min)对T91铁素体耐热钢马氏体转变开始温度Ms的影响。
2.
The critical cooling rates in undercooled austenite transformation process of T91 ferritic heat-resistant steel were studied by DIL805A/D high-resolution differential dilatometer.
利用DIL805A/D高精度差分膨胀仪,通过线膨胀行为测量与微观组织分析,获得T91铁素体耐热钢连续冷却转变过程中相关动力学信息,结合冷却后T91钢组织特征,确定了T91钢过冷奥氏体转变过程中的临界冷却速度。
6)  pearlite heat-resistant steel
珠光体耐热钢
1.
This article mainly aims at introducing the welding methods of pearlite heat-resistant steel,the selection of weld materials and the pre-heated temperature before welding.
主要介绍了珠光体耐热钢的焊接方法、焊接材料的选择、焊前预热温度、焊后热处理及其焊接性能等方面的内容,并针对本厂的生产结构制订12Cr1MoV材料的工艺评定、焊接工艺参数以及焊后热处理工艺等。
2.
The non-destructive carbide phase analysis method for pearlite heat-resistant steel used in the past is improved, and it is easy to manipulate and master.
对过去采用的珠光体耐热钢非破坏碳化物相分析方法进行了改进,其操作简单,宜于掌握,分析结果的正确度及精密度得到提高。
补充资料:基体钢
分子式:
分子量:
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性质:一种特殊用途工具钢,其化学成分相当于高速钢的基体成分,在正常热处理后其组织与高速钢基体相同。这种钢具有接近高速钢的强度并且具有相当好的韧性,可用来制造高硬度耐冲击工具。

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