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1)  nitrogen bearing austenite steel
含氮奥氏体钢
1.
Design of simplified tensile tester and its application to neutron scattering of nitrogen bearing austenite steel
简易拉伸装置的设计及其在含氮奥氏体钢中子散射中的应用
2)  nitrogen alloyed austenite stee
含氮奥氏钢
3)  nitrogenous austenitic stainless steel
含氮奥氏体不锈钢
1.
Production of nitrogenous austenitic stainless steel by powder forging;
粉末锻造制备含氮奥氏体不锈钢
4)  nitrogen austenite
含氮奥氏体
5)  High nitrogen bearing austenitic steel
高氮奥氏体钢
1.
7N high nitrogen bearing austenitic steel were studied by means of scanning electronic microscopy.
7N高氮奥氏体钢低温断裂途径进行了观察,证实该钢低温脆断中裂纹既可穿晶扩展又可沿晶界和退火孪晶界扩展。
6)  austenite steel
奥氏体钢
1.
The interface lattice misfitting theory can not explain that TiC and CaS act as an efficient catalyzer during the non-equilibrium solidification of austenite steel.
利用界面共格对应理论无法解释奥氏体钢非平衡凝固过程中TiC、CaS为奥氏体枝晶有效异质核心的现象。
2.
The performance of granular γ+(Fe,Mn)3C eutectics reinforced austenite steel matrix composites (EAMC) was studied, and the strengthening/toughness match and wear resistance were analyzed.
在研究团球γ+(Fe,Mn)3C共晶体增强奥氏体钢基自生复合材料(EAMC)的力学与耐磨性能的基础上,分析了EAMC的强韧化及耐磨机理。
3.
The effect of sliding velocity on the friction behaviors of in situ granular 7+(Fe, Mn)3C eutectics reinforced austenite steel matrix composites (EAMC) has been investigated by the pin-on disc dry sliding tests and scanning electron microscopy (SEM) observation.
利用MPX-2000型主轴盘销式磨损实验机和扫描电子显微镜(SEM)研究了相对滑动速度对团球γ+(Fe,Mn)_3C共晶体增强奥氏体钢基自生复合材料(EAMC)摩擦学性能的影响。
补充资料:奥氏体不锈钢
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性质:在常温下具有奥氏体组织的不锈钢。含铬18%和镍8%的不锈钢是最典型的奥氏体不锈钢,它常被称为18-8不锈钢。这种不锈钢在很宽的温度范围内都具有很高的强韧性,富于延展性,容易轧制和压缩等冷加工,它的耐蚀性和耐酸性,都优于铁素体不锈钢和马氏体不锈钢。添加钼和铜的镍铬系奥氏体不锈钢具有更好的耐蚀性和耐酸性,而且耐盐酸和卤化物腐蚀性也大为改善。除铬镍系奥氏体不锈钢之外,还有铬镍锰系以及不含镍和铬的铁锰铝系奥氏体不锈钢。由于奥氏体不锈钢具有全面、良好的综合性能,在工业上获得了广泛应用。

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