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Effect of ammonia addition on microstructure and wear performance of carbonitrided high carbon bearing steel AISI 52100

机译:氨的作用对碳氮化高碳轴承钢AISI 52100的微观结构和磨损性能

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摘要

The investigation on the microstructure and tribomechanical behavior of hypereutectoid bearing steel AISI 52100 has been carried out during an unconventional thermo-chemical process aiming to improve the wear performance under dry conditions. The effects of NH3 addition rate on microstructure, hardness and wear performance of the carbonitrided specimen were characterized and the results show that two types of nitride (CrN, (Cr,Fe)(2)N1-x) are formed in the surface layer. The quantity of the nitride and carbide precipitates increase firstly and decrease subsequently with the increasing of NH3 addition rate, whereas the fraction of retained austenite increases monotonically. The wear performance of the carbonitrided specimen is improved during the entire stage of the sliding test with the NH3 addition rate below 0.41/min, but it decreases sharply at the initial stage of sliding test and then increases gradually when further raising the NH3 addition rate. The possible reasons underlying have been discussed and are attributed to the fraction of retained austenite formed during carbonitriding process and the transformation from retained austenite into martensite during sliding test, respectively.
机译:在非传统的热化学过程中,对干燥条件下磨损性能提高了磨损性能的非传统热化学过程进行了过度切开轴承钢AISI 52100的微观结构和纤维动作的研究。 NH3加法率对微观结构的影响,表征了碳氮样品的耐磨性,硬度和磨损性能,结果表明,在表面层中形成了两种类型的氮化物(CrN,(Cr,Fe)(2)N1-X)。氮化物和碳化物沉淀物的量首先增加并随后随后随后降低NH 3加成率,而保留奥氏体的级分单调增加。在滑动试验的整个阶段,NH3添加率低于0.41 / min的整个阶段,碳氮定位的磨损性能得到改善,但在滑动试验的初始阶段急剧下降,然后在进一步提高NH3添加速率时逐渐增加。已经讨论了潜在的可能原因,并归因于在碳氮化方法期间形成的保留奥氏体的级分,分别在滑动试验期间从保留的奥氏体转化到马氏体中。

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