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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Influence of cutting condition on white layer induced by high speed machining of hardened steel
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Influence of cutting condition on white layer induced by high speed machining of hardened steel

机译:切削条件对硬化钢高速加工诱导的白色层的影响

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摘要

White layer formed on machined surface during dry and hard high speed machining has great influence on workpiece performance. Studying machined surface white layer is significant to improve the machinability and surface quality of workpiece. Experiments of dry and hard high speed machining of GCr15 bearing steel and 40CrNiMoA alloy steel were carried out with PCBN inserts, the phase composition and the thickness of white layer were studied experimentally; the formation mechanism of the white layer were studied; effects of cutting parameters, carbon content of substrate material on white layer thickness were analyzed; effects of cutting speed on retained austenite content in machined surface were also summarized. Results show that the microstructure of white layer consists of cryptocrystalline martensite, retained austenite and carbide; the white layer is formed by martensitic transformation; the white layer thickness and the retained austenite content of machined surface increase firstly and then decrease with cutting speed; the white layer thickness increases with flank wear and carbon content.
机译:在干燥和硬高速加工过程中在机加工表面上形成的白色层对工件性能产生了很大的影响。研究加工表面白色层很大,可以提高工件的可加工性和表面质量。使用PCBN插入物,通过PCBN插入物,通过PCBN插入物,采用PCBN插入物,采用PCBN插入物,相相组成和白色层的厚度进行干燥和硬化高速加工的实验。研究了白色层的形成机制;分析了切割参数的影响,分析了衬底材料的碳含量;还总结了切削速度对加工表面保留奥氏体含量的影响。结果表明,白层的微观结构由加密晶体马氏体,保留奥氏体和碳化物组成;白层由马氏体转化形成;机加工表面的白色层厚度和保留的奥氏体含量首先增加,然后通过切割速度降低;白色层厚度随侧面磨损和碳含量增加。

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