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Rolling Bearing Steels - A Technical and Historical Perspective

机译:滚动轴承钢-技术和历史的观点

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摘要

Starting about 1920 it becomes easier to track the growth of bearing materials technology. Until 1955, with few exceptions, comparatively little progress was made in this area. AISI 52100 and some carburizing grades (AISI 4320, AISI 9310) were adequate for most applications. The catalyst to quantum advances in high-performance rolling-element bearing steels was the advent of the aircraft gas turbine engine. With improved bearing manufacturing and steel processing together with advanced lubrication technology, the potential improvements in bearing life can be as much as 80 times that attainable in the late 1950s or as much as 400 times that attainable in 1940. This paper summarizes the chemical, metallurgical and physical aspects of bearing steels and their effect on rolling bearing life and reliability. The single most important variable that has significantly increased bearing life and reliability is vacuum processing of bearing steel. Differences between through hardened, case carburized and corrosion resistant steels are discussed. The interrelation of alloy elements and carbides and their effect on bearing life are presented. An equation relating bearing life, steel hardness and temperature is given. Life factors for various steels are suggested and discussed. A relation between compressive residual stress and bearing life is presented. The effects of retained austenite and grain size are discussed.
机译:从1920年左右开始,追踪轴承材料技术的发展变得更加容易。直到1955年,除少数例外,这方面的进展都很少。 AISI 52100和某些渗碳等级(AISI 4320,AISI 9310)适合大多数应用。高性能滚动轴承钢的量子进步催化剂是飞机燃气涡轮发动机的问世。通过改进轴承的制造和钢加工以及先进的润滑技术,轴承寿命的潜在提高可以达到1950年代末的80倍,或者达到1940年的400倍。本文总结了化学,冶金轴承钢的物理特性及其对滚动轴承寿命和可靠性的影响。显着提高轴承寿命和可靠性的最重要的变量是轴承钢的真空加工。讨论了淬硬,渗碳和耐腐蚀钢之间的区别。介绍了合金元素与碳化物的相互关系及其对轴承寿命的影响。给出了有关轴承寿命,钢硬度和温度的方程。建议并讨论了各种钢的寿命因素。提出了压缩残余应力与轴承寿命之间的关系。讨论了残余奥氏体和晶粒尺寸的影响。

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    Zaretsky, Erwin V.;

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  • 年度 2012
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