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首页> 外文期刊>Journal of Manufacturing Processes >Influence of surface integrity on fatigue life of bearing rings finished by precision hard turning and grinding
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Influence of surface integrity on fatigue life of bearing rings finished by precision hard turning and grinding

机译:表面完整对轴承环疲劳寿命的影响精度磨损和研磨

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Machined surface integrity of bearing rings is often the main concern for the bearing manufacturers as it affects their fatigue life. The present study investigates the surface integrity of AISI 52100 bearing rings finished by precision hard turning and grinding and its influence on fatigue life. A twin-disk machine is used to evaluate the RCF life. As main results, precision hard turning can achieve low surface roughness 0.1 mu m Ra with respect to the required 0.2 mu m Ra obtained by grinding. Both processes introduce microstructural changes. At subsurface, precision hard turning induces subsurface compressive and maximum residual stresses at 10-50 mu m depth, corresponding to the transition zone formed after a thin white layer ( 1 mu m); however, grinding induces tensile residual stresses from 15 mu m depth, corresponding to the bulk material. The residual stresses measured during RCF test (after running-in process and after spalling) of ground ring specimens exhibit peak compressive value in subsurface from 140 mu m depth. The ring specimens machined by precision hard turning have fatigue life four times higher than those machined by grinding. This enhancement of RCF life is due to the low roughness reached and also to the subsurface compressive residual stresses at shallow depth before RCF test.
机译:轴承环的加工表面完整性通常是轴承制造商的主要问题,因为它会影响其疲劳寿命。本研究调查了通过精密硬盘和研磨完成的AISI 52100轴承环的表面完整性及其对疲劳寿命的影响。双磁盘机用于评估RCF寿命。作为主要结果,精密硬转弯可以相对于通过研磨获得所需的0.2μMRa来实现低表面粗糙度0.1μm。这两个过程都引入了微观结构的变化。在地下,精确的硬变动引起地下压缩和最大残余应力在10-50 mu m深度,对应于在薄的白色层(<1μm)之后形成的过渡区;然而,研磨诱导从15μm深度的拉伸残余应力,对应于散装材料。在RCF测试期间测量的残余应力(在接地环样本的延时过程和剥落后),从140μm深度显示出地下峰值压缩值。通过精密硬盘加工的环形标本使疲劳寿命比通过研磨的加工的疲劳寿命高四倍。这种RCF寿命的增强是由于在RCF测试之前达到的粗糙度低,并且还达到浅深度的地下压缩残余应力。

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