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首页> 外文期刊>World Journal of Mechanics >Preparation and Properties of the Composite Enhancement Layer of Bearing Ring
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Preparation and Properties of the Composite Enhancement Layer of Bearing Ring

机译:轴承环复合增强层的制备与性能

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In this paper, the NU308 bearing rings were subjected to strengthen grinding treatment (SGT) at ambient temperature. And the running reliabilities of specimens that subjected to SGT and conventional treatment (CT) were respectively investigated by testing dynamic properties including the running temperature, vibrations, and surface burning. Moreover, the residual stress, microtopography, and microstructures on the cross-section were respectively tested with residual stress analyzer and field-emission scanning electron microscopy. The results showed that the running reliabilities of the specimen after SGT had been significantly improved with the reduction of running temperature, vibration, and surface burning. Further study showed that the specimen’s surface was filled with disordered micropores after SGT compared to the regular strip texture on the CT specimen’s surface, and the maximum residual compressive stress induced by SGT was about ?900 MPa. Moreover, the thickness of the residual compressive stress layer was over 180 μm, while the thickness of severe plastic deformation layer was about 50 μm.
机译:本文在环境温度下对Nu308轴承环进行了加强研磨处理(SGT)。通过试验包括运行温度,振动和表面燃烧的动态性能,分别研究了经过SGT和常规治疗(CT)的样本的运行可靠性。此外,横截面上的残余应力,微拷作和微观结构分别用残余应力分析仪和现场 - 发射扫描电子显微镜测试。结果表明,随着运行温度,振动和表面燃烧的降低,SGT后标本的运行可靠性明显改善。进一步的研究表明,与CT样本表面上的规则条纹纹理相比,SGT后,样品的表面填充有无序的微孔,并且SGT诱导的最大残余压缩应力约为900MPa。此外,残留压缩应力层的厚度超过180μm,而严重的塑性变形层的厚度为约50μm。

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