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Simulation of Part Surface Residual Stress Based on Grind-Hardening Process

机译:基于研磨淬火工艺的零件残余应力模拟

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摘要

Grind-hardening is a new technology for steel parts surface enhancing which uses thermal and mechanical composite effects on the parts in the grinding process. During the process, the workpiece surface generates hardened layer which improves the surface quality. As a key performance indicator of measuring the part surface quality, the residual stress of the hardened layer affects the strength, fatigue life and corrosion performance of the part directly. Therefore, the study of residual stress in hardened layer plays an important role in the effective control of hardened layer quality. First, grinding temperature field is analysed for studying the distribution characteristics of surface residual stress after grind-hardening process. Then, different grinding parameters an effect on the temperature field is studied by establishing the mathematical model and the heat transfer model of the grinding zone temperature field. Furthermore, combined with the grinding force generated in the grinding process, the thermo-mechanical coupling analysis with finite element method is adopted to obtain the residual stress and its distribution of the part. Also, the influence mechanism of the part residual stress formation is revealed.
机译:研磨硬化是一种用于钢件表面表面的新技术,它使用磨削过程中的零件的热和机械复合效果。在此过程中,工件表面产生改善表面质量的硬化层。作为测量部分表面质量的关键性能指标,硬化层的残余应力直接影响部分的强度,疲劳寿命和腐蚀性。因此,在硬化层中的残余应力研究在有效控制硬化层质量中起着重要作用。首先,分析研磨温度场,用于研究研磨过程中表面残余应力的分布特性。然后,通过建立研磨区温度场的数学模型和传热模型研究了不同的研磨参数对温度场的影响。此外,结合在研磨过程中产生的研磨力,采用具有有限元法的热机械耦合分析来获得残余应力及其分布。而且,揭示了部件残留应力形成的影响机制。

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