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首页> 外文期刊>Journal of Materials Engineering and Performance >Simulation of Stress and Strain for Induction-Hardening Applications
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Simulation of Stress and Strain for Induction-Hardening Applications

机译:感应强化应用中的应力和应变模拟

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The possibility to manage stress and strain in hardened parts might be beneficial for a number of induction-hardening applications. The most important of these benefits are the improvement of fatigue strength, avoidance of cracks, and minimization of distortion. An appropriate and powerful way to take the stress and strain into account during the development of a process is to make use of computer simulations. In-house developed and commercial software packages have been coupled to incorporate the electromag-netic task into the calculations. The simulations have been performed followed by analysis of the results. The influences of two different values of quenching intensity, strength of initial material structure, strength of austenite, surface power density-frequency-time combination, and workpiece diameter on the residual stress are studied. The influence of quenching intensity is confirmed by the series of experiments representing the external hardening of a cylinder with eight variations of quenching intensity. Measured by x-rays, the values of surface tangential stress are used as a dataset for verification of the model being used for analyses.
机译:处理淬硬零件中的应力和应变的可能性可能对许多感应淬火应用有利。这些好处中最重要的是改善疲劳强度,避免开裂和最小化变形。在过程开发过程中考虑压力和应变的一种适当而有效的方法是利用计算机模拟。内部开发和商业软件包已被耦合,以将电磁任务纳入计算。进行了仿真,然后分析了结果。研究了两种不同的淬火强度值,初始材料结构强度,奥氏体强度,表面功率密度-频率-时间组合以及工件直径对残余应力的影响。淬火强度的影响已通过一系列实验进行了证实,这些实验代表了具有八种淬火强度变化的圆柱体的外部硬化。通过X射线测量,表面切向应力的值用作数据集,以验证用于分析的模型。

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