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Simulation Analysis on Martempering in Salt Bath Technology for Carburized Distortion Sample

机译:渗碳变形样品盐浴技术马术仿真分析

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摘要

An analysis model of the martempering in salt bath technology (MISBT) is established, which incorporates temperature field, phase transformation kinetics, and a strain field. The heat transfer coefficient is estimated by the inverse heat transfer method for the calculation of temperature. The effect of carbon content on the martensite transformation is then determined. On the strain calculation, the interaction between the thermal and the phase transformation strain is considered. Then the model is applied to the C-shaped carburized distortion sample for the 17CrNiMo6 steel by DEFORM. The temperature and martensitic transformation results of the MISBT are quantitatively analyzed and calculated. In contrast to the oil-quenching process (OQP), the smaller thermal stress of the MISBT is a result of the smaller temperature difference between the surface and the core. The lower transformation stress of the MISBT is a result of the slow cooling rate below 400 degrees C and the martensitic grade transformation. Therefore, the stress and distortion of the MISBT is less than that of the OQP, and the distortion results are consistent with the experimental results.
机译:建立了盐浴技术(MISBT)的饲料中的分析模型,其包括温度场,相变动力学和应变场。通过用于计算温度的反传热方法估计传热系数。然后确定碳含量对马氏体转化的影响。在应变计算上,考虑了热和相变应变之间的相互作用。然后通过变形将该模型应用于17crnimo6钢的C形渗碳变形样品。定量分析和计算MISBT的温度和马氏体变换结果。与油淬火过程(OQP)相反,MISBT的较小的热应力是表面和芯之间的温差较小的结果。 MISBT的较低变换应力是冷却速率低于400℃和马氏体级转化的结果。因此,MISBT的应力和变形小于OQP的应力和变形,并且变形结果与实验结果一致。

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