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Influence of heat treatment on the residual stress-related machining distortion of Ti-6Al-4V alloy monolithic parts

机译:热处理对Ti-6Al-4V合金整体部件残留应力相关加工变形的影响

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Machining distortion caused by residual stresses is one of the major challenges in the production of thin-walled monolithic parts. One reason for the distortion is the relaxation of the initial residual stresses within the raw part due to the material removal during the machining process. The initial residual stresses mainly depend on the manufacturing process of the raw part and the subsequent heat treatment. This paper presents the results from a set of experimental and computational studies of the influence of heat treatment on residual stress-related machining distortion of Ti-6Al-4V alloy monolithic parts. A thermo-mechanical simulation of the heat treatment process is developed for the prediction of the initial residual stresses. For experimental validation, the contour method is used to quantify the initial residual stresses. Finally, machining tests are conducted to measure the final part distortion for two different residual stress states.
机译:残余应力引起的加工扭曲是生产薄壁整体零件的主要挑战之一。 失真的一个原因是由于在加工过程中的材料移除而在原始部分内的初始残余应力松弛。 初始残余应力主要取决于原始部分和随后的热处理的制造过程。 本文介绍了一组实验和计算研究的热处理对Ti-6Al-4V合金整体部分的残余应力相关加工变形的影响。 为预测初始残余应力而开发了热处理过程的热机械模拟。 对于实验验证,使用轮廓方法来量化初始残余应力。 最后,进行加工测试以测量两种不同的残余应力状态的最终部件失真。

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