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Residual Stresses and Surface Integrity of Ti-alloys During Finish Turning – Guidelines for Compressive Residual Stresses

机译:钛合金精加工时的残余应力和表面完整性–压缩残余应力指南

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Residual stresses (RS) induced by machining control a component's resistance to progressive failure. It is crucial to identify favorable cutting conditions that promote fatigue-inhibiting compressive RS while preserving other aspects of surface integrity. An extensive investigation was performed in the finish turning regime for two aerospace grade Ti-alloys, Ti-6Al-4 V (Ti-64) and Ti-6Al-2Sn-4Zr-6Mo (Ti-6246). A comprehensive evaluation of surface integrity was carried out including RS, surface roughness, the near-surface microstructure, and hardness distribution. The behavior of RS and surface roughness was correlated to the cutting parameters. Within the investigated parameter range, RS were compressive in nature. High MRR conditions and small corner radii were found to promote larger compressive RS for both Ti-alloys. A conflict between RS and surface roughness was observed. While machining at high feed rates enhanced compressive RS, it was detrimental to surface finish. Guidelines were developed for the optimal selection of cutting parameters to achieve desired levels of RS and surface finish.
机译:机加工引起的残余应力(RS)控制组件抵抗渐进式故障的能力。确定有利的切削条件以促进抑制疲劳的压缩RS,同时保留表面完整性的其他方面至关重要。对两种航空航天级Ti合金Ti-6Al-4 V(Ti-64)和Ti-6Al-2Sn-4Zr-6Mo(Ti-6246)进行了广泛的研究。对表面完整性进行了全面评估,包括RS,表面粗糙度,近表面微观结构和硬度分布。 RS的行为和表面粗糙度与切削参数相关。在研究的参数范围内,RS本质上是压缩性的。发现较高的MRR条件和较小的拐角半径可促进两种钛合金的较大压缩RS。观察到RS与表面粗糙度之间的冲突。在高进给率下加工虽然增强了压缩RS,但对表面光洁度不利。制定了最佳选择切削参数的指南,以实现所需的RS和表面光洁度水平。

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