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The influence of rake angle, cutting feed and cutting depth on residual stresses in hard turning

机译:前角,切削进给量和切削深度对硬车削中残余应力的影响

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Hard turning is replacing grinding as a method in the production of precision steel products. There are several reports from research works describing the effects on the residual stress and the improvement of the fatigue life of hard turned products. This paper describes how rake angle and cutting parameters affect the residual stresses in turning. Face turning with constant speed in AISI 52100 was used. Cutting feed and cutting depth were investigated, but the main focus was on rake angle influence. The residual stresses were measured using the X-ray diffraction method in both speed and feed direction. The material was etched down to a depth of 100 mu m in order to monitor residual stresses in the whole of the affected depth. Altered cutting feeds and rake angle clearly produced significant changes in residual stresses. Results show that rake inclination had the strongest influence on the residual stresses. The compressive stresses become greater with increased feed rate. Different cutting depths did not generate different stress levels. The results show that it is possible to produce tailor-made residual stress levels by controlling the tool geometry and cutting parameters.
机译:硬车削已取代磨削,成为精密钢材生产中的一种方法。来自研究工作的一些报告描述了对硬质车削产品的残余应力的影响以及疲劳寿命的改善。本文介绍了前角和切削参数如何影响车削中的残余应力。在AISI 52100中使用恒定速度的面部转弯。研究了切削进给量和切削深度,但主要重点是前角的影响。使用X射线衍射法在速度和进给方向上测量残余应力。将该材料蚀刻至100微米的深度,以便监控整个受影响深度的残余应力。切削进给量和前角的改变显然会导致残余应力的显着变化。结果表明,前倾角对残余应力的影响最大。压应力随着进给速度的增加而变大。不同的切削深度不会产生不同的应力水平。结果表明,可以通过控制刀具的几何形状和切削参数来产生量身定制的残余应力水平。

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