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Assessment of the Effects of Microgrooved Cutting Tool on the Machining Induced Residual Stress in Machining of Ti-6Al-4V

机译:Ti-6Al-4V加工中微槽切削刀具对加工引起的残余应力影响的评估

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In this paper, the effects of microgroove textured cutting tools on the residual stress on the machined surface of drying three-dimensional turning of Ti-6AL-4V are investigated using Finite Element Method (FEM). Microgrooves are designed and fabricated on the rake face of cemented carbide (WC/Co) cutting inserts. Specifically, the following microgroove parameters are examined: microgroove width, microgroove depth, and edge distance (the distance from cutting edge to the first microgroove). Their effects are assessed in terms of the circumferential residual stress. It is found that microgroove textured cutting tools can lower the detrimental tensile residual stress and induce beneficial compressive residual stress on the machined surface. The microgroove width, microgroove depth, and edge distance all have influence on residual stress on the machined surface in their own ways. This research provides insightful guidance for optimizing the fatigue life of the components by inducing beneficial compressive residual stress on the machined surface.
机译:本文采用有限元方法研究了微槽纹切削刀具对Ti-6AL-4V三维三维干燥车削加工表面残余应力的影响。在硬质合金(WC / Co)切削刀片的前刀面上设计并制造了微槽。具体来说,检查以下微槽参数:微槽宽度,微槽深度和边缘距离(从切削刃到第一个微槽的距离)。根据周向残余应力评估其影响。发现微槽纹理切削工具可以降低有害的拉伸残余应力并在加工表面上引起有益的压缩残余应力。细槽的宽度,细槽的深度和边缘距离都以自己的方式影响机加工表面上的残余应力。这项研究为通过在加工表面上产生有益的压缩残余应力而优化组件的疲劳寿命提供了有见地的指导。

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