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Finite element-based modeling of machining-induced residual stresses in Ti-6Al-4V under finish turning conditions

机译:基于有限的基于元素的加工诱导的诱导残余应力建模TI-6AL-4V下的完成转折条件

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摘要

Residual stresses (RS) imparted during the finishing stages of machining constitute an essential measure of surface integrity and an acceptance criterion for the safety of critical aerospace parts. To build a predictive tool for machining-induced residual stresses in titanium alloy Ti-6Al-4V, a finite element-based model of orthogonal cutting is developed using DEFORM-2D. A full factorial orthogonal cutting experiment is conducted using sharp tools to investigate the effect of feed rate (f) and cutting speed (v) on residual stresses under finish-turning conditions. For every cutting condition, machining forces are measured using a piezoelectric dynamometer, surface temperatures in the vicinity of the cutting zone are captured with an infra-red camera, and surface residual stresses in the cutting direction are measured by X-ray diffraction (XRD). Experimental results for forces, temperatures and RS are used to validate the finite element model. Once a high confidence level in finite element predictions is obtained, a numerical investigation of the effects of cutting tool edge radius (r) and cutting speed on RS is carried out. Within the investigated range of parameters, residual stresses are found to be compressive in nature. It is observed that residual stresses become more compressive with increasing feed rate and less compressive with increasing edge radius or cutting speed.
机译:在加工的整理阶段施加的残余应力(Rs)构成了表面完整性的基本衡量标准,以及临界航空航天零件安全的验收标准。为了构建用于加工诱导的钛合金Ti-6Al-4V的诱导的残余应力的预测工具,使用Deform-2D开发了一种基于有限元的正交切割模型。使用锋利的工具进行完整的正交切割实验,以研究进料速率(f)和切削速度(v)在完成转弯条件下对残余应力的影响。对于每个切割条件,使用压电测功机测量加工力,切割区域附近的表面温度用红外线相机捕获,切割方向上的表面残余应力由X射线衍射(XRD)测量。用于力,温度和RS的实验结果用于验证有限元模型。一旦获得了有限元预测的高置信水平,就执行了切削工具边缘半径(R)和切割速度对RS的数值研究。在调查的参数范围内,发现残余应力本质上是压缩的。观察到,随着饲料速率的增加和较小的压缩性,残留应力变得更加压缩,并且具有增加的边缘半径或切割速度。

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