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首页> 外文期刊>International Journal of Precision Technology >Studies on surface integrity and its optimisation in turning Ti-6Al-4V
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Studies on surface integrity and its optimisation in turning Ti-6Al-4V

机译:Ti-6Al-4V车削表面完整性及其优化研究

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摘要

The present work focus to assess desired machining parameters, speed, feed, depth-of-cut and rake angle for simultaneously optimising surface roughness and residual stresses induced during turning of Ti-6Al-4V with TiAlN coated tungsten carbide tools. Experiments have been conducted using L_9 orthogonal array based design of experiments. The residual stresses induced in the workpiece after turning have been measured using X-ray diffraction system where as the roughness has been measured using portable surface roughness tester. The feed has been identified as the most significant parameter for the turning operation, according to the weighted sum grade of the residual stresses and surface roughness. From this investigation, it is suggested that for machining titanium alloy with TiAlN coated cutting tools, one should use the cutting speed at 75 m/min, feed at 0.25 mm/rev, depths-of-cut at 0.25 mm and a back rake angle at -7 degrees to achieve compressive or minimal tensile residual stresses and good surface finish.
机译:当前的工作重点是评估所需的加工参数,速度,进给,切削深度和前角,以同时优化表面粗糙度和用TiAlN涂层硬质合金刀具在Ti-6Al-4V车削过程中引起的残余应力。已经使用基于L_9正交阵列的实验设计进行了实验。使用X射线衍射系统测量了车削后在工件中产生的残余应力,其中,使用便携式表面粗糙度测试仪测量了粗糙度。根据残余应力和表面粗糙度的加权总和,进给已被确定为车削操作的最重要参数。根据这项调查,建议在使用TiAlN涂层切削刀具加工钛合金时,应以75 m / min的切削速度,0.25 mm / rev的进给速度,0.25 mm的切削深度和后倾角进行加工。在-7度下达到压缩或最小拉伸残余应力和良好的表面光洁度。

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