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Evaluation of the Surface Roughness of Ti-6Al-4V for Surface Grinding under Different Cooling Methods Using Conventional and Vegetable Oil-based Cutting Fluids

机译:使用常规和植物油切削液的不同冷却方法在不同冷却方法下对表面研磨表面粗糙度的评价

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In this research study, the surface roughness of medical grade Ti-6Al-4V alloy was evaluated to understand the effects of cutting fluids, cooling methods, and grinding depths after surface grinding with alumina wheel. Three cutting fluid types namely sunflower oil, sunflower oil-based cutting fluid, and conventional cutting oil were applied to the grinding zone using two cooling methods: minimum quantity lubrication and wet cooling methods. The grinding was undertaken at grinding depths of 0.005, 0.010, and 0.015 mm. The surface roughness of the ground surfaces was determined using a surface profiler. An analysis of variance demonstrated that the individual contributions of cutting fluid types, cooling methods and grinding depths to surface roughness were 42.7 %, 8.46 % and 40.61 % respectively. The design of the experiment was done using Taguchi L9 orthogonal array to determine the collective contributions of the grinding parameters. The analysis of the signal-to-noise ratio shows that the optimal surface roughness of Ti-6Al-4V was obtained with sunflower oil-based cutting fluid, a minimum quantity lubrication of 0.67L/h and a grinding depth of 0.005 mm. This study provides novel evidence of how grinding parameters can be used collectively to optimize Ti-6Al-4V machining.
机译:在该研究的研究中,评估了医用级Ti-6AL-4V合金的表面粗糙度,以了解用氧化铝轮磨削后切削液,冷却方法和研磨深度的影响。使用两种冷却方法将三种切削液类型包括葵花籽油,葵花籽油基切削液和常规切削油,并将其施加到研磨区中:最小润滑和湿冷的方法。研磨深度为0.005,0.010和0.015mm的研磨。使用表面分析仪测定地面的表面粗糙度。方差分析表明,切削液类型,冷却方法和表面粗糙度的各个贡献分别为42.7%,8.46%和40.61%。使用Taguchi L9正交阵列进行实验的设计,以确定研磨参数的集体贡献。信噪比的分析表明,用葵花籽切割液,最小量润滑为0.67L / h,磨削深度为0.005mm,得到Ti-6Al-4V的最佳表面粗糙度。本研究提供了一种新颖的验证参数如何集体用于优化TI-6AL-4V机械加工。

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