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Micro-Pits on Biomaterial in Electrical Discharge Machining By Using Taguchi Method

机译:使用Taguchi方法电气放电加工的微坑

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Electrical Discharge Machine widely used in the manufacturing industry, especially to generates small part or complicated product. This research has been conducted to determine capabilities of Electrical Discharge Machine Die Sinker (EDMDS) machining micro-pit on the biomaterials between stainless steel and Titanium. The significance of this study is to recognize EDM DS demanding for improvement or to enhance medical products. In this study Taguchi method is guide a series of experiments, and use to identify EDM DS parameter capabilities to machine pit depth 0.3mm on the titanium and stainless steel at current parameters, LT (1A and 3A). Meanwhile the Vgap were set at 55V and 65V. Based on Taguchi method statistically evaluated the experimental data and the regression of parameter. This paper showed the percentage of wear Electrode copper tungsten, percentage of depth machining pit and time spending during machine a pit. The pit model in biomaterials showed that exploring micro pit as new areas of improvement on the surface of biomaterials products.
机译:电气放电机器广泛用于制造业,尤其是产生小型或复杂的产品。已经进行了该研究,以确定在不锈钢和钛之间的生物材料上的电气放电机芯沉降器(EDMDS)加工微坑的能力。本研究的重要性是识别EDM DS要求改进或增强医疗产品。在本研究中,Taguchi方法指导了一系列实验,并用于在电流参数,LT(1A和3A)上的钛和不锈钢上的机坑深度0.3mm识别EDM DS参数能力。同时,VGAP设定为55V和65V。基于Taguchi方法,统计评估实验数据和参数的回归。本文展示了磨损电极铜钨的百分比,深度加工坑百分比和机器坑期间花费的时间。生物材料的坑模型显示,探索微坑作为生物材料表面表面改善的新领域。

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