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Improving EDM Process on AZ31 Magnesium Alloy towards Sustainable Biodegradable Implant Manufacturing

机译:改进AZ31镁合金对可持续可生物降解植入物制造的EDM工艺

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The electrical discharge machining (EDM) process is an excellent method to machine with the high geometrical accuracy required for bio-medical implants. In implant fabrication, a higher surface roughness has led to a huge contact surface area which causes a higher corrosion rate. Uneven spark distribution in conventional EDM (C-EDM) has led to negative effects on the machined surface quality. Particles mixed-EDM (PM-EDM) was found promising to improve the quality of the machined surface. The objective of this paper is to improve the machined surface quality of AZ31 magnesium alloy using the PM-EDM method towards sustainability manufacturing of biodegradable implant. It was hypothesized that with the addition of zinc particles in the dielectric fluid, the roughness of the machining surface could be reduced. The Taguchi method was used with nine experiments on C-EDM and PM-EDM with an opened-loop system which were conducted with the same setting parameters. Different concentrations of the zinc particles were mixed in the dielectric fluid during the PM-EDM experiments. In both the C-EDM and PM-EDM experiments, the pulse on-time was found as the most significant parameter affecting the quality of the machined surface. However, the addition of the zinc particles in the PM-EDM experiments did end up with a positive effect on the machined surface quality. The optimized surface roughness obtained from the PM-EDM experiment had been reduced by 44% compared to C-EDM. The PM-EDM method has been proven to reduce the roughness of the machined surface. More research is required to determine the efficacy of the PM-EDM method in solving the high corrosion rate of the magnesium alloy.
机译:电气放电加工(EDM)工艺是对生物医疗植入物所需的高几何精度的机器的优异方法。在植入物制造中,更高的表面粗糙度导致巨大的接触表面区域,这导致更高的腐蚀速率。传统EDM(C-EDM)中的不均匀火花分布导致对加工表面质量的负面影响。发现颗粒混合EDM(PM-EDM)有希望改善加工表面的质量。本文的目的是利用PM-EDM方法对可持续的可生物降解的植入物进行可持续性制造来改善AZ31镁合金的加工表面质量。假设它在介电流体中加入锌颗粒,可以减少加工表面的粗糙度。在C-EDM和PM-EDM上使用TAGUCHI方法,具有与相同的设置参数进行的开环系统。在PM-EDM实验期间,将不同浓度的锌颗粒混合在介电流体中。在C-EDM和PM-EDM实验中,发现脉冲导通时间是影响机加工表面质量的最重要参数。然而,在PM-EDM实验中加入锌颗粒确实以积极影响加工表面质量。与C-EDM相比,从PM-EDM实验中获得的优化表面粗糙度降低了44%。已证明PM-EDM方法以降低机加工表面的粗糙度。需要更多的研究来确定PM-EDM方法在求解镁合金的高腐蚀速率方面的功效。

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