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Modelling and optimisation of material removal rate and surface roughness in surface-electrical discharge diamond grinding process

机译:表面放电金刚石磨削过程中材料去除率和表面粗糙度的建模与优化

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摘要

Metal matrix composites (MMCs) can be machined using electrical discharge machining (EDM) but the process is found slow. Electrical discharge diamond grinding (EDDG), which is a hybrid machining process (HMP) comprising of diamond grinding (DG) and electrical discharge grinding (EDG), has been found a viable machining method which enhances MRR and produce better surface finish. During EDDG, abrasive grains eradicate the non-conducting material particles of MMCs, and spark discharges thermally softened the surrounding binding material. In the present work, an attempt has been made for modelling of EDDG in surface grinding mode for outputs MRR and average surface roughness (R_a) and inputs wheel speed, depth of cut, workpiece speed, pulse on-time, current and duty factor. Experiments were carried out on a newly self-developed surface grinding setup for EDDG on a die sinking EDM machine for Al-10wt.%Al_2O_3 composite. Finally, weighted principal component (WPC) is proposed for optimising the machining parameters.
机译:可以使用放电加工(EDM)对金属基复合材料(MMC)进行加工,但发现过程缓慢。放电金刚石磨削(EDDG)是一种由金刚石磨削(DG)和放电磨削(EDG)组成的混合加工工艺(HMP),已发现一种可行的加工方法,可提高MRR并产生更好的表面光洁度。在EDDG期间,磨粒会侵蚀MMC的非导电材料颗粒,而火花放电会热软化周围的粘结材料。在目前的工作中,已经尝试在表面磨削模式下对EDDG建模,以输出MRR和平均表面粗糙度(R_a)并输入砂轮速度,切削深度,工件速度,脉冲接通时间,电流和占空比。在新开发的用于EDDG的表面研磨装置上进行了实验,该装置在用于Al-10wt。%Al_2O_3复合材料的冲模电火花加工机上进行。最后,提出了加权主成分(WPC)以优化加工参数。

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