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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Experimental Study of Erosion and Abrasion based Hybrid Machining of Hybrid Metal Matrix Composite
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Experimental Study of Erosion and Abrasion based Hybrid Machining of Hybrid Metal Matrix Composite

机译:混合金属基复合材料的冲蚀磨损混合加工实验研究。

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摘要

Machining of metal matrix composites (MMCs) are still a challenge for manufacturing industries. Among various machining processes, electrical discharge machining (EDM) and diamond grinding (DG) are more acceptable processes for machining of the MMCs. In this paper, a new compound wheel (CW) is developed in such a way that both processes (EDM and DG) occur in alternate way due to the rotation of wheel. The performance of erosion and abrasion based hybrid machining (EAHM) process has been tested on hybrid aluminium-silicon carbide-graphite (Al/SiC/Gr) composite in terms of material removal rate (MRR) and average surface roughened (Ra). The experiments have been conducted on EDM machine with application of CW for effective spark erosion and abrasive abrasion machining. The effects of pulse current, pulse duration, pulse interval and wheel speed on MRR and Ra has been experimentally investigated and discussed.
机译:金属基复合材料(MMC)的加工仍然是制造业的挑战。在各种加工过程中,放电加工(EDM)和金刚石磨削(DG)是用于MMC加工的更可接受的过程。在本文中,开发了一种新的复合轮(CW),使得由于轮的旋转,两个过程(EDM和DG)以交替的方式发生。在材料去除率(MRR)和平均表面粗糙化(Ra)方面,已经在混合铝-碳化硅-石墨(Al / SiC / Gr)复合材料上测试了基于腐蚀和磨损的混合机械加工(EAHM)工艺的性能。实验是在带有CW的EDM机床上进行的,以有效地进行火花腐蚀和磨料磨削加工。实验研究和讨论了脉冲电流,脉冲持续时间,脉冲间隔和轮速对MRR和Ra的影响。

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