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Grinding of aluminium silicon carbide metal matrix composite materials by electrolytic in-process dressing grinding

机译:电解过程修整磨削铝碳化硅金属基复合材料

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摘要

The grinding cost of metal matrix composite materials is more due to low removal rates and high rates of wear of super abrasive wheels. This electrolytic in-process dressing (ELID) technique uses a metal-bonded grinding wheel that is electrolytically dressed during the grinding process for abrasives that protrude continuously from super abrasive wheels. This research carries out ELID grinding using various current duty ratios and conventional grinding of 10% SiC_p reinforced 2,124 aluminium composite materials. Normal forces and tangential forces are monitored. Surface roughness of the ground surface, Vickers hardness numbers and metal removal rate (MRR) are measured. The results show that the cutting forces in the ELID grinding are unstable throughout the grinding process due to the breakage of an insulating layer formed on the surface of grinding wheel and are less than conventional grinding forces. A smoother surface can be obtained at high current duty ratio in ELID grinding. The micro-hardness is reduced at high current duty ratio. In ELID, the MRR increases at high current duty ratio. The results of this investigation are presented in this paper.
机译:金属基复合材料的磨削成本更多是由于超级磨轮的去除率低和磨损率高。这种电解过程修整(ELID)技术使用金属结合的砂轮,该砂轮在磨削过程中经过电解修整,以从超级砂轮连续伸出的磨料。这项研究使用各种电流占空比进行ELID研磨,并对10%SiC_p增强的2,124铝复合材料进行常规研磨。监视法向力和切向力。测量地面的表面粗糙度,维氏硬度值和金属去除率(MRR)。结果表明,由于在砂轮表面上形成的绝缘层的破坏,ELID磨削中的切削力在整个磨削过程中不稳定,并且小于常规磨削力。在ELID研磨中,在高电流占空比下可以获得更光滑的表面。高电流占空比时,显微硬度降低。在ELID中,MRR在高电流占空比时会增加。本文介绍了这项调查的结果。

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