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The effects of various multilayer ceramic coatings on the wear of carbide cutting tools when machining metal matrix composites

机译:加工金属基复合材料时,各种多层陶瓷涂层对硬质合金刀具磨损的影响

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摘要

The effects of various ceramic coatings on the wear behaviour of carbide cutting tools when machining metal matrix composites containing 20 and 10 wt.% SiC particles fabricated by a by liquid metallurgy technique were investigated at different cutting conditions. In machining tests, various coated cutting tools with different geometries were used under various cutting speeds. The wear performance of multiple-coated carbide tools was found to be higher than those of double-coated tools when machining both particle composites. In addition, the cutting time decreased significantly with increasing weight fraction of particles. Furthermore, it was observed that abrasive wear was the main mechanism responsible for wear of tools in machining composites. Chipping on the cutting edge was effective at higher speed for higher weight fraction composites but formation of a built-up-edge was evident at lower cutting speeds for lower weight fraction composites. (c) 2005 Elsevier B.V. All rights reserved.
机译:研究了在不同的切削条件下,通过液相冶金技术加工包含20和10 wt%的SiC颗粒的金属基复合材料时,各种陶瓷涂层对硬质合金刀具的磨损行为的影响。在机加工测试中,以不同的切削速度使用了具有不同几何形状的各种涂层切削刀具。在加工两种颗粒复合材料时,发现多层涂层硬质合金刀具的磨损性能均高于双层涂层刀具。另外,随着颗粒重量分数的增加,切割时间显着减少。此外,观察到,磨料磨损是造成复合材料加工中工具磨损的主要机理。对于较高重量分数的复合材料,切削刃上的切屑在较高速度下是有效的,但对于较低重量分数的复合材料,切削刃上的切屑在较低的切削速度下明显形成。 (c)2005 Elsevier B.V.保留所有权利。

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