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Effect of Cutting parameters, Point angle and reinforcement percentage on surface finish, in drilling of AL6061/Al 2O 3p MMC

机译:在AL6061 / Al的钻孔过程中,切削参数,尖角和钢筋百分比对表面光洁度的影响 2 O 3p < / ce:inf> MMC

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The subject of this paper is concerned with the experimental study and the influence of cutting parameters, reinforcement percentage and drill geometry on surface finish, in drilling of Al6061/ Al2O3 Aluminum Metal Matrix Composite. The experimentation is conducted based on Taguchi method, The design have four factors, mixed level design of L-18 array with one column of two level and three columns of three levels had been selected for design. The effects of reinforcement percentage of Al2O3p, point angles of drill bits, Cutting Speed and Feed Rate on Surface Roughness, Mean Force, Torque and Cylindricity had been analyzed here. Moreover the causes of results based on analysis have been discussed.Metal Matrix Composites (MMC) offer numerous thermo-mechanical advantages over standard materials and alloys which make them better candidates in different applications. Their light weight, high stiffness and strength have attracted several industries such as automotive, aerospace, and defense for their wide range of products. However, the wide spread application of Meal Matrix Composites is still a challenge for industry. The hard and abrasive nature of the reinforcement particles is responsible for rapid tool wear and high machining costs. An effort has been made to analyze the machining parameters and surface finish for cost effective solution. The important effects have been discussed and percentage contribution of various process parameters speed, feed, point angle on surface finish, force, torque and Cylindricity have been determined.
机译:本文的主题涉及在Al6061 / Al2O3铝金属基复合材料的钻孔过程中的实验研究以及切削参数,补强百分比和钻头几何形状对表面光洁度的影响。实验是基于田口法进行的,设计有四个因素,选择了一列为两级的L-18阵列和三列为三级的L-18阵列的混合级设计。在此分析了Al2O3p的增强百分比,钻头的尖角,切削速度和进给速率对表面粗糙度,平均力,扭矩和圆柱度的影响。此外,还讨论了基于分析的结果原因。与标准材料和合金相比,金属基复合材料(MMC)具有许多热机械优势,这使它们在不同的应用中成为更好的候选者。它们的轻质,高刚度和强度因其广泛的产品而吸引了汽车,航空航天和国防等多个行业。然而,膳食基复合材料的广泛应用仍然是工业上的挑战。增强颗粒的坚硬和磨蚀性导致工具快速磨损和高加工成本。为了获得经济有效的解决方案,已经进行了分析加工参数和表面光洁度的工作。讨论了重要的影响,并确定了各种工艺参数的速度,进给量,点角对表面光洁度,力,扭矩和圆柱度的百分比贡献。

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