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Experimental investigation on roundness error in friction drilling and mechanical properties of Al/SiCp-MMC composites

机译:Al / SiCp-MMC复合材料摩擦钻削圆度误差及力学性能的实验研究

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摘要

Silicon carbide particulate reinforced aluminum (Al/SiCp) Metal Matrix Composites (MMC) is finding increased applications in Industries due to its unique advantages. Holes are to be drilled in many applications for joining and assembly purposes. Friction drilling is a newer non-traditional hole-making chip less process used to make holes in a single step. The manuscript first discusses the mechanical properties such as tensile strength and micro hardness of Al/SiCp-MMC composites, then it discusses the roundness (hole diameter accuracy) errors on dry friction drilled holes. The parameters considered for the experiments are: the composition of work piece, work piece thickness, spindle speed, and feed rate. The results indicated that the increase in the composition of wt% of SiCp particles increases the tensile strength, hardness. The drilling test results indicated that moderate wt% of SiCp gives better results. Higher spindle speeds and higher feed rates increase the roundness error. The highly influential parameter which affects the roundness error is feed rate. Increase in plate thickness also increases the roundness error in drilling of MMC composites.
机译:碳化硅颗粒增强铝(Al / SiCp)金属基复合材料(MMC)由于其独特的优势而在工业中得到越来越多的应用。为了连接和组装,在许多应用中都应钻孔。摩擦钻削是一种较新的非传统的无孔切屑工艺,用于一步加工。该手稿首先讨论了Al / SiCp-MMC复合材料的力学性能,例如拉伸强度和显微硬度,然后讨论了干摩擦钻孔的圆度(孔径精度)误差。实验考虑的参数是:工件的组成,工件的厚度,主轴转速和进给速度。结果表明,SiCp颗粒的wt%组成的增加增加了拉伸强度,硬度。钻探测试结果表明,适量的SiCp(重量)可获得更好的结果。较高的主轴转速和较高的进给速度会增加圆度误差。影响圆度误差的重要参数是进给速度。板厚度的增加也会增加MMC复合材料钻孔时的圆度误差。

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