Machinability study on Al7075/Al2O3-SiC hybrid composites

Ravikumar Mukundaiah, Reddappa H N, S. R, R. Y. S., Babu E R, Nagaraja C Reddy
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引用次数: 6

Abstract

In the present research, the effects of volume fraction of SiC+Al2O3 particles and aging temperature on the machinability of stir-casted Al7075 metal matrix composites (MMC) have been investigated. The hybrid composites were fabricated using the liquid metallurgy route. Al7075 was reinforced with different wt. % of SiC (3%, 6%, and 9%) and Al2O3 (2%, 4%, and 6%) which were used to fabricate the hybrid metal matrix composites. The samples were aged at different temperatures (140 ºC, 160 ºC, and 180 ºC) for 4 h and cooled at furnace temperature (27 ºC). The machinability of hybrid metal matrix composites was studied by carrying out L27 orthogonal array experiments. Three process parameters were selected, such as 0.2 mm/min of the depth of cut, 0.1 mm/min of feed rate, and 1500 rpm of spindle speed. The obtained results indicate that the surface roughness and machining force of MMCs increase with an increase in weight percentage of Al2O3/SiC and decrease with the increase in aging temperature. Optimum machining force and surface roughness were obtained at 2% Al2O3 + 3 % SiC and 180°C of aging temperature.
Al7075/Al2O3-SiC杂化复合材料切削性能研究
本文研究了SiC+Al2O3颗粒体积分数和时效温度对搅拌铸造Al7075金属基复合材料可加工性的影响。采用液相冶金法制备了复合材料。在Al7075中添加不同重量%的SiC(3%、6%和9%)和Al2O3(2%、4%和6%),制备杂化金属基复合材料。样品在不同温度(140ºC、160ºC和180ºC)下时效4小时,然后在炉温(27ºC)下冷却。采用L27正交试验研究了杂化金属基复合材料的可加工性。选择切削深度0.2 mm/min、进给速度0.1 mm/min、主轴转速1500 rpm三个工艺参数。结果表明:mmc的表面粗糙度和加工力随Al2O3/SiC质量分数的增加而增大,随时效温度的升高而减小;在2% Al2O3 + 3% SiC和180℃时效温度下,获得了最佳的加工力和表面粗糙度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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