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Analysis of chip formation mechanism in machining of Al/SiCp metal matrix composites

机译:Al / SiCp金属基复合材料加工中切屑形成机理的分析

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Al/SiCp composites are known to cause a significant wear of cutting tools. But, with the use of PCD/CBN tools, machining can be continued over longer time duration. Nevertheless, the problem associated with the quality of machined surfaces such as pit marks and particle pull-out still persists. The quality of surface generated during machining can be easily related to the types of chips formed during machining of Al/SiCp composites as a function of processing conditions and composition of constituents in composites. It is observed from the Taguchi method-based experimentation using L{sub}27 (3{sup}13) orthogonal array, that in machining of coarser reinforcement composites complete gross fracture takes place causing smaller segments of chips and higher shear plane angle. However, in finer reinforcement composites, secondary crack formation is evident at inner surfaces of the chips formed. Conceptual models illustrating these effects have been arrived at.
机译:已知Al / SiCp复合材料会导致切削工具严重磨损。但是,通过使用PCD / CBN工具,可以在更长的时间内继续加工。然而,与加工表面的质量相关的问题如凹坑痕迹和颗粒拉出仍然存在。机加工过程中产生的表面质量可以很容易地与机加工Al / SiCp复合材料时形成的切屑的类型相关,这取决于加工条件和复合材料中成分的组成。从基于Taguchi方法的实验,使用L {sub} 27(3 {sup} 13)正交阵列观察到,在加工较粗的增强复合材料时,会发生完全的总断裂,从而导致切屑段变小和剪切平面角变大。然而,在较细的增强复合物中,在所形成的切屑的内表面处明显形成二次裂纹。已经建立了说明这些影响的概念模型。

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