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A Study of Exit-Burr Formation Mechanism Using the Finite Element Method in Micro-Cutting of Aluminum Alloy

机译:利用铝合金微切机构的射线毛刺形成机制研究

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A burr formation process in micro-cutting of A17075-T7451 was analyzed. Three stages of burr formation including steady-state cutting stage, pivoting stage, and burr formation stage are investigated. And the effects of uncut chip thickness, cutting speed and tool edge radius on the burr formation are studied. The simulation results show that the generation of negative shear zone is one of the prime reasons for burr formation. Uncut chip thickness has a significant effect on burr height; however, the cutting speed effect is minor. Unlike in conventional cutting, in micro-cutting the effect of tool edge radius on the burr geometry can no longer be neglected.
机译:分析了A17075-T7451的微切切割的毛刺形成过程。研究了包括稳态切削级,枢转阶段和毛刺形成阶段的毛刺形成的三个阶段。研究了未剪下芯片厚度,切削速度和刀具边缘半径对毛刺形成的影响。仿真结果表明,负剪切区的产生是毛刺形成的主要原因之一。未切屑芯片厚度对毛刺高度有显着影响;但是,切割速度效应是次要的。与传统的切割不同,在微切过程中,在毛刺几何形状上的工具边缘半径的效果不再被忽略。

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