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Analysis of the cutting mechanics under the influence of worn tool geometry

机译:磨损工具几何影响下切割力学分析

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摘要

In machining, wear formation changes the effective geometry of the cutting edge which directly influences the mechanics of cutting. Analysis of the cutting mechanics and determination of the corresponding machining performance with a worn edge is of significant importance in terms of tool design, surface integrity, and process optimization. In the present study the effective geometry of the cutting edge was analyzed prior to cut by employing the circular regression method. Experimental cutting tests were performed and the effect of cutting time on the wear progression was investigated at several time intervals. The worn edge geometries were used to build the Arbitrary Lagrangian-Eulerian finite element cutting models in ABAQUS/Explicit. The models were validated by comparing the simulation results with the experimental findings of machining forces and chip thicknesses. The validated models were then employed to investigate the effect of wear geometry on the contact stresses, plastic deformation, and temperature distributions in the cutting zone.
机译:在加工时,磨损形成改变了切割边缘的有效几何形状,直接影响切割机制。在工具设计,表面完整性和工艺优化方面,切削力学和相应加工性能的切割力学分析和相应加工性能的测定具有重要意义。在本研究中,通过采用循环回归方法在切割之前分析切削刃的有效几何形状。进行实验切割测试,并以几次间隔研究了削减时间对磨损进展的影响。磨损的边缘几何形状用于在阿巴斯/明确地建造任意拉格朗日 - 欧拉有限元切割模型。通过将模拟结果与加工力和芯片厚度的实验结果进行比较,通过比较模拟结果来验证模型。然后采用经过验证的模型来研究磨损几何形状对切割区的接触应力,塑性变形和温度分布的影响。

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