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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Application of Computational Machining Method to Discontinuous Chip Formation
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Application of Computational Machining Method to Discontinuous Chip Formation

机译:计算加工方法在不连续切屑形成中的应用

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摘要

A finite element modeling is developed to simulate and visualize the discontinuous chip formation in the orthogonal cutting of 60 percent Cu-40 percent Zn brasses. A ductile fracture criterion expressed as a function of strain, strain rate and hydrostatic pressure is applied to the crack growth from the tool tip to the chip free surface in the segmentation of discontinuous chips. Chip shape and the inclination of fracture surface produced in computational machining are in good agreement with those in actual machining. The visualization of the computational machining processes clarifies the mechanism of discontinuous chip formation. The influences of chip segmentation upon the residual stress and strain in the machined layer are also clarified quantitatively.
机译:开发了有限元建模,以模拟和可视化在60%Cu-40%Zn黄铜的正交切削中的不连续切屑形成。表示为应变,应变率和静水压力的函数的韧性断裂准则适用于在不连续切屑的分段中从工具尖端到无切屑表面的裂纹扩展。计算加工中产生的切屑形状和断裂面的倾斜度与实际加工中的相吻合。计算加工过程的可视化阐明了不连续切屑形成的机理。还定量地阐明了切屑分段对加工层中残余应力和应变的影响。

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