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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >An explicit finite element model to study the influence of rake angle and friction during orthogonal metal cutting
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An explicit finite element model to study the influence of rake angle and friction during orthogonal metal cutting

机译:用于研究前角和摩擦在正交金属切削中的影响的显式有限元模型

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摘要

A fundamental understanding of the tribology aspects of machining processes is essential for increasing the dimensional accuracy and surface integrity of finished products. To this end, the present investigation simulates an orthogonal metal cutting using an explicit finite element code, LS-DYNA. In the simulations, a rigid cutting tool of variable rake angle was moved at different velocities against an aluminum workpiece. A damage material model was utilized for the workpiece to capture the chip separation behavior and the simultaneous breakage of the chip into multiple fragments. The friction factor at the cutting tool-workpiece interface was varied through a contact model to predict cutting forces and dynamic chip formation. Overall, the results showed that the explicit finite element is a powerful tool for simulating metal cutting and discontinuous chip formation. The separation of the chip from the workpiece was accurately predicted. Numerical results found that rake angle and friction factor have a significantly influence on the discontinuous chip formation process, chip morphology, chip size, and cutting forces when compared to the cutting velocity during metal cutting. The model was validated against the experimental and numerical results obtained in the literature, and a good agreement with the current numerical results was found.
机译:对加工过程的摩擦学方面有基本的了解对于提高成品的尺寸精度和表面完整性至关重要。为此,本研究使用显式有限元代码LS-DYNA模拟正交金属切削。在模拟中,前角可变的刚性切削刀具以不同的速度移向铝制工件。损坏材料模型用于工件,以捕获切屑分离行为以及同时将切屑破碎成多个碎片。通过接触模型来改变切削工具与工件界面的摩擦系数,以预测切削力和动态切屑形成。总体而言,结果表明,显式有限元是模拟金属切削和不连续切屑形成的强大工具。可以准确地预测切屑与工件的分离情况。数值结果表明,与金属切削过程中的切削速度相比,前角和摩擦系数对不连续切屑形成过程,切屑形态,切屑尺寸和切削力具有显着影响。该模型已针对文献中获得的实验和数值结果进行了验证,并且与当前的数值结果具有很好的一致性。

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