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首页> 外文期刊>Journal of Materials Processing Technology >Prediction of shear angle for continuous orthogonal cutting using thermo-mechanical constants of work material and cutting conditions
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Prediction of shear angle for continuous orthogonal cutting using thermo-mechanical constants of work material and cutting conditions

机译:利用工作材料的热机械常数和切削条件预测连续正交切削的剪切角

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摘要

Shear angle is one of the most important parameters in machining. Despite numerous studies devoted to the problem of its theoretical determination, there is no completely analytical way which allows the prediction of this angle using only standard properties the work material and the given cutting conditions, and without any particular coefficients obtained from cutting tests. This study presents a new equation for the determination of the shear angle for continuous cutting assuming the curvilinear form of the shear line. The equation is derived using the experimental data of previous researchers and the theory of plasticity. Experimental verification of the suggested equation for steel and aluminum alloy shows its acceptability for prediction of shear angle in orthogonal continuous cutting.
机译:剪切角是加工中最重要的参数之一。尽管进行了大量关于其理论确定性问题的研究,但没有完全允许使用标准属性,工作材料和给定的切削条件来预测该角度,而没有从切削试验中获得任何特定系数的完全分析方法。这项研究提出了一个新的方程,用于确定连续剪切的剪切角,假定剪切线为曲线形式。该方程式是使用先前研究人员的实验数据和可塑性理论得出的。对建议的钢和铝合金方程进行的实验验证表明,该方程可预测正交连续切削中的剪切角。

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