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Simulation and experimental studies to verify the effect of cutting parameters on chip shrinkage coefficient and cutting forces in machining of A6061 aluminum alloy:

机译:仿真和实验研究,以验证切削参数对A6061铝合金加工中切屑收缩系数和切削力的影响:

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This article predicts the relationship between chip shrinkage coefficient and cutting parameters such as cutting speed and uncut chip thickness in a cutting process of A6061 aluminum alloy. To this end, shrinkage coefficient–based finite element method was first estimated using the Johnson–Cook (J-C) and Bao–Wierzbicki (B-W) material fracture models. After that, experimental measurements of the chip shrinkage coefficients were performed at the same cutting conditions to compare with simulation data and confirm the accuracy of material damage models. By a simultaneous evaluation of the effects of cutting parameters on the chip shrinkage coefficient, the B-W model was found to match well with the experiment. So that, the B-W model was then utilized to verify the effect of various cutting speeds and uncut chip thicknesses on the chip shrinkage coefficient and cutting force. Finally, using the least square method, the relationship between chip shrinkage coefficient and cutting force was obtained. The above-me...
机译:本文预测了A6061铝合金切削过程中切屑收缩系数与切削参数之间的关系,例如切削速度和未切削切屑厚度。为此,首先使用Johnson-Cook(J-C)和Bao-Wierzbicki(B-W)材料断裂模型估算了基于收缩系数的有限元方法。之后,在相同的切削条件下进行切屑收缩系数的实验测量,以与模拟数据进行比较,并确定材料损伤模型的准确性。通过同时评估切削参数对切屑收缩系数的影响,发现B-W模型与实验非常吻合。因此,B-W模型随后用于验证各种切削速度和未切削切屑厚度对切屑收缩系数和切削力的影响。最后,采用最小二乘法,得到切屑收缩系数与切削力之间的关系。上面我...

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