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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >A method for the prediction of cutting force for 5-axis ball-end milling of workpieces with curved surfaces
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A method for the prediction of cutting force for 5-axis ball-end milling of workpieces with curved surfaces

机译:一种用于预测弯曲表面的5轴球端铣削工件的切割力的方法

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摘要

In existing researches, only the milling tests in the state of single-tooth engagement can be used to identify cutting force coefficients. So, when the average cutting force–based calibration is performed for a 4-fluted cutter, several slots must be machined and the cutting parameters must be properly selected to ensure single-tooth engagement. To reduce the consumed time of calibration tests, we present the new identification expressions of the cutting force coefficient for the 4-fluted ball-end mill based on the average cutting force obtained by the slotting tests with double-tooth engagement. Meanwhile, a three-orthogonal dexel–based model is presented to calculate the cutter-workpiece engagement. Also, the researches show that cutting element position and spindle speed have significant effects on cutting force coefficients; however, there is no research that has built a fitting model of cutting force coefficients simultaneously related to this two factors. To accurately predict cutting forces for different cutting conditions, the influences of these two factors on cutting force coefficients are studied. Then, a fitting model of the cutting force coefficient related to this two factors is presented. After, to verify the accuracy of the proposed method, milling tests are performed on both the rectangular workpiece and curved surface. The results show that the proposed model can predict the cutting force for different cutting parameters with the relative error less than 15%.
机译:在现有研究中,只有在单齿啮合状态下的铣削测试可用于识别切割力系数。因此,当对4个凹槽切割器进行平均切割力的校准时,必须加工几个槽,并且必须正确选择切割参数以确保单齿啮合。为了减少校准测试的消耗时间,我们基于通过具有双齿啮合的插槽试验获得的平均切割力,介绍了4个凹槽球终铣刀的新识别表达式。同时,提出了一种三个正交的德塞尔的模型来计算切割工件啮合。此外,研究表明,切割元件位置和主轴速度对切割力系数具有显着影响;然而,没有关于与这两个因素相关的切割力系数的拟合模型。为了准确地预测不同切割条件的切割力,研究了这两个因素对切割力系数的影响。然后,提出了与这两个因素相关的切割力系数的拟合模型。之后,为了验证所提出的方法的准确性,在矩形工件和弯曲表面上进行铣削测试。结果表明,该模型可以预测不同切削参数的切削力,相对误差小于15%。

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