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An effective thread milling force prediction model considering instantaneous cutting thickness based on the cylindrical thread milling simplified to side milling process

机译:一种有效的螺纹铣削力预测模型,其考虑基于圆柱形铣削的瞬时切削厚度简化为侧研磨过程

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摘要

An effective thread milling force prediction model considering instantaneous cutting thickness is presented based on the cylindrical thread milling simplified to the side milling process. Firstly, based on the thread milling process simplified to side milling, an effective calculation model of instantaneous cutting thickness and a milling force model of single-layer cutter teeth are established considering the specific geometric profile of the cutting edge, chip groove angle, and tooth profile angle of the threaded milling cutter. Then, according to the time-domain difference of each layer of cutter teeth, a simplified thread milling force prediction model corresponding to the number of layers can be obtained. Finally, comparing the predicted values of the proposed model with the experimental results of cylindrical thread milling forces, the results show that the average prediction accuracy ofF(x),F-y, andF(z)are 90.75%, 83.56%, and 78.79%, respectively. The established simplified cylindrical thread milling force prediction model is accurate and reliable.
机译:基于侧铣过程简化的圆柱形螺纹铣削提出了考虑瞬时切割厚度的有效螺纹铣削力预测模型。首先,基于简化到侧研磨的螺纹铣削过程,考虑到切削刃,芯片槽角度和齿的特定几何轮廓建立了单层切割齿的瞬时切割厚度和铣削力模型的有效计算模型螺纹铣刀的轮廓角度。然后,根据每层切割器齿的时域差,可以获得对应于层数的简化螺纹铣削力预测模型。最后,将所提出的模型的预测值与圆柱形铣削力的实验结果进行比较,结果表明,平均预测精度OFF(X),FY,ANDF(Z)为90.75%,83.56%和78.79%,分别。建立的简化圆柱形铣削力预测模型是准确可靠的。

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