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Optimization of cutting/tool parameters for dry high-speed spiral bevel and hypoid gear cutting with cutting simulation experiment

机译:干式高速螺旋斜面切割/刀具参数的优化,用切割仿真实验

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Tool life and the rationality of cutting parameter setting are evaluated directly by cutting force. In order to predict cutting force, and then to optimize the tooth cutting condition for dry high-speed spiral bevel and hypoid gear cutting, this study has established a 2D cutting FEM simulation platform by using DEFORM-2D based on the 2D orthogonal slot milling experiment. Through the platform, using the method of combining single-factor experiment and multi-factor orthogonal experiment, this study has explored the influence of cutting/tool parameters on cutting force in the dry high-speed cutting process of 20CrMnTi spiral bevel and hypoid gear (face hobbing dry cutting process). The results show that from high degree to low degree, the influence of each parameter on cutting force is as follows: feed > cutting speed > relief angle(P.A.side) >blade rake angle, and the influence of the first three parameters is significant, the influence of blade rake angle is not significant; the optimized condition for dry high-speed spiral bevel and hypoid gear cutting is suggested to be: the cutting speed is 300 m/mim, the feed is 0.06 mm/r, the blade rake angle is 14° and the relief angle(P.A.side) is 10°; the cutting edge can be honed moderately, but the hone radius is not bigger than 0.1 mm.
机译:刀具寿命和切削参数设置的合理性直接由切削力评估。为了预测切削力,然后以优化干高速螺旋锥齿轮和准双曲面齿轮切削齿的切削条件,这项研究已通过使用基于2D正交铣槽实验DEFORM-2D建立了2D切削FEM仿真平台。通过该平台,使用结合单因素实验和多因素正交试验的方法中,此研究已探索在20CrMnTi钢螺旋锥齿轮和准双曲面齿轮的干高速切削加工切削力(切割/工具参数的影响面滚干式切削工序)。结果表明,从高度低的程度,在切削力的每个参数的影响,如下所示:进料>切削速度>后角(PAside)>刀片前角,以及前三个参数的影响显著,刀片前角的影响并不显著;干高速螺旋锥齿轮和准双曲面齿轮切削的最佳条件被建议是:切削速度是300米/ MIM,进料为0.06毫米/ R,刀片前角是14°,后角(PAside )为10°;切削刃可以适度磨练,但骨半径不大于0.1毫米的。

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