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Modeling and Simulating of Spiral Bevel Gears Based on Actual Cutting Process

机译:基于实际切削过程的弧齿锥齿轮建模与仿真

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A new approach for modeling and simulating of spiral bevel gears is proposed. Based on generating method, the actual cutting and adjusting process of Gleason spiral bevel gears was simulated. The intersections of tool tracing lines caused by every two adjacent edges in the cutting process were used as points on the tooth flank. Thus a mathematical model of spiral bevel gears was developed. Machine-tool settings and machine constants were calculated and adjusted by implementing the above model in a Visual Basic code. Tooth profile was reconstructed by using the flank points obtained from the program and three-dimensional solid models for spiral bevel gears were established. Then dynamic interference detection was carried out by using the computer software Pro/E. Based on the interference detection results, machining-tool settings can be adjusted until satisfying gear pair is acquired. The developed approach is illustrated by an example.
机译:提出了一种螺旋锥齿轮建模与仿真的新方法。基于生成方法,对格里森螺旋锥齿轮的实际切削和调整过程进行了仿真。切削过程中每两个相邻边沿引起的刀具跟踪线的交点被用作齿侧面上的点。因此,开发了螺旋锥齿轮的数学模型。通过在Visual Basic代码中实现上述模型,可以计算和调整机床设置和机床常数。利用从程序中获得的齿侧面点重建齿廓,并建立了螺旋锥齿轮的三维实体模型。然后使用计算机软件Pro / E进行动态干扰检测。基于干涉检测结果,可以调整机床设置,直到获得满意的齿轮对。举例说明了所开发的方法。

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