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Digitization modeling and CNC machining for cone-generated double-enveloping worm drive

机译:锥形双包络蠕虫驱动的数字化建模与CNC加工

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摘要

Digitization modeling and CNC machining method of cone-generated double-enveloping worm drive are proposed in this study. The modeling coordinate frame is developed, and coordinate transformation matrices are also built for different coordinate systems. Next, the common normal vectors and relative velocity vectors of the conical cutter and worm and worm and worm wheel are derived by using differential geometry, kinematic analysis, and coordinate transformation method; then, the mathematical models of the worm drive are established applying spatial meshing principle. In addition, the solving algorithms for the complex multivariate nonlinear constrained mathematical models of the worm drive are developed according to the worm drive's surface-generating characteristic; then, the meshing point cloud that represents the tooth profile of the worm drive are calculated based on the developed algorithms; finally, the digital CAD models of the worm drive could be constructed on the basis of the point cloud in the modeling software system. The CNC machining code is generated based on the accurate digital CAD models, and the surfaces of the worm drive could be machined in the CNC machining center. The modeling and machining experiment results demonstrate the validity and accuracy of the proposed modeling and CNC machining method for cone-generated double-enveloping worm drive.
机译:本研究提出了锥形双包络蜗杆驱动器的数字化建模和CNC加工方法。开发建模坐标帧,并且还构建了不同坐标系的坐标变换矩阵。接下来,通过使用差分几何,运动分析和坐标变换方法来源锥形切割器和蜗杆和蜗杆和蜗轮的公共正常载体和相对速度矢量;然后,建立蜗杆驱动器的数学模型,其应用空间啮合原理。另外,根据蜗杆驱动的表面产生特性开发了蜗杆驱动器复杂多变量非线性约束数学模型的求解算法;然后,基于所发达的算法计算表示蜗杆驱动器的牙齿轮廓的啮合点云;最后,蠕虫驱动器的数字CAD模型可以根据建模软件系统中的点云构建。基于精确的数字CAD模型产生CNC加工代码,并且可以在CNC加工中心中加工蜗杆驱动器的表面。建模和加工实验结果表明了锥形双包络蜗杆驱动的所提出的建模和CNC加工方法的有效性和准确性。

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