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An application of geodesics to the calculation of the rib-thickness of globoidal cam mechanisms

机译:测地线在球面凸轮机构肋厚计算中的应用

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摘要

A systematic approach based on the geodesics in differential geometry for calculating the rib-thickness of the globoidal cam is proposed. In the proposed approach, the analytical description of the rib-thickness is derived and calculated using coordinate transformation, conjugate theory and differential geometry. In addition, the mathematical expressions for the contact curves of the conjugate surfaces, intersection curves of the ribbed surfaces with the torus, and the geodesics of the torus surface are conveniently derived. Then these curves and the ribbed surfaces are all simulated with the help of Creo Software after the calculation results are obtained using VC programming. By comparing the rib-thickness with respect to three motion curves, we find that the peak value of the velocity curve has great effects on the rib-thickness. A globoidal cam used in an automatic tool changer of CNC machines is used as an example to validate the proposed methodology. The results of this research are necessary for both the selection of motion curves, and the investigations of the rigidity and the strength of the globoidal cam mechanisms. (C) 2015 Elsevier Ltd. All rights reserved.
机译:提出了一种基于微分几何中测地线的系统方法来计算球面凸轮的肋厚。在提出的方法中,使用坐标变换,共轭理论和微分几何导出并计算了肋骨厚度的解析描述。此外,可以方便地推导出共轭表面的接触曲线,带肋表面与圆环的相交曲线以及圆环表面的测地线的数学表达式。然后,在使用VC编程获得计算结果之后,借助Creo Software可以模拟这些曲线和肋状表面。通过比较三个运动曲线的肋骨厚度,我们发现速度曲线的峰值对肋骨厚度有很大的影响。以数控机床的自动换刀器中使用的球面凸轮为例来验证所提出的方法。该研究结果对于运动曲线的选择以及球面凸轮机构的刚度和强度的研究都是必要的。 (C)2015 Elsevier Ltd.保留所有权利。

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