首页> 外文期刊>Mechanism and Machine Theory: Dynamics of Machine Systems Gears and Power Trandmissions Robots and Manipulator Systems Computer-Aided Design Methods >Dynamic modelling and contact analysis of bearing-cycloid-pinwheel transmission mechanisms used in joint rotate vector reducers
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Dynamic modelling and contact analysis of bearing-cycloid-pinwheel transmission mechanisms used in joint rotate vector reducers

机译:关节旋转矢量减速器中轴承轴承载有线电车传动机构的动态建模及接触分析

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摘要

A generalised dynamic model is proposed for the bearing-cycloid-pinwheel transmission mechanisms (BCPTMs) that are used in robot joint rotate vector (RV) reducers. The model can be used to investigate the effect of changing the geometrical design parameters of the tooth profile of the cycloidal gear and turn-arm bearings on the dynamic contact response and internal-load transmission characteristics of the BCPTM. Contact analyses are conducted for the meshing of the multi-tooth cycloid-pinwheel transmission system and the multiple contact points of the turn-arm bearings. This allows us to judge the contact positions, calculate the contact loads, update the generalised force acting on the system and reassemble the dynamic equation for the system. To investigate the effectiveness of the model, a typical BCPTM composed of two cycloidal gears, three crankshafts and six turn-arm needle roller bearings is analysed. On this basis, the internal load-transmission characteristics and dynamic contact response of the transmission mechanism are elucidated considering the clearance of the cycloidal gear pairs and the radial clearance in the bearings. The research reported provides a sound theoretical basis for the analysis of the carrying capacity of RV reducers used in industrial robots. (c) 2019 Elsevier Ltd. All rights reserved.
机译:用于机器人关节旋转载体(RV)减速器中使用的轴承 - 摆线车传输机构(BCPTMS)提出了广义的动态模型。该模型可用于研究改变摆线齿轮和转动臂轴承的齿廓的几何设计参数对BCPTM的动态接触响应和内部负载传输特性的影响。对啮合臂轴承的多齿环型轮轮传输系统和多个接触点进行啮合进行接触分析。这使我们能够判断接触位置,计算接触载荷,更新作用在系统上的广义力并重新组装系统的动态方程。为了研究模型的有效性,分析了由两个摆线齿轮,三个曲轴和六个转动滚针轴承组成的典型BCPTM。在此基础上,考虑到轴承中的径向间隙,阐明了传动机构的内部载荷传动特性和动态接触响应。该研究报告为分析工业机器人使用的RV减速剂的承载能力提供了声音理论依据。 (c)2019年elestvier有限公司保留所有权利。

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