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A Study on the Dynamics of Spatial Mechanisms With Frictional Spherical Clearance Joints

机译:摩擦球形间隙关节空间机制动态研究

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摘要

An investigation on the dynamic modeling and analysis of spatial mechanisms with spherical clearance joints including friction is presented. For this purpose, the ball and the socket, which compose a spherical joint, are modeled as two individual colliding components. The normal contact-impact forces that develop at the spherical clearance joint are determined by using a continuous force model. A continuous analysis approach is used here with a Hertzian-based contact force model, which includes a dissipative term representing the energy dissipation during the contact process. The pseudopenetration that occurs between the potential contact points of the ball and the socket surface, as well as the indentation rate play a crucial role in the evaluation of the normal contact forces. In addition, several different friction force models based on the Coulomb's law are revisited in this work. The friction models utilized here can accommodate the various friction regimens and phenomena that take place at the contact interface between the ball and the socket. Both the normal and tangential contact forces are evaluated and included into the systems' dynamics equation of motion, developed under the framework of multibody systems formulations. A spatial four-bar mechanism, which includes a spherical joint with clearance, is used as an application example to examine and quantify the effects of various friction force models, clearance sizes, and the friction coefficients.
机译:介绍了包括摩擦的球形间隙接头的动态建模和空间机制分析的研究。为此目的,球和组成球形接头的插座被建模为两个单独的碰撞组件。通过使用连续力模型确定在球形间隙接头处产生的正常接触抗冲击力。这里使用连续的分析方法,其利用赫兹氏型接触力模型,包括耗散术语,其表示在接触过程中的能量耗散。在球和插座表面的电位接触点之间发生的假序,以及压痕率在正常接触力的评估中起着至关重要的作用。此外,在这项工作中重新审视了基于库仑法律的几种不同的摩擦力模型。这里使用的摩擦模型可以容纳在球和插座之间的接触界面处发生的各种摩擦方案和现象。在多体体系制剂的框架下,在系统的框架中进行评估并纳入了正常和切向接触力并纳入动作的系统动态方程。包括具有间隙的球形关节的空间四个条机构用作应用示例,以检查和量化各种摩擦力模型,间隙尺寸和摩擦系数的效果。

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