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An overview of several formulations for dry and lubricated revolute joint clearances in planar rigid-multi-body mechanical systems

机译:平面刚性多机械系统中的干燥和润滑旋转关节间隙的几种制剂概述

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The influence of the revolute joint model on the dynamic response of planar multibody mechanical systems is studied in this work. In the sequel of this process, under the framework of the multibody formalisms, a general methodology for modeling the main kinematic aspects of dry revolute joint clearances is revisited. The numerical models for normal and tangential contact forces developed at the clearance joints are also discussed, which are based on the Hertzian contact theory and dry Coulomb's friction law, respectively. The fundamental kinematic and dynamic issues of the modeling lubricated revolute joints are presented in this work in order to compare them with the dry revolute joint approach. In a simple manner, the lubrication forces are obtained by integrating the pressure distribution evaluated with the aid of Reynolds' equation corresponding to the dynamic regime. The intra-joint forces developed for both dry and lubricated cases are evaluated based on the state of variable of the system and subsequently included into the dynamic equations of motion of the multibody system as external generalized forces. The main assumptions and procedures adopted throughout this work are demonstrated through simulations of a planar slider-crank mechanism, which includes dry and lubricated revolute joint with clearance. Finally, some experimental data is also presented and analyzed.
机译:在平面多体机械系统的动态响应转动关节模型的影响在​​此工作进行了研究。在这个过程中的续集,多体形式主义的框架下,对建模干旋转关节间隙的主要运动方面的一般方法是重新审查。数值模型在关节间隙开发进行了探讨正常和切向接触力,这是基于赫兹接触理论和干库仑摩擦定律,分别。该模型的基本运动学和动力学问题润滑转动关节在这项工作中提出,以便将它们与干回转接头的方式进行比较。以简单的方式,润滑力通过积分与对应于动态政权雷诺方程的辅助评估的压力分布而获得。帧内关节力开发了用于干燥和润滑例是基于系统的变量的状态进行评价,并随后包括在多体系统作为外部广义力的运动的动力学方程。的主要假设和贯穿本工作所采用的程序通过一个平面的曲柄滑块机构,其包括干燥和润滑的旋转接头有间隙的模拟演示。最后,一些实验数据也被提出和分析。

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