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COMPUTATIONAL AND EXPERIMENTAL ANALYSIS OF MECHANICAL SYSTEMS WITH REVOLUTE CLEARANCE JOINTS

机译:具有旋转间隙接头的机械系统的计算和实验分析

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The main objective of this work is to present a computational and experimental study on the contact forces developed in revolute clearance joints. For this purpose, a well-known slider-crank mechanism with a revolute clearance joint between the connecting rod and slider is utilized. The intra-joint contact forces that generated at this clearance joints are computed by considered several different elastic and dissipative approaches, namely those based on the Hertz contact theory and the ESDU tribology-based for cylindrical contacts, along with a hysteresis-type dissipative damping. The normal contact force is augmented with the dry Coulomb's friction force. An experimental apparatus is use to obtained some experimental data in order to verify and validate the computational models. From the outcomes reported in this paper, it is concluded that the selection of the appropriate contact force model with proper dissipative damping plays a significant role in the dynamic response of mechanical systems involving contact events at low or moderate impact velocities.
机译:这项工作的主要目的是对旋转间隙接头产生的接触力进行计算和实验研究。为此,使用了在连杆和滑块之间具有旋转间隙接头的众所周知的滑块-曲柄机构。通过考虑几种不同的弹性和耗散方法,即基于赫兹接触理论和圆柱形圆柱接触的ESDU摩擦学的方法,可以计算出在这种间隙连接处产生的关节内接触力,以及磁滞型耗散阻尼。法向接触力随干库仑摩擦力而增加。实验设备用于获得一些实验数据,以验证和验证计算模型。从本文报道的结果可以得出结论,选择具有适当耗散阻尼的适当接触力模型在涉及低速或中等冲击速度的接触事件的机械系统的动态响应中起着重要作用。

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