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Wave Analysis of Planar Deployable Structures with Revolute Clearance Joints Based on Spectral Element Method

机译:基于光谱元素法的旋转间隙接头平面展开结构的波浪分析

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摘要

Clearance is inevitable in the deployable mechanisms due primarily to the kinematic function requirements. This phenomenon affects the dynamic performances of deployed structures negatively. In this paper, the wave analysis of dynamic characteristics of planar structures with revolute clearance joints is developed by spectral element method. First, the spectral element model of revolute clearance joints is established. The radial and tangential springs and damping coefficients of revolute clearance joints are evaluated based on the contact model of elastic foundation. Then, the wave equations of two beams connected by a revolute clearance joint are derived, and extended to the case of multiple beams connected by revolute clearance joints. Finally, the dynamic response is analyzed for planar structures with single revolute clearance joint and multiple revolute clearance joints under the impact load. The wave propagation rules in planar structures with revolute clearance joints are revealed.
机译:可部署机制的许可在主要针对运动功能要求中是不可避免的。这种现象对展开结构的动态性能产生负面影响。本文通过光谱元件法开发了旋转间隙接头的平面结构动态特性的波分析。首先,建立旋转间隙关节的光谱元素模型。基于弹性基础的接触模型评估旋转和切向弹簧和阻尼系数。然后,推导出由旋转间隙接头连接的两个光束的波方程,并延伸到通过旋转间隙接头连接的多个光束的情况。最后,分析了具有单旋转间隙接头的平面结构和冲击载荷的多旋转间隙的动态响应。揭示了具有旋转间隙关节的平面结构的波传播规则。

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