Features of dynamic load analysis of spacecraft rotational drive mechanisms

A. S. Titova, A. S. Sablin, M. A. Zagainov, S. A. Kuznetsov
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引用次数: 0

Abstract

An executive precision universal mechatronic module is considered, which allows performing precision rotational motion of the output kinematic link. The universal mechatronic module is designed to create the kinematics of mechatronic guidance systems and positioning of objects of aerospace technology. The key features of the executive precision universal mechatronic module are high positioning accuracy, low weight and overall dimensions. The aim of the work is to create a finite element model and analyze dynamic loads to assess the resistance of the structure to external vibration loads. The first section describes the creation of a finite element model taking into account the radial and axial stiffness of the supporting structural elements. The second section describes performing static analysis to create a preloaded state, and performing dynamic analysis. The influence of sinusoidal and random vibrations is investigated, the natural frequencies of the universal mechatronic module design are determined.
航天器旋转驱动机构动载荷分析特点
考虑了一种执行精度通用机电模块,它可以实现输出运动杆的精确旋转运动。通用机电模块设计用于创建机电制导系统的运动学和航天技术的目标定位。执行精密通用机电模块的主要特点是定位精度高、重量轻、外形尺寸小。这项工作的目的是建立一个有限元模型,分析动力载荷,以评估结构对外部振动载荷的阻力。第一部分描述了考虑到支撑结构元素的径向和轴向刚度的有限元模型的创建。第二部分描述了执行静态分析以创建预加载状态,以及执行动态分析。研究了正弦振动和随机振动的影响,确定了通用机电模块设计的固有频率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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8 weeks
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