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Two-step transfer function calculation method and asymmetrical piecewise-linear vibration isolator under gravity

机译:重力作用下的两步传递函数计算方法和不对称分段线性隔振器

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摘要

Piecewise-linear isolators are widely used in spacecraft for satisfying ever more stringent vibration requirements of high precision payloads. This paper focuses on ground tests of such isolators, with special consideration of gravitational asymmetry and mount flexibility. With asymmetrical equivalent isolator parameters derived with the extended equivalent linearization method, a two-step transfer function calculation method is proposed for enhancing the computation efficiency in dealing with studies where huge amount of computations are required, such as design parameter studies. The asymmetrical effect due to the gravity is presented by the movement of dynamic equilibrium positions as well as the softening and hardening characteristics of frequency responses. The effects and differences of the rigid mount and flexible mount, which respectively correspond to the shake table test and the whole spacecraft structure ground test, are studied with various design parameters. Numerical results show that the preload is an important factor in determining such effects and differences.
机译:分段线性隔离器广泛用于航天器中,以满足对高精度有效载荷越来越严格的振动要求。本文着重于此类隔离器的地面测试,并特别考虑了重力非对称性和安装灵活性。利用扩展等效线性化方法导出的非对称等效隔离器参数,提出了一种两步传递函数计算方法,以提高处理需要大量计算的研究(例如设计参数研究)时的计算效率。动态平衡位置的移动以及频率响应的软化和硬化特性显示了重力引起的不对称效应。用各种设计参数研究了分别与振动台试验和整个航天器结构地面试验相对应的刚性安装座和柔性安装座的作用和区别。数值结果表明,预紧力是确定这种影响和差异的重要因素。

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