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Modelling the effect of electrical harness on microvibration response of structures

机译:建模线束对结构微振动响应的影响

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摘要

The term "microvibrations" generally refers to accelerations in the region of micro-g, occurring over a wide frequency range, up to say 500-1000 Hz. The main issues related to microvibrations are their control and minimisation, which requires their modelling and analysis. A particular challenge is posed in the mid-frequency range, where many of the micro-vibration sources on board a spacecraft tend to act. In this case, in addition to the typical issues related to predicting responses in the mid-frequency, the low amplitude of the inputs can produce further non-linear behaviour which can manifest as uncertainties. A typical example is the behaviour of cables secured onto panels; when very low forces are applied, the presence of harness can influence the characteristics of the panel in terms of stiffness and damping values. In these circumstances, the cables themselves couple with the panel, hence become paths for vibration transmission. The common practise is to model such cables as Non-Structural Mass; however, this paper illustrates that this method does not yield accurate results. In order to demonstrate this, an experimental campaign was conducted investigating a honeycomb panel, which was tested bare and with different configurations of harness secured to it. The results of this experimental campaign showed significantly different behaviour of the structure depending on the amplitude of the loads and the frequency. In particular, it was found that the effects the addition of the cables had on the panel were different depending on the frequency range considered. Based on this observation, a general methodology to deal with the whole frequency range is presented here and the basis to extend it to the case of more complex structures is also proposed. (C) 2015 IAA. Published by Elsevier Ltd. All rights reserved.
机译:术语“微振动”通常是指在微克范围内的加速度,该加速度发生在高达500-1000 Hz的宽频率范围内。与微振动有关的主要问题是控制和最小化,这需要对其进行建模和分析。一个特殊的挑战是在中频范围内,航天器上的许多微振动源往往会起作用。在这种情况下,除了与预测中频响应有关的典型问题外,输入的低幅度还会产生进一步的非线性行为,这可能表现为不确定性。一个典型的例子是电缆固定在面板上的行为。当施加很小的力时,线束的存在会影响面板的刚度和阻尼值。在这些情况下,电缆本身与面板耦合,因此成为振动传递的路径。通常的做法是对诸如非结构质量的电缆进行建模。但是,本文说明此方法不能产生准确的结果。为了证明这一点,开展了一项实验活动,调查了蜂窝板,该蜂窝板经过裸露测试,并固定有不同配置的线束。该实验活动的结果表明,取决于载荷的振幅和频率,该结构的行为明显不同。特别是,发现电缆的增加对面板的影响根据所考虑的频率范围而不同。在此基础上,提出了一种处理整个频率范围的通用方法,并提出了将其扩展到更复杂结构的基础。 (C)2015年IAA。由Elsevier Ltd.出版。保留所有权利。

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