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Nonlinear buckling and folding analysis of a storable tubular ultrathin boom for nanosatellites

机译:可存储管状纳米超薄臂的非线性屈曲和折叠分析

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摘要

In this work we investigated the stability behavior and the folding capability of an ultrathin tubular composite boom with C-cross section to be used in nanosatellites applications. A nonlinear buckling analysis was performed using the Riks method, adopting a perturbed finite element model to study the influence of the unavoidable geometrical variations of the boom thickness, arising from the composite manufacturing processes, on the stability behavior of the tubular structure. The effect of several levels of geometrical imperfection on the buckling behavior was analyzed. The minimum coil radius that can be used for a safe storage the boom was determined by quasi-static explicit analysis. The boom folding process was considered as formed by two sequential steps, the flattening and the coiling. The stress fields associated with both steps were investigated. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在这项工作中,我们研究了用于纳米卫星应用的具有C形横截面的超薄管状复合材料吊杆的稳定性和折叠能力。使用Riks方法进行非线性屈曲分析,采用扰动有限元模型来研究由于复合材料制造过程而引起的动臂厚度不可避免的几何变化对管状结构稳定性行为的影响。分析了几个级别的几何缺陷对屈曲行为的影响。通过准静态显式分析确定了可用于安全存储动臂的最小线圈半径。动臂折叠过程被认为是由两个连续的步骤形成的,即压扁和卷取。研究了与两个步骤相关的应力场。 (C)2015 Elsevier Ltd.保留所有权利。

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