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Rotational stiffness of drum deployed thin-walled open tubular booms

机译:滚筒旋转刚度展开薄壁开放管臂

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摘要

Tape springs are a type of thin-walled deployable boom that are used extensively in the space industry to deploy sensors, drag sails and antennas. When a tape spring is stowed it coils into a cylindrical shape and so deployment drums are manufactured as cylinders to match. The consequence of this is that when the tape spring is deployed a portion of the cross section remains flat against the cylindrical drum. This has the effect of reducing the stiffness of the tape spring. In this paper a Finite Element (FE) model is presented to capture this reduction. An experimental method for validating the FE model is also presented on which Beryullium-Copper (BeCu) and glass fibre polypropylene (PP) composite tape springs were tested. The FE model is able to predict the rotational stiffness of the BeCu tape springs more accurately than the composite tape springs. The disagreement in the case of the composite tape springs is attributed to inaccuracies in the available data for the mechanical properties, and the assumption that the tape spring does not compress through the thickness. Increasing the drum length has been shown to decrease the rotational stiffness due to increased flattening at the root. BeCu tape springs show an increase of 82% in the rotational stiffness when the flattened drum region reduces from 90% to 30% of the tape springs' width. Glass fibre PP tape springs with a layup of [+/- 34 degrees f/0 degrees/+/- 34 degrees f] show an increase of 65% when the drum length percentage reduces from 82% to 27%. A parametric study showed that the rotational stiffness can be significantly improved with the introduction of local root reinforcing plies.
机译:胶带弹簧是一种薄壁可展开的吊杆,在空间行业中广泛使用,以部署传感器,拖曳帆和天线。当将带子弹簧收起时,将线圈分配到圆柱形状,因此展开鼓制造为圆柱体以匹配。其结果是,当展开带弹簧的横截面的一部分时,横截面保持平坦滚筒。这具有减少胶带弹簧刚度的效果。在本文中,提出了有限元(FE)模型以捕获这种减少。还介绍了用于验证Fe模型的实验方法,并测试了铍铜(BEC)和玻璃纤维聚丙烯(PP)复合带弹簧。 Fe模型能够比复合胶带弹簧更精确地预测所得型胶带弹簧的旋转刚度。在复合带弹簧的情况下的分歧归因于机械性能的可用数据中的不准确性,并且假设带弹簧不压缩厚度。由于根部的扁平增加,已经示出了增加鼓长度以降低旋转刚度。当扁平滚筒区域从带弹簧宽度的90%降低,Becu磁带弹簧在旋转刚度增加82%。玻璃纤维PP胶带弹簧具有[+/- 34°F / 0度/ + / - 34度F]的玻璃板,当滚筒长度百分比降低82%至27%时,增加了65%。随着局部根加强层的引入,参数研究表明,可以显着改善旋转刚度。

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