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A study of tape spring fold curvature for space deployable structures

机译:空间可展开结构的带状弹簧折叠曲率研究

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摘要

Tape springs, defined as thin metallic strips with an initially curved cross-section, are an attractive structural solution and hinge mechanism for small satellite deployable structures because of their low mass, low cost, and general simplicity. They have previously been used to deploy booms and array panels in various configurations that incorporate a two-dimensional deployment of the tape. However, applications currently exist that incorporate three-dimensional tape springs folds. To accurately model the deployment of an appendage mounted with tape spring hinges, it is necessary to accurately model the opening moments produced from the material strains in the tape spring fold. These moments are primarily a function of curvature. This publication uses a photographic method to analyse the curvature assumptions of two-dimensional tape spring folds and to define the curvature trends for three-dimensional tape spring folds as a basis for calculating the opening moment. It is found that although a variation in the curvature can be seen for three-dimensional tape spring folds, its effect is secondary to the tape thickness tolerance. Therefore, constant curvature models are concluded to be accurate enough for general tape fold applications. © IMechE 2007.
机译:板簧被定义为具有初始弯曲横截面的薄金属条,由于其重量轻,成本低和总体简单,因此是一种适用于小型卫星可展开结构的有吸引力的结构解决方案和铰链机构。以前,它们已用于以各种配置来部署吊杆和阵列面板,这些配置结合了磁带的二维部署。然而,当前存在结合了三维带状弹簧折叠的应用。为了精确地模拟安装有带状弹簧铰链的附件的展开,必须精确地模拟由带状弹簧折痕中的材料应变产生的打开力矩。这些力矩主要是曲率的函数。该出版物使用照相方法来分析二维带状弹簧折叠的曲率假设,并定义三维带状弹簧折叠的曲率趋势,作为计算打开力矩的基础。已经发现,尽管对于三维带弹簧折叠部可以看到曲率的变化,但是其效果仅次于带厚度公差。因此,可以得出等曲率模型对于一般的胶带折叠应用足够精确。 ©IMechE 2007。

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    Walker, SJI; Aglietti, GS;

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