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Modeling the Hinge Moment of Skew-Mounted Tape Spring Folds

机译:模拟倾斜安装的带弹簧折叠的铰链力矩

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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 due to their low mass, low cost, and general simplicity. When mounted at skewed angles to the hinge line, the tapes can be subjected to complex folds involving both bending and twisting of the tape. These folds have been experimentally investigated and theories have been developed to model the resulting opening moment. However, the opening moments of these theories are not equivalent to the opening moment about the hinge line, which is the parameter required in satellite deployment applications. This paper derives a method to determine the hinge moment from the previous theories and compares the theoretical predictions with experimental and finite element results. It uses this model to investigate the predicted hinge moment trends for full deployments of 180°. The model is then applied to a practical spacecraft hinge application. © 2007 ASCE.
机译:带弹簧,定义为薄金属条带的初始弯曲的横截面,是一个有吸引力的结构设计方案,铰链机构,用于小卫星展开结构由于它们的低质量,低成本,和一般的简单性。当被安装在倾斜角度的铰接线,磁带可以进行包括弯曲和磁带的扭转复杂的折叠。这些褶皱已经实验研究和理论已经发展到所产生的开启力矩建模。然而,这些理论的开幕时刻并不等同于绕铰链线,这是卫星的部署应用程序所需的参数开放的时刻。这个推导的方法,以确定从以前的理论的铰链力矩,并与实验和有限元结果的理论预测相比较。它使用这个模型来研究预测的铰链力矩趋势的180°全部署。然后将模型应用于实际的航天器的铰链应用。 ©2007 ASCE。

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