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首页> 外文期刊>Journal of Spacecraft and Rockets >Quasi-Static Folding and Deployment of Ultrathin Composite Tape-Spring Hinges
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Quasi-Static Folding and Deployment of Ultrathin Composite Tape-Spring Hinges

机译:超薄复合带弹簧铰链的准静态折叠和展开

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摘要

Deploy able structures made from ultrathin composite materials can be folded elastically and are able to self-deploy by releasing the stored strain energy. This paper presents a detailed study of the folding and deployment of a tape-spring hinge made from a two-ply plain-weave laminate of carbon-fiber reinforced plastic. A particular version of this hinge was constructed, and its moment-rotation profile during quasi-static deployment was measured. The present study is the first to incorporate in the simulation an experimentally validated elastic micromechanical model and to provide quantitative comparisons between the simulations and the measured behavior of an actual hinge. Folding and deployment simulations of the tape-spring hinge were carried out with the commercial finite element package Abaqus/Explicit, starting from the as-built unstrained structure. The folding simulation includes the effects of pinching the hinge in the middle to reduce the peak moment required to fold it. The deployment simulation fully captures both the steady-state moment part of the deployment and the final snap back to the deployed configuration. An alternative simulation without pinching the hinge provides an estimate of the maximum moment that could be carried by the hinge during operation. This is about double the snapback moment.
机译:由超薄复合材料制成的可展开结构可以弹性折叠,并且可以通过释放存储的应变能进行自展开。本文对由碳纤维增强塑料的两层平纹层压材料制成的带弹簧铰链的折叠和展开进行了详细研究。构造了此铰链的特定版本,并测量了准静态展开过程中的力矩旋转轮廓。本研究是第一个在仿真中包含经过实验验证的弹性微机械模型,并提供了仿真与实际铰链的测量行为之间的定量比较。带弹簧铰链的折叠和展开模拟是从商用的有限元软件包Abaqus / Explicit开始的,它是从建成的未应变结构开始的。折叠模拟包括在中间捏合页以减少折叠所需的峰值力矩的效果。部署模拟完全捕获了部署的稳态力矩部分以及最终恢复到已部署配置的快照。无需捏合铰链的另一种模拟方法可以估算出铰链在运行过程中可以承受的最大力矩。这大约是快照时间的两倍。

著录项

  • 来源
    《Journal of Spacecraft and Rockets 》 |2011年第1期| p.187-198| 共12页
  • 作者单位

    University of Cambridge, Cambridge, England CB2 1PZ, United Kingdom;

    California Institute of Technology, Pasadena, California 91125;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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