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首页> 外文期刊>Journal of intelligent material systems and structures >Blocking force measurement of shape memory polymer composite hinges for space deployable structures
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Blocking force measurement of shape memory polymer composite hinges for space deployable structures

机译:用于空间可展开结构的形状记忆聚合物复合铰链的阻挡力测量

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摘要

This study introduces a method for measuring the blocking force of a shape memory polymer composite hinge to quantify the performance of a shape memory polymer composite hinge for space deployable structure applications. A detailed design of how to select heating elements for a self-deployable configuration is also suggested. The shape memory polymer composite hinge consists of two reverse carpenter shape memory polymer composite tapes that were made from carbon-epoxy fabric, shape memory polymer resin, and two heating elements. The heating elements were attached to the shape memory polymer composite tape using the composite manufacturing method, and they were used as the heating source in the deployment test. The blocking force and moment of the hinge were measured using a pulley-mass system setup to examine the mechanical performance of the hinge. During the test, the shape change was recorded with a camera to calculate the moment arms. While the blocking force was 7.21 N in the initial test, it decreased slightly with the working cycle and was 6.27 N in the repeated test. The maximum hinge moment was 0.47 N m in the repeated test. In addition, the results revealed that a pop-up phenomenon occurred at the middle period of deployment. These results confirm that the shape memory polymer composite hinge works well with heating elements and provide a guideline for performance evaluation of the shape memory polymer composite hinge.
机译:这项研究介绍了一种测量形状记忆聚合物复合铰链阻挡力的方法,以量化形状记忆聚合物复合铰链在空间可展开结构应用中的性能。还建议了有关如何为自部署配置选择加热元件的详细设计。形状记忆聚合物复合铰链由两条反向木匠的形状记忆聚合物复合带制成,它们由碳环氧织物,形状记忆聚合物树脂和两个加热元件制成。使用复合材料制造方法将加热元件附着到形状记忆聚合物复合带上,并将它们用作展开测试中的加热源。使用滑轮质量系统设置来测量铰链的阻挡力和力矩,以检查铰链的机械性能。在测试过程中,用相机记录了形状变化以计算力矩臂。初始测试中的粘连力为7.21 N,但随着工作周期的减小而略有下降,而重复测试中的粘连力为6.27N。在重复测试中,最大铰链力矩为0.47 N m。另外,结果表明在部署的中间阶段会出现弹出现象。这些结果证实了形状记忆聚合物复合铰链与加热元件配合良好,并且为形状记忆聚合物复合铰链的性能评估提供了指导。

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