邱丽芳, 王晶琳, 冷迎春, 王栋. 打通型双串联与三串联柔性铰链设计与性能比较[J]. 工程科学学报, 2017, 39(5): 762-768. DOI: 10.13374/j.issn2095-9389.2017.05.015
引用本文: 邱丽芳, 王晶琳, 冷迎春, 王栋. 打通型双串联与三串联柔性铰链设计与性能比较[J]. 工程科学学报, 2017, 39(5): 762-768. DOI: 10.13374/j.issn2095-9389.2017.05.015
QIU Li-fang, WANG Jing-lin, LENG Ying-chun, WANG Dong. Design and performance comparison of double-series and triple-series flexure hinges[J]. Chinese Journal of Engineering, 2017, 39(5): 762-768. DOI: 10.13374/j.issn2095-9389.2017.05.015
Citation: QIU Li-fang, WANG Jing-lin, LENG Ying-chun, WANG Dong. Design and performance comparison of double-series and triple-series flexure hinges[J]. Chinese Journal of Engineering, 2017, 39(5): 762-768. DOI: 10.13374/j.issn2095-9389.2017.05.015

打通型双串联与三串联柔性铰链设计与性能比较

Design and performance comparison of double-series and triple-series flexure hinges

  • 摘要: 平面折展柔顺机构(lamina emergent mechanisms,LEMs)的重要组成部分之一是柔性铰链,因此设计新型的平面折展扭转铰链(lamina emergent torsional joint,LET)能够对其运动起到十分关键的作用.本文提出了一种打通型LET柔性铰链,设计了打通型双串联柔性铰链和打通型三串联柔性铰链的两种结构形式,分别推导出了两种铰链的弯曲等效刚度计算公式.通过对设计实例的理论分析与有限元分析,验证了等效刚度计算公式的正确性.将外形尺寸相同的打通型双串联、三串联柔性铰链与外LET铰链进行了弯曲以及拉压性能的对比,结果表明,打通型三串联LET柔性铰链在拉压性能下降不明显的情况下,能够较大幅度地提升弯曲性能.

     

    Abstract: The flexible hinge is one of the most important components in lamina emergent mechanisms (LEMs), so the design of a new type of lamina emergent torsional (LET) joint can play a key role in its movement performance. This paper presents double- and triple-series LET flexure hinges, designs the structure of the two hinges, and derives the calculation formula for their bending equivalent stiffnesses. Through theoretical and finite element analyses of the design example, verifies the correctness of the calculation formula for equivalent stiffness. By comparing the bending, tension, and compression performances of the double-and triple-series LET flexure hinges with those of the outside LET flexure hinge, which shares the same outline dimensions of the former, it can be concluded that the triple-series LET flexure hinge can greatly enhance bending performance without any obvious decrease in its tension and compression performances.

     

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