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首页> 外文期刊>Mechanics Based Design of Structures and Machines >Static Response of Planar Compliant Devices with Small-Deformation Flexure Hinges
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Static Response of Planar Compliant Devices with Small-Deformation Flexure Hinges

机译:具有小变形挠性铰链的平面兼容设备的静态响应

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The article presents a static load-displacement calculation procedure for planar compliant mechanisms with small-deformation flexure hinges. The approach utilizes the Castigliano's displacement theorem and enables consideration of both rigid links and flexure hinges in a unitary manner. The flexure hinges are modeled as complex springs, which are capable of elastic response to bending axial and shearing loads through corresponding compliance factors. The compliance factors are directly incorporated into the generic formulation and this feature enables implementation of various flexure configurations. This method is particularly useful in calculations of flexure-based compliant devices where the quasistatic response needs to be determined accurately. An example is studied by the proposed method and by means of finite element analysis, and the relative errors are less than 6%. Based on the same example, the errors are calculated which are induced when the model only retains the torsion-spring type compliance.
机译:这篇文章提出了具有小变形挠性铰链的平面顺应机构的静态载荷-位移计算程序。该方法利用了Castigliano的位移定理,并能够统一考虑刚性连杆和挠性铰链。挠性铰链被建模为复杂的弹簧,能够通过相应的柔度系数对弯曲的轴向和剪切载荷产生弹性响应。顺应性因素直接纳入通用配方中,此功能可实现各种挠曲配置。该方法在需要精确确定准静态响应的基于挠曲的柔性设备的计算中特别有用。所提出的方法并通过有限元分析进行了实例研究,相对误差小于6%。基于相同的示例,计算出的误差是在模型仅保留扭簧类型柔度时引起的。

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