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Second-order approximation pseudo-rigid model of flexure hinge with parabolic variable thickness

机译:具有抛物线可变厚度的弯曲铰链的二阶近似伪刚性模型

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The paper deals with a study to determine an accurate pseudo-rigid model of flexure hinges with parabolic variable thickness subjected to pure applied moment. The work can be considered an extension of previous investigations on constant-thickness flexure hinges. Starting from the observation on second-order kinematic invariants of the relative motion between two bodies connected by such a flexure hinge, a pseudo-rigid model comprised of two circles rolling without slipping (planetary arrangement) is conceived. Thanks to parametric investigations, closed formulas for the computation of the radii of the two rolling circles and for the assessment of the concentrated spring are deduced in terms of main geometrical and elastic parameters. The proposed pseudo-rigid model is able to reproduce the elasto-kinematic behaviour of conic flexure hinges with accuracy, using a single degree of freedom surrogate mechanism. Finite element simulations confirm the accuracy of the closed form expressions. An example of application of the proposed methodology dealing with a vibration problem is presented in details. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文涉及一项研究,用于确定具有纯施加矩的抛物型可变厚度的挠性铰链精确伪刚性模型。该工作可以被认为是对恒定厚度挠性铰链的先前研究的延伸。从通过这种弯曲铰链连接的两个体之间的相对运动的二阶运动不变的观察开始,构思了由两个没有滑动(行星布置)的两个圆圈滚动的伪刚性模型。由于参数研究,在主要几何和弹性参数方面推导出用于计算两个轧制圆圈的半径和浓缩弹簧的评估的闭合公式。所提出的伪刚性模型能够使用单一的自由式替代机构来再现锥形弯曲铰链的弹性运动行为。有限元模拟确认了封闭式表达式的准确性。详细介绍了处理振动问题的所提出的方法的应用的示例。 (c)2019年elestvier有限公司保留所有权利。

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