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An investigation of compliant micro-half-pantographs using the pseudorigid body model

机译:使用伪刚体模型研究顺应性微型受电弓

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Many microelectromechanical systems (MEMS) require a mechanism that amplifies motion. This article investigates the use of the pseudorigid body model (PRBM) to design fully compliant micro-half-pantographs for this purpose. The results demonstrate the ability to amplify motion with a compliant mechanism with no assembly or pin joints. The PRBM was used to develop equations for input-output displacement, force-deflection, and maximum nominal stress-deflection predictions. Predictions compared favorably to finite-element and experimental results. This work emphasizes further that the traditional method of trial-and-error design can be substituted by the pseudorigid body model approach.
机译:许多微机电系统(MEMS)需要一种放大运动的机制。本文研究了伪刚体模型(PRBM)的用途,以为此目的设计完全兼容的微型半受电弓。结果表明,无需装配或销钉接头的情况下,通过顺应机构可以放大运动。 PRBM用于开发输入-输出位移,力-挠度和最大名义应力-挠度预测的方程式。预测优于有限元和实验结果。这项工作进一步强调,可以用伪刚体模型方法代替传统的试验设计方法。

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