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5R pseudo-rigid-body model for inflection beams in compliant mechanisms

机译:5R副刚体模型,用于柔顺机制的拐点

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摘要

A 5R pseudo-rigid-body model (PRBM) is proposed for inflection beams in compliant mechanisms. This new model consists of six rigid links connected by five joints. Four joints with torsional spring are added at the joints to simulate the deflection and a free hinge without spring is used to present the inflection point of the flexural beam. An objective function is established according to relative angular displacement between the two rigid links jointed by the free hinge for finding the optimal characteristic parameters of the 5R PRBM. The spring stiffness coefficients of the 5R PRBM are obtained using a linear regression technique. Numerical examples are presented and the results are shown by comparing with elliptical integral solutions. This new pseudo-rigid-body model behaves as load independent and can be used to predict both the tip locus and inflection position of flexural beams. (C) 2017 Elsevier Ltd. All rights reserved.
机译:提出了一种用于柔顺机制的拐点的5R伪刚体模型(PRBM)。 这款新模型由五个关节连接的六个刚性链路组成。 在接头处添加具有扭转弹簧的四个关节,以模拟偏转,并且没有弹簧的自由铰链用于呈现弯曲梁的拐点。 根据由自由铰链连接的两个刚性连杆之间的相对角位移建立目标函数,用于找到5R PRBM的最佳特征参数。 使用线性回归技术获得5R PRBM的弹簧刚度系数。 提出了数值例子,并通过与椭圆形积分溶液进行比较来示出结果。 这种新的伪刚体模型表现为负载无关,可用于预测弯曲梁的尖端基因座和拐点。 (c)2017 Elsevier Ltd.保留所有权利。

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