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A modified pseudo-rigid-body modeling approach for compliant mechanisms with fixed-guided beam flexures

机译:修正的准刚体建模方法,用于具有固定导引梁挠性的柔顺机构

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In the present paper, we investigate a modified pseudo-rigid-body (MPRB) modeling approach for compliant mechanisms with fixed-guided beam flexures by considering the nonlinear effects of center-shifting and load-stiffening. In particular, a fixed-guided compliant beam is modeled as a pair of fixed-free compliant beams jointed at the inflection point, where each fixed-free beam flexure is further modeled by a rigid link connected with an extension spring by a torsion spring, based on the beam constraint model (BCM). Meanwhile, the characteristic parameters of the proposed MPRB model are no longer constant values, but affected by the applied general tip load, especially the axial force. The developed MPRB modeling method is then applied to the analysis of three common compliant mechanisms (i.e. compound parallelogram mechanisms, bistable mechanisms and 1-DOF translational mechanisms), which is further verified by the finite element analysis (FEA) results. The proposed MPRB model provides a more accurate method to predict the performance characteristics such as deformation capability, stiffness variation, as well as error motions of complaint mechanisms with fixed-guided beam flexures, and offers a new look into the design and optimization of beam-based compliant mechanisms.
机译:在本文中,我们通过考虑中心偏移和负载刚度的非线性影响,研究了一种修正的伪刚体(MPRB)建模方法,用于具有固定导引梁挠性的柔顺机构。特别是,将固定导向的柔顺梁建模为在拐点处接合的一对固定自由柔顺梁,其中,每个固定自由柔顺梁的弯曲度还通过与扭力弹簧与拉伸弹簧连接的刚性连杆来建模,基于束约束模型(BCM)。同时,所提出的MPRB模型的特征参数不再是恒定值,而是受到所施加的一般叶尖载荷,特别是轴向力的影响。然后将开发的MPRB建模方法应用于三种常见的顺应性机制(即复合平行四边形机制,双稳态机制和1-DOF平移机制)的分析,并通过有限元分析(FEA)结果对其进行进一步验证。提出的MPRB模型提供了一种更准确的方法来预测性能特征,例如变形能力,刚度变化以及带有固定导向梁挠曲的投诉机构的误差运动,并为梁设计和优化提供了新的思路。基于合规机制。

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