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A generalized pseudo-rigid-body PPRR model for both straight and circular beams in compliant mechanisms

机译:兼容机制的直线和圆形梁的广义伪刚体PPRR模型

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The pseudo-rigid-body (PRB) models have been widely applied for modeling of straight beams in compliant mechanisms. In this paper, a generalized PRB PPRR model with two mutually perpendicular linear springs is established for both straight and circular beams in compliant mechanisms. In the developed model, the static equations of the deflected beams are derived from Bernoulli's equation. The characteristic parameters of the developed model are identified by the reasonably organized particle swarm optimization (PSO) algorithm. A simulation experiment of tip locus of a circular beam is conducted to evaluate the developed model. The simulation results show the developed model has higher accuracy than the PRB 2R, 3R, and RRHR model. In addition, two numerical examples are further implemented to demonstrate the effectiveness of the developed model. (C) 2020 Elsevier Ltd. All rights reserved.
机译:伪刚体(PRB)模型已广泛应用于柔顺机构的直梁建模。 本文建立了一种具有两个相互垂直的线性弹簧的通用PRB PPRR模型,用于柔顺机构的直线和圆形光束。 在开发模型中,偏转光束的静态方程源自Bernoulli的等式。 通过合理组织的粒子群优化(PSO)算法来识别开发模型的特征参数。 进行了圆梁尖端轨迹的模拟实验,以评估开发的模型。 仿真结果表明,开发的模型比PRB 2R,3R和RRHR模型具有更高的精度。 另外,进一步实施了两个数值示例以证明开发模型的有效性。 (c)2020 elestvier有限公司保留所有权利。

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