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Modeling and Analysis of a Compliance Model and Rotational Precision for a Class of Remote Center Compliance Mechanisms

机译:一类远程中心柔顺机构的柔顺模型和旋转精度的建模与分析

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The remote center compliance (RCC) mechanism is of great use for practical designs, especially if a pure rotation about a virtual point is required. The analysis of compliance properties and rotational precision for RCC mechanisms are very important for mechanical design in applications where precision is required. This paper formulates an analytical method for the compliance and rotational precision calculations of a class of RCC mechanisms, combined in parallel with two round beam-based isosceles-trapezoidal flexural pivots. The analytical model of the mechanism is established based on the stiffness matrix method to directly obtain the compliance factors that completely define the elastic response of the mechanism. The rotational precision of the mechanism—That is, the position of rotation center—Is then derived using screw theory and a compliance matrix. The validity of this model is demonstrated using finite element analysis simulation and experimental tests. The results of both simulation and experiment verify that the analytical model has high accuracy and promising practical applications. Moreover, the influences of the geometry parameters on the compliance factors and the center shifts are also graphically evaluated and discussed using the analytical model. The results in this paper provide an effective configuration and analytical method for the design and optimization of RCC mechanisms, and are of great practical significance.
机译:远程中心遵从性(RCC)机制在实际设计中非常有用,尤其是在需要围绕虚拟点进行纯旋转的情况下。 RCC机构的顺应性和旋转精度的分析对于需要精度的应用中的机械设计非常重要。本文提出了一种分析方法,用于一类RCC机构的柔度和旋转精度计算,并与两个基于圆形梁的等腰梯形弯曲枢轴并联。基于刚度矩阵法建立了机构的解析模型,直接获得了完全定义机构弹性响应的柔度因子。然后,使用螺丝理论和柔度矩阵得出机构的旋转精度,即旋转中心的位置。使用有限元分析模拟和实验测试证明了该模型的有效性。仿真和实验结果均表明该分析模型具有较高的准确性,具有广阔的应用前景。此外,还使用分析模型以图形方式评估和讨论了几何参数对柔顺系数和中心偏移的影响。本文的结果为RCC机构的设计和优化提供了有效的配置和分析方法,具有重要的现实意义。

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