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On the modeling of a contact-aided cross-axis flexural pivot

机译:在接触式横轴弯曲枢轴的建模上

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摘要

This paper reports the study of a planar Cross-Axis Flexural Pivot (CAFP) comprising an additional contact pair. The proposed device may be useful for applications requiring a revolute joint that behaves differently when deflecting clockwise/anti-clockwise. The presence of the contact pair reduces the free length of one flexures, resulting in a considerable increment of the overall joint stiffness. The pivot behaviour is investigated, for different load cases, via the Chained-Beam-Constraint Model (CBCM), namely an accurate method to be applied in large deflection problems. A framework comprising Matlab and ANSYS is developed for testing the CAFP performances in terms of rotational stiffness, parasitic shift and maximum stress, with different combinations of geometrical aspect ratios and contact extensions. Results achieved via CBCM for a pure rotation applied to the CAFP's output link are then verified through Finite Element Analysis. The resulting performance maps show good agreement between the numerical results. Furthermore, the CBCM shows an improved computational efficiency, which is a crucial aspect for preliminary design steps. At last, direct comparison between simulations and experiments, developed by means of two custom test rigs, confirms the efficacy of the proposed design method for the modeling of contacts in large deflection problems. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文报道了一种研究包括附加接触对的平面横轴弯曲枢轴(CAFP)。所提出的设备对于需要旋转关节的应用可能是在顺时针/逆时针偏转时不同的旋转关节的应用。接触对的存在降低了一个弯曲的自由长度,导致整个关节刚度的相当大的增量。通过链光束约束模型(CBCM)来研究枢轴行为,用于不同的负载情况,即在大偏转问题中应用的准确方法。开发了一种包括MATLAB和ANSYS的框架,用于在旋转刚度,寄生偏移和最大应力方面测试CAFP性能,以不同的几何纵横比和接触延伸。通过有限元分析验证通过CBCM实现施加到CAFP输出链路的纯旋转的结果。结果表现图显示了数值结果之间的良好一致性。此外,CBCM显示了改进的计算效率,这是初步设计步骤的关键方面。最后,借助于两种定制测试钻机开发的模拟和实验之间的直接比较证实了所提出的设计方法在大偏转问题中建模的效果。 (c)2019年elestvier有限公司保留所有权利。

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