Development of Line-to-Line Contact Formulation for Continuum Beams

Babak Bozorgmehri, M. Matikainen, A. Mikkola
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引用次数: 1

Abstract

A line-to-line beam contact formulation in the framework of the absolute nodal coordinate formulation (ANCF) is introduced in this paper. Higher- and lower-order ANCF beam elements employ the introduced beam contact formulation. The higher- and lower-order ANCF beam elements are compared in terms of their accuracy and performance in a large deformation contact problem. Efficiency of numerical integration of contact energy variation contribution to the system’s equations of motion is studied. The contacting elements’ surfaces of the ANCF beam elements are parameterized by segmentation of integration over the contact patch. Numerical results investigate the accuracy, robustness and efficiency of the developed line-to-line contact formulation by comparing against a solid element type using commercial finite element code. According to the numerical results, the higher-order ANCF beam element’s solution is closer than the lower-order ANCF beam element’s in accordance with the reference solution provided by a solid element type using commercial finite element code ABAQUS. Furthermore, the higher-order beam element is found to be more efficient than the lower-order beam with respect to the numerical integration of the contact energy variation. Expectedly, the higher-order ANCF beam element is able to capture the cross-section deformation in a large deformation contact problem, while the lower-order element fails to exhibit such cross-sectional deformation.
连续介质梁线对线接触公式的发展
本文在绝对节点坐标公式(ANCF)的框架下,提出了一种线对线光束接触公式。高阶和低阶ANCF梁单元采用所介绍的梁接触公式。比较了高阶和低阶ANCF梁单元在大变形接触问题中的精度和性能。研究了接触能变化对系统运动方程贡献的数值积分效率。采用接触贴片上积分分割的方法,参数化了ANCF光束单元的接触单元表面。数值结果通过与使用商业有限元代码的实体单元类型进行比较,研究了所开发的线对线接触公式的准确性,鲁棒性和效率。数值结果表明,采用商业有限元代码ABAQUS提供的实体单元类型的参考解,高阶梁单元的解比低阶梁单元的解更接近。此外,对于接触能量变化的数值积分,发现高阶梁单元比低阶梁单元更有效。在大变形接触问题中,高阶梁单元能够捕捉到截面变形,而低阶梁单元则无法捕捉到截面变形。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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