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An adaptive NS/ES-FEM approach for 2D contact problems using triangular elements

机译:使用三角形元素的2D接触问题的自适应NS / ES-FEM方法

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摘要

An adaptive contact analysis approach is presented for 2D solid mechanics problems using only triangular elements and the subdomain parametric variational principle (SPVP). The present approach is implemented for the node-based smoothed FEM (or NS-FEM), the edge-based smoothed FEM (ES-FEM) and the standard FEM models with automatically adaptive refinement scheme. A modified Coulomb frictional contact model and its corresponding discrete equations are introduced. The global discretized system equations are then formulated in an incremental form with the aid of the basic boundary value equations for friction contact and the subdomain parametric variational principle. A simple adaptive refining scheme is presented, and the Voronoi vertices are taken as candidate points to become new nodes because of duality property between the Voronoi diagrams and Delaunay triangula-tion. The present adaptive approach can properly simulate variable behaviors of a contact interface such as bonding/debonding, contacting/departing, and sticking/slipping. Several examples are presented to numerically validate the proposed approach via the comparison with reference solutions obtained by ABAQUS~((R)). and to investigate the effects of the various parameters used in the computations on the response of the contact system. The numerical results have demonstrated that the present adaptive contact analysis approach using the ES-FEM has higher accuracy and convergence rate in the strain energy than that using FEM and NS-FEM. However, the latter two methods can provide the lower and upper bound solution for the system strain energy, respectively.
机译:针对二维固体力学问题,仅使用三角形元素和子域参数变分原理(SPVP),提出了一种自适应接触分析方法。本方法针对具有自动自适应细化方案的基于节点的平滑FEM(或NS-FEM),基于边缘的平滑FEM(ES-FEM)和标准FEM模型实现。介绍了一种改进的库仑摩擦接触模型及其对应的离散方程。然后,借助摩擦接触的基本边界值方程和子域参数变分原理,以增量形式制定全局离散系统方程。提出了一种简单的自适应细化方案,由于Voronoi图和Delaunay三角剖分之间的对偶性,将Voronoi顶点作为候选点成为新节点。本发明的自适应方法可以适当地模拟接触界面的可变行为,例如结合/分离,接触/脱离和粘附/滑动。通过与ABAQUS〜(R)获得的参考解决方案进行比较,提出了几个示例来对所提出的方法进行数值验证。并研究计算中使用的各种参数对接触系统响应的影响。数值结果表明,与使用FEM和NS-FEM相比,使用ES-FEM的自适应接触分析方法在应变能方面具有更高的精度和收敛速度。但是,后两种方法可以分别为系统应变能提供上下限解。

著录项

  • 来源
    《Finite Elements in Analysis and Design》 |2011年第3期|p.256-275|共20页
  • 作者

    Y. Li; G.R. Liu; G.Y. Zhang;

  • 作者单位

    Centre for Advanced Computations in Engineering Science, Department of Mechanical Engineering, National University of Singapore, 9 Engineering Drive 1,117576 Singapore, Singapore;

    Centre for Advanced Computations in Engineering Science, Department of Mechanical Engineering, National University of Singapore, 9 Engineering Drive 1,117576 Singapore, Singapore,Singapore-MIT Alliance (SMA), E4-04-10, 4 Engineering Drive 3, 117576 Singapore, Singapore;

    Intelligent Systems for Medicine Laboratory, School of Mechanical Engineering, The University of Western Australia, 35 Stirling Highway, Crawley, WA 6009, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    contact; numerical method; finite element; adaptive refinement; gradient smoothing; parametric variational principle;

    机译:联系;数值方法有限元;自适应细化;梯度平滑参数变分原理;
  • 入库时间 2022-08-18 02:59:10

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