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Numerical solution of elastic bodies in contact by FEM utilising equilibrium displacement fields

机译:利用平衡位移场进行有限元接触弹性体的数值解

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In this paper a new effective formulation of the computation of the statics of elastic bodies in contact is described and demonstrated. Line contact, plane strain, and negligible friction are assumed. The formulation is an extension of the standard finite element method (FEM). With the aim to utilise the Hertz theory directly, we use the exact solution of the elastic 2-dimensional halfspace loaded by Hertzian pressure distribution and enforce the contact condition by the method of Lagrange multipliers. In numerical examples we have focussed on the demonstration and evaluation of the accuracy of the new formulation for selected applications compared with the state of the art node-to-segment contact algorithm implemented in the software system ADINA. Proposed formulation is more accurate for problems where Hertz contact dominates the strain state, especially for small number of elements, whereas we obtained a fairly good agreement with ADINA for a more general bending problem.
机译:在本文中,描述并演示了一种新的有效计算接触弹性体静力学的公式。假定线接触,平面应变和可忽略的摩擦。该公式是标准有限元方法(FEM)的扩展。为了直接利用赫兹理论,我们使用由赫兹压力分布加载的弹性二维半空间的精确解,并通过拉格朗日乘数法来增强接触条件。在数值示例中,我们将重点放在针对选定应用程序的新配方准确性的演示和评估上,并将其与软件系统ADINA中实现的最新节点到段接触算法进行比较。对于以赫兹接触为主的应变状态的问题,特别是对于少量元素,建议的公式更为准确,而对于更普遍的弯曲问题,我们与ADINA达成了相当好的协议。

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