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首页> 外文期刊>Defence Science Journal >Three-dimensional Material and Geometrical Nonlinear Analysis of Adhesively Bonded Single Lap Joint
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Three-dimensional Material and Geometrical Nonlinear Analysis of Adhesively Bonded Single Lap Joint

机译:粘接单搭接接头的三维材料和几何非线性分析

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摘要

The paper presents 3-D viscoplastic analysis of adhesively bonded single lap joint considering material and geometric nonlinearity. Total Lagrangian formulation is used to develop a 3-D finite element for geometric nonlinear analysis. The overall geometry of the single lap joint, the loading, and the boundary conditions has been considered, both according to the ASTM testing standards and from those adopted in earlier investigations. The constitutive relations for the adhesive are developed using a pressure-dependant (modified) von Mises yield function and Ramberg-Osgood idealisation for the experimental stress-strain curve. The adherends and adhesive layers are both modelled using 20-noded solid elements. However, observations have been made, in particular, on peel and shear stresses in the adhesive layer, which provide useful insight into the 3-D nature of the problem.
机译:本文介绍了考虑材料和几何非线性的单键搭接接头的3-D粘塑性分析。总拉格朗日公式用于开发用于几何非线性分析的3-D有限元。根据ASTM测试标准和早期研究中采用的标准,已经考虑了单搭接接头的整体几何形状,载荷和边界条件。粘合剂的本构关系是通过使用压力相关的(修正的)von Mises屈服函数和Ramberg-Osgood理想化的实验应力-应变曲线来开发的。被粘物和粘合剂层均使用20节点实体元素进行建模。但是,特别是对粘合层中的剥离应力和剪切应力已经进行了观察,这为问题的3-D性质提供了有用的见识。

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