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Numerical analysis of edge effects in adhesively-bonded assemblies application to the determination of the adhesive behaviour

机译:胶粘组件中边缘效应的数值分析在确定胶粘行为中的应用

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This paper presents contributions of numerical modelling for the optimization of adhesively-bonded assemblies for marine and underwater applications. The experimental and numerical analyses of the mechanical behaviour of bonded joints are particularly made difficult by the stress singularities due to edge effects. Therefore, to analyse the behaviour of the adhesive in an assembly, experimental fixtures which strongly limit edge effects must be designed in order to obtain reliable data. Different finite element analyses, under the assumption of elastic behaviour of the constituents, have highlighted the influence of two parameters: the geometry of the substrate close to the adhesive joint and the local geometry of the joint near the edge. The numerical results have been confirmed through experimental tests. Moreover, numerical simulations taking into account the non-linear behaviour of the adhesive give more information about the way an adhesive behaves in an assembly. An improvement is proposed in order to nearly cancel out the solicitation of the adhesive near the free edge of the joint.
机译:本文介绍了数值模型对优化用于海洋和水下应用的粘合组件的贡献。由于边缘效应引起的应力奇异性,特别难以对接合接头的机械性能进行实验和数值分析。因此,为了分析粘合剂在组件中的行为,必须设计出强烈限制边缘效应的实验夹具,以获得可靠的数据。在成分具有弹性行为的假设下,不同的有限元分析强调了两个参数的影响:靠近粘合剂接头的基材几何形状和靠近边缘的接头局部几何形状。数值结果已通过实验测试得到证实。而且,考虑到粘合剂的非线性行为的数值模拟给出了有关粘合剂在组件中行为方式的更多信息。提出了一种改进方案,以几乎消除在接头的自由边缘附近的粘合剂的吸引。

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