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A novel evaluation method for interfacial adhesion strength in ductile dissimilar materials

机译:韧性异种材料界面附着强度评估的新方法

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摘要

The energy of interface adhesion between two elastic-plastic materials was directly evaluated as the mechanical work supplied exclusively to separate the interface. Interface crack extension was simulated by elastic plastic finite element models, where the nodes along the interface in the vicinity of crack tip were divided into two nodes and the nodal forces were gradually decreased to zero. While further plastic deformation takes place in the volume of materials during crack extension, the work done by these nodal forces against mutual displacement of crack surfaces should be consumed on the surfaces and thus equals to the interface adhesion energy. This technique was applied to a copper/polyimide system for flexible printed circuits in accordance with the new experimental results. In comparison to the results obtained by the conventional peel test, this technique yielded far smaller amount of interface energy successfully excluding the energy dissipated with bulk plastic deformation without any insertion of cohesive strip along the interface in the model.
机译:作为专门为分离界面而提供的机械功,直接评估了两种弹塑性材料之间界面粘合的能量。用弹性塑性有限元模型模拟了界面裂纹扩展,将沿裂纹尖端附近界面的节点分为两个节点,节点力逐渐减小至零。尽管在裂纹扩展过程中材料的体积会发生进一步的塑性变形,但这些抵御裂纹表面相互位移的节点力所完成的功应该在表面上消耗,因此等于界面粘合能。根据新的实验结果,该技术已应用于柔性印刷电路板的铜/聚酰亚胺系统。与通过常规剥离试验获得的结果相比,该技术成功产生的界面能量要少得多,这不包括由于整体塑性变形而耗散的能量,而没有在模型中沿界面插入任何粘结条。

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