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A 3D ductile constitutive mixed-mode model of cohesive elements for the finite element analysis of adhesive joints

机译:用于粘接接头有限元分析的粘性单元的三维韧性本构混合模型

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摘要

In this paper, a new traction-separation law is developed that represents the constitutive relation of ductile adhesive materials in Modes I, II, and III. The proposed traction-separation laws model the elastic, plastic, and failure material response of a ductile adhesive layer. Initially, the independent-mode proposed laws (loading and fracture in Modes I, II, and III) are mathematically described and then introduced in a developed formulation that simulates the interdependency of the mixed-mode coupled laws. Under mixed-mode conditions, damage initiation is predicted with the quadratic stress criterion and damage propagation with the linear energetic fracture criterion. For verification and validation purposes of the proposed laws and mixed-mode model, steel adherends have been adhesively bonded with a structural ductile adhesive material in order to fabricate a series of single and double strap adhesive joint configurations. The specimens have been tested under uni-axial quasi-static load and the respective force and displacement loading history have been recorded. Corresponding numerical and experimental results have been compared for each joint case, respectively. Additionally, the developed stress fields (peel, in-plane, and out-of-plane shear) are presented as they evolve during the loading of both joint cases. © 2012 Taylor & Francis.
机译:在本文中,提出了一种新的牵引力-分离定律,该定律表示了在模式I,II和III中延性胶粘剂材料的本构关系。拟议的牵引力-分离定律可对延性粘合剂层的弹性,塑性和破坏材料响应进行建模。最初,以数学方式描述了独立模式建议的定律(模式I,II和III中的载荷和断裂),然后将其引入已开发的公式中,该公式模拟了混合模式耦合定律的相互依赖性。在混合模式条件下,使用二次应力准则预测破坏的开始,而使用线性高能断裂准则预测破坏的传播。为了验证和验证提议的法律和混合模式模型,已将钢被粘物与结构可延展的粘合材料粘合在一起,以制造一系列单带和双带粘合接头配置。试样已经在单轴准静态载荷下进行了测试,并记录了各自的力和位移载荷历史。每种情况下都分别比较了相应的数值和实验结果。此外,在两个关节案例的加载过程中,应力场(剥离,平面内和平面外剪切)在演化过程中也会显示出来。 ©2012泰勒和弗朗西斯。

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