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Interfacial debonding of pipe joints under torsion loads: a model for arbitrary nonlinear cohesive laws

机译:扭转载荷作用下管接头的界面剥离:任意非线性内聚规律的模型

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摘要

Adhesively bonded pipe joints are extensively used in pipelines. In the present work, Cohesive Zone Model (CZM) based analytical solutions are obtained for the bonded pipe joints under torsion. An integral form based general expression is derived which is suitable for arbitrary type of nonlinear cohesive laws. The concept of the minimum interfacial cohesive shear slip delta_m is introduced and used in the fundamental expression of the external torsion load. It is found that, when the bond length of the pipe joint is large enough, the torsion load capacity is indeed independent of the shape of cohesive laws and the bond length. It is interesting to note that the maximum torsion load capacity is achieved when the torsion stiffness of the pipe and coupler are identical. A good agreement with finite element analysis (FEA) result indicates that the current model works well. The formulation to develop a simple test method for determining the tau-delta constitutive relationship in pipe joints under torsional loads is suggested. Parametric studies of various cohesive laws are conducted. This model deepens the understanding of the interfacial debonding problem of bonded joints. The fracture energy based formulas of the torsion load capacity derived in the present work can be directly used in the design of adhesively bonded pipe joints.
机译:胶粘管接头广泛用于管道中。在当前的工作中,获得了基于内聚力区域模型(CZM)的扭转下粘结管接头的分析解决方案。推导了基于积分形式的通用表达式,该表达式适用于任意类型的非线性内聚定律。引入了最小界面内聚剪切滑移delta_m的概念,并将其用于外部扭转载荷的基本表达。发现,当管接头的粘结长度足够大时,扭转载荷能力确实与内聚定律的形状和粘结长度无关。有趣的是,当管道和连接器的扭转刚度相同时,可以达到最大扭转负载能力。与有限元分析(FEA)结果的良好一致性表明当前模型运行良好。建议制定一种简单的试验方法来确定扭转载荷下管接头的tau-delta本构关系。进行了各种内聚规律的参数研究。该模型加深了对粘结接头界面剥离问题的理解。在本工作中得出的基于断裂能的扭力承载力公式可以直接用于粘结管接头的设计。

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