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Mixed Mode Delamination Analysis by a Thermodynamically Consistent Cohesive Interface Model with Independent Mode i and Mode II Fracture Energies

机译:通过具有独立的模式i和模式II断裂能的热力学一致的内聚界面模型进行混合模式分层分析

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摘要

In the present paper a new thermodynamically consistent cohesive interface model is proposed; it based on a predefined Helmhotz free energy with a single scalar damage variable and produces two independent fracture energies, in pure mode I and pure mode II debonding conditions. The proposed model can also take in to account the frictional effects with a smooth transition of the mechanical behaviour, from the initial cohesive one of the sound material, to the frictional one of the fully debonded interface. The cohesive-frictional behaviour is based on the mesoscale geometric interpretation of the scalar damage variable, which distinguish sound and debonded fractions of a representative surface element of the interface. The proposed formulation is defined by a damage activation function, which depends on the separation displacement. Traction components, damage evolution and the relevant constitutive equations are derived by following the classical Noll and Coleman procedure, and the model implicitly verify the second thermodynamic law by proving that dissipation is non-negative for any loading path. The numerical simulations of mixed mode delamination tests are performed and compared to the experimental results, for different mixed mode ratio.
机译:本文提出了一种新的热力学一致的内聚界面模型。它基于预定义的Helmhotz自由能和单个标量损伤变量,并在纯模式I和纯模式II脱粘条件下产生两个独立的断裂能。所提出的模型还可以考虑机械行为从初始的一种粘性材料的内聚性过渡到完全脱胶的界面的一种摩擦性的平滑过渡所产生的摩擦效应。内聚摩擦行为是基于标量损伤变量的中尺度几何解释,该判别变量可以区分界面的代表性表面元素的声音和剥离部分。提出的配方由损伤激活函数定义,该函数取决于分离位移。遵循经典的Noll和Coleman程序,得出了牵引力分量,损伤演化和相关的本构方程,并且该模型通过证明耗散对于任何加载路径都是非负的,隐式地验证了第二热力学定律。对于不同的混合模比,进行了混合模脱层试验的数值模拟,并与实验结果进行了比较。

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