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An extended peridynamic model for dynamic fracture of laminated glass considering interfacial debonding

机译:考虑界面脱粘的夹层玻璃动态断裂扩展近场动力学模型

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In this work, an extended peridynamic (PD) model considering interfacial debonding is proposed to investigate the dynamic fracture behavior of laminated glass under low-velocity and high-velocity impacting loads. The interaction between different materials is described by adding an interfacial force term into the governing equations, which is derived from the energy density function of the interfacial bonds. A potential function term sourced from the cohesive zone model (CZM) is reconstructed and then introduced into the peridynamic model to describe the cohesive interfaces. The failure criterion of interfacial debonding is determined by the calculation of interface fracture energy and interfacial energy density. Two benchmark examples, a through-cracked tensile test and a drop-weight test, have been conducted to establish the validity of the proposed model. The proposed model and approach are then employed to investigate the dynamic fracture mechanism of laminated glass under high velocity impacting loads.
机译:本文提出了一种考虑界面脱粘的扩展近场动力学(PD)模型,研究了夹层玻璃在低速和高速冲击载荷下的动态断裂行为。通过在控制方程中添加界面力项来描述不同材料之间的相互作用,该方程由界面键的能量密度函数推导而来。重构源自内聚区模型(CZM)的潜在函数项,然后引入近场动力学模型来描述内聚界面。界面脱粘的失效准则是通过计算界面断裂能量和界面能量密度确定的。我们进行了两个基准示例,即贯穿裂纹拉伸试验和落锤试验,以证明所提出模型的有效性。然后,采用所提出的模型和方法研究了夹层玻璃在高速冲击载荷作用下的动态断裂机理。

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