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Rate-Dependent Cohesive Zone Model for Fracture Simulation of Soda-Lime Glass Plate

机译:碳酸钠-石灰玻璃板断裂模拟中的基于速率的内聚区模型

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摘要

In this paper, rate-dependent cohesive zone model was established to numerical simulate the fracture process of soda-lime glass under impact loading. Soda-lime glass is widely used in architecture and automobile industry due to its transparency. To improve the accuracy of fracture simulation of soda-lime glass under impact loading, strain rate effect was taken into consideration and a rate-dependent cohesive zone model was established. Tensile-shear mixed mode fracture was also taken account. The rate-dependent cohesive zone model was implemented in the commercial finite element code ABAQUS/Explicit with the user subroutine VUMAT. The fracture behavior of a monolithic glass plate impacted by a hemispherical impactor was simulated. The simulation results demonstrated that the rate-dependent cohesive zone model is more suitable to describe the impact failure characteristics of a monolithic glass plate, compared to cohesive zone model without consideration of strain rate. Moreover, the effect of the strain rate sensitivity coefficient , the mesh size of glass plate and the impact velocity on the fracture characteristics were studied.
机译:本文建立了速率依赖的内聚区模型,对钠钙玻璃在冲击载荷作用下的断裂过程进行了数值模拟。钠钙玻璃由于其透明性而广泛用于建筑和汽车工业。为了提高钠钙玻璃在冲击载荷作用下断裂模拟的准确性,考虑了应变速率效应,建立了基于速率的内聚区模型。还考虑了拉伸剪切混合模式断裂。速率相关的内聚区模型是使用用户子例程VUMAT在商业有限元代码ABAQUS / Explicit中实现的。模拟了受半球形冲击器冲击的整体玻璃板的断裂行为。仿真结果表明,与不考虑应变速率的内聚区模型相比,基于速率的内聚区模型更适合描述整体玻璃板的冲击破坏特性。此外,研究了应变速率敏感性系数,玻璃板的网眼尺寸和冲击速度对断裂特性的影响。

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