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Modelling damage evolution in composite laminates subjected to low velocity impact

机译:模拟低速冲击下复合材料层压板的损伤演化

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In this paper, the impact damage of composite laminates in the form of intra- and inter-laminar cracking was modelled using stress-based criteria for damage initiation, and fracture mechanics techniques to capture its evolution. The nonlinear shear behaviour of the composite was described by the Soutis shear stress-strain semi-empirical formula. The finite element (FE) method was employed to simulate the behaviour of the composite under low velocity impact. Interface cohesive elements were inserted between plies with appropriate mixed-mode damage laws to model delamination. The damage model was implemented in the FE code (Abaqus/Explicit) by a user-defined material subroutine (VUMAT). Numerical results in general gave a good agreement when compared to experimentally obtained curves of impact force and absorbed energy versus time. The various damage mechanisms introduced during the impact event were observed by non-destructive technique (NDT) X-ray radiography and were successfully captured numerically by the proposed damage evolution model.
机译:在本文中,使用基于应力的损伤初始判据和断裂力学技术来捕获层合板内部和层间开裂形式的复合材料层板的冲击损伤。用Soutis剪应力-应变半经验公式描述了复合材料的非线性剪切行为。有限元(FE)方法被用来模拟复合材料在低速冲击下的行为。将界面粘结元素插入具有适当混合模式损伤定律的层之间,以对分层进行建模。损坏模型是通过用户定义的材料子例程(VUMAT)在FE代码(Abaqus / Explicit)中实现的。与实验获得的冲击力和吸收能量随时间变化的曲线相比,数值结果总体上具有很好的一致性。通过非破坏性技术(NDT)X射线照相观察到了撞击事件中引入的各种损伤机制,并通过提出的损伤演化模型成功地对其进行了数值捕获。

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