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首页> 外文期刊>International Journal of Damage Mechanics >Modelling of mixed damage on fibre reinforced composite laminates subjected to low velocity impact
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Modelling of mixed damage on fibre reinforced composite laminates subjected to low velocity impact

机译:低速冲击下纤维增强复合材料层压板的混合损伤建模

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摘要

This article presents a numerical technique for the computation of damage in fibre-reinforced laminated composites which is embedded into an explicit finite element method. The technique is composed of two main components. First, a novel characterisation of the directions in which the various modes of damage propagate, which produces an effective damage localisation. This is conducted taking into consideration the strain-rate dependence. Second, a new mapping between the strain and stress spaces for the computation of the damage surfaces whereby time-stepping convergence is enhanced. Additionally, new damage initiation criteria in terms of strain damage surfaces are presented. Details of the in-house code developed are presented as well as the programming features. The capabilities of the technique are shown by means of tests on single fibre-reinforced element and low velocity impact on the laminate. It is shown that delamination is located in the expected regions by gradual progression of internal damage variables.
机译:本文提出了一种用于计算纤维增强层压复合材料损伤的数值技术,该技术被嵌入到显式有限元方法中。该技术由两个主要部分组成。首先,对各种损伤模式传播的方向进行了新颖的表征,从而产生了有效的损伤定位。这是在考虑应变率依赖性的情况下进行的。第二,应变空间和应力空间之间的新映射,用于计算损坏表面,从而增强了时间步长收敛。另外,提出了关于应变损伤表面的新的损伤引发标准。介绍了开发的内部代码的详细信息以及编程功能。通过对单个纤维增强元件的测试以及对层压板的低速冲击,显示了该技术的功能。结果表明,分层是通过内部损伤变量的逐步进行而位于预期区域中的。

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