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Validation of a 3D damage model for predicting the response of composite structures under crushing loads

机译:用于预测复合结构在压碎载荷下的响应的3D损伤模型的验证

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摘要

A 3D intralaminar continuum damage mechanics based material model, combining damage mode interaction and material nonlinearity, was developed to predict the damage response of composite structures undergoing crush loading. This model captures the structural response without the need for calibration of experimentally determined material parameters. When used in the design of energy absorbing composite structures, it can reduce the dependence on physical testing. This paper validates this model against experimental data obtained from the literature and in-house testing. Results show that the model can predict the force response of the crushed composite structures with good accuracy. The simulated energy absorption in each test case was within 12% of the experimental value. Post-crush deformation and the damage morphologies, such as ply splitting, splaying and breakage, were also accurately reproduced. This study establishes the capability of this damage model for predicting the responses of composite structures under crushing loads.
机译:建立了基于3D层内连续介质损伤力学的材料模型,结合了损伤模式相互作用和材料非线性,以预测承受挤压载荷的复合结构的损伤响应。该模型无需校准实验确定的材料参数即可捕获结构响应。当用于吸能复合结构的设计时,它可以减少对物理测试的依赖。本文根据从文献和内部测试获得的实验数据验证了该模型。结果表明,该模型可以较好地预测复合材料结构的受力情况。在每个测试案例中,模拟的能量吸收都在实验值的12%以内。破碎后的变形和损伤形态(如层裂,张开和断裂)也得到了精确的再现。这项研究建立了这种损伤模型预测复合结构在压碎载荷下的响应的能力。

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