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Dynamic response of functionally graded cellular materials based on the Voronoi model

机译:基于Voronoi模型的功能梯度细胞材料的动态响应

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Dynamic behavior of Voronoi cellular materials with density gradient subjected to constant velocity impact was simulated and analyzed by employing the Ls-dyna 971. The introduction of density gradients may significantly influence the global performance of cellular materials, so in order to probe the failure mechanism and stress transmission, firstly, deformation modes of graded Voronoi models are investigated in details. The approach of capturing the first critical velocity of the deformation mode transformation in uniform cellular materials was extended to the graded cases. Meanwhile, a new method based on the local strain was developed to determine the second critical velocity. Afterwards, the variations of the crushing stress and the plateau stress at both the impact and stationary sides were taken into consideration in the study. Furthermore, the density gradient was introduced into the shock wave theory based on R-P-P-L model to predict the response of the graded cases. Additionally, the feasibility to use the graded materials as a protective coating and the variation of densification strain were sketched. This research may provide valuable insight into engineering applications of the graded cellular materials. (C) 2015 Elsevier Ltd. All rights reserved.
机译:利用Ls-dyna 971模拟和分析了密度梯度受到恒定速度冲击的Voronoi细胞材料的动力学行为。密度梯度的引入可能会显着影响细胞材料的整体性能,因此,以探究其破坏机理和机理。应力传递,首先,详细研究了梯度Voronoi模型的变形模式。捕获均匀细胞材料中变形模式转变的第一临界速度的方法已扩展到分级情况。同时,开发了一种基于局部应变的新方法来确定第二临界速度。之后,在研究中考虑了冲击侧和固定侧的压应力和平台应力的变化。此外,将密度梯度引入基于R-P-P-L模型的冲击波理论中,以预测分级情况的响应。此外,还概述了使用渐变材料作为保护涂层的可行性以及致密化应变的变化。这项研究可以为分级蜂窝材料的工程应用提供有价值的见解。 (C)2015 Elsevier Ltd.保留所有权利。

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