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Compressive Deformation in Aluminum Foam Investigated Using a 2D Object Oriented Finite Element Modeling Approach

机译:使用二维面向对象的有限元建模方法研究铝泡沫的压缩变形

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摘要

The stochastic nature of aluminum foam structure, having a random distribution of voids, makes it difficult to model its compressive deformation behavior accurately. In this paper, a 2-dimensional simplified modeling approach is introduced to analyze the compressive deformation behavior that occurs in Alporas aluminum foam (Al foam). This has been achieved using image analysis on real undeformed aluminum foam images obtained by VHX-100 digital microscope. Finite element mesh for the cross sectional model is generated with Object Oriented Finite element (OOF) method combined with ABAQUS structural analysis. It is expected that OOF modeling enable prediction of the origin of failure in terms of localized deformation with respect to the microstructural details. Furthermore, strain concentration sites leading to the evolution of the deformation band can be visualized. Thus, this investigation addresses the local inhomogeneity in the Al foam structure. This study implies that the OOF modeling approach combined with experimental observations can provide better insight into the understanding of aluminum foam compressive deformation behavior.
机译:泡沫铝结构的随机性具有空隙的随机分布,因此很难准确地模拟其压缩变形行为。在本文中,引入了二维简化建模方法来分析Alporas泡沫铝(Al泡沫)中发生的压缩变形行为。这是通过对通过VHX-100数字显微镜获得的真实未变形铝泡沫图像进行图像分析而实现的。通过面向对象的有限元(OOF)方法结合ABAQUS结构分析生成了横截面模型的有限元网格。期望OOF建模能够根据微观结构细节的局部变形来预测失效的起源。此外,可以看到导致变形带发展的应变集中点。因此,该研究解决了Al泡沫结构中的局部不均匀性。这项研究表明,OOF建模方法与实验观察相结合可以更好地了解泡沫铝的压缩变形行为。

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