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Numerical simulation of open-cell aluminum foams under compression

机译:压缩下开放式铝泡沫的数值模拟

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The numerical simulation of the compression behavior of open-cell aluminum foams is discussed as a way to extract material property information for laser forming simulation. A bilinear isotropic model was implemented for the alloy base material whereas a parametric approach was used to build the finite element model of the foam structure. Compression tests were performed on commercial foams with different pore size and density, and the results of lower density foam were used for the model validation. Numerical results show a good agreement with experimental data in terms of foam deformation under compression and required loads.
机译:讨论了开放式铝泡沫的压缩行为的数值模拟作为提取激光形成模拟的材料特性信息的方法。为合金基材实施了双线性各向同性模型,而参数化方法用于构建泡沫结构的有限元模型。在具有不同孔径和密度的商业泡沫上进行压缩试验,使用较低密度泡沫的结果用于模型验证。数值结果与压缩和所需载荷下的泡沫变形方面具有良好的吻合。

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