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A three dimensional modeling method for spherical open cell aluminum foams based on spherical core stratification algorithm

机译:一种基于球芯核心分层算法的球形开放电池铝泡沫的三维建模方法

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摘要

Because of the complexity and irregularity of the internal structure of aluminum foam, it is difficult to establish a three-dimensional model that can accurately reflect this structure. In this study, an algorithm, named spherical core stratification algorithm, for three-dimensional modeling of spherical aluminum foam was proposed, and by using this algorithm, a three-dimensional model for sphere aluminum foam with random pores has been successfully constructed. The constructed model not only has a high similarity with the real structure of spherical open cell aluminum foam, but also can match its pore size and thickness by adjusting the size and number of holes in the random pore. In order to verify the feasibility of the modeling method, firstly, the three-dimensional model of the cylindrical spherical aluminum foam with a size of Φ35 mm × 20 mm and pore diameter of 5 mm has been generated by using the new algorithm. Secondly, taking the influence of relative density and shape function on the compressive properties of spherical open cell aluminum foams into consideration, a quasi-static constitutive model suitable for the material has been established based on the Sherwood-Frost classical compression constitutive model, which provides material parameters for quasi-static compression simulation. The comparison results show that the established constitutive equation has a good fit with the experiment, with a fitting correlation coefficient of above 0.99. Finally, the quasi-static compression simulation was carried out by ABAQUS, and the simulated nominal stress-strain curve was obtained. The simulation results indicate that the simulated stress-strain curve had the same trend with the one obtained by the quasi-static compression experiment with a small deviation.
机译:由于铝泡沫内部结构的复杂性和不规则性,难以建立一种可以准确反映这种结构的三维模型。在本研究中,提出了一种算法,命名为球形核心分层算法,用于球形铝泡沫的三维建模,并通过使用该算法,成功构建了具有随机孔的球形泡沫的三维模型。构造的模型不仅具有与球面开孔铝泡沫的真实结构具有高相似性,而且还可以通过调节随机孔中的孔的尺寸和数量来匹配其孔径和厚度。为了验证建模方法的可行性,首先,通过使用新算法,已经产生了尺寸为φ35mm×20mm和孔径为5mm的圆柱形球形泡沫的三维模型。其次,采取相对密度和形状功能对球形开放电池铝泡沫的压缩性能考虑的影响,基于Sherwood-Frost经典压缩本构模型建立了适用于材料的准静态本构型模型,其提供准静态压缩仿真的材料参数。比较结果表明,已建立的本构体方程具有良好的实验良好,其拟合相关系数高于0.99。最后,通过ABAQUS进行准静态压缩模拟,获得模拟的标称应力 - 应变曲线。仿真结果表明,模拟应力 - 应变曲线具有与通过具有小偏差的准静态压缩实验获得的相同趋势。

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