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Impact loading and modelling a multilayer aluminium corrugated/fin core: The effect of the insertion of imperfect fin layers

机译:冲击载荷和建模多层铝瓦楞/鳍芯:插入渗漏翅片层的效果

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The quasi-static compression (0.0048 m/s) and Taylor-like impact (135, 150, and 200 m/s) loading of a multilayer 1050 H14 aluminium corrugated core were investigated both experimentally and numerically in LS-DYNA using the perfect and imperfect sample models. In the imperfect sample models, one or two layers of corrugated fin structure were replaced by the fin layers made of bent-type cell walls. The localised deformation in the quasi-static imperfect models of cylindrical sample started at the imperfect layers, the same as the tests, and the layers were compressed until about the densification strain in a step-wise fashion. The localised deformation in the perfect models, however, started at the layers at and near the top and bottom of the test sample. In the shock mode, the sample crushed sequentially starting at the impact end layer regardless the perfect or imperfect sample models were used. Furthermore, the perfect and imperfect models resulted in nearly the same initial crushing stresses in the shock mode. The layer strain histories revealed a velocity-dependent layer densification strain. Both model types, the imperfect and perfect, well approximated the stress-time histories and layer deformations of the shock mode. The rigid perfectly plastic locking model based on the numerically determined densification strains also showed well agreements with the experimental and numerical plateau stresses of the shock mode.
机译:使用完美的和不完美的示例模型。在不完美的样品模型中,由弯曲型细胞壁制成的翅片层代替一层或两层瓦楞翅片结构。圆柱样品的准静态缺乏模型中的局部变形在不完美的层中开始,与测试相同,并且将层压缩直到致密化应变以逐步的方式。然而,完美模型中的本地化变形在测试样品的顶部和底部的层次和附近开始。在冲击模式下,依次在冲击端层开始粉碎的样品,无论使用完美或不完美的样本模型。此外,完美和不完美的模型导致了在冲击模式下几乎相同的初始粉碎应力。层应变历史揭示了速度依赖性层致密化应变。两个模型类型,不完美和完美,良好的近似应力时历史和震动模式的层变形。基于数值确定的致密化菌株的刚性完美塑料锁定模型也表现出与震动模式的实验性和数值高原应力的良好协议。

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