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Simulation and experimental verification of a drop test and compression test of a gable top package

机译:山墙顶部包装的跌落测试和压缩测试的仿真和实验验证

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摘要

A finite element framework has been proposed that can be used to simulate both empty paperboard packages and package filled with plastic granulates. A gable top package was made of a commercial paperboard, and material properties needed in the material model were determined. Two simulations were performed, a drop test and a compression test. By comparison between experimental and numerical results, the deformation mechanisms at impact could be identified and correlated to material properties. When the package was filled with granulates, different mechanisms was activated compared with an empty package. The granulates contribute to bulging of the panels, such that the edges became more load bearing compared with the panels. When the edges carried the loads, the importance of the out-of-plane properties also increased, and local failure initiation related to delamination was observed. Comparison between experimental and numerical impact forces shows that there are still important things to consider in the model generation, eg, variation of properties within the package, which originate both from material property variations, and the loading history, eg, during manufacturing and handling.
机译:已经提出了可以用于模拟空纸板包装和填充有塑料颗粒的包装的有限元框架。山墙顶部包装由商业纸板制成,并确定了材料模型中所需的材料特性。进行了两个模拟,跌落测试和压缩测试。通过比较实验结果和数值结果,可以确定冲击时的变形机理并将其与材料特性相关联。当包装中充满颗粒时,与空包装相比,激活了不同的机制。颗粒有助于面板膨胀,因此与面板相比,边缘变得更加承重。当边缘承受载荷时,平面外属性的重要性也增加了,并且观察到与分层相关的局部破坏引发。实验和数值冲击力之间的比较表明,在模型生成中仍然需要考虑一些重要事项,例如,包装内的特性变化(例如,材料特性变化和加载历史(例如在制造和处理过程中))都应引起考虑。

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