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Simulation of thin aluminium-foil in the packaging industry

机译:包装工业中薄铝箔的仿真

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摘要

This work present an approach of how to account for the anisotropic mechanical material behaviour in the simulation models of the thin aluminium foil layer (≈10 μm) used in the Packaging Industry. Furthermore, the experimental results from uniaxial tensile tests are parameterised into an analytical expression and the slope of the hardening subsequently extended way beyond the experimental data points. This in order to accommodate the locally high stresses present in the experiments at the neck formation. An analytical expression, denominated Ramberg-Osgood, is used to describe the non-linear mechanical behaviour. Moreover it is possible with a direct method to translate the experimental uniaxial tensile test results into useful numerical material model parameters in Abaqus. In addition to this the extended material behaviour including the plastic flow i.e. hardening, valid after onset of localisation, the described procedure can also capture the microscopic events, i.e. geometrical thinning, ongoing in the deformation of the aluminium foil. This method has earlier successfully been applied by Petri Makela for paperboard material [1]. The engineering sound and parameterised description of the mechanical material behaviour facilitates an efficient categorisation of different aluminium foil alloys and aid the identification of the correct anisotropic (RD/TD/45°) mechanical material behaviour derived from the physical testing.
机译:这项工作提出了一种如何考虑包装工业中使用的薄铝箔层(≈10μm)的仿真模型中的各向异性机械材料行为的方法。此外,单轴拉伸试验的实验结果将分析表达和随后延伸超出实验数据点的延伸方式的分析表达和斜率。这是为了容纳颈部形成实验中存在的局部高应力。用于描述非线性机械行为的分析表达以分析表达为单位ramberg-Osgood。此外,可以使用直接方法将实验性单轴拉伸试验结果转化为ABAQUS中有用的数值材料模型参数。除此之外,包括塑料流动的延长材料行为,在局部化后有效,所描述的程序也可以捕获微观事件,即几何变薄,在铝箔的变形中持续。该方法早些时候成功地应用了纸板材料的Petri Makela [1]。机械材料行为的工程声音和参数化描述有助于有效分类不同的铝箔合金,并有助于鉴定源自物理测试的正确各向异性(RD / TD / 45°)机械材料行为。

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