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Constitutive Modeling of the Mechanics of Polyethylene Films in Stretch Wrapping Processes

机译:拉伸包装过程中聚乙烯薄膜力学的本构模拟

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This study contributes to the optimization of lightweight packaging concepts regarding their stability. A very widespread packaging concept is the distribution of goods on a pallet whereas a Polyethylene (PE) stretch film stabilizes the lightweight structure during the shipment. Usually, a stretch wrapping machine applies this stretch film to the pallet. Stiffness and internal stresses of the applied stretch film decisively influence the cohesion of the packaging system but they are difficult to adjust, as the strain history during the wrapping process has a substantial impact on the mechanical behavior of the stretched film on the pallet. Accordingly, the process designer has to reflect the strain history dependent mechanical behavior of stretch film to make optimum use of the packaging material. For this purpose, this study experimentally calibrates a constitutive model of the stretch film. The calibrated model enables us to compute the result of the wrapping process depending on the process parameters during stretch wrapping. We use this result as a base for further numerical and experimental investigations on pallet stability.
机译:本研究有助于优化对其稳定性的轻质包装概念。一个非常广泛的包装概念是托盘上的货物的分布,而聚乙烯(PE)拉伸薄膜在装运过程中稳定轻质结构。通常,拉伸包装机将该拉伸薄膜施加到托盘上。施加的拉伸膜的刚度和内应力致死地影响包装系统的内聚力,但由于包裹过程中的应变历史难以调节,因为包裹过程中的应变历史对托盘上拉伸薄膜的力学行为产生了显着的影响。因此,工艺设计者必须反映拉伸膜的应变历史依赖性力学行为,以实现包装材料的最佳用途。为此目的,本研究通过实验校准拉伸膜的组成型模型。校准模型使我们能够根据拉伸包装过程中的过程参数来计算包装过程的结果。我们将此结果作为基础,以便在托盘稳定性上进一步的数值和实验研究。

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