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Evaluation of the Thickness and Oxygen Transmission Rate before and after Thermoforming Mono- and Multi-layer Sheets into Trays with Variable Depth

机译:将单层和多层板热成型为可变深度的托盘前后的厚度和氧气传输速率的评估

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During thermoforming, plastic sheets are heated and subsequently deformed through the application of mechanical stretching and/or pressure. This process directly impacts sheet properties such as material thickness in walls, corners, and bottom, crystallinity in the constituent layers, and particularly the oxygen gas permeability. The aim of this study was to quantify the impact of thermoforming on thickness and oxygen transmission rate (OTR) of selected packaging materials (polypropylene (PP); PP/ethylene-vinyl alcohol co-polymer/PP (PP/EVOH/PP); polystyrene/EVOH/polyethylene (PS/EVOH/PE); amorphous polyethylene terephtalate/PE (APET/PE); APET/PE/EVOH/PE; polyamide/PE (PA/PE); and (PE/)PA/EVOH/PA/PE). These materials were extruded in two different thicknesses and thermoformed into trays with the same top dimensions and variable depths of 25, 50, and/or 75 mm and a 50 mm tray with a variable radius of the corners. The distribution of the material thickness in the trays was visualized, showing the locations that were most affected by the deep drawn process. The OTR results indicate that the calculated OTR, based on a homogeneous material distribution, can be used as a rough approximation of the measured OTR. However, detailed analysis of crystallization and unequal thinning, which is also related to the tray design, remains necessary to explain the deviation of the measured OTR as compared to the predicted one.
机译:在热成型期间,塑料片被加热并且随后通过施加机械拉伸和/或压力而变形。该过程直接影响片材性能,例如壁,角和底部的材料厚度,组成层的结晶度,尤其是氧气的渗透性。这项研究的目的是量化热成型对所选包装材料(聚丙烯(PP); PP /乙烯-乙烯醇共聚物/ PP(PP / EVOH / PP);厚度)和厚度的影响。聚苯乙烯/ EVOH /聚乙烯(PS / EVOH / PE);无定形聚对苯二甲酸乙二酯/ PE(APET / PE); APET / PE / EVOH / PE;聚酰胺/ PE(PA / PE);和(PE /)PA / EVOH / PA / PE)。这些材料被挤压成两种不同的厚度,然后热成型为具有相同顶部尺寸和可变深度(分别为25、50和/或75毫米)的托盘和具有可变拐角半径的50毫米托盘。可视化了托盘中材料厚度的分布,显示了受深冲过程影响最大的位置。 OTR结果表明,基于均匀材料分布计算出的OTR可以用作所测OTR的粗略近似值。但是,仍然需要对结晶和不均等稀化进行详细分析,这也与塔盘设计有关,以解释测得的OTR与预测值相比的偏差。

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