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PREDICTING THE PERFORMANCE OF IONOMER FILMS IN HEAT-SEAL PROCESSES

机译:预测热封工艺中离聚物膜的性能

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The heat-seal performance of a flexible plastic package depends on the sealing bar temperature, packaging line speed, film thickness and properties of the sealant resin. For a given sealant, thinner films reach their ultimate seal strength at lower bar temperatures and faster line speeds than thicker films. A model is developed that relates these factors to the amount of molecular penetration that develops at the heat-seal interface of ionomer films. A critical value of the penetration is found that corresponds to the ultimate heat-seal strength in laboratory heat-seal data. The results point to how laboratory data may be used to predict the sealing performance of ionomers on high-speed packaging lines.
机译:柔性塑料封装的热封性能取决于密封杆温度,包装线速度,膜厚度和密封胶树脂的性能。 对于给定的密封剂,较薄的薄膜在较低的薄膜温度下达到其最终的密封强度,并且比较厚的薄膜更快的线速度。 开发了一种模型,其将这些因素与离聚物膜的热密封界面产生的分子渗透量相关。 发现渗透的临界值,其对应于实验室热密封数据中的最终热封强度。 结果指出了实验室数据如何用于预测高速包装线上离聚物的密封性能。

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