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A novel approach toward the effect of seal process parameters on final seal strength and microstructure of LLDPE

机译:密封工艺参数对LLDPE最终密封强度和微观结构影响的新方法

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摘要

The optimization of heat-sealing process parameters, including time, temperature, and pressure, was performed on a monolayer linear low-density polyethylene (LLDPE) film. The seal properties examined for each process condition were: seal initiation temperature (T_(si)), plateau initiation temperature (T_(pi)), final plateau temperature (T_(pf)), plateau seal strength (SS_p), and failure mode. Increasing dwell time enhanced seal strength. However, it was found that the rate of this enhancement is different for each interval of dwell time. A narrow temperature plateau was observed for dwell times lower than 0.4 s and higher than 2 s, while in between a broad temperature window was observed. The pressure shows its influence up to the stage of wetting. And after providing the intimate contact between two film layers, additional increase in pressure does not enhance seal strength significantly. A 3D mapping of process safety zone was introduced for seal strength in the range of heat seal process variables for the very first time. The analysis of this 3D representation revealed that seal strength has a linear correlation with the square root of dwell time. In addition, the interfacial bond strength was shown to be proportional to the fraction of melted crystals. It was found that this fraction is determined by dwell time and temperature. Topography and morphology of surfaces after peeling revealed enlargement of fibrillar morphology to taller failure fracture complex shapes. Extensive roughness analysis on film surfaces after peeling found the much rougher surfaces after breakage of strong bonding.
机译:在单层线性低密度聚乙烯(LLDPE)膜上对包括时间,温度和压力在内的热封工艺参数进行了优化。针对每种工艺条件检查的密封性能为:密封起始温度(T_(si)),平稳起始温度(T_(pi)),最终平稳温度(T_(pf)),平稳密封强度(SS_p)和失效模式。延长保压时间会提高密封强度。但是,发现对于每个停留时间间隔,这种增强的速率是不同的。观察到狭窄的温度平稳期,停留时间低于0.4 s,高于2 s,而在此之间观察到较宽的温度窗口。压力显示了其在润湿阶段的影响。并且在提供两个膜层之间的紧密接触之后,压力的额外增加不会显着增强密封强度。首次引入了过程安全区的3D映射,以在热封过程变量范围内实现密封强度。对3D表示的分析表明,密封强度与保压时间的平方根呈线性关系。另外,界面粘结强度显示出与熔融晶体的分数成比例。发现该分数由停留时间和温度确定。剥离后表面的形貌和形态显示原纤维形态扩大到较高的破坏断裂复杂形状。剥离后对薄膜表面进行的广泛粗糙度分析发现,断开牢固粘合后,表面会粗糙得多。

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