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Nanocomposites biodegradable coating on BOPET films to enhance hot seal strength properties

机译:纳米复合材料在BOPET薄膜上可生物降解涂层,以增强热封强度性能

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The coating technology is a strategic solution to improve the properties of flexible packaging films. Indeed, additional functional layers are often designed and added as coating on the substrate, in order to improve the characteristic of the flexible packaging and to meet the requirements for the desired gas or vapour barrier, for adhesion and sealing, or for improving the film printability, its aesthetics and durability. Moreover, this technology allows to functionalize a polymeric substrate applying materials with different chemistry, rheology, thermal and structural characteristics. BOPET films are widely used for food packaging applications thanks to their good gas barrier and mechanical properties, high transparency and for the excellent printability. In regard to sealing performance, BOPET films show poor sealing properties so they are mostly submitted to lamination processes with polyethylene. Nevertheless, this solution compromises the PET recyclability and influences the gas permeability of the multilayer PET based structures. The aim of this work is to investigate on the effect of nanocomposite biodegradable coatings for BOPET substrates in enhancing the heat sealing strength of eco-compatible PET/PLA films. At this regards, different percentages of Cloisite C30B (0%, 2% and 4%wt/wt) have been added to PLA by solution intercalation technique and the nanocomposite biodegradable materials produced have been applied on BOPET commercial films by casting. The BOPET coated films have been characterized in order to evaluate the heat sealing strength and the mechanical, gas permeability and surface properties. The results have shown that the addition of nanoclay in PLA coating significantly enhance the hot tack properties of the PET/PLA system produced, while the oxygen and water vapour permeability are slightly increased if compared to pure BOPET films.
机译:涂层技术是提高软包装薄膜的性质的战略溶液。事实上,另外的功能层通常被设计和加入涂覆在基板上,在为了提高软包装的特性并满足所希望的气体或蒸汽屏障的要求,用于粘附和密封,或为改善膜的印刷性,它的美观和耐用性。此外,该技术允许官能具有不同化学,流变学,热和结构特征,采用的材料的聚合物基体。 BOPET膜广泛用于由于其良好的气体阻隔性能和机械性能,高透明食品包装应用和用于优异的印刷适性。对于密封性能,BOPET膜显示差的密封性能,以便它们大多与聚乙烯提交层压工艺。然而,这种解决方案会损害PET可回收性和影响基于多层PET结构的透气性。这个工作的目的是调查上的纳米复合材料的可生物降解涂层BOPET基板在加强生态兼容PET / PLA膜的热密封强度的影响。在这点上,的Cloisite C30B的不同百分比(0%,2%和4%重量/重量)已经通过溶液插层技术和生产已经通过铸造上BOPET商业片施加所述纳米复合材料可生物降解材料加入到PLA。所述BOPET涂布的膜已被表征,以评价热密封强度和机械,透气性和表面特性。结果表明,在PLA中添加纳米粘土涂布显著提高所产生的PET / PLA系统的热粘性能,而氧气和水蒸气渗透性相比纯BOPET薄膜略有增加,如果。

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