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Evaluation Of A Bio-coating As A Solution To Improve Barrier, Friction And Optical Properties Of Plastic Films

机译:评价生物涂层作为改善塑料膜的阻隔,摩擦和光学性能的解决方案

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The present research dealt with evaluating barrier, friction and optical properties of three different plastic films after deposition of a gelatin-based bio-coating. The composite films showed improved barrier properties against oxygen and UV radiation. The oxygen transmission rate decreased in the order of 73% for oriented polypropylene (OPP), 56% for low-density polyethylene (LDPE) and 40% for polyethylene terephthalate (PET). The increased UV barrier characteristics ranged from 20% for OPP to 12% for both LDPE and PET. Static and kinetic coefficients of friction significantly decreased both in the film-to-film and in the film-to-metal tests, leading to a desirable value for many applications. However, bio-coated films showed lower optical performances in terms of transparency and haze. Transparency decreased mainly for LDPE (36%), whereas the haze index increased especially for OPP (85%). Non-significant differences were observed as far as the water vapour permeability was concerned, except for a slight reduction for PET (from 15.78 to 13.53 cm~3/m~2/day at 23℃ and 90% of relative humidity), suggesting that non-meaningful effects arose front the addition of a hydrophobic component in the original formulation. Finally, the solubility of the coating in water was around 25% for all the three plastic substrates. The obtained data suggest that the lipid protein coating tested in this study, in spite of its great potential for enhancing some characteristics of plastic packaging films, still exhibits negative aspects which necessitate further improvement.
机译:本研究涉及在沉积基于明胶的生物涂层后评估三种不同塑料薄膜的阻挡,摩擦和光学性能。复合膜表现出改善的对氧气和紫外线辐射的阻隔性能。定向聚丙烯(OPP)的氧气透过率降低约73%,低密度聚乙烯(LDPE)降低56%,聚对苯二甲酸乙二醇酯(PET)降低40%。增加的紫外线阻隔特性范围从OPP的20%到LDPE和PET的12%不等。在膜对膜测试和膜对金属测试中,静摩擦系数和动摩擦系数均显着降低,从而为许多应用提供了理想的数值。但是,生物涂层膜在透明度和雾度方面显示出较低的光学性能。透明度主要是针对LDPE下降(36%),而雾度指数尤其是对OPP上升(85%)。就水蒸气渗透率而言,没有观察到显着差异,除了PET略有降低(在23℃和90%的相对湿度下从15.78降至13.53 cm〜3 / m〜2 / day),这表明在原始配方中添加疏水性成分之前会产生无意义的影响。最后,对于所有三种塑料基材,涂层在水中的溶解度约为25%。获得的数据表明,尽管这项研究中测试的脂质蛋白涂层具有增强塑料包装薄膜某些特性的巨大潜力,但仍显示出不利的方面,需要进一步改进。

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