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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Optimizing electric corona treatment for hydroxypropylated starch-based coatings
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Optimizing electric corona treatment for hydroxypropylated starch-based coatings

机译:优化羟丙基化淀粉基涂料的电晕处理

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The aim of this investigation was to determine the role of negative direct current and alternating current (plasma) corona treatments in modification of bio-based dispersion barrier coatings and the response of replacing fossil-based binder with a thermoplastic bio-based binder (starch). The study emphasizes the importance of understanding and optimizing electric corona discharge in order to obtain high oxidation level without harming the substrate and causing unintentional treatment of the reverse side. The coatings were exposed to different corona treatment conditions using a novel developed sheet-fed laboratory-scale device. Corona-induced topographical, mechanical and surface chemical changes were observed from atomic force microscopy (AFM), X-ray photoelectron spectroscopy (XPS), and contact angle and surface energy measurements. XPS results indicated further that partial starch decomposition occurred after plasma treatment. Coated surfaces became substantially smoother after both treatments suggesting that nanoparticle migration and re-orientation effects occurred. Additionally, reverse side effects and strike through were also discussed.
机译:该研究的目的是确定负直流和交流电流(血浆)电晕处理在生物基分散阻挡涂层改性中的作用及用热塑性生物基粘合剂(淀粉)替换化石粘合剂的响应。该研究强调了理解和优化电晕放电的重要性,以获得高氧化水平而不损伤基材并导致反面意外处理。使用新型开发的片材进料实验室级装置将涂层暴露于不同的电晕处理条件。从原子力显微镜(AFM),X射线光电子能谱(XPS)和接触角和表面能测量中观察到电晕诱导的地形,机械和表面化学变化。 XPS结果表明,血浆处理后发生部分淀粉分解。在两种治疗后,涂覆的表面变得大幅下滑,这表明纳米粒子迁移和再定向效应发生。另外,还讨论了反向副作用和罢工。

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