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Surface modification of biaxially oriented polypropylene (BOPP) film using acrylic acid-corona treatment: Part I. Properties and characterization of treated films

机译:使用丙烯酸电晕处理的双轴取向聚丙烯(BOPP)薄膜的表面改性:第一部分。已处理薄膜的性能和表征

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In this work, the acrylic acid (AAc)-corona discharge was carried out on biaxially oriented polypropylene (BOPP) films by introducing AAc vapor into the corona region of a normal corona treater. Three different corona energies of 15.3, 38.2 and 76.4kJ/m ~2 were studied. Surface properties of treated films were compared with those of air-corona treated films prepared with the same corona energies. The change in chemical composition on the film surface was characterized by curve-fitting of the ATR-FTIR spectra. The wettability of treated films, before and after aging in different environments, was observed by water contact angle and surface free energy. The surface morphology of air- and AAc-corona treated films was investigated using SEM and AFM techniques. Adhesion of the treated films to some other substrate was determined with the T-peeling test. It was found that the hydrophilicity of all treated films increased with increasing corona energy. AAc-corona treated films showed greater wettability than did the air-corona treated films and could retain the surface hydrophilicity for more than 90days of aging under ambient conditions. The surface morphology of BOPP films changed after corona treatment into a globular structure. The AAc-corona treated films showed rougher surfaces due to surface oxidation and polymer formation, whereas, air-corona treated films displayed a similar structure but of smaller size due to the formation of low molecular weight oxidized materials (LMWOM) arising from the degradation of BOPP films. AAc-corona treated films showed greater peel strength than did the air-corona treated films.
机译:在这项工作中,通过将AAc蒸气引入普通电晕处理器的电晕区域,在双轴取向聚丙烯(BOPP)膜上进行了丙烯酸(AAc)电晕放电。研究了三种不同的电晕能量15.3、38.2和76.4kJ / m〜2。将处理过的薄膜的表面性能与用相同电晕能量制备的空气电晕处理过的薄膜进行比较。膜表面化学成分的变化通过ATR-FTIR光谱的曲线拟合来表征。通过水接触角和表面自由能观察在不同环境中老化之前和之后处理过的膜的润湿性。使用SEM和AFM技术研究了空气和AAc电晕处理过的薄膜的表面形态。用T-剥离试验确定处理过的膜对某些其他基材的粘附性。已经发现,所有处理过的膜的亲水性都随着电晕能量的增加而增加。经AAc电晕处理的薄膜比经空气电晕处理的薄膜具有更高的润湿性,并且在环境条件下老化90天以上可以保持表面亲水性。电晕处理后,BOPP薄膜的表面形态变为球形结构。经过AAc电晕处理的薄膜由于表面氧化和形成了聚合物而显示出较粗糙的表面,而经过空气电晕处理的薄膜则显示出相似的结构,但尺寸较小,这是由于低分子量氧化材料(LMWOM)的降解引起的。 BOPP薄膜。经AAc电晕处理的薄膜比经空气电晕处理的薄膜具有更高的剥离强度。

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