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Effect of mechanical, barrier and adhesion properties on oxygen plasma surface modified PP

机译:机械性能,阻隔性能和粘附性能对氧等离子体表面改性PP的影响

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In this work, the Polypropylene (PP) film was surface modified by Oxygen plasma treatment and the effect of mechanical, barrier and adhesion properties was studied. The PP film was plasma treated with various RF power settings of 7.2 W, 10.2 W and 29.6 Win various time intervals of 60 s, 120 s, 180 s, 240 s and 300 s. To characterize the wettability, the contact angle was measured and the surface energy values were estimated with different test liquids. The generation of oxygen functional groups on the surface of plasma modified PP and the surface change characterization were observed by attenuated total reflection-Fourier transform infrared spectroscope (ATR-FTIR) and they resulted in wettability improvement The roughness of the PP film and the surface morphology were analyzed by Atomic Force Microscopy (AFM). It was found that the roughness value increased from 1.491 nm to 726 nm because of the increase of treatment time and RF power. The PP crystallinity structure of the untreated and treated PP was evaluated by X-ray diffraction analysis (XRD). The bond strength of the untreated and surface modified films were measured by T-peel test method. For the untreated and oxygen plasma treated sample, the mechanical properties like Tensile Strength and the barrier properties like oxygen transmission rate (OTR), Water vapor transmission rate (WVTR) were also calculated. From the results, the tensile strength reduced from 6 MPa to 1.350 MPa because of polypropylene etching and degradation. The OTR increased from 1851.2 to 2248.92 cc/m(2)/24 h and the Water vapor transmission rate increased from 9.6 to 14.24 g/m(2)/24 h. Industrial Relevance: Plasma technology applied to packaging and printing industry is a dry, environmentally- and worker-friendly method to achieve surface alteration without modifying the bulk properties of different materials. In particular, atmospheric non-thermal plasmas are suited because most are heat sensitive polymers and applicable in continuous process. In the last years plasma technology has become a very active, high growth research field, assuming a great importance among all available material surface modifications in packaging industry. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在这项工作中,通过氧等离子体处理对聚丙烯(PP)膜进行了表面改性,并研究了机械,阻隔和粘附性能的影响。用7.2 W,10.2 W和29.6 Win的各种RF功率设置对PP薄膜进行等离子处理,时间间隔分别为60 s,120 s,180 s,240 s和300 s。为了表征润湿性,测量了接触角并用不同的测试液体估算了表面能值。用衰减全反射-傅立叶变换红外光谱仪(ATR-FTIR)观察了等离子体改性PP表面氧官能团的产生和表面变化特征,从而改善了润湿性PP膜的粗糙度和表面形态用原子力显微镜(AFM)分析。发现由于处理时间和RF功率的增加,粗糙度值从1.491nm增加到726nm。通过X射线衍射分析(XRD)评估未处理和处理后的PP的PP结晶度结构。通过T-剥离试验法测量未处理的膜和表面改性的膜的粘合强度。对于未处理和氧等离子体处理的样品,还计算了机械性能(如拉伸强度)和阻隔性能(如氧气透过率(OTR),水蒸气透过率(WVTR))。结果表明,由于聚丙烯蚀刻和降解,拉伸强度从6 MPa降低到1.350 MPa。 OTR从1851.2增加到2248.92 cc / m(2)/ 24 h,水蒸气透过率从9.6增加到14.24 g / m(2)/ 24 h。行业相关性:在包装和印刷行业中应用等离子技术是一种干燥,对环境和工人友好的方法,可在不改变不同材料的整体性能的情况下实现表面变化。特别地,大气非热等离子体是合适的,因为大多数是热敏聚合物并且可用于连续过程中。在过去的几年中,等离子体技术已经成为非常活跃的,高增长的研究领域,在包装工业中所有可用的材料表面改性中都占有重要的地位。 (C)2015 Elsevier Ltd.保留所有权利。

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