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Development of improved polypropylene adhesive bonding by abrasion and atmospheric plasma surface modifications

机译:通过磨损和大气等离子体表面改性开发改进的聚丙烯粘合剂

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摘要

The present work deals with the problematic adhesive bonding of substrates with low surface energy. Different approaches have been explored with the aim of creating adequate adhesive joints based on polyolefinic substrate and polyurethane adhesive. The selected material under study was polypropylene (PP) as adherend, and a commercial Sikaflex®-252 polyurethane one component based structural adhesive (PU) as joint fluid. Among the diverse pre-treatments typically used to prepare surfaces prior to bonding, mechanical abrasion with emery paper of 80 grain size, the use of a chemical primer and atmospheric pressure air plasma torch (APPT) were the selected methods to facilitate the application of the PU by means of surface energy enhancement as well as to create a correct mechanical interlocking of the adherent-adhesive interface. Changes in the wettability of the polymer were evaluated by contact angle measurements following the UNE EN 828:2010. Surface energy was calculated both in terms of Owens approximation and acid-base considerations, leading to the possibility of determining a relationship between changes in surface energy and adhesion. Changes in the chemical composition of the surface were studied by X-ray photoelectron spectroscopy (XPS), electron diffraction X-Ray (EDX) probe and attenuated total multiple reflection mode infrared spectroscopy (ATR-FTIR). Morphological modifications were investigated with scanning electron microscopy (SEM). Variations in the strength of single-lap PP-PP joints with the treatments were evaluated by lap shear tests following the UNE-EN 1465:2008 standard. Experimental evidence supports the superiority of the APPT treatment to increase wettability and adhesion of polyolefinic surfaces, especially when combined with the use of a primer.
机译:本工作解决了具有低表面能的基材的粘合剂粘结问题。为了创建基于聚烯烃基底和聚氨酯粘合剂的足够的粘合剂接头,已经探索了不同的方法。所选的研究材料是聚丙烯(PP)作为被粘物,以及商用Sikaflex®-252聚氨酯单组分基结构胶(PU)作为连接液。在通常用于粘合前准备表面的各种预处理,80粒度砂纸的机械磨蚀,化学底漆的使用和大气压空气等离子炬(APPT)等选择的方法中,可以方便地进行表面处理。通过表面能增强以及形成粘合-粘合界面的正确机械互锁来实现PU。遵循UNE EN 828:2010,通过接触角测量来评估聚合物的润湿性变化。表面能是根据欧文斯近似值和酸碱因素来计算的,从而有可能确定表面能的变化与附着力之间的关系。通过X射线光电子能谱(XPS),电子衍射X射线(EDX)探针和衰减全反射模式红外光谱(ATR-FTIR)研究了表面化学成分的变化。用扫描电子显微镜(SEM)研究形态学变化。根据UNE-EN 1465:2008标准,通过搭接剪切试验评估了单搭接PP-PP接头强度随处理的变化。实验证据支持APPT处理在提高聚烯烃表面的润湿性和粘附性方面的优势,尤其是与底漆结合使用时。

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