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Improvement of adhesion properties of polypropylene substrates by methyl methacrylate UV photografting surface treatment

机译:甲基丙烯酸甲酯UV光接枝表面处理改善聚丙烯基材的粘合性能

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摘要

Polypropylene is a widely used commodity plastic from an industrial point of view. Typical applications include both low and high technological content, as it has a good balance between overall properties, pro cessability and cost. However, it is important to remark its intrinsic low surface energy which leads to high chemical inertness. This has an important restriction on some technical applications that require joining and/or finishing processes such as painting. Therefore, the use of polypropylene in these applica tions requires previous surface modification in order to increase surface activity. Surface modification can be carried out by physical processes such as plasmas or by chemical ways. Surface chemical modification is characterized by relatively low cost and easy implementation at industrial scale. In this work, we have used a chemical process to improve adhesion properties on polypropylene substrates. The selected method has been ultraviolet photografting of methyl methacrylate (MMA) monomer. This process allows increasing surface activity and this has a positive effect on polypropylene-polypropylene adhesion joints. Surface changes have been followed by contact angle measurements and subsequent surface free energy calculation. The evolution of mechanical properties of adhesion joints (T-peel and shear conditions) in terms of the previous exposure time to UV radiation has been evaluated. Optical microscopy (OM) and scanning electron microscopy (SEM) have been used to characterize adhesion fracture type.
机译:从工业角度来看,聚丙烯是一种广泛使用的商品塑料。典型的应用包括技术含量的高低,因为它在整体性能,可加工性和成本之间具有良好的平衡。但是,重要的是要指出其固有的低表面能,这会导致较高的化学惰性。这对某些需要连接和/或精加工过程(例如涂漆)的技术应用具有重要限制。因此,在这些应用中使用聚丙烯需要预先进行表面改性以增加表面活性。表面改性可以通过诸如等离子体的物理过程或通过化学方式进行。表面化学改性的特点是成本相对较低,并且易于在工业规模上实施。在这项工作中,我们使用化学工艺来改善在聚丙烯基材上的粘合性能。选择的方法是甲基丙烯酸甲酯(MMA)单体的紫外光接枝。此过程可提高表面活性,并且对聚丙烯-聚丙烯粘合接头具有积极作用。表面变化之后是接触角测量和随后的表面自由能计算。已经评估了粘合接头的机械性能(T型剥离和剪切条件)相对于先前暴露于紫外线辐射时间的变化。光学显微镜(OM)和扫描电子显微镜(SEM)已用于表征粘连断裂类型。

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  • 来源
    《Materials & design》 |2012年第1期|p.1-10|共10页
  • 作者单位

    Materials Technology Institute (ITM), Polytechnic University of Valencia, Plaza Fenandiz y Carbonell s, 03801 Alcoy (Alicante), Spain;

    Materials Technology Institute (ITM), Polytechnic University of Valencia, Plaza Fenandiz y Carbonell s, 03801 Alcoy (Alicante), Spain;

    Materials Technology Institute (ITM), Polytechnic University of Valencia, Plaza Fenandiz y Carbonell s, 03801 Alcoy (Alicante), Spain;

    Materials Technology Institute (ITM), Polytechnic University of Valencia, Plaza Fenandiz y Carbonell s, 03801 Alcoy (Alicante), Spain;

    Materials Technology Institute (ITM), Polytechnic University of Valencia, Plaza Fenandiz y Carbonell s, 03801 Alcoy (Alicante), Spain;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    surface treatment; adhesion; polymers: thermoplastics;

    机译:表面处理;附着力;聚合物:热塑性塑料;

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