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首页> 外文期刊>Applied Surface Science >Influence of gas and treatment time on the surface modification of EPDM rubber treated at afterglow microwave plasmas
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Influence of gas and treatment time on the surface modification of EPDM rubber treated at afterglow microwave plasmas

机译:气体和处理时间对余辉微波等离子体处理的EPDM橡胶表面改性的影响

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摘要

The ethylene propylene diene monomer (EPDM) rubber possesses excellent physical/chemical bulk properties, is cost-effective, and has been used in the mechanical and aerospace industry. However, it has an inert surface and needs a surface treatment in order to improve its adhesion properties. Plasma modification is the most accepted technique for surface modification of polymers without affecting the properties of the bulk. In this study, an afterglow microwave plasma reactor was used to generate the plasma species responsible for the EPDM surface modification. The plasma modified surfaces were analyzed by means of contact angle measurement, adhesion tests, attenuated total reflection-infrared spectroscopy, X-ray photoelectron spectroscopy and scanning electron microscopy. Two experimental variables were analyzed: type of the plasma gases and exposure time were considered. The predominant failure mode was adhesive, for long treatment times a mixture of adhesive and cohesive failure can be observed and the best conditions tested there was an increase of the rupture strength of about 27%, that can be associated mainly with the creation of oxygen containing functional groups on the rubber surface (C-O, C-O-C and C=O) identified by spectroscopic methods. The predominant failure mode was adhesive, for long treatment times a mixture of adhesive and cohesive failure can be observed. In various conditions tested the contact angles easily decreased more than 500%. What can be concluded that high wettability is a necessary condition to obtain good adhesion, but this is not a sufficient condition.
机译:乙丙二烯单体(EPDM)橡胶具有出色的物理/化学本体性能,具有成本效益,并已用于机械和航空航天工业。但是,它具有惰性表面,并且需要表面处理以改善其粘合性能。等离子体改性是在不影响本体性能的情况下对聚合物进行表面改性的最广泛接受的技术。在这项研究中,余辉微波等离子体反应器用于生成负责EPDM表面改性的等离子体物质。通过接触角测量,附着力测试,衰减全反射红外光谱,X射线光电子能谱和扫描电子显微镜来分析等离子体改性的表面。分析了两个实验变量:考虑了等离子体气体的类型和暴露时间。主要的破坏模式是粘合剂,在较长的处理时间中,可以观察到粘合剂和内聚破坏的混合物,并且在测试的最佳条件下,断裂强度增加了约27%,这主要与产生含氧量有关。通过光谱法确定的橡胶表面上的官能团(CO,COC和C = O)。主要的失效模式是粘合剂,对于较长的治疗时间,可以观察到粘合剂和内聚破坏的混合物。在各种测试条件下,接触角很容易降低500%以上。可以得出结论,高润湿性是获得良好附着力的必要条件,但这不是充分条件。

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  • 来源
    《Applied Surface Science》 |2013年第ptab期|918-926|共9页
  • 作者单位

    Plasmas and Processes Laboratory, Department of Physics, Technological Institute of Aeronautics, 12228-900 S.J. dos Campos, SP, Brazil,EBO, Chemistry Division, IAE, CTA, 12228-900 S. J. dos Campos, SP, Brazil;

    Plasmas and Processes Laboratory, Department of Physics, Technological Institute of Aeronautics, 12228-900 S.J. dos Campos, SP, Brazil;

    EBO, Chemistry Division, IAE, CTA, 12228-900 S. J. dos Campos, SP, Brazil;

    EBO, Chemistry Division, IAE, CTA, 12228-900 S. J. dos Campos, SP, Brazil;

    Department of Physics, Pontifical Catholic University of Rio de Janeiro, Rio de Janeiro, RJ, Brazil;

    Plasmas and Processes Laboratory, Department of Physics, Technological Institute of Aeronautics, 12228-900 S.J. dos Campos, SP, Brazil;

    Plasmas and Processes Laboratory, Department of Physics, Technological Institute of Aeronautics, 12228-900 S.J. dos Campos, SP, Brazil;

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

    Adhesion improvement; Afterglow plasmas processes; EPDM rubber; Microwave plasma; Surface modification;

    机译:附着力改善;余辉等离子体工艺;EPDM橡胶;微波等离子体表面修饰;

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