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首页> 外文期刊>Polymer Degradation and Stability >Photo-oxidative degradation behavior of linseed oil based epoxy resin
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Photo-oxidative degradation behavior of linseed oil based epoxy resin

机译:亚麻籽油基环氧树脂的光氧化降解行为

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摘要

The photo-oxidation behaviour of a biobased epoxy polymer has been studied under irradiation at wavelengths > 315 nm at 45℃ and in the presence of oxygen. The resin is obtained after curing a blend of an epoxidized linseed oil (ELO) and epoxidized glycerol (EG) with methyltetrahydrophtalic anhydride (MTHPA). Molecular changes induced by the UV exposure were followed by infrared and UV-Vis spec-troscopy. A mechanism involving the abstraction of the most labile hydrogen atoms of the structure and accounting for the formation of the photoproducts identified by FTIR spectroscopy has been proposed. Microhardness and Atomic Force Microscopy (AFM) equipped with a nanomechanical mapping mode were performed to determine the modification of the morphology and of the mechanical behaviour of the top surface. Microhardness and AFM results suggest that crosslinking reactions occur in competition with β scission reactions. The crosslinking reactions control the changes in mechanical properties of the top surface at short irradiation times while the β scission reactions become more competitive for long irradiation times and results in a decrease of stiffness of the surface.
机译:研究了一种生物基环氧聚合物在45℃下在大于315 nm的波长下在氧气存在下的光氧化行为。该树脂是在环氧化亚麻籽油(ELO)和环氧化甘油(EG)与甲基四氢邻苯二甲酸酐(MTHPA)的混合物固化后获得的。由紫外线暴露引起的分子变化随后是红外和紫外线-可见光谱。已经提出了一种机制,该机制涉及结构中最不稳定的氢原子的抽象,并解释了通过FTIR光谱法鉴定的光产物的形成。进行了配备纳米机械制图模式的显微硬度和原子力显微镜(AFM),以确定顶部表面的形态和机械性能的变化。显微硬度和AFM结果表明,交联反应与β断裂反应竞争。交联反应控制着短辐照时间上表面机械性能的变化,而β分裂反应对于长辐照时间更具竞争力,并导致表面刚度降低。

著录项

  • 来源
    《Polymer Degradation and Stability》 |2017年第1期|73-84|共12页
  • 作者单位

    Laboratoire MAPIEM EA 4323, Seatech-Ecole d'Ingenieurs, Universite de Toulon, CS 60584, 83047 Toulon Cedex 9, France;

    Laboratoire MAPIEM EA 4323, Seatech-Ecole d'Ingenieurs, Universite de Toulon, CS 60584, 83047 Toulon Cedex 9, France;

    Institut Charles Gerhardt Montpellier UMR5253 CNRS-UM2-ENSCM-UM1, Equipe Ingenierie et Architectures Macromoleculaires, Universite MontpellierⅡ cc1702, Place Eugene Bataillon, 34095 Montpellier, France;

    Institut Charles Gerhardt Montpellier UMR5253 CNRS-UM2-ENSCM-UM1, Equipe Ingenierie et Architectures Macromoleculaires, Universite MontpellierⅡ cc1702, Place Eugene Bataillon, 34095 Montpellier, France;

    Laboratoire MAPIEM EA 4323, Seatech-Ecole d'Ingenieurs, Universite de Toulon, CS 60584, 83047 Toulon Cedex 9, France;

    Laboratoire MAPIEM EA 4323, Seatech-Ecole d'Ingenieurs, Universite de Toulon, CS 60584, 83047 Toulon Cedex 9, France,Laboratoire MAPIEM (EA 4323), SeaTech, Ecole d'ingenieurs de l'universite de Toulon, Avenue de l'universite, CS 60584, 83041 Toulon Cedex 9, France;

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

    Biobased epoxy resin; Epoxidized linseed oil; Photooxidation; Degradation mechanism; Mechanical properties; Atomic force microscopy;

    机译:生物基环氧树脂;环氧化亚麻籽油;光氧化;降解机制;机械性能原子力显微镜;

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