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首页> 外文期刊>Biomacromolecules >Molecular Interactions and Toughening Mechanisms in Silk Fibroin-Epoxy Resin Blend Films
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Molecular Interactions and Toughening Mechanisms in Silk Fibroin-Epoxy Resin Blend Films

机译:丝纤维素 - 环氧树脂共混膜中的分子相互作用和增韧机制

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摘要

Natural silkworm silks have been applied to reinforce epoxy resin to achieve sub-ambient and impact toughness in the composite. However, the molecular interactions at the silk fiber-matrix interface of the composite are poorly understood. In this work, silk fibroin extracted from Bombyx mori silk is blended with an epoxy resin polymer system to study the molecular interactions between silk fibroin, epoxy compounds, and hardeners. The effects of chemical crosslinks between epoxy groups and hardeners or silk fibroin, as well as physical crosslinks in the beta-sheet structure of silk fibroin, were discussed on the thermal stability, glass transition behavior, and mechanical properties of the blend films. A relationship between the crosslinking structure and mechanical properties for the films is proposed to enlighten on the toughening mechanisms. The findings would provide insights into forming strong and tough silk fibroin material as well as understanding the interface interactions of silk-epoxy composites.
机译:已施加天然蚕丝网以加强环氧树脂,以实现复合材料中的亚环境和冲击韧性。然而,复合材料的丝纤维 - 基质界面处的分子相互作用是较差的理解。在这项工作中,从Bombyx Mori丝提取的丝素蛋白与环氧树脂聚合物系统混合,以研究丝素蛋白,环氧化合物和硬化剂之间的分子相互作用。在热稳定性,玻璃化转变行为和共混膜的机械性能下讨论了环氧基团和硬化剂或丝素蛋白之间的化学交联或丝素蛋白的影响,以及丝素蛋白的β-片状结构。提出了对薄膜的交联结构和机械性能之间的关系,以启发在增韧机构上。调查结果将提供洞察,形成强大丝绸纤维素材料,了解丝环氧化合物的界面相互作用。

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  • 来源
    《Biomacromolecules》 |2019年第6期|共10页
  • 作者单位

    Beihang Univ Sch Mat Sci &

    Engn Int Res Ctr Adv Struct &

    Biomat Beijing 100191 Peoples R China;

    RIKEN Ctr Sustainable Resource Sci Biomacromolecules Res Team 2-1 Hirosawa Wako Saitama 3510198 Japan;

    RIKEN Ctr Sustainable Resource Sci Biomacromolecules Res Team 2-1 Hirosawa Wako Saitama 3510198 Japan;

    RIKEN Ctr Sustainable Resource Sci Biomacromolecules Res Team 2-1 Hirosawa Wako Saitama 3510198 Japan;

    Beihang Univ Sch Mat Sci &

    Engn Int Res Ctr Adv Struct &

    Biomat Beijing 100191 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
  • 关键词

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