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High performance natural fiber-nanoclay reinforced cement nanocomposites

  • 作者: Low, It-Meng, author.
  • 其他作者:
  • 其他題名:
    • SpringerBriefs in molecular science.
  • 出版: Cham : Springer International Publishing :Imprint: Springer
  • 叢書名: SpringerBriefs in molecular science. Biobased polymers,
  • 主題: Fiber cement. , Nanostructured materials. , Chemistry. , Polymer Sciences. , Ceramics, Glass, Composites, Natural Materials. , Building Materials. , Nanotechnology.
  • ISBN: 9783319565880 (electronic bk.) 、 9783319565873 (paper)
  • FIND@SFXID: CGU
  • 資料類型: 電子書
  • 內容註: Chemical Compositions and Structure of Natural Fibres -- Natural Fibre Surface Modification by Alkaline treatment -- Nanotechnology and Cement Nanocomposites -- Cement Nanoclay Nanocomposites -- Cement Calcined Nanoclay Nanocomposites.
  • 摘要註: This brief describes a novel approach to overcome the disadvantages of hemp fibres in cementitious composites. The authors describe how the new approach includes the combination of thermal pre-treatment of nanoclay (producing calcined nanoclay) and chemical pre-treatment of fibre surfaces to improve the microstructure, mechanical, physical and thermal properties and also durability of hemp fibre reinforced cement composites. In this work, the synthesis of several materials are studied: nanoclay-cement nanocomposite, calcined nanoclay-cement nanocomposite, untreated & treated hemp fabric-reinforced cement composite, hemp fabric-reinforced nanoclay-cement nanocomposite and treated hemp fabric-reinforced nanoclay-cement nanocomposite. The influence of nanoclay on properties of cement paste and hemp fabric-reinforced cement composite is also presented together with the influence of NaOH pre-treatment of fibre surfaces on properties of hemp fabric-reinforced cement composite. The authors have aimed this brief at those working on environmental-friendly, biodegradable, building materials.
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  • 系統號: 005389612 | 機讀編目格式
  • 館藏資訊

    This brief describes a novel approach to overcome the disadvantages of hemp fibres in cementitious composites. The authors describe how the new approach includes the combination of thermal pre-treatment of nanoclay (producing calcined nanoclay) and chemical pre-treatment of fibre surfaces to improve the microstructure, mechanical, physical and thermal properties and also durability of hemp fibre reinforced cement composites. In this work, the synthesis of several materials are studied: nanoclay-cement nanocomposite, calcined nanoclay-cement nanocomposite, untreated & treated hemp fabric-reinforced cement composite, hemp fabric-reinforced nanoclay-cement nanocomposite and treated hemp fabric-reinforced nanoclay-cement nanocomposite. The influence of nanoclay on properties of cement paste and hemp fabric-reinforced cement composite is also presented together with the influence of NaOH pre-treatment of fibre surfaces on properties of hemp fabric-reinforced cement composite. The authors have aimed this brief at those working on environmental-friendly, biodegradable, building materials.

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