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Bio-composites produced from plant microfiber bundles with a nanometer unit web-like network

机译:由具有纳米单位网状网络的植物微纤维束生产的生物复合材料

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摘要

Using plant microfiber bundles with a nanometer unit web-like network, a moulded product with a bending strength of 250 MPa was obtained without the use of binders. High interactive forces seem to be developed between pulp fibers owing to their nanometer unit web-like network. In other words, the area of possible contact points per fiber are increased, so that more hydrogen bonds might be formed or van der Waals forces increased. When 2% oxidized tapioca starch, by weight, was added, the yield strain doubled and the bending strength reached 310 MPa. The starch mixed moulded product had a similar stress strain curve to that for magnesium alloy, and three to four times higher Young's modulus and bending strength values than polycarbonate and GFRP (chopped). The mouldings have a combination of environmentally friendly and high strength properties.
机译:使用具有纳米单位网状网络的植物微纤维束,无需使用粘合剂就可得到抗弯强度为250MPa的成型品。由于它们的纳米单元网状网络,似乎在纸浆纤维之​​间产生了很高的相互作用力。换句话说,每根纤维可能的接触点的面积增加,从而可能形成更多的氢键或范德华力增加。当添加按重量计2%的氧化木薯淀粉时,屈服应变加倍,并且弯曲强度达到310MPa。淀粉混合成型产品具有与镁合金相似的应力应变曲线,并且杨氏模量和弯曲强度值比聚碳酸酯和GFRP(切碎)高三到四倍。模塑件兼具环保和高强度特性。

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  • 来源
    《Journal of Materials Science 》 |2004年第5期| 1635-1638| 共4页
  • 作者

    H. Yano; S. Nakahara;

  • 作者单位

    Wood Research Institute Kyoto University;

    Wood Research Institute Kyoto University;

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  • 原文格式 PDF
  • 正文语种 eng
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