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Enhancement of mechanical properties of carbon fabric/epoxy composites using microano-sized bamboo fibrils

机译:使用微米/纳米尺寸的竹纤维增强碳纤维/环氧树脂复合材料的机械性能

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摘要

Microano-sized bamboo fibrils (MBFs) were fabricated from raw bamboo using the alkaline treatment technique and the mechanical extraction method (micro-grinding). The fracture toughness of epoxy resin significantly increased by 84.6% from 0.639 MPa m~(1/2) to 1.18 MPa m~(1/2) due to 0.8 wt.% MBF inclusion into the resin in comparison with the epoxy resin without MBF. Both mode-I interlaminar fracture toughness of carbon fabric/epoxy (CF/EP) composites at crack initiation and propagation also improved by 35.3% and 47.3%, respectively when 0.8 wt.% MBF was dispersed in the epoxy matrix. The fatigue life of modified composites at all of MBF content up to 0.8 wt.% dramatically increased 12-25 times longer than those of unmodified composites at high cycle fatigue while the tensile strength slightly increased. Scanning electron microscopy (SEM) observations revealed that MBF delayed the onset of matrix crack, and reduced the crack growth in the CF/EP composites.
机译:使用碱处理技术和机械提取方法(微研磨),由生竹制成微/纳米级竹纤维(MBF)。与不带MBF的环氧树脂相比,由于MBF含量为0.8 wt。%,环氧树脂的断裂韧性从0.639 MPa m〜(1/2)显着提高了84.6%,达到1.18 MPa m〜(1/2)。 。当将0.8重量%的MBF分散在环氧基质中时,碳纤维/环氧树脂(CF / EP)复合材料的I型层间断裂韧度在裂纹萌生和扩展处也分别提高了35.3%和47.3%。在所有MBF含量高达0.8 wt。%的条件下,改性复合材料的疲劳寿命比未改性复合材料在高循环疲劳条件下的疲劳寿命显着延长了12-25倍,而拉伸强度则略有提高。扫描电子显微镜(SEM)观察表明,MBF延迟了基体裂纹的发生,并降低了CF / EP复合材料的裂纹扩展。

著录项

  • 来源
    《Materials & design》 |2013年第5期|624-632|共9页
  • 作者单位

    Department of Mechanical Engineering and Systems, Doshisha University, Kyotonabe-City, Kyoto 610-0394, Japan,Polymer Center, Hanoi University of Science and Technology, No. 1, Dai Co Viet, Hanoi, Viet Nam;

    Department of Mechanical Engineering and Systems, Doshisha University, Kyotonabe-City, Kyoto 610-0394, Japan,Department of Mechanical Engineering, Sohag University, Egypt;

    Department of Mechanical Engineering and Systems, Doshisha University, Kyotonabe-City, Kyoto 610-0394, Japan;

    Polymer Center, Hanoi University of Science and Technology, No. 1, Dai Co Viet, Hanoi, Viet Nam;

    Department of Mechanical Engineering and Systems, Doshisha University, Kyotonabe-City, Kyoto 610-0394, Japan;

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

    Microano-sized bamboo fibrils; Interlaminar fracture toughness; Tension-tension fatigue; Carbon fabric composites;

    机译:微米/纳米级竹纤维;层间断裂韧性;张力疲劳碳纤维复合材料;

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