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Layering pattern effects on vibrational behavior of coconut sheath/ banana fiber hybrid composites

机译:分层图案对椰子皮/香蕉纤维杂化复合材料振动性能的影响

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摘要

Two different fibers, namely short banana (B) and naturally woven coconut sheath (C), were hybridized in polyester matrix composites using compression molding. Various composites were produced with the same overall fiber wt.% and varying the relative wt.% of the individual fibers. Banana and coconut sheath fibers were surface treated using 1 N alkali solution to enhance interfacial adhesion. Static mechanical and dynamic characteristics such as natural frequency and damping were studied and impulse hammer technique was employed to study the dynamic characteristics of the composites. Mechanical performance was maximized for the highest relative amount of banana fiber in the composites. The mechanical properties were also found to vary with the layering pattern. Irrespective of the relative wt.% of fibers and layering pattern used, alkali treatment showed a positive effect on the evaluated properties. The CBC layering pattern exhibited the greatest damping, indicating better energy absorption capability brought by the porous structure of the coconut sheath fiber
机译:使用压缩成型将两种不同的纤维,即短香蕉(B)和天然编织的椰子皮(C)混合在聚酯基复合材料中。生产具有相同的总纤维重量%和改变单个纤维的相对重量%的各种复合物。香蕉和椰子皮纤维使用1 N碱溶液进行了表面处理,以增强界面粘合力。研究了固有频率和阻尼等静态力学和动态特性,并采用脉冲锤技术研究了复合材料的动态特性。对于复合物中香蕉纤维的最高相对含量,机械性能得以最大化。还发现机械性能随分层模式而变化。不管所用纤维的相对重量%和所用的分层图案如何,碱处理对所评价的性能均显示出积极的影响。 CBC层状结构表现出最大的阻尼,表明椰子皮纤维的多孔结构带来更好的能量吸收能力

著录项

  • 来源
    《Materials & design 》 |2016年第1期| 795-803| 共9页
  • 作者单位

    Centre for Composite Materials, Department of Mechanical Engineering, Kalasalingam University, 626126, India;

    Centre for Composite Materials, Department of Mechanical Engineering, Kalasalingam University, 626126, India;

    Centre for Composite Materials, Department of Mechanical Engineering, Kalasalingam University, 626126, India;

    Centre for Composite Materials, Department of Mechanical Engineering, Kalasalingam University, 626126, India;

    DEMAT, Federal University of Rio Grande do Sul (UFRGS), Porto Alegre, RS, Brazil;

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

    Hybrid composites; Vibration; Elastic properties; Banana and coconut sheath fibers;

    机译:混合复合材料;振动;弹性性能;香蕉和椰子皮纤维;

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