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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Mechanical and free vibration properties of montmorillonite clay dispersed with naturally woven coconut sheath composite
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Mechanical and free vibration properties of montmorillonite clay dispersed with naturally woven coconut sheath composite

机译:天然编织椰子皮复合材料分散的蒙脱土的力学和自由振动性能

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摘要

In this investigation, naturally woven coconut sheath is used as a new type of reinforcement. The hybrid composites are developed with the combination of naturally woven coconut sheath/E-glassanoclay using unsaturated polyester matrix and the effect of nanoclay on the mechanical and free vibration behavior is studied. It is found that the addition of nanoclay improved the mechanical and damping properties of the composite owing to the improved stiffness of the matrix by better dispersion of clay. In addition, the effect of alkali and silane treatments on fibers and different stacking sequence were investigated. It was observed that the alkali treatment of fibers improved the mechanical properties of the composites when cellulose fiber was present. This investigation presented a peculiar result in the case of silane treatment with the nanoclay, which is in contradiction with the earlier works. The stacking sequence of coconut sheath/coconut sheath/glass with alkali treatment of fibers provides the optimum increase in mechanical strength and free vibration characteristics. X-ray diffraction and transmission electron microscope were performed to understand the dispersion of nanoclay and its strengthening mechanism. In addition, scanning electron microscopy was used for fractography analysis. This investigation suggests an alternative material for the field of composites.
机译:在这项研究中,天然编织的椰子皮被用作一种新型的增强材料。以天然编织的椰子皮/ E-玻璃/纳米粘土与不饱和聚酯为基体,开发了混杂复合材料,研究了纳米粘土对机械和自由振动行为的影响。已经发现,由于粘土的更好分散而提高了基质的刚度,因此纳米粘土的添加改善了复合材料的机械和阻尼性能。此外,研究了碱和硅烷处理对纤维和不同堆积顺序的影响。观察到,当存在纤维素纤维时,纤维的碱处理改善了复合材料的机械性能。该研究在用纳米粘土进行硅烷处理的情况下给出了一个奇特的结果,这与早期的工作相矛盾。椰子皮/椰子皮/玻璃纤维经碱处理的堆叠顺序可最佳地提高机械强度和自由振动特性。通过X射线衍射和透射电镜观察纳米粘土的分散性及其增强机理。另外,将扫描电子显微镜法用于形态分析。这项研究提出了一种用于复合材料领域的替代材料。

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