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A Review on Potential of Development New Weave Pattern Design using Glass Fiber and Kenaf Fiber for Intraply Composite

机译:玻璃纤维和红麻纤维用于内部复合材料的新型织造图案设计潜力的综述

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Mechanical properties of the laminated composite made from fabric type reinforcement can be affected by using the method of bonding and finishing due to the constructional parameter of each lamina. Hence, the new intraply between glass fiber and kenaf fiber for composite structure is proposed toward improving overall mechanical and physical properties of intraply composite structure. Implementation of natural fiber in synthetic fiber reinforced composite has high potential to be explored scientifically. This review is mainly focused on the theory and the knowledge of composite material which found over the years by various scientists and researchers as well as related studies based on the previous researches. The types and roles of matrix and fiber materials in composites are also discussed. Major findings in this review show that the characteristics of composite depend on the weave patterns and the structure of interply and intraply. Therefore, the new intraply for glass fiber and kenaf fiber in composite structure is expected to perform better in aspect of mechanical and physical properties, besides reduced the dependency to glass fiber (100%). Finally, it will propose the most effective weave pattern designs in the functional combination form of glass and kenaf fibers. The numerical results are compared with the experimental data available in literature.
机译:由织物类型增强材料制成的层压复合材料的机械性能可能会由于每种薄片的结构参数而受到粘结和精加工方法的影响。因此,提出了一种用于玻璃纤维和洋麻纤维之间的复合结构新的夹层结构,以改善夹层复合结构的整体机械和物理性能。天然纤维在合成纤维增强复合材料中的应用具有很高的科学探索潜力。这篇综述主要集中在多年来由各种科学家和研究人员以及基于先前研究的相关研究中发现的复合材料的理论和知识。还讨论了基体和纤维材料在复合材料中的类型和作用。这篇综述的主要发现表明,复合材料的特性取决于编织图案以及层间和层间的结构。因此,除了减少了对玻璃纤维的依赖性(100%)之外,预期用于复合结构的玻璃纤维和洋麻纤维的新的内部结构在机械和物理性能方面将具有更好的性能。最后,它将以玻璃和洋麻纤维的功能组合形式提出最有效的编织图案设计。将数值结果与文献中提供的实验数据进行比较。

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