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Mechanical behavior of woven natural fiber fabric composites: Effect of weaving architecture, intra-ply hybridization and stacking sequence of fabrics

机译:机织天然纤维织物复合材料的机械性能:编织结构,层内杂交和织物堆叠顺序的影响

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摘要

A comprehensive analysis carried out on the mechanical and free vibration properties of woven natural fiber polymer composites is presented. Jute fabric with three different weave types (plain, basket and herringbone) and intra-ply woven jute-banana fabrics are considered for investigation of the effect of weave type of a fabric and its stacking sequence on mechanical, dynamic mechanical and free vibration properties. Enhancement of the properties is found with the number of layers of fabric and better properties obtained for four layers. Uniform stress distribution along warp and weft direction of fabric with basket weave type lead to better properties compared to other weave types for four-layered composites. Intra-ply hybridization of jute-banana also enhances the mechanical properties but slightly less than the jute-basket fabric composite. The investigations on effect of layer sequence of fabrics revealed improvement in mechanical properties. Layered composite with relatively strong intra-ply fabric as the facing layer and relatively weak jute plain fabrics as the core layer has higher tensile and flexural properties. Experimental modal analysis carried out on beam-like composite laminates reveal that natural frequencies and associated modal damping factor are significantly influenced by stacking sequence and weave type of a fabric. The density of the composite calculated based on Archimedes principle matches well with the theoretical values.
机译:提出了对机织天然纤维聚合物复合材料的机械和自由振动性能进行综合分析。考虑研究具有三种不同编织类型(普通织物,篮状织物和人字形织物)的黄麻织物以及内部编织的黄麻香蕉织物,以研究织物的编织类型及其堆叠顺序对机械,动态机械和自由振动性能的影响。随着织物层数的增加和四层获得的更好的性能,发现性能得到增强。与四层复合材料的其他编织类型相比,带有篮式编织类型的织物在经纱和纬纱方向上的应力分布均匀,因此具有更好的性能。黄麻-香蕉的层内杂交也增强了机械性能,但略低于黄麻-篮织物复合材料。对织物层序影响的研究表明,机械性能有所改善。具有相对强的内层织物作为饰面层和相对弱的黄麻平纹织物作为芯层的层状复合材料具有较高的拉伸和弯曲性能。对梁状复合材料层压板进行的实验模态分析表明,固有频率和相关的模态阻尼因子受织物堆积顺序和织物类型的影响。根据阿基米德原理计算的复合材料的密度与理论值非常吻合。

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