首页> 外文期刊>Journal of natural fibers >Hybrid Composites Made from Jute/Coir Fibers: Water Absorption, Thickness Swelling, Density, Morphology, and Mechanical Properties
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Hybrid Composites Made from Jute/Coir Fibers: Water Absorption, Thickness Swelling, Density, Morphology, and Mechanical Properties

机译:由黄麻/椰壳纤维制成的杂化复合材料:吸水率,厚度膨胀,密度,形态和机械性能

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摘要

对水在天然纤维增强复合材料的行为进行了研究,它产生了精细结构的变化,得到巨大的膨胀,尺寸稳定性,和机械性能。吸水性和厚度膨胀试验表明,混杂复合材料的水吸收表明适度,这是15.3%的混合纤维椰壳/黄麻/椰克和11.2%的复合纤维黄麻/椰克/黄麻复合材料。因为混合复合材料的分层模式变化,厚度膨胀,吸水性和力学性能增加。与纯椰壳纤维复合材料相比,椰壳纤维复合材料加入黄麻纤準可以提高尺寸稳定性,可扩展性和密度。对复合材料的进行了显微组织检査,了解有关的机械性能的纤维基质间的相互作用机制。%The action of water in natural fiber-reinforced composite material was studied so as to produce great swelling with resultant changes in the fine structure, dimensional stability, and mechanical properties. Water absorption and thickness swelling test reveal that hybrid composite shows water absorption moderately, which is 153% for hybrid coir/jute/coir composite and 11.2% for hybrid jute/coir/jute composite. The thickness swelling, water absorption, and mechanical properties of the hybrid composites slightly increased as the layering pattern of hybrid composites changed. Hybridization of coir fibers composites with jute fibers can improve the dimensional stability, extensibility and density of pure coir composites. Microstructures of the composites were examined to understand the mechanisms for the fiber-matrix interaction in relation to mechanical properties.
机译:对水在天然纤维增强复合材料的行为进行了研究,它产生了精细结构的变化,得到巨大的膨胀,尺寸稳定性,和机械性能。吸水性和厚度膨胀试验表明,混杂复合材料的水吸收表明适度,这是15.3%的混合纤维椰壳/黄麻/椰克和11.2%的复合纤维黄麻/椰克/黄麻复合材料。因为混合复合材料的分层模式变化,厚度膨胀,吸水性和力学性能增加。与纯椰壳纤维复合材料相比,椰壳纤维复合材料加入黄麻纤准可以提高尺寸稳定性,可扩展性和密度。对复合材料的进行了显微组织检查,了解有关的机械性能的纤维基质间的相互作用机制。 %The action of water in natural fiber-reinforced composite material was studied so as to produce great swelling with resultant changes in the fine structure, dimensional stability, and mechanical properties. Water absorption and thickness swelling test reveal that hybrid composite shows water absorption moderately, which is 153% for hybrid coir/jute/coir composite and 11.2% for hybrid jute/coir/jute composite. The thickness swelling, water absorption, and mechanical properties of the hybrid composites slightly increased as the layering pattern of hybrid composites changed. Hybridization of coir fibers composites with jute fibers can improve the dimensional stability, extensibility and density of pure coir composites. Microstructures of the composites were examined to understand the mechanisms for the fiber-matrix interaction in relation to mechanical properties.

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