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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Preparation and properties of banana fiber-reinforced composites based on high density polyethylene (HDPE)/Nylon-6 blends
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Preparation and properties of banana fiber-reinforced composites based on high density polyethylene (HDPE)/Nylon-6 blends

机译:基于高密度聚乙烯(HDPE)/尼龙-6共混物的香蕉纤维增强复合材料的制备和性能

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Banana fiber (BaF)-filled composites based on high density polyethylene (HDPE)/Nylon-6 blends were prepared via a two-step extrusion method. Maleic anhydride grafted styrene/ethylene-butylene/styrene triblock polymer (SEBS-g-MA) and maleic anhydride grafted polyethylene (PE-g-MA) were used to enhance impact performance and interfacial bonding between BaF and the resins. Mechanical, crystallization/melting, thermal stability, water absorption, and morphological properties of the composites were investigated. In the presence of SEBS-g-MA, better strengths and moduli were found for HDPE/Nylon-6 based composites compared with corresponding HDPE based composites. At a fixed weight ratio of PE-g-MA to BaF, an increase of BaF loading up to 48.2 wt.% led to a continuous improvement in moduli and flexural strength of final composites, while impact toughness was lowered gradually. Predicted tensile modulus by the Hones-Paul model for three-dimensional random fiber orientation agreed well with experimental data at the BaF loading of 29.3 wt.% However, the randomly-oriented fiber models underestimated experimental data at higher fiber levels. It was found that the presence of SEBS-g-MA had a positive influence on reinforcing effect of the Nylon-6 component in the composites. Thermal analysis results showed that fractionated crystallization of the Nylon-6 component in the composites was induced by the addition of both SEBS-g-MA and PE-g-MA. Thermal stability of both composite systems differed slightly, except an additional decomposition peak related to the minor Nylon-6 for the composites from the HDPE/Nylon-6 blends. In the presence of SEBS-g-MA, the addition of Nylon-6 and increased BaF loading level led to an increase in the water absorption value of the composites.
机译:通过两步挤压法制备了基于高密度聚乙烯(HDPE)/尼龙6共混物的香蕉纤维(BaF)填充复合材料。马来酸酐接枝的苯乙烯/乙烯-丁烯/苯乙烯三嵌段聚合物(SEBS-g-MA)和马来酸酐接枝的聚乙烯(PE-g-MA)用于增强BaF与树脂之间的冲击性能和界面键合。研究了复合材料的机械,结晶/熔融,热稳定性,吸水率和形态学性能。在SEBS-g-MA存在下,与相应的基于HDPE的复合材料相比,基于HDPE /尼龙6的复合材料具有更好的强度和模量。在PE-g-MA与BaF的重量比固定的情况下,BaF含量增加至48.2 wt。%导致最终复合材料的模量和挠曲强度不断提高,而冲击韧性逐渐降低。 Hones-Paul模型预测的三维随机纤维取向的拉伸模量与29.3 wt。%BaF载荷下的实验数据吻合得很好。但是,随机取向的纤维模型低估了较高纤维含量下的实验数据。发现SEBS-g-MA的存在对复合物中尼龙-6组分的增强效果具有积极影响。热分析结果表明,通过同时添加SEBS-g-MA和PE-g-MA可以诱导复合材料中Nylon-6组分的分步结晶。两种复合体系的热稳定性略有不同,除了与HDPE / Nylon-6共混物的次要Nylon-6相关的附加分解峰。在SEBS-g-MA的存在下,尼龙6的添加和BaF含量的增加导致复合材料的吸水率增加。

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