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Cork–polymer biocomposites: mechanical, structural and thermal properties

机译:软木-聚合物生物复合材料:机械,结构和热性能

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摘要

This work addresses to the preparation of biocomposites resulting from the combination of different biodegradable aliphatic polyesters with cork (30 wt.%). The lignocellulosic biomass with closed cellular structure was compounded with poly(L-lactic acid) (PLLA), polyhydroxybutyrate-co-hydroxyvalerate (PHBV), poly-ε-caprolactone (PCL) and starch-poly-ε-caprolactone (SPCL) blend using a twin-screw extruder prior to injection moulding into tensile samples. The physico-mechanical and thermal properties of the matrices and the bio-based cork composites were investigated. This study shows that the addition of cork contributes to produce lightweight materials using PLLA and PHBV matrices and promotes an increase on the stiffness of PCL. The fracture morphology observations showed good physical corkâ matrix bonding with absence of voids or cavities between cork and the bio-based polyesters. Cork increases the crystallinity degree of the biocomposites. These findings suggest that the corkâ polymer biocomposites are a viable alternative to develop more sustainable composite materials, such as automotive interior parts and bio-based caps for wine bottles as it has been shown as proof-of-concept.
机译:这项工作致力于制备由不同的可生物降解脂肪族聚酯与软木(30 wt。%)组合而成的生物复合材料。具有闭孔结构的木质纤维素生物质与聚(L-乳酸)(PLLA),聚羟基丁酸酯-共羟基戊酸酯(PHBV),聚-α-己内酯(PCL)和淀粉-聚-α-己内酯(SPCL)混合物复合在注塑成拉伸样品之前,先使用双螺杆挤出机。研究了基体和生物基软木复合材料的物理力学和热学性质。这项研究表明,添加软木有助于使用PLLA和PHBV基质生产轻质材料,并有助于提高PCL的硬度。断裂形态的观察结果表明,软木与生物基聚酯之间没有良好的空隙或空洞,软木与基质之间的粘结性良好。软木塞增加了生物复合材料的结晶度。这些发现表明,软木聚合物生物复合材料是开发更具可持续性的复合材料的可行替代品,例如汽车内饰部件和用于酒瓶的生物基盖,这已被证明是概念验证。

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