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Miscanthus stem fragment - Reinforced polypropylene composites: Development of an optimized preparation procedure at small scale and its validation for differentiating genotypes

机译:芒草茎碎片-增强聚丙烯复合材料:小规模优化制备方法的开发及其对区分基因型的验证

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摘要

The production of ligno-cellulosic biomass-based composites requires the development of new methodologies to evaluate the reinforcement potential of a given biomass, such as miscanthus studied in the work. Miscanthus stems from thirteen genotypes were broken into elongated fragments and mixed with polypropylene composites in an internal mixer. The aim is to find the best protocol able to discriminate miscanthus genotypes for their reinforcement capability. The following process parameters were optimized in order to maximize the reinforcement effect of the stem fragment filler: mixing parameters (mixing time, rotor speed and chamber temperature), temperature, fragment content, size and length distributions and coupling agent The relationship between the process parameters and the mechanical properties of composites were analyzed to evaluate the influence of genotype on reinforcement performance, showing the robustness of the protocol in effectively discriminating genotypes according to their reinforcing capacity. (C) 2016 Elsevier Ltd. All rights reserved.
机译:木质纤维素生物质基复合材料的生产需要开发新的方法来评估给定生物质的增强潜力,例如在工作中研究的芒草。将来自13个基因型的芒草茎切成细长的碎片,并在内部混合器中与聚丙烯复合材料混合。目的是找到能够区分猕猴基因型的增强能力的最佳方案。为了最大化茎碎片填充物的增强效果,优化了以下工艺参数:混合参数(混合时间,转子速度和腔室温度),温度,碎片含量,尺寸和长度分布以及偶联剂工艺参数之间的关系并分析了复合材料的力学性能,以评估基因型对增强性能的影响,显示了协议根据其增强能力有效区分基因型的鲁棒性。 (C)2016 Elsevier Ltd.保留所有权利。

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