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Thermoplastic Elastomeric Composites Filled with Lignocellulose Bioadditives. Part 1: Morphology Processing Thermal and Rheological Properties

机译:充满木质纤维素生物添加剂的热塑性弹性体复合材料。第1部分:形态加工热和流变特性

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摘要

Thermoplastic elastomer blends based on natural rubber (NR) and ethylene-vinyl acetate copolymer (EVA) with different weight ratios (30, 40, 50, 60 and 70 parts per hundred rubber (phr) of NR) and 10, 20 and 30 phr of straw were prepared and characterized. Current environmental problems were the motivation to produce this type of system, namely: the need to replace plastics at least partly with natural materials; increasing the amount of renewable raw materials and managing excess straw production. When using this bioadditive in traditional materials, the high processing temperature can be problematic, leading to the degradation of straw fibers. The solution can be polymer mixtures that are prepared at significantly lower temperatures. Scanning electron microscope (SEM) imaging was used to investigate the particle size of fibers and phase morphology of composites. Moreover, determination of the thermal properties of the filler and composites showed that the processing temperature used in the production of NR/EVA blends reduces the risk of degradation of the natural filler. Differential scanning calorimetry (DSC) was used to determine the thermal behavior of the filled composites. Finally, rheological tests of materials allow the determination of optimal processing parameters and properties of materials in dynamic conditions. The proposed blends exhibit elastic properties, and due to the lack of chemical cross-linking they can be processed and recycled like thermoplastics. In addition, they offset the disadvantages and combine the advantages of natural rubber and ethylene-vinyl acetate copolymer in the form of thermoplastic elastomeric biocomposites.
机译:基于天然橡胶(NR)和乙烯-乙酸乙烯酯共聚物(EVA)的热塑性弹性体共混物,具有不同的重量比(每100份NR橡胶中30、40、50、60和70份)和10、20和30 phr准备并表征秸秆。当前的环境问题是生产这种系统的动力,即:至少部分用天然材料代替塑料的需求;增加可再生原料的数量并管理过量的秸秆生产。在传统材料中使用这种生物添加剂时,加工温度过高可能会导致稻草纤维降解。该溶液可以是在明显较低的温度下制备的聚合物混合物。扫描电子显微镜(SEM)成像用于研究纤维的粒径和复合材料的相形态。而且,对填料和复合材料的热性能的测定表明,用于生产NR / EVA共混物的加工温度降低了天然填料降解的风险。差示扫描量热法(DSC)用于确定填充复合材料的热行为。最后,材料的流变测试可以确定动态条件下材料的最佳加工参数和性能。所提出的共混物具有弹性,由于缺乏化学交联,它们可以像热塑性塑料一样进行加工和回收。另外,它们弥补了缺点,并以热塑性弹性体生物复合材料的形式结合了天然橡胶和乙烯-乙酸乙烯酯共聚物的优点。

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