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Natural Rubber Composites Filled with Crop Residues as an Alternative to Vulcanizates with Common Fillers

机译:填充农作物残留物的天然橡胶复合材料替代普通填充剂的硫化橡胶

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摘要

This present study is focused on exploring the possibility of using agricultural waste in the form of cereal straw as an active filler of biocomposites. The effect of lignocellulosic filler addition on the multifunctional properties of natural rubber composites was investigated. The results were compared with the properties of vulcanizates containing commonly used reinforcements in elastomer technology (carbon black, silica, chalk, talc). Rubber mixtures filled with straw showed the highest torque increase during rheometric measurements, which indirectly indicated a high degree of crosslinking and hardness of composites. It was found that the effect of straw addition on vulcanization time of elastomer blends was comparable with the results obtained for other conventional fillers. Moreover, the results confirmed that novel composites based on natural rubber filled with crop residues were attractive materials owing to their capacity for the formation of “structure” in combination with a good impact on reinforcement. Vulcanizates with the addition of straw showed the best barrier properties and resistance to thermo-oxidative aging from all tested samples. Furthermore, straw-based composites demonstrated that cereal straw waste could be used as an alternative, biodegradable and eco-friendly reinforcement of natural rubber composites.
机译:这项研究的重点是探索使用谷物秸秆形式的农业废弃物作为生物复合材料的活性填料的可能性。研究了木质纤维素填料的添加对天然橡胶复合材料多功能性能的影响。将结果与包含弹性体技术中常用增强剂的硫化橡胶(炭黑,二氧化硅,白垩,滑石粉)的性能进行了比较。在流变测量过程中,填充有稻草的橡胶混合物显示出最大的扭矩增加,这间接表明复合材料具有很高的交联度和硬度。发现秸秆添加对弹性体混合物的硫化时间的影响与其他常规填料的结果相当。此外,结果证实,基于天然橡胶的新型复合材料充满农作物残渣是有吸引力的材料,因为它们具有形成“结构”的能力,并且对增强材料具有良好的影响。在所有测试样品中,添加秸秆的硫化橡胶显示出最佳的阻隔性能和抗热氧化老化性能。此外,基于秸秆的复合材料表明,谷物秸秆废料可以用作天然橡胶复合材料的替代,可生物降解和环保的增强材料。

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