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Silanized cereal straw as a novel, functional filler of natural rubber biocomposites

机译:硅烷化的谷物秸秆作为一种新颖的天然橡胶生物复合材料的功能填料

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摘要

The aim of the presented research paper was to modify the biofiller in the form of milled cereal straw with 3-aminopropyl(diethoxy)methyl silane, and apply it to the natural rubber. To determine the material properties, an in-depth characterization of both the treated lignocellulosic material and the composites was studied. On the basis of thermogravimetric analysis, scanning electron microscopy, infrared spectroscopy and analysis of contact angle measurements, it was found that the silanization process significantly influenced thermal stability and hygroscopicity of the straw, its hydrophobicity as well as dispersion in polymeric matrix. Analyses of the new composites included static and dynamic mechanical properties, hardness, and barrier and damping properties, all of which showed improvement. This was because of improved interactions at the filler-elastomer, which resulted from better adhesion of the treated bio-additive to natural rubber. Biocomposites have also demonstrated greater resistance to flammability as well as thermo-oxidative aging processes. The research clearly indicates the application potential of these new multifunctional and biocompatible materials.
机译:提出的研究论文的目的是用碾磨的谷物秸秆的形式改变生物污染物,用3-氨基丙基(二乙氧基)甲基硅烷,并将其施加到天然橡胶中。为了确定材料特性,研究了处理过的木质纤维素材料和复合材料的深度表征。基于热重分析,扫描电子显微镜,红外光谱和接触角测量分析,发现硅烷化过程显着影响了秸秆的热稳定性和吸湿性,其疏水性以及聚合物基质中的分散。新复合材料的分析包括静态和动态的机械性能,硬度和屏障和阻尼性质,所有这些都显示出改善。这是因为填充弹性体的相互作用改进,这是由于较好地粘附了处理的生物添加剂对天然橡胶。生物复合材料还表现出更大的抗易燃性和热氧化老化方法的抗性。该研究清楚地表明了这些新型多功能和生物相容性材料的应用潜力。

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