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Properties of Chemically Modified (Selected Silanes) Lignocellulosic Filler and Its Application in Natural Rubber Biocomposites

机译:化学改性(选定硅烷)木质纤维素填料的性质及其在天然橡胶生物复合材料中的应用

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摘要

This article concerns the functional properties of elastomeric composites reinforced with modified lignocellulosic material obtained from cereal straw. The aim of the research was to acquire new knowledge on the effectiveness of cereal straw modification methods in multifunctional properties, while reducing the flammability of newly designed elastomeric materials made of natural rubber. The article deals with investigating and explaining dependencies that affect the performance and processing properties of polymer biocomposites containing modified cereal straw. Three different silanes were used to modify the lignocellulosic filler: n-Propyltriethoxysilane, Vinyltriethoxysilane, and 3,3′-Tetrathiobis(propyl-triethoxysilane). The influence of the conducted modifications on the morphology and structure of straw particles was investigated using a scanning electron microscope, contact angle measurements, and thermogravimetric analysis technique. The increase in hydrophobicity and thermal stability of natural fibers was confirmed. In turn, the impact of silanization on the properties of filled composites was determined on the basis of rheometric characteristics and cross-linking density, static mechanical properties, tear resistance, thermal stability, and flammability tests. Noteworthy was the improvement of the mechanical strength of biocomposites and their resistance to burning. Correlations affecting the structure, morphology, dispersion, and properties of produced composites can facilitate the indication of a further research path in the field of development of new elastomeric biomaterials.
机译:本文涉及用从谷物吸管获得的改性木质纤维素材料增强的弹性体复合材料的功能性质。该研究的目的是获得关于多功能性质中谷物秸秆改性方法的有效性的新知识,同时降低了新设计的天然橡胶制成的弹性体材料的可燃性。本文涉及调查和解释影响含有改性谷物吸管的聚合物生物复合材料的性能和加工性能的依赖性。三种不同的硅烷用于改性木质纤维素填料:N-丙基三乙氧基硅烷,乙烯基三乙氧基硅烷和3,3'-四乙基石(丙基三乙氧基硅烷)。使用扫描电子显微镜,接触角测量和热重分析技术研究了对秸秆颗粒形态和结构的影响。确认了天然纤维的疏水性和热稳定性的增加。反过来,硅烷化对填充复合材料的性质的影响是基于流变速特征和交联密度,静电机械性能,抗撕裂性,热稳定性和易燃性测试。值得注意的是改善生物复合材料的机械强度及其对燃烧的抵抗力。影响生产复合材料的结构,形态,分散和性质的相关性可以促进新的弹性体生物材料开发领域进一步研究路径的指示。

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