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Polymeric composites based on natural rubber and hemp fibers

机译:基于天然橡胶和大麻纤维的聚合物复合材料

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The purpose of this work is to present the results of preparing a polymeric composite with enhanced properties based on natural rubber and hemp. Amounts of 10 and 20 phr hemp were used to obtain the composites. The samples have been processed by sulfur vulcanization and characterized by several methods. The mechanical characteristics, gel fraction, cross-link density, rubber-fiber interactions and water uptake have been investigated depending on the hemp content. Fourier transform infrared spectroscopy (FTIR) and scanning electron microscopy (SEM) techniques were also employed for characterization. The values of hardness, tensile strength and tearing strength have increased with the fiber content increasing due to the interaction between the fibers and natural rubber. Also, good adhesion between hemp fibers and rubber matrix was observed in SEM micrographs. The gel fraction value was over 95 % for all composites and increased with the increasing of hemp content. The cross-link density was determined on the basis of equilibrium solvent-swelling measurements applying the modified Flory-Rehner equation. It was observed that cross-linking density of composites increased slightly with the increase of amount of hemp but still was lower than that of the natural rubber without hemp. The extent of interaction between rubber and fiber was determined using the Kraus equation. Results of water absorption tests showed that water uptake increased with the increase of fiber content and temperature. The physical and chemical investigations have shown the reinforcing effect of hemp on sulfur vulcanized natural rubber, as well.
机译:这项工作的目的是介绍基于天然橡胶和大麻制备具有增强性能的聚合物复合材料的结果。使用10和20phr的麻量来获得复合材料。样品已通过硫磺硫化处理,并通过几种方法进行了表征。取决于大麻含量,已经研究了机械特性,凝胶分数,交联密度,橡胶-纤维相互作用和吸水率。傅里叶变换红外光谱(FTIR)和扫描电子显微镜(SEM)技术也用于表征。随着纤维含量的增加,由于纤维和天然橡胶之间的相互作用,硬度,抗张强度和撕裂强度的值增加。另外,在SEM显微图中观察到大麻纤维与橡胶基体之间的良好粘合。所有复合材料的凝胶分数值均超过95%,并且随着大麻含量的增加而增加。交联密度是基于平衡的溶剂溶胀测量值,使用改进的Flory-Rehner方程确定的。观察到复合材料的交联密度随大麻数量的增加而略有增加,但仍低于没有大麻的天然橡胶。橡胶和纤维之间的相互作用程度使用克劳斯方程确定。吸水率测试结果表明,吸水率随纤维含量和温度的升高而增加。物理和化学研究还显示了大麻对硫磺硫化天然橡胶的增强作用。

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