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Interfacial adhesion in sisal fiber/SBR composites: an investigation by the restricted equilibrium swelling technique

机译:剑麻纤维/ SBR复合材料的界面粘合:有限平衡溶胀技术的研究

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摘要

Short sisal fiber-reinforced styrene butadiene rubber (SBR) composites were prepared and characterized by the restricted solvent swelling technique. The solvent swelling characteristics of SBR composites containing untreated and bonding agent-added mixes were investigated in a series of aromatic solvents, such as benzene, toluene, and xylene. The diffusion experiments were conducted by the sorption gravimetric method. The adhesion between the rubber and short sisal fibers was evaluated from the restricted equilibrium swelling measurements. The anisotropy of swelling of the composite was confirmed by this study. The effect of fiber orientation in controlling the anisotropy of restricted swelling was also demonstrated. As the fiber content increased, the solvent uptake decreased, due to the increased hindrance and good fiber-rubber interactions. Bonding agent-added mixes showed enhanced restriction to swelling, due to the strong interfacial adhesion. The bonding system containing hexa-resorcinol in the mix produces an in-situ resin, which binds the fiber and the rubber matrix firmly. In addition, as the penetrant size increases from benzene to xylene, the uptake decreases. The swelling index values of the composites support this observation. Due to the improved adhesion between the short sisal fiber and SBR, the ratio of the volume fraction of rubber in the dry composite sample to the swollen sample (VT) decreases. The extent of fiber orientation of the composites was also analysed from the restricted swelling method. SEM studies of the composite revealed the orientation of short fibers. The sorption data support the Fickian diffusion trend, which is typical in the case of cross-linked rubbers.
机译:制备了短剑麻纤维增强的丁苯橡胶(SBR)复合材料,并通过受限溶剂溶胀技术对其进行了表征。在一系列芳族溶剂(如苯,甲苯和二甲苯)中研究了含有未处理和添加了粘合剂的混合物的SBR复合材料的溶剂溶胀特性。扩散实验通过吸附重量法进行。橡胶和短剑麻纤维之间的粘附力是通过有限的平衡溶胀测量来评估的。这项研究证实了复合材料的溶胀各向异性。还证明了纤维取向在控制有限膨胀的各向异性中的作用。随着纤维含量的增加,由于增加的障碍和良好的纤维-橡胶相互作用,溶剂的吸收减少。由于强大的界面粘合性,添加了粘合剂的混合物对溶胀的抑制作用增强。混合物中包含六间苯二酚的粘合体系产生一种原位树脂,该树脂牢固地粘合了纤维和橡胶基质。另外,随着渗透剂尺寸从苯到二甲苯的增加,吸收率降低。复合材料的溶胀指数值支持这一观察。由于短剑麻纤维和SBR之间的粘合性得到改善,干燥复合材料样品中橡胶的体积分数与溶胀样品(VT)的比例降低。还通过限制性溶胀方法分析了复合材料的纤维取向程度。复合材料的SEM研究显示了短纤维的取向。吸附数据支持Fickian扩散趋势,这在交联橡胶的情况下是典型的。

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