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Yarn-reinforced hydrogel composite produced from woven fabrics by simultaneous dissolution and cross-linking

机译:通过同时溶出和交联由织造织物生产的纱线增强水凝胶复合材料

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摘要

Polyvinyl alcohol (PVA)/cotton (Co) woven fabrics were produced by constructing Co as warp yarns and PVA as weft yarns in the fabric structure. As-prepared PVA/Co fabrics were treated with borax/water solution. Because of the simultaneous dissolution and gelation of PVA yarn in the fabric and transformation of PVA molecules into cross-linked gel structures, gel penetrated among the yarns in the matrix form and hence Co yarn-reinforced composite hydrogels were obtained. The retention time of water by composite hydrogels was first increased and then decreased by increasing borax concentration in the cross-linker solution. With yarn reinforcing, the tensile strength of hydrogel structure significantly increased. Mechanical properties of hydrogel composites were very variable depending on water content in the structure and tensile strength tremendously increased when water evaporated from the structure. Thermal and chemical characterizations of yarn-reinforced hydrogel composites were conducted in addition to swelling and mechanical analysis to investigate the performance of the hydrogel composites.
机译:以聚乙烯醇(PVA)为经纱,聚乙烯醇(PVA)为纬纱,在织物结构中合成了聚乙烯醇(PVA)/棉(Co)机织物。用硼砂/水溶液对制备的PVA/Co织物进行处理。由于PVA纱线在织物中的同时溶解和凝胶化,以及PVA分子转化为交联凝胶结构,凝胶以基体形式渗透到纱线之间,因此获得了共丝增强复合水凝胶。复合水凝胶的保水时间随着交联剂溶液中硼砂浓度的增加先增加后减少。随着纱线的增强,水凝胶结构的拉伸强度显著提高。水凝胶复合材料的力学性能因结构中的水分含量而变化很大,当水分从结构中蒸发时,拉伸强度显著增加。除了溶胀和力学分析之外,还对纱线增强水凝胶复合材料进行了热和化学表征,以研究水凝胶复合材料的性能。

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