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Surface Modification of Polymeric Fibers to Control the Interactions with Cement-Based Matrices in Fiber-Reinforced Composites

机译:聚合物纤维的表面改性以控制纤维增强复合材料中与水泥基质的相互作用

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There is evidence that the fiber-matrix interaction in fiber-reinforced cementitious composites is determined by the wettability and roughness of the fibers. Due to the high ionic strength in the hydrated cement, also the surface charge or acid/base behavior of the fibers is assumed to play a role. To create fibers with alkaline and acidic surface functionalities, water-insoluble polyvinyl alcohol) fibers were permanently modified by adsorption of various poly-electrolytes. X-ray photoelectron spectroscopy, zeta potential, and contact angle measurements revealed acidic, alkaline or amphoteric fiber surfaces with advancing water contact angles between 34° and 58°. In a first step to study the interaction with cementitious materials, the interaction of these fibers with pore solution (the liquid phase of hydrated cement) and the adsorption of calcium ions on the fiber surface were investigated. The work will be continued by studying the fiber-matrix interaction in cementitious matrices and its influence on the composite strength.
机译:有证据表明,纤维增强水泥复合材料中的纤维 - 基质相互作用由纤维的润湿性和粗糙度决定。由于水合水泥中的高离子强度,假设纤维的表面电荷或酸/碱行为发挥作用。为了用碱性和酸性表面官能团制成纤维,通过吸附各种多电解质来永久改性水不溶性聚乙烯醇)纤维。 X射线光电子体光谱,Zeta电位和接触角测量显示酸性,碱性或两性纤维表面,其前进的水接触角在34°和58°之间。在研究与水泥材料相互作用的第一步中,研究了这些纤维与孔溶液的相互作用(水合水泥的液相)和纤维表面上的钙离子的吸附。通过研究水泥基质中的纤维 - 基质相互作用及其对复合强度的影响,继续该作业。

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