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Durability of basalt fibers and composites in corrosive environments

机译:玄武岩纤维和复合材料在腐蚀性环境中的耐久性

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This study describes an experimental investigation of the degradation of the tensile properties of basalt fibers and epoxy-based composites in various corrosive environments, including alkaline, acid, salt and water solutions, and clarifies the corresponding degradation mechanisms. Carbon and glass fibers and their composites are adopted as references. Accelerated experiments were conducted at temperatures of 25? and 55? and the variation in tensile properties was studied by means of tension testing, mass loss weighing, scanning electron microscope imaging and energy spectrum analysis. The experimental results show that basalt fibers posses relatively strong resistance to water and salt corrosion, moderate resistance to acid corrosion and severe degradation in an alkaline solution. The tensile properties of basalt FRP composites are much better than those of basalt fibers. The degradation mechanism of basalt fibers involves damage by etching in salt, water and alkaline solutions and by change in the chemical composites in an acid solution. The fracture properties of basalt FRP composites are controlled by the failure of corroded interfaces between the fibers and the resin, making the interface the critical factor, rather than the fiber itself.
机译:这项研究描述了玄武岩纤维和环氧基复合材料在各种腐蚀性环境(包括碱,酸,盐和水溶液)中的拉伸性能退化的实验研究,并阐明了相应的降解机理。碳纤维和玻璃纤维及其复合材料被用作参考。在25°C的温度下进行了加速实验。和55?并通过拉伸试验,质量损失称量,扫描电子显微镜成像和能谱分析研究了拉伸性能的变化。实验结果表明,玄武岩纤维具有相对较强的抗水和盐腐蚀能力,具有中等的抗酸腐蚀能力和在碱性溶液中的严重降解。玄武岩FRP复合材料的拉伸性能比玄武岩纤维好得多。玄武岩纤维的降解机理包括在盐,水和碱性溶液中的腐蚀以及在酸性溶液中化学复合物的变化所造成的损害。玄武岩FRP复合材料的断裂性能受纤维和树脂之间腐蚀的界面破坏的控制,这使界面成为关键因素,而不是纤维本身。

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