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Characteristics of Interfacial Shear Bonding Between Basalt Fiber and Mortar Matrix

机译:玄武岩纤维和砂浆基质之间界面剪切结合特性

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摘要

Basalt fibers have been adopted as reinforcements to improve mechanical performance of concrete materials and structures due to their excellent corrosion resistance, affordable cost, and environmental-friendly nature. While the reinforcing efficiency is significantly dependent on fiber–matrix interfacial properties, there is a lack of studies focusing on the bonding behavior of basalt fibers in the mortar matrix. In this paper, a series of experiments were carried out to investigate the characteristics of single basalt fiber pulled out from the mortar matrix. Three embedment lengths and three types of mortar strength were considered. As references, the pull-out behavior of single polyvinyl alcohol (PVA) fiber and glass fiber in mortar matrix were also tested for comparison. Results from the pull-out test revealed that the average bonding strength is more effective than the equivalent shear bonding strength to illustrate the interfacial bond behavior of single basalt fiber in mortar matrix, which can be improved by either longer embedment length or the stronger mortar matrix. Finally, the tensile and compressive strengths of basalt/PVA/glass fiber-reinforced concrete (FRC) were measured to investigate the influence of interfacial shear bonding strengths. It was shown that, while PVA fiber developed the highest shear bonding strength with mortar, the basalt fiber exhibited the best reinforcing efficiency of FRC.
机译:由于其优异的耐腐蚀性,可承受的成本和环保性质,已采用玄武岩纤维作为增强材料,以提高混凝土材料和结构的机械性能。虽然增强效率显着依赖于纤维 - 基质界面性质,但缺乏研究迫击砂浆基质中玄武岩纤维的粘合行为的研究。本文进行了一系列实验,以研究从砂浆基质中拉出的单玄武岩纤维的特性。考虑了三种嵌入长度和三种类型的砂浆强度。作为参考文献,还测试了砂浆基质中单偏乙醇(PVA)纤维和玻璃纤维的拉出行为以进行比较。拉出试验结果显示,平均粘合强度比等效剪切粘合强度更有效,以说明砂浆基质中单玄武岩纤维的界面键合行为,可以通过较长的嵌入长度或更强的砂浆基质来改善。最后,测量了玄武岩/ PVA /玻璃纤维增​​强混凝土(FRC)的拉伸和抗压强度,以研究界面剪切粘合强度的影响。结果表明,当PVA纤维产生具有砂浆的最高剪切粘合强度时,玄武岩纤维表现出FRC的最佳增强效率。

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