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Evaluation of mechanical properties of chopped glass/basalt fibers reinforced polymer mortars

机译:切碎玻璃/玄武岩纤维增强聚合物砂浆机械性能评价

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Nowadays, Polymer Mortars (PMs) are among the most remarkable engineering products in the construction industry. These materials, which are manufactured using a completely different technique compared to Portland Cement Mortars (PCMs), have become increasingly popular as mortar types in both superstructure and infrastructure. PMs, which have high compressive and tensile strength compared to PCMs, have brittle behavior like PCMs. In this study, the influence of chopped fibers on the engineering properties and fracture modes of PMs is investigated. The research focuses on two different chopped fibers: chopped glass fibers and basalt fibers (CGFs and CBFs) and their influence on the physical and mechanical properties of PMs. In this regard, three different mixtures; M1 (0.5 % CGFs and 0% CBFs based on pure PC weight), M2 (0% CGFs and 0.5 % CBFs based on pure PC weight) and M3 (0.25 % CGFs and 0.25 % CBFs based on pure PC weight) were prepared and different mechanical tests were performed on the samples considering different curing times; 7, 14, 21 and 28 days. Besides, digital microscope (DM) and scanning electron microscope (SEM) examinations were performed to obtain detailed information about fiber pullout, fiber breakage, debonding or cracking in the matrix. As a result of the experimental studies and evaluations, it was found that chopped fibers have an influence on the mechanical properties and failure modes of PMs and CBFs are better additives compared to CGFs, with M2 giving more effective results in terms of mechanical properties.
机译:如今,聚合物迫击炮(PMS)是建筑业最令人瞩目的工程产品之一。与波特兰水泥迫击炮(PCMS)相比,使用完全不同的技术制造的这些材料在上层结构和基础设施中,作为迫击炮类型越来越受欢迎。与PCM相比,PMS具有高压缩和拉伸强度,具有像PCM的脆性行为。在该研究中,研究了切碎的纤维对PMS工程性质和骨折模式的影响。该研究侧重于两种不同的切碎纤维:切碎的玻璃纤维和玄武岩纤维(CGF和CBF)及其对PMS物理和力学性能的影响。在这方面,三种不同的混合物;制备M1(基于纯PC的0.5%CGF和0%CBF),制备M2(基于纯PC重量0%CGF和0.5%CBF)和M3(基于纯PC重量0.25%CGF和0.25%CBF)考虑不同的固化时间,对样品进行不同的机械测试; 7,14,21和28天。此外,进行数字显微镜(DM)和扫描电子显微镜(SEM)检查,以获得有关纤维拔出,纤维破损,剥离或在基质中开裂的详细信息。由于实验研究和评估,发现切碎的纤维对与CGF相比,PMS和CBF的机械性能和CBF的失效模式具有影响,M2在机械性能方面提供更有效的结果。

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