Mustafaraj Enea, Corradi Marco, Yardim Yavuz, Luga Erion, Codur Muhammed Yasin
College of Engineering and Technology, American University of the Middle East, Egaila 54200, Kuwait.
Department of Mechanical and Construction Engineering, Wynne Jones Building, Northumbria University, Newcastle upon Tyne NE1 8ST, UK.
Materials (Basel). 2023 Jun 26;16(13):4597. doi: 10.3390/ma16134597.
This paper describes an experimental investigation into the feasibility of using ferrocement jacketing, polypropylene fibers, and carbon fiber reinforced polymer sheets (CFRP) to enhance the shear resistance of unreinforced brick masonry. The study involved testing 12 wall panels in diagonal compression, three of which were strengthened using each of the above-mentioned techniques. The results showed that all three strengthening techniques led to a significant improvement in the shear resistance and deformation capacity of the unreinforced walls. Furthermore, the results showed that the strengthened walls exhibited a significant improvement in shear resistance and deformation capacity by a factor of 3.3-4.7 and 3.7-6.8, respectively. These findings suggest that ferrocement jacketing is a viable and highly effective method for strengthening masonry structures. Test results can assist in the decision-making process to identify the most suitable design and retrofitting solution, which could indicate that not only new materials, but also traditional methods and materials (ferrocement) could be interesting and effective, also considering their lower initial cost.
本文描述了一项关于使用钢丝网水泥护套、聚丙烯纤维和碳纤维增强聚合物板(CFRP)提高无筋砖砌体抗剪强度可行性的试验研究。该研究包括对12个墙板进行斜压试验,其中三个墙板分别采用上述每种技术进行加固。结果表明,所有三种加固技术均显著提高了无筋墙体的抗剪强度和变形能力。此外,结果表明,加固后的墙体抗剪强度和变形能力分别显著提高了3.3至4.7倍和3.7至6.8倍。这些发现表明,钢丝网水泥护套是一种可行且高效的砌体结构加固方法。试验结果有助于在决策过程中确定最合适的设计和改造方案,这可能表明,不仅新材料,而且传统方法和材料(钢丝网水泥)也可能很有意义且有效,同时考虑到它们较低的初始成本。