Acar Volkan
Department of Mechanical Engineering, Atatürk University, Erzurum 25240, Türkiye.
ACS Omega. 2025 May 22;10(21):22235-22246. doi: 10.1021/acsomega.5c02757. eCollection 2025 Jun 3.
Polymer concretes (PCs) have recently attracted attention with their use in industry, thanks to their superior structural properties. To further improve the mechanical properties of polymer concretes, a kind of composite material, the achievements in composite technology should be transferred to this field. While studies in this context mainly involve dispersing chopped fibers in PC, the reinforcement of dry-woven fabric is not frequently encountered. In this study, the effects of the reinforcement of aramid, glass, and carbon dry woven fabrics under a specific layout plan on the flexural and compressive behaviors of polymer concrete were investigated. In this regard, first, the mechanical properties of the woven fabrics were analyzed by performing single yarn tensile, yarn pull-out, and woven tensile tests, and it was understood that aramid fabric has superior mechanical properties compared to other fabrics. After that, the reinforcement of PCs with dry woven fabrics was performed, and the density and mechanical tests were carried out parametrically at 7, 14, and 28 days of curing time. After 28 days of curing, a 14% increase in the flexural strength of carbon fabric-reinforced specimens occurred, while a 14% increase in the compressive strength of aramid fabric-reinforced specimens was obtained. The most important results of the study are that the reinforcement of polymer concrete with dry woven fabrics is quite effortless and manageable; the fibers carry the load and form a good interface with the polymer concrete, creating a bridging effect at the fracture and resulting in a strength increase.
聚合物混凝土(PCs)因其优异的结构性能,近年来在工业应用中备受关注。为进一步提高聚合物混凝土的力学性能,作为一种复合材料,应将复合材料技术的成果应用于该领域。虽然这方面的研究主要涉及在PC中分散短切纤维,但干织物增强的情况并不常见。在本研究中,研究了在特定布局方案下,芳纶、玻璃和碳纤维干织物增强对聚合物混凝土弯曲和压缩性能的影响。在这方面,首先通过进行单纱拉伸、纱线拔出和织物拉伸试验分析了织物的力学性能,结果表明芳纶织物比其他织物具有更优异的力学性能。之后,用干织物对PCs进行增强,并在养护7天、14天和28天时进行了密度和力学性能参数试验。养护28天后,碳纤维增强试件的抗弯强度提高了14%,而芳纶纤维增强试件的抗压强度提高了14%。该研究最重要的结果是,用干织物增强聚合物混凝土非常简便且易于控制;纤维承担荷载并与聚合物混凝土形成良好的界面,在断裂处产生桥接效应,从而提高强度。