Beßling Markus, Orlowsky Jeanette
Department of Building Materials, TU Dortmund University, 44227 Dortmund, Germany.
Polymers (Basel). 2022 Jan 26;14(3):489. doi: 10.3390/polym14030489.
The composite material textile reinforced concrete (TRC) requires a high bond performance between the fiber strand and the concrete matrix. While the influence of the textile on bond behavior is well known, in this publication the influence of the concrete matrix is investigated by means of single-sided pull-out tests. The results of the presented study show dependence between the concrete strength and bond performance of the composite material. When a concrete of a higher-strength class is used, the bond-flow-pull-out distance curve shifts upward independent of the textile geometry and the yarn impregnation. A simplified model is presented to predict the occurrence of a crack along the fiber strand. This model serves as a basis to investigate the correlation between concrete width per fiber strand and resistance against a splitting crack. The effective concrete tensile strength decreases to about 35% when the concrete width is increased from 10 mm to 50 mm. To quantify the decrease, a mathematical relationship, which describes the test results independent of textile and concrete type, is proposed.
复合材料纺织增强混凝土(TRC)要求纤维束与混凝土基体之间具有较高的粘结性能。虽然纺织品对粘结行为的影响是众所周知的,但在本出版物中,通过单面拉拔试验研究了混凝土基体的影响。所呈现的研究结果表明了复合材料的混凝土强度与粘结性能之间的相关性。当使用更高强度等级的混凝土时,粘结-流动-拉拔距离曲线会向上移动,而与纺织品几何形状和纱线浸渍无关。提出了一个简化模型来预测沿纤维束裂缝的出现。该模型作为研究每根纤维束混凝土宽度与抗劈裂裂缝能力之间相关性的基础。当混凝土宽度从10毫米增加到50毫米时,有效混凝土抗拉强度降低到约35%。为了量化这种降低,提出了一种数学关系,该关系独立于纺织品和混凝土类型描述试验结果。