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Mechanical Properties of Carbon-Fabric-Reinforced High-Strength Matrices

机译:碳纤维增强高强度矩阵的力学性能

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摘要

Fabric-reinforced cementitious matrices (FRCM) are promising technologies that respond to today’s architectural approaches. However, due to their high strength and ductility, they are starting to be implemented in buildings as strengthening systems. In this experimental study, the amount of fiber along the load direction in high-strength cementitious matrices and the effects of the fiber orientation on FRCM mechanical properties were studied. A total of four different composites were produced with two fabrics and two matrices. Tensile and flexural tests were carried out on composites. Within the scope of microstructure studies, scanning electron microscope micrographs were obtained and analyzed, along with microtopography sections. The main result obtained from the study indicates that as the fiber area in the direction of the load increases, the load order carried in this direction increases. However, this increase does not have to be proportional to the fiber area used in the direction of the load. The fiber coating and coating matrix interface play important roles in a composite’s performance. The carbon fibers can be used more efficiently by using them along the load direction and the loads in the matrix can be transferred to the carbon fibers by creating a larger fiber–matrix interface area.
机译:织物增强的水泥矩阵(FRCM)是有前途的技术,可应对当今的建筑方法。然而,由于它们的高强度和延展性,它们开始在建筑物中实现为加强系统。在该实验研究中,研究了沿高强度水泥基质中负载方向的纤维量和纤维取向对FRCM机械性能的影响。用两个织物和两个基质产生共有四种不同的复合材料。在复合材料上进行拉伸和弯曲试验。在微观结构研究的范围内,获得并分析扫描电子显微镜显微照片,以及微拷贝段。从研究获得的主要结果表明,随着载荷方向的光纤区域增加,在该方向上携带的负载顺序增加。然而,这种增加不必与在负载方向上使用的光纤区域成比例。纤维涂层和涂层矩阵界面在复合性能中起重要作用。通过沿着负载方向使用它们可以更有效地使用碳纤维,并且通过产生更大的纤维矩阵界面区域,可以将基质中的负载转移到碳纤维。

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