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Study on the Mechanical Properties and Strengthening Mechanism of Interface-Modified Carbon Fiber Mesh Reinforced Cement-Based Composites with SCAHMC

机译:SCA&HMC界面改性碳纤维网增强水泥基复合材料的力学性能及增强机理研究

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摘要

Carbon fiber mesh reinforced cement-based composites (CMCCs) have received extensive attention in the field of engineering repair and structural reinforcement due to their outstanding properties such as two-way force, rust prevention, high specific strength, and low base surface requirements. However, the development of this material has been slowed down to some extent due to the poor interfacial bonding between the carbon fiber mesh and the cement matrix. In this paper, a novel fabrication strategy was proposed in which the carbon fiber mesh was modified with epoxy resin and silane coupling agent (SCA) to increase its surface chemical activity. Meanwhile, the hydroxymethyl cellulose (HMC) was also filled into the concrete matrix to improve the mechanical strength of the matrix as well as the load transfer behaviors between the mortar and carbon fiber (CF) mesh. The potential to employ SCA and HMC was evaluated for the making of CMCCs via the above methods. The results showed that the longitudinal shear strength of composites with SCA and SCA&HMC increased by 26.6% and 56.1% compared to those of CF with epoxy resin (EP) reinforced composites, respectively. The flexural strength of composite with SCA&HMC increases by 147.6% compared to I-(F) without CF. The novel II-HCM&CF/EP-SCA composites with excellent performance are promised to be applied in practical uses.
机译:碳纤维网眼增强水泥基复合材料(CMCC)由于其出色的性能,例如双向力,防锈,高比强度和较低的底表面要求,在工程修复和结构增强领域受到了广泛的关注。但是,由于碳纤维网与水泥基体之间的不良界面粘结,这种材料的发展已在一定程度上减慢了速度。本文提出了一种新颖的制造策略,其中用环氧树脂和硅烷偶联剂(SCA)改性碳纤维网以提高其表面化学活性。同时,还将羟甲基纤维素(HMC)填充到混凝土基体中,以提高基体的机械强度以及砂浆和碳纤维(CF)网之间的载荷传递行为。通过上述方法评估了使用SCA和HMC生产CMCC的潜力。结果表明,与环氧树脂(EP)增强复合材料的CF相比,SCA和SCA&HMC复合材料的纵向剪切强度分别提高了26.6%和56.1%。与不含CF的I-(F)相比,含SCA&HMC的复合材料的弯曲强度提高了147.6%。具有优异性能的新型II-HCM&CF / EP-SCA复合材料有望在实际应用中使用。

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