三轴编织物复合材料加固混凝土圆柱体在偏心压缩下的行为

IF 1.6 4区 工程技术 Q2 MATERIALS SCIENCE, TEXTILES
Honghua Zhang, Yi Zhou, Wei Li
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引用次数: 0

摘要

纺织复合材料加固的混凝土在工程应用中一直备受关注。本文研究了碳纤维、玻璃纤维和碳玻混合三轴编织复合材料约束的混凝土圆柱体在三种不同偏心率下的压缩性能。此外,还引入了数字图像相关分析方法来观察钢筋混凝土圆柱体的压缩过程和破坏模式。同时,还分析了失效过程中纱线的应变过程。结果表明,所有三轴编织复合材料都能提高混凝土圆柱体的强度,而强度随偏心率的增加而降低,力学性能逐渐趋同。此外,使用由玻璃纤维制成的三轴编织物复合材料还能提高混凝土圆柱体的延展性。研究还表明,采用碳玻混合三轴编织复合材料不仅能提高混凝土圆柱体的强度和延展性,而且成本低廉,还能有效降低偏心敏感性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Behaviors of triaxial woven fabric composites reinforced concrete cylinders under eccentric compression
Concrete reinforced by textile composite materials has long been a focus of substantial interest in the engineering applications. In this paper, the compression performance of concrete cylinders confined by carbon fibers, glass fibers, and carbon–glass hybrid triaxial woven fabric composites under three different eccentricities were investigated. Moreover, the digital image correlation analysis method was introduced to observe the compression process and failure modes of reinforced concrete cylinders. Meanwhile, the strain process of yarns during the failure was also analyzed. The result showed that all of triaxial woven fabric composites can increase the strength of concrete cylinders, while the strength decreased with the increase of eccentricity and the mechanical performance converged gradually. In addition, using triaxial woven fabric composites made of glass fibers can promote the ductility of concrete cylinders. It also indicated that employing carbon–glass hybrid triaxial woven fabric composites can not only have the advantages of increasing the strength and ductility of concrete cylinders, and low cost, but also effectively reduces the eccentric sensitivity.
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来源期刊
Textile Research Journal
Textile Research Journal 工程技术-材料科学:纺织
CiteScore
4.00
自引率
21.70%
发文量
309
审稿时长
1.5 months
期刊介绍: The Textile Research Journal is the leading peer reviewed Journal for textile research. It is devoted to the dissemination of fundamental, theoretical and applied scientific knowledge in materials, chemistry, manufacture and system sciences related to fibers, fibrous assemblies and textiles. The Journal serves authors and subscribers worldwide, and it is selective in accepting contributions on the basis of merit, novelty and originality.
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