单调轴向压缩下 FRP-UHPC 钢管柱的实验行为和设计模型

IF 6.3 2区 材料科学 Q1 MATERIALS SCIENCE, COMPOSITES Composite Structures Pub Date : 2024-07-26 DOI:10.1016/j.compstruct.2024.118416
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引用次数: 0

摘要

通过将结构钢与纤维增强聚合物(FRP)和超高性能混凝土(UHPC)相结合,FRP-UHPC-钢管柱(FUSTs)成为一种创新的复合材料构件,具有优异的耐腐蚀性和轻质特性。作为在恶劣环境(如风力涡轮机和高压输电塔)中工作的薄壁管柱,FUSTs 具有巨大的应用潜力。为了深入了解 UHPC 的钢纤维比率、试样空隙率和 FRP 厚度等关键参数,本文测试了 24 个试样以评估其抗压行为,其中包括 18 个 FUST 和 6 个 UHPC 填充 FRP 管 (UCFFT)。实验结果表明(1) FUSTs 表现出延展性,应变明显增强,强度显著提高;(2) UHPC 中的钢纤维对 FUSTs 的极限状态影响不大;(3) 较大的内部空隙会导致玻璃钢管局部破裂;(4) 玻璃钢厚度是归一化轴向应力-应变曲线总体形状和极限点的主要影响因素。最后,提出了一个设计模型,该模型能够捕捉到轴向载荷-应变曲线的一般形状,并能对峰值载荷进行相当准确的预测。
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Experimental behaviour and design model of FRP-UHPC-steel tubular columns under monotonic axial compression

By integrating structural steel with Fiber-Reinforced Polymer (FRP) and Ultra-High Performance Concrete (UHPC), FRP-UHPC-steel tubular columns (FUSTs) emerge as innovative composite members that offer exceptional corrosion resistance and lightweight properties. FUSTs hold significant potential for use as thin-walled tubular columns working in harsh environments, such as wind turbines and high-voltage transmission towers. To obtain in-depth understanding of key parameters including the steel fiber ratio of UHPC, the specimen void ratio and the FRP thickness, this paper tested 24 specimens to evaluate their compressive behaviour, including 18 FUSTs and 6 UHPC-filled FRP tubes (UCFFTs). Experimental results showed that: (1) FUSTs demonstrated ductile behavior with significant strain enhancement and notable strength improvement; (2) the steel fibers in UHPC had marginal influences on the ultimate condition of FUSTs; (3) a larger inner void had a general effect to lead to more localized rupture for the FRP tube; (4) the FRP thickness was the predominant influencing factor on both the general shape and the ultimate point of the normalized axial stress–strain curves. Finally, a design model was proposed, which was able to capture the general shape of the axial load–strain curves, and could generate reasonably accurate predictions for the peak load.

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来源期刊
Composite Structures
Composite Structures 工程技术-材料科学:复合
CiteScore
12.00
自引率
12.70%
发文量
1246
审稿时长
78 days
期刊介绍: The past few decades have seen outstanding advances in the use of composite materials in structural applications. There can be little doubt that, within engineering circles, composites have revolutionised traditional design concepts and made possible an unparalleled range of new and exciting possibilities as viable materials for construction. Composite Structures, an International Journal, disseminates knowledge between users, manufacturers, designers and researchers involved in structures or structural components manufactured using composite materials. The journal publishes papers which contribute to knowledge in the use of composite materials in engineering structures. Papers deal with design, research and development studies, experimental investigations, theoretical analysis and fabrication techniques relevant to the application of composites in load-bearing components for assemblies, ranging from individual components such as plates and shells to complete composite structures.
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