Rogowski Janusz, Kotynia Renata
Department of Concrete Structures, Lodz University of Technology, Al. Politechniki 6, 93-590 Lodz, Poland.
Materials (Basel). 2022 Feb 7;15(3):1231. doi: 10.3390/ma15031231.
Over the years, prestressing concrete has become a well-known technique to improve the ultimate and serviceability state of RC members. Besides steel reinforcement, relatively new materials such as carbon fiber reinforced polymers (CFRP) or especially shape memory alloys (SMA) can be used to active strengthening. The main scope of this paper is to compare various prestressing methods using carbon composites and memory steel alloys. A description of SMA, shape memory effect, its utilization for prestressing, and CFRP materials are presented in the paper. Moreover, current state-of-the-art developments in the field of both materials, considering prestressing systems and available anchorage, material behavior, creep and stress relaxation, durability issues, thermal compatibility with concrete, and fire behavior, are described. A general revision of previous studies based on flexural strengthening using both materials is conducted and the selected results of these studies are briefly presented. The behavior of RC beams after strengthening with mentioned techniques is compared and discussed. Selected on-site applications are described to confirm the feasibility and practicality of the strengthening systems. Finally, the main advantages and disadvantages of CFRP and SMA materials for prestressing concrete structures are summarized and further recommendations for the future research are listed.
多年来,预应力混凝土已成为一种广为人知的技术,用于改善钢筋混凝土构件的极限状态和使用性能。除了钢筋外,相对较新的材料,如碳纤维增强聚合物(CFRP),尤其是形状记忆合金(SMA),可用于主动加固。本文的主要目的是比较使用碳复合材料和记忆钢合金的各种预应力方法。本文介绍了形状记忆合金、形状记忆效应、其在预应力中的应用以及碳纤维增强聚合物材料。此外,还描述了这两种材料领域当前的最新发展,包括预应力系统和可用锚固、材料性能、徐变和应力松弛、耐久性问题、与混凝土的热兼容性以及火灾行为。对以往基于使用这两种材料进行抗弯加固的研究进行了全面回顾,并简要介绍了这些研究的选定结果。比较并讨论了采用上述技术加固后钢筋混凝土梁的性能。描述了选定的现场应用,以证实加固系统的可行性和实用性。最后,总结了碳纤维增强聚合物和形状记忆合金材料用于预应力混凝土结构的主要优缺点,并列出了对未来研究的进一步建议。