Kaeseberg Stefan, Messerer Dennis, Holschemacher Klaus
Leipzig University of Applied Sciences, Structural Concrete Institute (IfB), Karl-Liebknecht-Str. 143, 04277 Leipzig, Germany.
Materials (Basel). 2019 Jul 26;12(15):2390. doi: 10.3390/ma12152390.
Reinforced concrete (RC) columns are often placed under confinement to increase their strength and ductility. Carbon fiber reinforced polymer (CFRP) materials have recently been recognized as favorable confinement systems. At present, a number of national standards and codes dedicated to the design of concrete components strengthened with CFRP in general and CFRP confinement in particular are available. These sets of rules provide design equations for confined reinforced concrete columns with circular and rectangular cross sections. Most of the standards and codes exhibit significant differences, including the used predictive models, limitations, observed effects and covered loading conditions. In this paper, five international standards and design guidelines are introduced and discussed. The purpose is to present a constructive and critical assessment of the state-of-the-art design methodologies available for CFRP confined RC columns and to discuss effects not previously considered properly. Therefore, some recent research efforts and findings from the Leipzig University of Applied Sciences are also introduced. The obtained data is used for a comparative study of the guideline predictive equations. Furthermore, it is shown that some new findings concerning the rupture strength and the maximum strength plus accompanying axial strain of a CFRP confined column are suitable to improve the current guidelines.
钢筋混凝土(RC)柱通常采用约束措施以提高其强度和延性。碳纤维增强聚合物(CFRP)材料近来被视为一种理想的约束体系。目前,有一些专门针对一般用CFRP加固混凝土构件尤其是CFRP约束设计的国家标准和规范。这些规则集为圆形和矩形截面的约束钢筋混凝土柱提供了设计方程。大多数标准和规范存在显著差异,包括所使用的预测模型、局限性、观测到的效果以及涵盖的荷载工况。本文介绍并讨论了五项国际标准和设计指南。目的是对现有用于CFRP约束RC柱的设计方法进行建设性和批判性评估,并讨论此前未得到妥善考虑的影响。因此,还介绍了莱比锡应用科学大学最近的一些研究工作和研究成果。所获得的数据用于对指南预测方程进行对比研究。此外,研究表明,一些关于CFRP约束柱的破坏强度、最大强度以及伴随的轴向应变的新发现适用于改进现行指南。