Behavior of Externally Confined Concrete Columns

H. Saadatmanesh, M. Ehsani, Mu-wen Li
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引用次数: 10

Abstract

This paper investigates the feasibility of strengthening of seismically deficient concrete columns with high-strength fiber composite straps. The concrete columns will be externally confined by wrapping thin glass-fiber-reinforced or carbon-fiber-reinforced straps around the column. The confinement provided by the straps will increase the stress and strain of concrete at failure and will increase its ductility. Moreover, the composite strap will prevent buckling of longitudinal bars and spalling of the shell and therefore will further increase the load carrying capacity of the column. Analytical models are developed and a seismically deficient parametric study is conducted to investigate the effectiveness of this technique for strengthening of concrete columns designed before the new seismic design provisions and codes were in place. The variables used in the parametric study include, concrete compressive strength, thickness of composite strap, clear spacing between composite straps and type of the composite strap, i.e., carbon fiber reinforced or glass fiber reinforced. The results indicate that external confinement provided by the composite straps significantly increases the strength and ductility of concrete columns.
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外约束混凝土柱的性能
本文探讨了高强纤维复合带加固地震缺陷混凝土柱的可行性。混凝土柱将通过在柱周围包裹薄的玻璃纤维增强带或碳纤维增强带来进行外部约束。绑带提供的约束将增加混凝土在破坏时的应力和应变,并将增加其延性。此外,复合带可以防止纵筋屈曲和壳体剥落,从而进一步提高柱的承载能力。开发了分析模型,并进行了地震缺陷参数研究,以调查该技术在新的抗震设计规定和规范到位之前对混凝土柱进行加固的有效性。参数化研究中使用的变量包括:混凝土抗压强度、复合带厚度、复合带间距、复合带类型,即碳纤维增强或玻璃纤维增强。结果表明,复合带提供的外约束显著提高了混凝土柱的强度和延性。
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