使用超高性能混凝土包壳加固/修复的钢筋/预应力混凝土受压构件的承载力

Mohammed H. Hedia, G. Morcous
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引用次数: 0

摘要

目前,美国有 36% 的桥梁需要大修或更换,其中 7% 的桥梁被列为结构缺陷。这些桥梁中的大多数都可以通过维修或加固来满足当前的荷载需求,并在剩余使用寿命内抵御环境影响。超高性能混凝土(UHPC)具有高工作性、出色的强度和耐久性以及显著的能量吸收能力等优异特性,因此作为修复和加固材料显示出巨大的潜力。本文提出了一种分析方法,用于预测带有超高性能混凝土包裹(夹套)的钢筋或预应力混凝土受压构件在轴向和弯曲综合效应下的承载能力。该方法基于应变相容性,并根据新的 AASHTO 指南规范使用理想化的 UHPC 拉伸和压缩材料模型。该方法使用集成来为具有复杂几何形状的任何截面绘制精确的相互作用图,从而克服了层状方法的近似性。本文还对超高性能混凝土在修复和加固混凝土桥柱和桥墩中的应用进行了全面的文献综述。本文介绍了一个圆形钢筋混凝土柱的设计实例,以说明所提出的方法,并计算复合材料截面的标称承载力和设计承载力。该实例表明,增加 UHPC 护套的厚度对提高轴向承载力有显著效果,但对受压构件的抗弯承载力仅有轻微影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Capacity of Reinforced/Prestressed Concrete Compression Members Strengthened/Repaired Using Ultra-High-Performance Concrete Encasement
Currently, 36% of bridges in the United States need major repair work or replacement and 7% of them are classified as structurally deficient. Most of these bridges can be repaired or strengthened to meet the current load demands and withstand the environmental impacts for the remaining service life. Ultra-high-performance concrete (UHPC) has shown immense potential as a repair and strengthening material thanks to its exceptional characteristics such as high workability, excellent strength and durability, and remarkable energy absorption capacity. This paper presents an analytical approach to predict the capacity of reinforced or prestressed concrete compression members with UHPC encasement (jacket) under combined axial and bending effects. The approach is based on strain compatibility and uses idealized UHPC material models in tension and compression according to the new AASHTO Guide Specifications. The approach uses integration to develop accurate interaction diagrams for any section with complex geometry, which overcomes the approximations of the lamina approach. The paper also provides a comprehensive literature review on UHPC usage in repairing and strengthening concrete bridge columns and piers. A design example of a circular reinforced concrete column is presented to illustrate the proposed approach and to calculate the nominal and design capacities of the composite section. This example has shown that increasing the thickness of the UHPC jacket has a prominent effect on enhancing the axial capacity but only a slight effect on the flexural capacity of compression members.
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