用于腐蚀钢筋混凝土柱剪切强度评估的改进型桁架拱模型

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-05-08 DOI:10.1177/13694332241252276
Jiannan Jiang, Yinhui Wang, Bo Yu, Bing Li, Jiaxing Ma
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引用次数: 0

摘要

在地震荷载作用下,锈蚀的钢筋混凝土 (RC) 柱容易发生脆性剪切破坏,这对现有结构构成了重大威胁。然而,由于机械缺陷以及规范中的方程式所包含的参数不足,文献在预测此类柱子的抗剪强度时缺乏精确性。本文以桁架拱模型理论为基础,建立了 RC 柱的剪切强度方程。在此基础上,充分考虑了腐蚀对钢筋截面积、屈服强度、混凝土抗压强度和位移延性等关键参数的影响,建立了腐蚀 RC 柱的剪切强度方程。为了评估所提出方程的准确性和适用性,编制了一个包含 215 个试件参数的数据库。与文献中的现有方程进行了对比分析。结果表明,方程的计算值与测试值之比的平均值和变异系数分别为 1.098 和 0.601,这证明了方程的计算精度高、离散性小。因此,所提出的方程为预测和评估腐蚀 RC 柱的抗剪强度提供了一种更有效的计算方法。该方法在提高地震多发地区结构的抗震能力方面具有巨大潜力。
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A modified truss-arch model for shear strength evaluation of corroded reinforced concrete columns
Under seismic loading, corroded reinforced concrete (RC) columns are prone to brittle shear failure, which poses a significant threat to existing structures. However, due to the mechanical defects and insufficient parameters included in the equations available in codes, the literature exhibits a lack of precision in predicting the shear strength of such columns. In this paper, a shear strength equation for the RC column was established based on the truss-arch model theory. On this basis, the effect of corrosion on key parameters such as the cross-sectional area of rebar, yield strength, compressive strength of concrete, and displacement ductility was fully considered to establish the shear strength equation of corroded RC columns. To assess the accuracy and applicability of the proposed equation, a database consisting of 215 specimen parameters was compiled. Comparative analyses were conducted with existing equations from the literature. The results indicate that the mean values and coefficient of variation for the ratio of calculated values to the tested values of the equation were 1.098 and 0.601, respectively, which proves the equation’s high computational accuracy and low dispersion. Consequently, the proposed equation offers a more effective calculation method for predicting and assessing the shear strength of corroded RC columns. This method holds significant potential for enhancing the resilience of structures in seismic-prone regions.
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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