在钢筋混凝土结构评估中纳入既有裂缝

Ke Yu, Jiangpeng Shu, K. Zandi
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摘要

钢筋混凝土(RC)结构的裂缝在超过极限时可能是有害的。为保证既有结构的耐久性和承载能力,应将裂缝纳入结构评估方法。然而,在现有结构的评估中使用的传统模型并不能反映真实的开裂情况,这意味着需要先进的评估方法。在本研究中,将预先存在的裂缝引入有限元分析,以确定裂纹结构的延性、破坏特征和极限承载力。从现有桥梁的边缘梁上取下的梁试件进行了四点弯曲试验,结果用于本研究的验证目的。在使用寿命期间,由于荷载和钢筋腐蚀,试件显示出不同程度的开裂。基于弱化单元法和弱化粘结滑移关系法两种裂纹建模方法,对加载裂纹和腐蚀裂纹的影响进行了5种不同的分析。结果表明,梁的破坏是由锚固破坏引起的。讨论了不同模型预测的承载能力的差异。结果表明,采用弱单元法和弱粘结-滑移关系法对钢筋混凝土梁的裂缝进行建模和评估是一种实用的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
INCORPORATING PRE-EXISTING CRACKS IN STRUCTURAL ASSESSMENT OF RC STRUCTURES
Cracks in reinforced concrete (RC) structures can be detrimental as they grow beyond the limits. Cracks should be included in structural assessment methods to ensure the durability and load capacity of existing structures. However, conventional models used in the assessment of existing structures do not reflect the real cracking condition which implies that advanced assessment methods are required. In this study, pre-existing cracks were introduced into finite element analysis to identify the ductility, failure characteristics, and ultimate capacity of cracked structures. A beam specimen taken from the edge beams of an existing bridge had been subjected to a four-point bending test, and the results are used in this study for validation purposes. The specimens showed varying levels of cracking due to loading as well as reinforcement corrosion during the service life. Five different analyses were carried out to account for the effect of loading cracks and corrosion cracks based on two crack modeling approaches, namely weakened element approach and weakened bond-slip relation approach. The results showed that the failure of the beams was caused by anchorage failure. The differences in the load capacity predicated by different models are discussed. It was observed that incorporating pre-existing cracks by using weakened elements and weakened bond-slip relation approaches can be a practical method to model and assess cracked RC beams.
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