Numerical modeling for damaged reinforced concrete slab strengthened by ultra-high performance concrete (UHPC) layer

厚板 材料科学 抗弯强度 结构工程 极限抗拉强度 耐久性 复合材料 抗压强度 有限元法 钢筋混凝土 粘结强度 胶凝的 覆盖 复合数 图层(电子) 工程类 计算机科学 水泥 胶粘剂 程序设计语言
作者
Yanping Zhu,Yang Zhang,Husam H. Hussein,Genda Chen
出处
期刊:Engineering Structures [Elsevier]
卷期号:209: 110031-110031 被引量:59
标识
DOI:10.1016/j.engstruct.2019.110031
摘要

Ultra-high performance concrete (UHPC) has been developed as an innovative cementitious based material. It can be used for repairing and strengthening existing reinforced concrete (RC) structures because of its excellent mechanical performance, such as high tensile and compressive strengths, long-term durability, and low permeability. However, when using UHPC to strengthen existing RC structures for flexure members, there is limited information on simulating existed cracks in RC structures and considering interface modeling between RC substrate and UHPC overlay. This research developed a finite element (FE) model to investigate flexural behaviors of UHPC-RC composite slab with introducing existed cracks in RC substrate by geometry discontinuous, approximately matched with experimental results previously published by the authors. Meanwhile, based on recent research on the bond strength of UHPC to concrete, a UHPC-RC interfacial model was included in the FE model. The FE model was validated with experimental laboratory results previously published by the authors, and a good agreement was obtained between numerical and experimental results. Finally, a parameter study was conducted to investigate the strengthening effects and optimizing strengthening parameters by using the developed FE model. Results showed that the effect of existing cracks on the ultimate flexure capacity of UHPC-RC cannot be neglected, and the interface model has a precise accuracy in FE modeling.
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