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UHPC‑NC界面抗剪性能试验研究
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作者单位:

(1.湖南大学 土木工程学院 ,湖南 长沙 410082; 2.广东省交通规划设计研究院股份有限公司 ,广东 广州 510507; 3.广东省建筑工程机械施工有限公司 ,广东 广州 510500; 4.广东工业大学 土木与交通工程学院 ,广东 广州 510006)

作者简介:

万志勇,男,博士研究生,教授级高工.E-mail:1095801967@qq.com

通讯作者:

贺绍华,男,博士,副教授.E-mail:hesh@gdut.edu.cn

中图分类号:

U441

基金项目:

国家自然科学基金资助项目(编号:52278161);广东省自然科学基金资助项目(编号:2023A1515010535)


Experimental Study on Shear Performance of UHPC‑NC Interface
Author:
Affiliation:

(1.College of Civil Engineering , Hunan University , Changsha ,Hunan 410082 , China ; 2.Guangdong Communication Planning & Design Institute Group Co., Ltd., Guangzhou ,Guangdong 510507 , China ; 3.Guangdong Construction Engineering Machinery Construction Co ., Ltd., Guangzhou , Guangdong 510500 , China ; 4.School of Civil and Transportation Engineering , Guangdong University of Technology , Guangzhou ,Guangdong 510006 ,China )

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    摘要:

    超高性能混凝土 (UHPC)在工程结构加固领域应用前景广阔,新浇 UHPC加固层与既有混凝土可靠的界面黏结性能,是确保加固结构服役性能的关键。为研究不同界面处理方式对 UHPC与普通混凝土 (NC)间黏结性能的影响,设计制作了 6个Z形UHPC-NC 界面抗剪试件,探究光滑、凿毛、凿毛 +植筋 3种不同 UHPC-NC 结合面黏结性能,并通过建立混凝土结合面非线性有限元模型,探讨剪切荷载作用下不同 UHPC-NC 结合面黏结应力的分布规律。结果表明:UHPC-NC 界面黏结性能随结合面粗糙度增大不断提高,界面抗剪钢筋有利于延缓混凝土结合面脱黏和裂缝发展;相比光滑 UHPC-NC 结合面,平均凿毛深度为 4 mm且植入 4根直径 8 mm抗剪钢筋的混凝土结合面,其抗剪强度、刚度及弹性刚度依次增大了 156.1%、10.9%和101.0%,且随着界面裂缝不断发展,凿毛 +植筋处理的 UHPC-NC 界面剪应力分布渐趋均匀,结合面残余黏结作用主要由界面抗剪钢筋提供。

    Abstract:

    Ultra-high performance concrete (UHPC) has great application prospects in engineering structure reinforcement.The reliability of the bonding properties at the interface between the new UHPC reinforcement layer and the old concrete structure is critical for ensuring the serviceability of the reinforced structures.To determine the influence of different interface treatments on the bonding properties at the interface between the UHPC and normal concrete (NC),six Z-shaped UHPC-NC bonding specimens were designed,and the bonding properties of the UHPC-NC with three different kinds of interface,namely smooth,chisel,chisel + reinforced,were investigated.In addition,nonlinear finite element models for the concrete interface were established to determine the distribution law of bonding stresses of different UHPC-NC interfaces under shear loads.The results show that the bonding properties of the UHPC-NC interface increase with the increase in the interface roughness,and interfacial shear reinforcements can postpone the debonding and cracking of the concrete interface.Compared to the smooth UHPC-NC interface,the shear strength,stiffness,and elastic stiffness of the concrete interface with an average chisel depth of 4 mm and four shear reinforcements with a diameter of 8 mm are improved by 156.1%,10.9%,and 101.0%,respectively.With the continuous development of interfacial cracks,the shear stress distribution of the UHPC-NC interface treated with chisel and reinforcement becomes more and more uniform,and the residual bonding effect of the interface is mainly provided by the interfacial shear reinforcement.

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引用本文

万志勇,陈健平,贺绍华,等. UHPC‑NC界面抗剪性能试验研究[J].中外公路,2024,44(4):138-147.
WAN Zhiyong, CHEN Jianping, HE Shaohua, et al. Experimental Study on Shear Performance of UHPC‑NC Interface[J]. Journal of China and Foreign Highway,2024,44(4):138-147.

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  • 收稿日期:2023-05-10
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  • 在线发布日期: 2024-07-30
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