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钢筋轴线偏心半套筒灌浆连接高温后的单向拉伸试验研究
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Study on Uniaxial Tensile Test of Half Grouted Sleeve Connection with Axial Eccentric Rebar after High Temperature
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    为研究火灾后带钢筋轴线偏心的半套筒灌浆连接(half grouted sleeve connection,HGSC)的单向受拉性能,对 48个 HGSC 进行了单向静力拉伸试验,研究了钢筋轴线偏心和高温对不同钢筋直径的高温后 HGSC 力学性能的影响,并结合已有研究给出工程意见 . 结果表明:高温后带钢筋轴线偏心的HGSC主要发生钢筋拉断破坏与钢筋拔出破坏,且随着钢筋轴线偏心率的增大和温度的升高,试件更可能发生钢筋拉断到拔出破坏的转变;钢筋轴线偏心会在高温基础上进一步影响连接性能,钢筋偏心试件的荷载最大下降至无缺陷试件的 94%,滑移量最大增加至173%;建议对HGSC和含该连接的装配式混凝土结构进行设计、施工、火灾后性能评估与修复时,考虑火灾温度和钢筋轴线偏心率的影响,要求不出现钢筋拔出破坏,且破坏时钢筋与灌浆料之间没有明显滑移;焊接能有效地解决连接螺纹端加工质量不佳的问题.

    Abstract:

    In order to study the uniaxial tensile behavior of half grouted sleeve connection (HGSC) with axial eccentric rebar after fire, uniaxial static tensile tests were carried out on 48 HGSC specimens. The effects of rebar axis eccentricity and high temperature on the mechanical properties of post-fire HGSCs with different rebar diameters are studied, and the engineering opinions are given combined with the existing research. The results show that: post-fire HGSCs with rebar axis eccentricity mainly exhibit rebar fracture and rebar pullout failure. With the increase of the axial eccentricity ratio of rebar and the peak temperature,the transformation from rebar fracture to bonding failure is more likely to occur; Rebar axis eccentricity further affects the connection performance after high temperature. The force of HGSC with axial eccentric rebar decreases to 94% of that of the corresponding specimen without defect at most, and the slip increases to 173% at most; It is suggested that the influence of fire temperature and the axial eccentricity ratio of rebar should be considered in the design, construction, post-fire performance evaluation and repair of HGSC and PC structure with this connection. It is required that there is no rebar pullout failure and obvious bondslip between rebar and grout. Welding can effectively solve the problem of poor thread processing quality.

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张望喜,王嘉,赵学涛,李静贤,卢立星,曹亚栋.钢筋轴线偏心半套筒灌浆连接高温后的单向拉伸试验研究[J].湖南大学学报:自然科学版,2022,49(9):9~19

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  • 在线发布日期: 2022-10-04
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