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高温后方钢管再生混凝土界面黏结性能及本构方程
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Interfacial Bond Behavior and Constitutive Equation of Recycled Aggregate Concrete Filled Square Steel Tube after High Temperature
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    为了揭示高温后方钢管与再生混凝土的界面黏结性能,以最高经历温度(T)、再生 粗骨料取代率(γ)为变化参数,设计并完成了20个试件高温后的推出试验. 通过试验观察了试 件的受力破坏过程及形态,获取了试件加载端和自由端的荷载-滑移曲线,分析了各变化参数 对界面黏结性能及界面损伤发展过程的影响规律,并提出了相应的黏结强度的计算公式及黏 结滑移本构方程 . 结果表明:试件加载端和自由端的荷载-滑移曲线形态基本一致,但加载端 的初始滑移发生相对更早,曲线形态可以分为T≤200 ℃和T≥400 ℃两类;界面黏结性能整体上 相比方钢管普通混凝土较差(相应的黏结性能平均差距范围约为3.10%~19.05%);随着经历温 度的升高,黏结强度及黏结抗剪刚度先减小后增大,界面耗能能力则逐渐增大;随着再生粗骨 料取代率的提高,黏结强度逐渐减小,而黏结抗剪刚度和界面耗能能力则均呈现先增大后减 小再小幅恢复的变化趋势;界面初始黏结损伤的发生在T=600 ℃时明显推迟,并随再生粗骨料 取代率的提高表现出逐渐提早的趋势,而T≤400 ℃时经历温度及再生粗骨料取代率对其影响 均不大;黏结损伤发展速度随经历温度和再生粗骨料取代率的升高呈现先增大后减小的变化 趋势.

    Abstract:

    To reveal the interfacial bond behavior between square steel tube and recycled aggregate concrete (RAC)after exposure to high temperatures,a push-out test of 20 specimens after exposure to high temperatures was designed and completed by considering two parameters including the maximum temperature(T)and the replacement percentage(γ). The failure process and morphology of the specimens were observed,the load-slip curves of the loading end and the free end were obtained,and the influence laws of test parameters on the interfacial bond behav? ior and the bond damage process were analyzed. The regression bond strength formulas and bond-slip constitutive equations of RAC-filled square steel tube(RACFSST)subjected to high temperatures were proposed. The results show that the curves shape at the loading end and the free end are similar,but the initial slip at the loading end devel? ops earlier. The shape of the load-slip curves can be divided into two types according to the maximum temperature(i. e.,T≤200 ℃ and T≥400 ℃). The interfacial bond behavior of RACFSST is worse than CFSST(The average differ? ence of the corresponding bonding behavior is about 3.10% to 19.05%). With the increase of T,the bond strength and the bond shear stiffness decrease at first and then increase,and the energy dissipation capacity of the interface in? creases gradually. With the increase of γ,the bond strength decreases gradually. Moreover,the bond shear stiffness and the energy dissipation capacity of the interface show the law of first increase,then decrease and then recovering slightly with the increase of γ. The initial bond damage of the interface is delayed at 600 ℃,and it tends to be earlier with the increase of γ. However,the influence of T and γ on it is not obvious at T≤400 ℃. The development speed of bond damage increases first and then decreases with the increase of T and γ.

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陈宗平 ,贾恒瑞 ,陈俊睿 .高温后方钢管再生混凝土界面黏结性能及本构方程[J].湖南大学学报:自然科学版,2022,49(5):160~173

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  • 在线发布日期: 2022-06-06
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