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Effect of Tapered Head Sleeve Structural Parameters on Grouting Connection Joints Deformation

机译:锥头套筒结构参数对注浆连接缝变形的影响

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摘要

In order to study the effect of different structural parameters on the connection performances of a tapered head sleeve (THS) and the calculation method of the bond strength, a three-dimensional finite-element model was established. Seventeen THS specimens with different specifications were designed and simulated. Considering the inner cavity radius, sleeve thickness, sleeve length, and anchorage length of reinforcing bar, the influence law of each parameter on THS deformation was analyzed. According to the restraint mechanism and the law of circumferential strain distribution, the calculation methods of bond strength between the grouting material and the inner cavity of the grouting sleeve and between the steel bar and the grouting material are put forward. The results show that the longitudinal strain of the sleeve increases with decreasing the radius of the sleeve and the thickness of the sleeve; the decreases of sleeve lengths and anchorage lengths affect the strain distribution trend of the whole sleeve, but have no obvious effect on the peak value of the longitudinal strain and circumferential strain; the formulas well express the bond strength between each part.
机译:为了研究不同结构参数对锥头套筒(THS)连接性能的影响以及粘结强度的计算方法,建立了三维有限元模型。设计并模拟了17个不同规格的THS标本。考虑到钢筋的内腔半径,套管厚度,套管长度和锚固长度,分析了各参数对THS变形的影响规律。根据约束机理和周向应变分布规律,提出了灌浆材料与灌浆套管内腔之间以及钢筋与灌浆材料之间粘结强度的计算方法。结果表明,套管的纵向应变随着套管的半径和套管厚度的减小而增加;套管长度和锚固长度的减小影响了整个套管的应变分布趋势,但对纵向应变和周向应变的峰值没有明显影响;公式很好地表达了各部分之间的粘结强度。

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