The influence of shear surface quality on the mechanical properties of long-span prestressed continuous rigid-frame bridge

IF 3.5 Q1 ENGINEERING, MULTIDISCIPLINARY
Xinmin Zhang, Jiqing Luo, Zhenhua Dong, Linsong Jiang
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Abstract

PurposeThe long-span continuous rigid-frame bridges are commonly constructed by the section-by-section symmetrical balance suspension casting method. The deflection of these bridges is increasing over time. Wet joints are a typical construction feature of continuous rigid-frame bridges and will affect their integrity. To investigate the sensitivity of shear surface quality on the mechanical properties of long-span prestressed continuous rigid-frame bridges, a large serviced bridge is selected for analysis.Design/methodology/approachIts shear surface is examined and classified using the damage measuring method, and four levels are determined statistically based on the core sample integrity, cracking length and cracking depth. Based on the shear-friction theory of the shear surface, a 3D solid element-based finite element model of the selected bridge is established, taking into account factors such as damage location, damage number and damage of the shear surface. The simulated results on the stress distribution of the local segment, the shear surface opening and the beam deflection are extracted and analyzed.FindingsThe findings indicate that the main factors affecting the ultimate shear stress and shear strength of the shear surface are size, shear reinforcements, normal stress and friction performance of the shear surface. The connection strength of a single or a few shear surfaces decreases but with little effect on the local stress. Cracking and opening mainly occur at the 1/4 span. Compared with the rigid “Tie” connection, the mid-span deflection of the main span increases by 25.03% and the relative deflection of the section near the shear surface increases by 99.89%. However, when there are penetrating cracks and openings in the shear surface at the 1/2 span, compared with the 1/4 span position, the mid-span deflection of the main span and the relative deflection of the cross-section increase by 4.50%. The deflection of the main span increases with the failure of the shear surface.Originality/valueThese conclusions can guide the analysis of deflection development in long-span prestressed continuous rigid-frame bridges.
剪切面质量对大跨度预应力连续刚构桥力学性能的影响
目的 大跨度连续刚架桥通常采用逐节对称平衡悬挂浇注法建造。随着时间的推移,这些桥梁的挠度越来越大。湿接缝是连续刚构桥的典型施工特征,会影响其完整性。为了研究剪切面质量对大跨度预应力连续刚构桥力学性能的敏感性,我们选择了一座大型服务型桥梁进行分析。设计/方法/途径采用损伤测量方法对其剪切面进行检查和分类,并根据芯样完整性、开裂长度和开裂深度统计确定四个等级。根据剪切面的剪切-摩擦理论,考虑到损伤位置、损伤数量和剪切面损伤等因素,建立了所选桥梁的基于三维实体单元的有限元模型。研究结果表明,影响剪切面极限剪应力和剪切强度的主要因素是剪切面的尺寸、剪切配筋、法向应力和摩擦性能。单个或多个剪切面的连接强度会降低,但对局部应力影响不大。裂缝和开裂主要发生在 1/4 跨度处。与刚性 "拉杆 "连接相比,主跨的中跨挠度增加了 25.03%,剪力面附近截面的相对挠度增加了 99.89%。然而,当 1/2跨度处的剪切面出现贯穿性裂缝和开口时,与 1/4跨度位置相比,主跨中挠度和横截面的相对挠度增加了 4.50%。这些结论可以指导对大跨度预应力连续刚构桥挠度发展的分析。
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来源期刊
International Journal of Structural Integrity
International Journal of Structural Integrity ENGINEERING, MULTIDISCIPLINARY-
CiteScore
5.40
自引率
14.80%
发文量
42
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