Improved softened truss model of prestressed concrete box girders subjected to combined bending and torsion

IF 2.1 4区 工程技术 Q2 CONSTRUCTION & BUILDING TECHNOLOGY
Hao Zhang, Qiu Zhao, Feng Xiao, Yiyan Chen, Xiaoqiang Yang
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引用次数: 0

Abstract

Prestressed concrete (PC) box girder is an innovative structure that is widely used in large-span bridges. Under eccentric loads such as vehicles, PC girders are inevitably under combined bending and torsion. To study its bending-torsional behavior, a refined full-range analysis model based on the combined action softening truss model (CA-STM) was proposed, where a simple and effective solution procedure and failure criteria were provided. The equilibrium equation, initial estimation equation for torque, and material constitutive model were modified by considering the prestressing effect to improve the CA-STM. An optimized algorithm was also employed to simplify the solution procedure instead of the traditional trial-and-error method, thus increasing the solution rate and stability. The theoretical curves predicted from the improved CA-STM exhibited great agreement with the available experimental results, and the predicted cracking and ultimate loads were also close to the experimental values. Hence, the improved CA-STM can reasonably predict the full-range mechanical response and failure modes of PC box girders subjected to combined bending and torsion, which provides great support to the design evaluation of such bridges.
预应力混凝土箱梁受弯扭联合作用的改进软化桁架模型
预应力混凝土(PC)箱梁是一种创新结构,广泛应用于大跨度桥梁。在车辆等偏心荷载作用下,PC 梁不可避免地会受到弯曲和扭转的共同作用。为研究其弯曲扭转行为,提出了基于联合作用软化桁架模型(CA-STM)的精细全范围分析模型,并提供了简单有效的求解程序和失效准则。考虑到预应力效应,对平衡方程、扭矩初始估计方程和材料构成模型进行了修改,以改进 CA-STM。此外,还采用了优化算法来简化求解过程,而不是传统的试错法,从而提高了求解速度和稳定性。改进后的 CA-STM 预测的理论曲线与现有的实验结果非常吻合,预测的开裂荷载和极限荷载也接近实验值。因此,改进的 CA-STM 可以合理预测 PC 箱梁在弯曲和扭转联合作用下的全范围力学响应和破坏模式,为此类桥梁的设计评估提供了有力支持。
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来源期刊
Advances in Structural Engineering
Advances in Structural Engineering 工程技术-工程:土木
CiteScore
5.00
自引率
11.50%
发文量
230
审稿时长
2.3 months
期刊介绍: Advances in Structural Engineering was established in 1997 and has become one of the major peer-reviewed journals in the field of structural engineering. To better fulfil the mission of the journal, we have recently decided to launch two new features for the journal: (a) invited review papers providing an in-depth exposition of a topic of significant current interest; (b) short papers reporting truly new technologies in structural engineering.
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