Influence of Cracking on Effects of Restrained Deformations in a Post-tensioned Concrete Bridge

IF 0.7 Q4 CONSTRUCTION & BUILDING TECHNOLOGY
Kimmo Jalonen, J. Tulonen, Anssi Laaksonen
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引用次数: 1

Abstract

Abstract Imposed and restrained deformations cause stresses in continuous concrete bridges, and in analyses of the superstructure these stresses are usually reduced to some degree due to creep and cracking of concrete. This study examines cracking and redistribution of stresses in a bridge superstructure under the loads and load combinations used in the original bridge design. The subject of this study is a three-span post-tensioned continuous concrete cantilever beam bridge. The bridge was analysed with non-linear calculation utilising the general force method and moment-curvature relationships. The analysis yielded the bending stiffness of the post-tensioned bridge superstructure as a function of bridge length under different loads. It was discovered that the secondary moment from prestressing force increased as the bending stiffness of the central span decreased due to cracking under external loads, which is not normally considered in design. The bending moment effects of linear temperature difference and support settlement decreased as expected as the superstructure bending stiffness decreased. The analysis provided new information on the effects of secondary moment from the prestressing force and on the difference between the cracked state and the linear elastic analysis of the concrete bridge superstructure.
裂缝对后张混凝土桥梁约束变形效果的影响
在连续混凝土桥梁中,受迫变形和约束变形会产生应力,在上部结构分析中,由于混凝土的蠕变和开裂,这些应力通常会在一定程度上减小。本研究考察了桥梁上部结构在原始桥梁设计中使用的荷载和荷载组合下的开裂和应力重新分布。本研究的对象是一座三跨后张连续混凝土悬臂梁桥。采用一般力法和弯矩-曲率关系对桥梁进行非线性计算。分析得出了后张式桥梁上部结构在不同荷载作用下的抗弯刚度随桥梁长度的变化规律。研究发现,预应力的次弯矩随着中心跨在外部荷载作用下的弯曲刚度减小而增大,这在设计中通常没有考虑到。随着上部结构抗弯刚度的减小,线性温差和支座沉降对弯矩的影响减小。该分析为预应力产生的次弯矩的影响以及桥梁上部结构裂缝状态与线弹性分析的差异提供了新的信息。
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来源期刊
Nordic Concrete Research
Nordic Concrete Research CONSTRUCTION & BUILDING TECHNOLOGY-
自引率
20.00%
发文量
8
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