Determination of the Stress Increase of the Unbonded Tendon in a Continuous Concrete Beam at Ultimate Capacity Using Nonlinear Analysis

IF 0.7 Q4 CONSTRUCTION & BUILDING TECHNOLOGY
T. Nakari, Anssi Laaksonen
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引用次数: 1

Abstract

Abstract Predicting the stress increase of an unbonded tendon in a post-tensioned continuous concrete beam at ultimate capacity is more difficult than when bonded tendons are used. The failure mechanisms of the continuous beam are also different to that of the simple-span beam. The loading type, ductility of the support area and moment redistribution influence the behaviour of the continuous structures. In this research, the simplified nonlinear analysis was used for predicting the unbonded tendon stress increase at ultimate capacity in continuous two-span beams. The model is based on the moment-curvature relationships of the reinforced concrete cross-sections under different compressive forces and deformations of the continuous beam under loading. The results have been compared with the experimental results of recent studies found in the literature. In addition, 92 unbonded post-tensioned two-span beams with different reinforcements have been examined by using the model and compared to the results obtained from empirical equations from the literature. The results from the nonlinear analysis correspond well to the results from the other models up to the reinforcement ratio of 0.35. The calculated values of the maximum moment capacity at the centre support were close to the results from the test beams.
用非线性分析确定混凝土连续梁极限承载力下无粘结筋应力增量
摘要预估后张连续混凝土梁在极限承载力下无粘结筋的应力增量比预估粘结筋的应力增量要困难得多。连续梁的破坏机理与简跨梁不同。荷载类型、支承区域的延性和弯矩重分布对连续结构的性能有影响。本文采用简化的非线性分析方法预测连续两跨梁在极限承载力下的无粘结应力增长。该模型基于连续梁在荷载作用下不同压缩力和变形下钢筋混凝土截面的弯矩-曲率关系。结果已与近期文献中发现的实验结果进行了比较。此外,利用该模型对92根不同配筋的无粘结后张两跨梁进行了试验,并与文献中经验方程的结果进行了比较。在配筋率为0.35以内,非线性分析的结果与其他模型的结果吻合较好。中心支座最大弯矩承载力的计算值与试验梁的结果接近。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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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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