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Improved prediction of long-term prestress loss in unbonded prestressed concrete members

机译:无粘结预应力混凝土构件中长期预应力损失的改进预测

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In this paper, an approach based on the finite element method to model the behavior of concrete beams with unbonded prestressing steel over time, and an improved simplified equation for calculating the prestress losses in statically determinate prestressed concrete members with unbonded internal tendons are proposed. Both methods take into account the effects of the concrete creep, concrete shrinkage, prestressing steel relaxation and the presence of the bonded non-prestressed reinforcement. In addition, a generalization of the Step-by-Step and the Age-Adjusted Effective Modulus methods for the time cross-sectional analysis of prestressed concrete members with unbonded internal tendons is presented. The accuracy of the proposed equation is evaluated based on the results of previous studies and is contrasted with the computational implementation of the Step-by-Step Method. As the main conclusions, we mention that the results show that the proposed equation adequately predicts the prestress loss and has higher accuracy compared to simplified existing models.
机译:本文提出了一种基于有限元方法对无粘结预应力钢混凝土梁随时间变化行为进行建模的方法,并提出了一种改进的简化公式,用于计算无粘结内筋的静定预应力混凝土构件的预应力损失。两种方法都考虑了混凝土蠕变,混凝土收缩,预应力钢松弛和粘结的非预应力钢筋的影响。此外,还介绍了对具有未粘结内部筋的预应力混凝土构件进行时间截面分析的分步方法和经年龄调整的有效模量方法。根据先前研究的结果评估所提出方程的准确性,并与逐步方法的计算实现方式进行对比。作为主要结论,我们提到的结果表明,与简化的现有模型相比,所提出的方程可充分预测预应力损失并具有更高的精度。

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