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A two-stage modelling approach for the analysis of the stress distribution in anchorage zones of pre-tensioned, concrete elements

机译:预应力混凝土构件锚固区域应力分布的两阶段建模方法

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An innovative strategy for the analysis and design of the anchorage zones of pre-tensioned, concrete girders is presented. In this approach, the bond behaviour of the prestress strands is first characterised in a small-sized beam model. A new relation between the slip and radial strain of the prestress strand is introduced and used together with the radial stress strain relation resulting from a thick-walled cylinder model to establish the bond-slip behaviour at the steel concrete interface. This bond behaviour is implemented in a numerical model and validated via a comparison of the computed transfer length with the results of two experimental campaigns. Next, the bond-slip relation of the small-scale model is applied in full-scale models of pre-tensioned, concrete girders to derive the stress distribution in the anchorage zones. The non-linear material behaviour of concrete is taken into account and a comparison of the numerical results with full-scale experimental data is made. An acceptable agreement is achieved between the experimental results and the numerical calculations regarding the bond behaviour and transfer lengths as well as the crack patterns and the stress values in the reinforcement bars. This efficient modelling approach allows for a full analysis of the anchorage zone based solely on the geometrical and material properties known at the design stage. (C) 2017 Elsevier Ltd. All rights reserved.
机译:提出了一种分析和设计预应力混凝土梁锚固区的创新策略。在这种方法中,首先在小尺寸梁模型中表征预应力钢绞线的粘结性能。介绍了预应力钢绞线的滑移和径向应变之间的新关系,并将其与厚壁圆柱模型产生的径向应力应变关系一起用于建立钢混凝土界面处的粘结滑移行为。该键行为在数值模型中实现,并通过将计算的传输长度与两个实验活动的结果进行比较来验证。接下来,将小比例模型的粘结-滑移关系应用到预应力混凝土梁的全比例模型中,以得出锚固区的应力分布。考虑到混凝土的非线性材料性能,并将数值结果与全尺寸试验数据进行了比较。在实验结果和数值计算之间,关于粘结行为和传递长度以及钢筋中的裂纹模式和应力值,可以达成可接受的协议。这种有效的建模方法仅根据设计阶段已知的几何和材料特性即可对锚固区域进行全面分析。 (C)2017 Elsevier Ltd.保留所有权利。

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