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Stress at ultimate in unbonded tendons for ungrouted post-tensioned masonry beams

机译:未注浆后张拉的砌体梁在无粘结筋的最终应力

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Accurate estimation of tendon stress is crucial for calculating the flexural capacity of post-tensioned masonry members. Tendon stresses in bonded elements may be calculated based on strain compatibility. For unbonded tendons, stresses depend on the relative displacement between the tendon's anchor points, and strain compatibility is not totally applicable to calculate stresses. Masonry codes in some countries provide equations for unbonded, post-tensioned members that are based on modified strain-compatibility approaches for calculating stress increases in unbonded tendons at ultimate; some of these equations required calibration using statistical evaluation of experimental results and finite element analysis. A new approach to calculate tendon stress increase, based on the theory of beam deformation, in the elastic zone, and a plastic hinge with a geometric curvature distribution in the inelastic region, is reported here for the calculation of the stress increase at ultimate. To compare the accuracy of code equations and that of the proposed methodology, a database of test results for post-tensioned, simply supported, flexure critical masonry beams has been used. This comparison shows that the proposed equation provides an accurate prediction of tendon stress at ultimate for post-tensioned masonry beams. (C) 2017 Elsevier Ltd. All rights reserved.
机译:准确估计肌腱应力对于计算后张拉的砌体构件的抗弯能力至关重要。可以基于应变相容性来计算结合元件中的肌腱应力。对于无粘结的钢筋束,应力取决于钢筋束锚固点之间的相对位移,并且应变兼容性并不完全适用于计算应力。一些国家的砌体规范提供了基于修正应变兼容方法的无粘结,后张构件的方程,用于计算最终无粘结钢筋的应力增加。其中一些方程式需要使用实验结果的统计评估和有限元分析进行校准。本文报道了一种基于梁变形理论的弹性区域中筋腱应力增加的新方法,以及在非弹性区域中具有几何曲率分布的塑料铰链,用于计算最终的应力增加。为了比较代码方程的准确性和所提出方法的准确性,已经使用了后张紧的,简单支撑的挠性关键砌体梁的测试结果数据库。这种比较表明,所提出的方程式为后张拉的砌体梁的极限应力提供了准确的预测。 (C)2017 Elsevier Ltd.保留所有权利。

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