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Prediction of prestress losses in RC beams externally strengthened with prestressed CFRP sheets/plates

机译:用预应力CFRP板/板外部加固的RC梁的预应力损失的预测

摘要

This paper resents an analytical model for predicting the short and long-term prestress losses in reinforced concrete (RC) beams strengthened with prestressed carbon fiber reinforced polymer (CFRP) sheets/plates. The long-term prestress loss model is developed by treating the strengthened beam as two sub-elements: an RC beam and a prestressed CFRP sheet/plate, connected through an adhesive bonding layer. Through force equilibrium and displacement compatibility of the two sub-elements, the influences of concrete shrinkage, concrete creep as well the interlayer slip between the RC beam and the CFRP sheet/plate on the prestress losses of CFRP are modeled using an incremental model. For a post-tensioned system with strong end anchorages, closed-form solutions for the prestress losses due to creep and shrinkage of concrete are obtained. The reliability of the proposed analytical model is validated through comparisons with previous test results reported by the authors and others research groups. The maximum difference between the experimentally observed values and the predicted values for the long-term prestress losses was found to be only 2.2% of the initial prestress of the CFRP.This paper presents an analytical model for predicting the short and long-term prestress losses in reinforced concrete (RC) beams strengthened with prestressed carbon fiber reinforced polymer (CFRP) sheets/plates. The long-term prestress loss model is developed by treating the strengthened beam as two sub-elements: an RC beam and a prestressed CFRP sheet/plate, connected through an adhesive bonding layer. Through force equilibrium and displacement compatibility of the two sub-elements, the influences of concrete shrinkage, concrete creep as well the interlayer slip between the RC beam and the CFRP sheet/plate on the prestress losses of CFRP are modeled using an incremental model. For a post-tensioned system with strong end anchorages, closed-form solutions for the prestress losses due to creep and shrinkage of concrete are obtained. The reliability of the proposed analytical model is validated through comparisons with previous test results reported by the authors and others research groups. The maximum difference between the experimentally observed values and the predicted values for the long-term prestress losses was found to be only 2.2% of the initial prestress of the CFRP.
机译:本文对使用预应力碳纤维增强聚合物(CFRP)板/板加固的钢筋混凝土(RC)梁中的短期和长期预应力损失的分析模型感到不满意。长期预应力损失模型是通过将加固梁视为两个子元素而开发的:RC梁和预应力CFRP板/板通过粘合剂层连接。通过两个子单元的力平衡和位移兼容性,使用增量模型来模拟混凝土收缩,混凝土蠕变以及RC梁和CFRP板/板之间的层间滑动对CFRP的预应力损失的影响。对于具有强大末端锚固力的后张系统,可以获得针对混凝土蠕变和收缩而导致的预应力损失的封闭形式解决方案。通过与作者和其他研究小组报告的先前测试结果进行比较,验证了所提出分析模型的可靠性。发现长期预应力损失的实验观察值与预测值之间的最大差异仅为CFRP初始预应力的2.2%。本文提供了一种用于预测短期和长期预应力损失的分析模型在预应力碳纤维增强聚合物(CFRP)板/板加固的钢筋混凝土(RC)梁中。长期预应力损失模型是通过将加固梁视为两个子元素而开发的:RC梁和预应力CFRP板/板通过粘合剂层连接。通过两个子单元的力平衡和位移兼容性,使用增量模型来模拟混凝土收缩,混凝土蠕变以及RC梁和CFRP板/板之间的层间滑动对CFRP的预应力损失的影响。对于具有强大末端锚固力的后张系统,可以获得针对混凝土蠕变和收缩而导致的预应力损失的封闭形式解决方案。通过与作者和其他研究小组报告的先前测试结果进行比较,验证了所提出分析模型的可靠性。发现长期预应力损失的实验观察值与预测值之间的最大差仅为CFRP初始预应力的2.2%。

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