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首页> 外文期刊>Journal of Composites for Construction >Prestressed Carbon Fiber Reinforced Polymer Sheets for Strengthening Concrete Beams at Room and Low Temperatures
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Prestressed Carbon Fiber Reinforced Polymer Sheets for Strengthening Concrete Beams at Room and Low Temperatures

机译:预应力碳纤维增强聚合物片材,用于在室温和低温下增强混凝土梁

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A technique for strengthening damaged concrete beams using prestressed carbon fiber reinforced polymer (CFRP) sheets was developed at Queen's University and the Royal Military College of Canada. As part of this study, an anchorage system was developed to directly prestress the CFRP sheets by jacking and reacting against the strengthened concrete beam itself. The feasibility and effectiveness of using bonded prestressed CFRP sheets to strengthen precracked concrete beams at both room (+22℃,+72℉) and low (-28℃,-20℉) temperatures have been investigated experimentally. Materials and prestress changes due to temperature variations that would affect and cause changes in flexural behavior were studied. The strengthened beams showed significant increases in flexural stiffness and ultimate capacity as compared to the control-unstrengthened beams. The flexural behavior of the strengthened beams was not adversely affected by short-term exposure to reduced temperature (- 28℃,- 20℉). In addition to the experimental investigation, analytical models were developed to predict the overall flexural behavior of the strengthened beams during prestressing of the CFRP sheets and under external loading at both room and low temperatures. The model accurately predicted the flexural beam behavior. Improved serviceability behavior and higher strength were predicted for beams strengthened with the bonded prestressed CFRP sheets.
机译:女王大学和加拿大皇家军事学院开发了一种使用预应力碳纤维增强聚合物(CFRP)板加固受损混凝土梁的技术。作为这项研究的一部分,开发了一种锚固系统,通过顶起钢筋混凝土梁并对其进行反应来直接对CFRP板进行预应力。实验研究了在室温(+ 22℃,+ 72℉)和低温(-28℃,-20℉)下使用粘结预应力CFRP板加固预裂混凝土梁的可行性和有效性。研究了由于温度变化引起的材料和预应力变化,这种变化会影响并引起弯曲行为的变化。与未加控制的梁相比,加固后的梁的抗弯刚度和极限承载力显着提高。短期暴露于降低的温度(-28℃,-20℉)不会对加固梁的挠曲性能产生不利影响。除了实验研究外,还开发了分析模型来预测加固梁在CFRP板预应力过程中以及在室温和低温下的外部载荷下的整体挠曲性能。该模型可以准确预测弯曲梁的行为。预测用粘结的预应力CFRP板加固的梁将改善使用性能,并获得更高的强度。

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