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Numerical Model for Tracing the Response of FRP-Strengthened RC Beams Exposed to Fire

机译:火灾下FRP加固RC梁响应跟踪的数值模型

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摘要

This paper presents the development of a numerical model for evaluating the performance of fiber-reinforced polymer (FRP)-strengthened RC beams under fire conditions. The model is based on a macroscopic finite-element approach and utilizes moment-curvature relationships to trace the response of insulated FRP-strengthened RC beams from linear elastic stage to collapse under any given fire exposure and loading scenarios. In the analysis, high temperature properties of constitutive materials, load and restraint conditions, material and geometric nonlinearity are accounted for, and a realistic failure criterion is applied to evaluate the failure of the beams. The model is validated against fire test data on FRP-strengthened RC beams and is applied to study the effect of FRP-strengthening, insulation scheme, and failure criterion on the fire response of FRP-strengthened RC beams. Results from the analysis indicate that FRP-strengthened RC beams should be protected with supplemental fire insulation to satisfy fire resistance requirements. A case study is presented to illustrate the application of the model for optimizing the fire insulation scheme to achieve required fire resistance in FRP-strengthened concrete beams.
机译:本文提出了用于评估火灾条件下纤维增强聚合物(FRP)增强的RC梁性能的数值模型的开发。该模型基于宏观有限元方法,并利用弯矩-曲率关系来跟踪绝缘FRP加固的RC梁在任何给定的火灾和载荷情况下从线性弹性阶段到倒塌的响应。在分析中,考虑了本构材料的高温特性,载荷和约束条件,材料和几何非线性,并采用了实际的破坏准则来评估梁的破坏。该模型针对FRP加固RC梁的耐火试验数据进行了验证,并用于研究FRP加固,隔热方案和破坏准则对FRP加固RC梁的火灾响应的影响。分析结果表明,应使用增强的防火隔热材料来保护FRP加固的RC梁,以满足防火要求。进行了案例研究,以说明该模型在优化防火方案以实现FRP加固混凝土梁中所需耐火性方面的应用。

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