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Fire Induced Spoiling in High Strength Concrete Beams

机译:高强度混凝土梁的火致破坏

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摘要

A macroscopic finite element model is extended to account for fire induced spalling in high strength concrete (HSC) beams. The model is based on the principles of mechanics and thermodynamics and utilizes pore pressure calculations to predict fire induced spalling in concrete. For validating the model, spalling measurements were made by conducting fire resistance experiments on four normal strength and high strength concrete beams. Spalling predictions from the model are compared with the measured values of spalling at various stages of fire exposure. The validated model is applied to investigate the influence of fire scenario, concrete strength (permeability) and axial restraint on the fire induced spalling and fire response of RC beams. Results from the analysis show that fire scenario, and concrete permeability largely influence the extent of fire induced spalling in concrete beams. Further, it is also shown that the extent of spalling has significant influence on the fire resistance of RC beams.
机译:扩展了宏观有限元模型,以解决高强度混凝土(HSC)梁中火灾引起的剥落。该模型基于力学和热力学原理,并利用孔隙压力计算来预测火灾引起的混凝土剥落。为了验证模型,通过在四个正常强度和高强度混凝土梁上进行耐火性试验来进行剥落测量。将模型的剥落预测与火灾暴露各个阶段的剥落测量值进行比较。验证的模型用于研究火灾情况,混凝土强度(渗透性)和轴向约束对火灾引起的RC梁剥落和火灾响应的影响。分析结果表明,火灾情况和混凝土渗透性在很大程度上影响了火灾引起的混凝土梁剥落程度。此外,还显示出散裂的程度对RC梁的耐火性具有显着影响。

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