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Predicting the bond between concrete and reinforcing steel at elevated temperatures

机译:预测高温下混凝土与钢筋之间的结合

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Reinforced concrete structures are vulnerable to high temperature conditions such as those during a fire. At elevated temperatures, the mechanical properties of concrete and reinforcing steel as well as the bond between steel rebar and concrete may significantly deteriorate. The changes in the bonding behavior may influence the flexibility or the moment capacity of the reinforced concrete structures. The bond strength degradation is required for structural design of fire safety and structural repair after fire. However, the investigation of bonding between rebar and concrete at elevated temperatures is quite difficult in practice. In this study, bond constitutive relationships are developed for normal and high-strength concrete (NSC and HSC) subjected to fire, with the intention of providing efficient modeling and to specify the fire-performance criteria for concrete structures exposed to fire. They are developed for the following purposes at high temperatures: normal and high compressive strength with different type of aggregates, bond strength with different types of embedment length and cooling regimes, bond strength versus to compressive strength with different types of embedment length, and bond stress-slip curve. The proposed relationships at elevated temperature are compared with experimental results.
机译:钢筋混凝土结构易受高温条件的影响,例如火灾时的高温条件。在升高的温度下,混凝土和钢筋的机械性能以及钢筋与混凝土之间的结合力可能会大大降低。粘结行为的变化可能会影响钢筋混凝土结构的柔韧性或弯矩承载力。防火安全性结构设计和火灾后的结构修复要求粘合强度降低。然而,在实践中,研究高温下钢筋与混凝土之间的粘结非常困难。在这项研究中,为遭受火灾的普通和高强度混凝土(NSC和HSC)开发了粘结本构关系,目的是提供有效的建模并为暴露于火灾的混凝土结构指定防火性能标准。它们是在高温下用于以下目的的:具有不同类型的骨料的正常和高抗压强度,具有不同类型的嵌入长度和冷却方式的粘结强度,具有不同类型的嵌入长度的粘结强度与抗压强度以及粘结应力滑曲线。将所提出的高温关系与实验结果进行了比较。

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