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Effect of transient strain on strength of concrete and CFT columns in fire - Part 1: Elevated-temperature analysis on a Shanley-like column model

机译:瞬态应变对火灾中混凝土和CFT柱强度的影响-第1部分:类Shanley柱模型的高温分析

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This paper presents elevated-temperature analysis on a Shanley-like column model, as part of a study on the effect of transient strain on the strength of concrete and concrete-filled tubular columns in fire. Three high-temperature concrete material models are applied and the structural behaviours of the Shanley-like model using these three material models are compared. The effects of transient strain of concrete have been investigated by comparing the results of the analyses with and without considering this property, under the assumption that the temperature distribution within the model is uniform. The model has been evaluated against the tangent-modulus and reduced-modulus critical buckling loads at elevated temperatures. Numerical analyses have been carried out under both steady-state and transient heating scenarios, in order to investigate the influence of each on high-temperature structural analysis of the type described in this paper. It is seen that considering transient strain causes a considerable reduction of the buckling resistance, irrespective of the concrete material models and loading-heating schemes used.
机译:本文对Shanley型柱模型进行了高温分析,作为瞬态应变对火灾中混凝土和钢管混凝土柱强度影响的研究的一部分。应用了三种高温混凝土材料模型,并比较了使用这三种材料模型的类Shanley模型的结构行为。在模型内温度分布均匀的前提下,通过比较分析结果(不考虑此特性)来研究混凝土的瞬态应变的影响。已针对高温下的切线模量和模量降低的临界屈曲载荷对模型进行了评估。为了研究每种情况对本文所述类型的高温结构分析的影响,已经在稳态和瞬态加热情况下进行了数值分析。可以看出,考虑瞬态应变会导致屈曲强度的显着降低,而与所使用的混凝土材料模型和加载加热方案无关。

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