首页> 外文会议>International Conference on Fire and Materials >NUMERICAL EVALUATION OF LOAD INDUCED THERMAL STRAIN IN RESTRAINT STRUCTURES COMPARED WITH AN EXPERIMENTAL STUDY ON REINFORCED CONCRETE COLUMNS
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NUMERICAL EVALUATION OF LOAD INDUCED THERMAL STRAIN IN RESTRAINT STRUCTURES COMPARED WITH AN EXPERIMENTAL STUDY ON REINFORCED CONCRETE COLUMNS

机译:约束结构中荷载引起的热应变的数值评估与钢筋混凝土柱的试验研究

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This paper presents a new thermal induced strain model for concrete (TIS-Model) [1]. The nonlinearmodel comprises thermal strain, elastic strain, plastic strain and transient temperaturestrains as well as load history which means that, as a consequence, the modelling of restrainedconcrete structures subjected to fire is possible.Calculations of simple elements, namely columns, were done by FE method using the structuralcode SAFIR [2] in which the material model using the new transient TIS-Model has been incorporated.This code is suitable to calculate complex structures with different material models.The behaviour of reinforced columns with a constant load during heating and cooling was calculated.The results are compared with the results of measured data related to different mixtures ofsiliceous concrete with compression strength lower or equal than 50 MPa.The calculations showed a good correlation between the TIS-Model and measured data. In addition,a comparison between results using the Eurocode 2 (EC2) material model and the TISModelfor concrete structures is given. It was shown that there are differences in the results ofstructure calculations with both models.The influence of high compressive stresses in concrete section is very high, because the creepstrains for transient temperature condition indicates a significant influence of the thermal inducedstrains. The Eurocode doesn’t consider this behaviour explicitly. According to our results, thetime of failure is shorter using the EC2-Model for concrete members under high compressiveload or restraint compared to the TIS-Model.
机译:本文提出了一种新的混凝土热致应变模型(TIS-Model)[1]。非线性 模型包括热应变,弹性应变,塑性应变和瞬态温度 应变以及载荷历史,这意味着约束模型 遭受火灾的混凝土结构是可能的。 通过有限元方法,使用结构来计算简单元素(即列) 代码SAFIR [2],其中已合并了使用新的瞬态TIS模型的材料模型。 该代码适用于计算具有不同材料模型的复杂结构。 计算了在加热和冷却过程中具有恒定载荷的钢筋柱的性能。 将结果与有关不同混合物的测量数据的结果进行比较 抗压强度低于或等于50 MPa的硅质混凝土。 计算结果表明,TIS模型与实测数据之间具有良好的相关性。此外, 使用Eurocode 2(EC2)物料模型和TISModel进行的结果比较 用于混凝土结构。结果表明,结果不同。 两种模型的结构计算。 混凝土中高压缩应力的影响非常大,因为蠕变 瞬态温度条件下的应变表明热感应的显着影响 株。欧洲规范未明确考虑此行为。根据我们的结果, 使用EC2-Model在高压力下对混凝土构件的破坏时间更短 与TIS模型相比,载荷或约束。

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