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Suitability of the damage-plasticity modelling concept for concrete at elevated temperatures: Experimental validation with uniaxial cyclic compression tests

机译:混凝土在高温下的损伤塑性模型概念的适用性:单轴循环压缩试验的实验验证

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Strain-rate controlled cyclic compression tests enable us to explore the softening behaviour and the elastic stiffness evolution with increasing plastic straining of concrete in uniaxial compression. From such tests at ambient temperature, it is known that concrete exhibits the phenomenon of elastic stiffness degradation upon unloading a macroscopic behaviour that can be captured by damage-plasticity models. However, the damage-plasticity concept has been implemented in some available finiteelement method codes as temperature-dependent concrete models which are often used today in structural fire engineering, despite the lack of experiment-based calibration data. This paper presents the results of an experimental study on the uniaxial behaviour of concrete at elevated temperatures under cyclic compressive loading. The experimentally derived evolutions of the elastic stiffness with increasing plastic straining (1) confirm the suitability of the damage-plasticity modelling concept for concrete in uniaxial compression at elevated temperatures and (2) provide novel temperature-dependent calibration data for damage-plasticity models. (C) 2015 Elsevier Ltd. All rights reserved.
机译:应变速率控制的循环压缩试验使我们能够探索随着单轴压缩中混凝土塑性应变的增加而出现的软化行为和弹性刚度演化。从这种在环境温度下的测试中可以知道,混凝土在卸载宏观行为时会表现出弹性刚度降低的现象,这种行为可以通过损伤塑性模型来捕获。然而,尽管缺乏基于实验的校准数据,但在一些可用的有限元方法代码中已实现了损伤可塑性概念,作为依赖于温度的混凝土模型,这些模型在结构消防工程中经常使用。本文介绍了在循环压缩荷载下,高温下混凝土的单轴行为的实验研究结果。通过实验得出的弹性刚度随塑性应变的增加而演变(1)证实了损伤塑性模型概念对高温单轴压缩混凝土的适用性;(2)为损伤塑性模型提供了新的温度相关的校准数据。 (C)2015 Elsevier Ltd.保留所有权利。

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