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Temperature Effect on the Compressive Behavior and Constitutive Model of Plain Hardened Concrete

机译:温度对普通硬化混凝土抗压性能和本构模型的影响

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摘要

Concrete is one of the most common and versatile construction materials and has been used under a wide range of environmental conditions. Temperature is one of them, which significantly affects the performance of concrete, and therefore, a careful evaluation of the effect of temperature on concrete cannot be overemphasized. In this study, an overview of the temperature effect on the compressive behavior of plain hardened concrete is experimentally provided. Concrete cylinders were prepared, cured, and stored under different temperature conditions to be tested under compression. The stress–strain curve, mode of failure, compressive strength, ultimate strain, and modulus of elasticity of concrete were evaluated between the ages of 7 and 90 days. The experimental results were used to propose constitutive models to predict the mechanical properties of concrete under the effect of temperature. Moreover, previous constitutive models were examined to capture the stress–strain relationships of concrete under the effect of temperature. Based on the experimental data and the proposed models, concrete lost 10–20% of its original compressive strength when heated to 100 °C and 30–40% at 260 °C. The previous constitutive models for stress–strain relationships of concrete at normal temperatures can be used to capture these relationships under the effect of temperature by using the compressive strength, ultimate strain, and modulus of elasticity affected by temperature. The effect of temperature on the modulus of elasticity of concrete was considered in the ACI 318-14 equation by using the compressive strength affected by temperature and the results showed good agreement with the experimental data.
机译:混凝土是最常见,用途最广泛的建筑材料之一,已在广泛的环境条件下使用。温度是其中之一,它会显着影响混凝土的性能,因此,对温度对混凝土影响的仔细评估不能过分强调。在这项研究中,实验提供了温度对普通硬化混凝土抗压性能的影响的概述。准备,固化并在不同温度条件下存储混凝土圆柱体,以进行压缩试验。在7到90天的使用期限内评估了混凝土的应力-应变曲线,破坏模式,抗压强度,极限应变和弹性模量。实验结果被用来提出本构模型,以预测温度作用下混凝土的力学性能。此外,检查了以前的本构模型以捕获温度影响下混凝土的应力-应变关系。根据实验数据和建议的模型,当加热到100°C时,混凝土损失其原始抗压强度的10%至20%,在260°C时损失30%至40%。通过使用受温度影响的抗压强度,极限应变和弹性模量,可以使用以前的常温下混凝土应力-应变关系的本构模型来捕获温度影响下的这些关系。通过使用受温度影响的抗压强度,在ACI 318-14方程中考虑了温度对混凝土弹性模量的影响,结果与实验数据吻合良好。

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