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Computational modeling of the mechanical response of lightweight foamed concrete over a wide range of temperatures and strain rates

机译:轻质泡沫混凝土在各种温度和应变率范围内的机械响应的计算模型

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摘要

Theoretical and experimental studies on the nonlinear mechanical properties of lightweight foamed concrete under uniaxial compression are conducted over the temperature range of 223-343 K and the strain rate range of 0.001-118/s in this paper. The experimental results show that the mechanical properties of the materials under uniaxial compression are strongly dependent on the density and temperature, but are weaker on strain rate. Based on the experimental results, the characteristics of density effect and temperature effect are analyzed and a calculation model is developed to describe the nonlinear mechanical behavior of lightweight foamed concrete. The model takes into account the effect of material damage, density and temperature. The experimental verification and the error analysis show that the model is shown to be able to predict the nonlinear deformation behavior of lightweight foamed concrete over a wide range of temperatures and densities. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文在223-343 K的温度范围和0.001-118 / s的应变速率范围内,对轻质泡沫混凝土在单轴压缩下的非线性力学性能进行了理论和实验研究。实验结果表明,材料在单轴压缩下的力学性能与密度和温度密切相关,而对应变速率的影响较弱。根据实验结果,分析了密度效应和温度效应的特征,建立了描述轻质泡沫混凝土非线性力学行为的计算模型。该模型考虑了材料损坏,密度和温度的影响。实验验证和误差分析表明,该模型能够在较宽的温度和密度范围内预测轻质泡沫混凝土的非线性变形行为。 (C)2015 Elsevier Ltd.保留所有权利。

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