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首页> 外文期刊>Journal of materials in civil engineering >Stress-Strain Characteristics of Foamed Concrete Subjected to Large Deformation under Uniaxial and Triaxial Compressive Loading
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Stress-Strain Characteristics of Foamed Concrete Subjected to Large Deformation under Uniaxial and Triaxial Compressive Loading

机译:单轴和三轴压缩载荷下泡沫混凝土大变形后的应力应变特性

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摘要

Large compressive deformation associated with ideal plasticity-like stress plateaus is an extremely important performance characteristic of foamed concrete. However, there have been few investigations concerning the stress-strain characteristics of foamed concrete subjected to axial strain larger than 10% under uniaxial and triaxial compressive loading. In the current study, foamed concrete samples at three densities (250, 450, and 650kg/m3) were prepared and a series of tests were carried out. Axial stress-strain (sigma 1-E) curves were obtained, and peak stress (compressive strength), elastic modulus, peak strain, and the postpeak stress-strain relationship were analyzed. The experimental results showed that the stress-strain characteristics for foamed concrete at all three densities are similar and each can be ideally simplified into four stages. The compressive strength of foamed concrete increases with density and confining pressure, whereas elastic modulus has a positive correlation only with densities regardless of confining pressure. Additionally, no significant correlation was detected between peak strain and density, but peak strain increases with confining pressure. A linear relationship between residual compressive strength and strain was found for almost all test cases. Based on the experimental results, theoretical models for the prediction of peak stress, elastic modulus, and the postpeak stress-strain relationship were derived incorporating the effects of density and confining pressure.
机译:与理想的塑性状应力平稳状态相关的大压缩变形是发泡混凝土的极其重要的性能特征。但是,很少有关于泡沫混凝土在单轴和三轴压缩载荷下承受大于10%轴向应变的应力-应变特性的研究。在当前的研究中,准备了三种密度(250、450和650kg / m3)的泡沫混凝土样品,并进行了一系列测试。获得了轴向应力-应变(sigma 1-E)曲线,并分析了峰值应力(抗压强度),弹性模量,峰值应变和峰后应力-应变关系。实验结果表明,在三种密度下,泡沫混凝土的应力-应变特性都相似,并且可以理想地简化为四个阶段。泡沫混凝土的抗压强度随密度和围压的增加而增加,而弹性模量仅与密度呈正相关,而与围压无关。此外,在峰值应变与密度之间未检测到显着相关性,但峰值应变随围压而增加。在几乎所有测试案例中,残余抗压强度与应变之间都存在线性关系。根据实验结果,结合密度和围压的影响,推导了预测峰值应力,弹性模量和峰后应力-应变关系的理论模型。

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