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Experimental and numerical investigation of influence of air-voids on the compressive behaviour of foamed concrete

机译:气孔对泡沫混凝土抗压性能影响的试验和数值研究

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摘要

A combined experimental and numerical approach is proposed in this study for the characterisation of the mechanical behaviour of foamed geopolymer concretes. Advanced experimental techniques employing X-Ray CT give both microstructures and mechanical responses of a range of geopolymer concretes with varying densities. In parallel with this, a numerical modelling technique based on the discrete element method (DEM) is developed for explicit descriptions of air-void distribution, while the mortar binder is described at the micro/meso scale with cohesive behaviour. The calibrated and validated DEM model is then used to systematically study the effects of air-void content, air-void distribution and microstructural parameters, including particle size and porosity on the compressive strength of foamed concretes. A non-linear relationship between the compressive strength and porosity of foamed concretes is found from DEM simulations, which are consistent with our experimental findings and existing strength-porosity models. Furthermore, it is found that the air-void distribution has a significant influence on the compressive strength of foamed concretes, while the micro-void structure has less effect on the loading bearing capacity of the material. The proposed combined approach demonstrates the tight correlations between experimental and numerical techniques in characterising the mechanical behaviour of foamed concretes for practical design purposes.
机译:在这项研究中提出了一种组合的实验和数值方法来表征泡沫地质聚合物混凝土的力学性能。使用X射线CT的先进实验技术可提供多种密度不同的地质聚合物混凝土的微观结构和力学响应。与此并行的是,开发了一种基于离散元素方法(DEM)的数值建模技术来明确描述气孔的分布,同时以微观/中观尺度描述了具有粘结性的砂浆粘结剂。然后,使用经过校准和验证的DEM模型来系统地研究气孔含量,气孔分布和微观结构参数(包括粒径和孔隙率)对泡沫混凝土抗压强度的影响。通过DEM模拟发现泡沫混凝土的抗压强度与孔隙率之间存在非线性关系,这与我们的实验结果和现有的强度-孔隙率模型一致。此外,发现气孔分布对泡沫混凝土的抗压强度有显着影响,而微孔结构对材料的承载能力影响较小。所提出的组合方法证明了在表征泡沫混凝土的力学性能以用于实际设计目的时,实验技术和数值技术之间的紧密联系。

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