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首页> 外文期刊>Engineering Fracture Mechanics >A micromechanical investigation for the effects of pore size and its distribution on geopolymer foam concrete under uniaxial compression
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A micromechanical investigation for the effects of pore size and its distribution on geopolymer foam concrete under uniaxial compression

机译:单轴压缩下孔径对岩土泡沫混凝土影响的微观力学研究

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摘要

This study investigates the influences of pore-structure and mortar properties on the fracture behaviour of geopolymer foamed concrete. The discrete element method (DEM) is utilised to explicitly describe the internal pore-structure, while the mortar phase is modelled at the micro/meso-scale using a cohesive-frictional model. Numerical tests are conducted on numerous DEM foam concrete specimens with various porosities and pore-size distributions. The numerical results show that the pore-size can have a profound effect on the material's fracture resistance. A decrease in pore size results in higher compressive strength and this influence is more significant for foam concrete with lower porosity. However, the elastic modulus seems to be less sensitive to the pore size variation. Further looking at the fracture process of the foam concrete at the microscale shows a gradual transition contact bonds from compressive to tensile modes, which is triggered by the breakage of contact bonds persisting as the loading continues. The study also demonstrates that the pore size distribution mainly affects the empirical power exponent of Balshin's equation of compressive strength-porosity relationship, while the mortar properties have a profound influence on the strength of the material at zero porosity.
机译:本研究研究了孔隙结构和砂浆性能对地质聚合物泡沫混凝土裂缝行为的影响。离散元素方法(DEM)用于明确描述内部孔隙结构,而砂浆阶段使用粘性摩擦模型在微/间隙级模型。数值测试在许多DEM泡沫混凝土样本上进行,具有各种孔隙和孔径分布。数值结果表明,孔径对材料的骨折抗性产生了深远的影响。孔径的降低导致较高的抗压强度,并且这种影响对于具有较低孔隙率的泡沫混凝土更为显着。然而,弹性模量似乎对孔径变化不太敏感。进一步看着微尺寸的泡沫混凝土的断裂过程示出了从压缩到拉伸模式的逐渐过渡接触粘合,这通过持续存在的接触粘合而触发,随着负载持续存在。该研究还表明,孔径分布主要影响BALSHIN的压缩强度 - 孔隙率关系方程的经验性指数,而砂浆性能对零孔隙率的材料强度具有深远的影响。

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