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Influence of stone powder content and particle size on the strength of cement-treated clay

机译:石粉含量和粒径对水泥处理粘土强度的影响

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摘要

Particle size of additive geomaterials could affect the cement-clay reaction, thereby reducing strength. The effects of five particle sizes (A, B, C, D and E: 1-106 mu m, respectively) of waste granite powder in cement-treated clay mixed composites were investigated. The effects on the liquid limit, unconfined compressive strength (UCS) and microstructural characteristics were investigated. The particle size influenced the UCS in the order of D A C B, and D exhibited higher UCS than the control sample. The increase in the UCS was due to the increased surface area and pozzolanic reactivity of stone powder D. A reduction in the UCS of cement-treated clay-stone powder E composites occurred as compared to the control sample with a 30% stone powder addition, and equal or improved strength was observed with 50% and 70% additions. Owing to the UCS increment derived from stone powder, we could reduce 28.6% of the cement.
机译:添加性地质材料的粒度可能会影响水泥粘土反应,从而降低强度。 研究了五种粒度(A,B,C,D和E:1-106μm,分别)在水泥处理的粘土混合复合材料中的废花岗岩粉末的效果。 研究了对液体限制,非束缚的抗压强度(UCS)和微观结构特征的影响。 粒度按D A&GT的顺序影响了UCS; C> B,D表现出比对照样品更高的UCS。 UCS的增加是由于石粉D的表面积增加和火山灰反应性。与用30%石粉的对照样品相比,发生了水泥处理的粘土 - 石粉末E复合材料的UCS的减少, 观察到等于或改善的强度,以50%和70%的添加。 由于来自石粉的UCS增量,我们可以减少28.6%的水泥。

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