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Mechanical and microstructural properties of heat cured alkali-activated slag mortars

机译:热固化碱活化矿渣砂浆的力学和微观结构性能

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摘要

The effects of steam and autoclave curing on the mechanical properties and microstructure of alkali activated slag mortars (AAS) were investigated within the scope of this study. Slag was activated by the mixtures of sodium hydroxide and sodium silicate, in different Na_2O and Ms (SiO_2/Na_2O) ratios. Test results showed that high strength mortars can be produced with very low alkali content under autoclave curing as a result of better pore size distribution, higher rate of hydrated parts of slag grains which leads to a better microstructure formation. A compressive strength value of 70 MPa has been reached by incorporation of 2% Na_2O under autoclave curing. Nevertheless, steam curing presents similar mechanical performance with autoclave curing for AAS mortar activated by the solutions with high M_s values. Both curing methods were significantly effective in terms of reducing drying shrinkage of AAS mortars.
机译:在本研究范围内,研究了蒸汽和高压釜固化对碱活化矿渣砂浆(AAS)的力学性能和微观结构的影响。炉渣通过氢氧化钠和硅酸钠的混合物以不同的Na_2O和Ms(SiO_2 / Na_2O)比例活化。试验结果表明,高压釜固化可以生产出碱度非常低的高强度砂浆,这是由于具有更好的孔径分布,炉渣颗粒水合部分的比率更高,从而导致了更好的微观结构形成。通过在高压釜固化下加入2%Na_2O,可达到70 MPa的抗压强度值。然而,蒸汽固化具有与AAS砂浆的高压釜固化相似的机械性能,该AAS砂浆被具有高M_s值的溶液活化。两种固化方法在减少AAS砂浆的干燥收缩方面都非常有效。

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