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Freeze-thaw resistance of alkali-slag concrete based on response surface methodology

机译:基于响应面法的碱渣混凝土抗冻融性能

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摘要

Alkali-slag concrete (ASC), with the frost resistant grade of above F300 and frost resistant coefficient D_F of about 90%, is prepared using slag and composite activator composed of Na_2SiO_3 and NaOH. Response surface methodology (RSM) is applied to study the freeze-thaw resistance of ASC. The effects of activator solution-slag ratio (A/S), slag content and sand ratio on the freeze-thaw resistance are analyzed using the softwares of Design Expert and Box-Benhnken Design (BBD). Models are established for D_F and the influence of air-void structure of hard concrete on the freeze-thaw resistance, respectively. The result shows that the D_F model coincides well with the test results and can be used to analyze and predict the freeze-thaw resistance of ASC. The influence on the freeze-thaw resistance from high to low is A/ S, slag content and sand ratio. The interaction of A/S and slag content is the most prominent and air-void structure is the crucial factor. The air bubble space coefficient and its specific surface area have good correlation with D_F. The freeze-thaw resistance tends to better with smaller air bubble space coefficient and bigger specific surface area.
机译:采用矿渣和由Na_2SiO_3和NaOH组成的复合活化剂,制备了抗冻等级在F300以上,抗冻系数D_F约为90%的碱渣混凝土(ASC)。响应面法(RSM)用于研究ASC的抗冻融性。使用Design Expert和Box-Benhnken Design(BBD)的软件分析了活化剂溶液-炉渣比(A / S),炉渣含量和砂比对抗冻融性的影响。建立了D_F模型和硬质合金气孔结构对抗冻融性的影响模型。结果表明,D_F模型与试验结果吻合良好,可用于分析和预测ASC的抗冻融性。从高到低对抗冻融性的影响是A / S,炉渣含量和砂比。 A / S和炉渣含量之间的相互作用是最突出的,而气孔结构是关键因素。气泡空间系数及其比表面积与D_F具有良好的相关性。较小的气泡空间系数和较大的比表面积趋向于更好的抗冻融性。

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