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MODIFICATION MECHANISM OF THE ITZ AND BULK CEMENT MATRIX WITH GGBS IN RELATION TO CHLORIDE MIGRATION

机译:ITZ和散装水泥基质与GGB与氯化物迁移相关的改性机制

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The influence of the Ground granulated blast-furnace slag (GGBS) on the microstructure of the interfacial transition zone (ITZ) and the bulk matrix was determined by using MIP measurements.The ITZ quantity was controlled by systematically varying the aggregate volume fraction.Correlating the chloride migration coefficients with the variations in the microstructure, the relative importance of the improved ITZ to the enhancement of the overall properties was discussed.Results indicated that the incorporation of GGBS as a partial substitute for OPC tends to refine the pore structure, particularly in the range superior to 100nm.The Dnssm values of the series containing GGBS decrease significantly when the replacement rate of GGBS increases regardless of aggregate volume fraction and size.From the results provided in the transport measurements, the differences in the transport coefficients between the reference series and the blended series were more apparent for the neat paste samples.Moreover, the variations of transport coefficients were highly dependent on the changes in the capillary porosity rather than on changes in the coarse pore size range.This is presumably because the large pores at the interfacial zones are not interconnected with each other but rather the relatively small pores of the matrix.The observed improvement of chloride resistance of the GGBS blended samples must be more importantly due to the marked densification of the bulk cement matrix.
机译:通过使用MIP测量测定地面粒状高炉炉渣(GGBS)对界面过渡区(ITZ)和体基质的微观结构的影响。通过系统地改变聚集体积分数来控制ITZ量。套密阐述了氯化氯迁移系数与微观结构的变化,改进的ITZ对整体性质增强的相对重要性。结果表明,GGB作为OPC的部分替代品倾向于改进孔结构,特别是在范围优于100nm。当GGBS的替换率增加,含GGB的系列的DNSSM值显着降低,无论集合体积分数和尺寸如何,都会增加。从传输测量中提供的结果,参考系列之间的传输系数的差异混合系列对于整洁的糊状样品更加明显。更多结束时,传输系数的变化高度依赖于毛细血管孔隙率的变化而不是粗孔径范围的变化。可能是因为界面区域处的大孔不相互连接但相当较小基质的孔。由于散装水泥基质的标记致密化,所观察到的GGBS混合样品的氯化物抗性的改善必须更重要。

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