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首页> 外文期刊>Journal of thermal analysis and calorimetry >A comparative study on cement hydration and microstructure of cement paste incorporating aminosulfonate-phenol-salicylic acid-formaldehyde and aminosulfonate-phenol-formaldehyde polymer
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A comparative study on cement hydration and microstructure of cement paste incorporating aminosulfonate-phenol-salicylic acid-formaldehyde and aminosulfonate-phenol-formaldehyde polymer

机译:氨基磺酸盐-苯酚-水杨酸-甲醛与氨基磺酸盐-苯酚-甲醛聚合物掺合水泥浆的水化和微观结构比较研究

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In this article, the water-soluble aminosulfonate-phenol-salicylic acid-formaldehyde (AH) polymer and aminosulfonate-phenol-formaldehyde polymer (AS) were incorporated into cement paste, and the effect of AH polymer on cement hydration and microstructure of cement paste was compared with AS polymer by means of isothermal calorimetry, X-ray diffraction, thermal analysis, mercury intrusion porosimetry, and scanning electron microscopy. The test results showed that the incorporation of AH and AS polymers into cement paste retards the rate of hydration reaction and reduces the amount of hydration products at early stages of hydration. The use of AH and AS polymers into cement paste also improves pore structure of cement paste. The pore size distribution of cement paste shifts toward smaller pore size scope. A smaller particle size of hydration product can be found in cement paste with AH and AS polymers. The cement paste with AH and AS polymers has a higher pore volume and total porosity. The surface morphologies of cement paste with AH and AS polymers are looser and more homogeneous than blank cement paste. Moreover, at the same dosage of polymer, the effect of AH polymer on the cement hydration and microstructure of cement paste was more significant than that of AS polymer.
机译:本文将水溶性氨基磺酸盐-苯酚-水杨酸-甲醛(AH)聚合物和氨基磺酸盐-酚醛-甲醛(AS)聚合物掺入水泥浆中,AH聚合物对水泥浆的水化和微观结构的影响通过等温量热法,X射线衍射,热分析,压汞法和扫描电子显微镜与AS聚合物进行比较。测试结果表明,将AH和AS聚合物掺入水泥浆中会延迟水合反应的速度并减少水合初期水合产物的量。在水泥浆中使用AH和AS聚合物还可以改善水泥浆的孔结构。水泥浆的孔径分布向较小的孔径范围偏移。在含有AH和AS聚合物的水泥浆中可以发现较小尺寸的水合产物。具有AH和AS聚合物的水泥浆具有较高的孔体积和总孔隙率。含AH和AS聚合物的水泥浆的表面形态比空白水泥浆更为疏松和均匀。而且,在相同的聚合物用量下,AH聚合物对水泥浆水化和微结构的影响比AS聚合物更为显着。

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