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Resistance to Thaumasite form of SulphateAttack of Blended Cement Mortars

机译:耐硫酸盐形式的混合水泥砂浆攻击

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This study concerns the resistance against thaumasite form of sulphate attack on Portland cement reference with high volume ground granulated blast-furnace slag, fly ash and ground basaltic pumice exposed to tap water (5% magnesium sulphate) for ten years. The separate and intergrinding methods, two fineness (250m~(2)/kg and 500 m~(2)/kg) and 30% proportions of each of the different additives were employed in equal amounts by weight. The development of the microstructure and the secondary minerals in the plain and blended cements were studied via polarising microscopy on thin sections and on undisturbed lumps of specimens by scanning electron microscope (SEM-EDAX) analysis. A series of mechanical tests of cement mortars were undertaken on all specimens. The development of the microstructural features and the formation of the secondary minerals in pores were coherent to the increase in sulphate resistance. The presence of thaumasite together with ettringite in some specimens reflects the incomplete transformation phase of hydration. However, despite the numerous studies conducted on the relation of hydration and hydrolysis with reference to cement hardening, the hydration-bound hardening phenomenon coupled with thaumasite morphology and matrix and/or pore space orientations are recommended for further investigation. The use of the pozzolans/ground granulated blast furnace slag and basaltic pumice improved the sulphate resistance of the cement mortars, where specimen E yielded the highest sulphate resistance-highest TSA resistance.
机译:这项研究涉及对波特兰水泥参考品的硫酸盐侵蚀,其对硫酸硅酸盐侵蚀的抵抗作用是,将高剂量的地面颗粒状高炉矿渣,粉煤灰和地面玄武浮石暴露于自来水(5%硫酸镁)达十年之久。分别使用两种不同的添加剂(分别为250m〜(2)/ kg和500m〜(2)/ kg)和30%的比例(按重量计)进行分离和互磨。通过偏光显微镜,通过扫描电子显微镜(SEM-EDAX)分析样品的薄切片和原状块,研究了普通水泥和混合水泥中的微观结构和次生矿物的发展。对所有样品进行了一系列水泥砂浆的机械测试。微观结构特征的发展和孔中次生矿物质的形成与耐硫酸盐性的提高是一致的。在一些标本中,硅藻土和钙矾石的存在反映了水化的不完全转变阶段。然而,尽管已进行了大量有关水泥硬化的水化和水解关系的研究,但仍建议将水合结合的硬化现象与thaumasite形态,基质和/或孔隙空间取向相结合,以进行进一步研究。火山灰/磨碎的高炉矿渣和玄武浮石的使用改善了水泥砂浆的抗硫酸盐性,其中样品E产生了最高的抗硫酸盐性和最高的TSA抗性。

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