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Durability of cement mortars incorporating limestone filler exposed to sodium sulfate solution

机译:掺有硫酸钠溶液的石灰石填料的水泥砂浆的耐久性

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摘要

With the purpose of investigating the influence of both fineness levels and replacement ratios of limestone filler on sodium sulfate attack, cement mortar and paste specimens incorporating the material were exposed to 5% sodium sulfate solution for 1 year. The resistance of mortar specimens to sulfate attack was evaluated by visual appearance, expansion and compressive strength measurements. Additionally, microstructural observations such as XRD and SEM/EDS were also performed on paste samples stored in similar conditions of sulfate attack. Experimental results demonstrated that the worst performance was noted in the mortar specimens with high replacement ratio as well as high fineness level of limestone filler, showing extensive surface damages in addition to significant expansion and strength loss. Thus, it was observed that both high replacement ratio and high fineness level have potentially a negative effect in resisting sodium sulfate attack. This phenomenon is likely attributed to thaumasite formation as a result of sulfate attack rather than gypsum formation. The present study may suggest useful information on both reasonable replacement ratio and fineness level for the application of limestone filler in sulfate environments.
机译:为了研究石灰石填料的细度水平和更换比例对硫酸钠侵蚀的影响,将掺入该材料的水泥砂浆和浆糊样品暴露于5%硫酸钠溶液中1年。通过目测外观,膨胀和抗压强度测量来评估砂浆样品对硫酸盐侵蚀的抵抗力。此外,还对在类似硫酸盐侵蚀条件下存储的糊状样品进行了微结构观察,例如XRD和SEM / EDS。实验结果表明,在高置换比和高细度石灰石填料的砂浆试样中发现最差的性能,除了明显的膨胀和强度损失外,还显示出广泛的表面损伤。因此,观察到高的替代率和高的细度水平都具有抵抗硫酸钠侵蚀的潜在负面作用。这种现象很可能是由于硫酸盐侵蚀而不是石膏形成而导致的硅藻土形成。本研究可能会为石灰石填料在硫酸盐环境中的应用提供合理的替代率和细度水平方面的有用信息。

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