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Effect of fly ash on mechanical properties of magnesium oxychloride cement under water attack

机译:粉煤灰对水发作下氯化物水泥镁力学性能的影响

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As an eco-friendly construction material, magnesium oxychloride cement (MOC) has attracted much research interest in recent decades, however, its mechanical properties degrade severely under water attack, which has prevented its wide application in engineering structures. As a widely used mineral waste, fly ash has been applied in civil engineering for decades. The active SiO2 in fly ash is considered to be conductive to improve the water resistance of MOC. In this paper, the influence of fly ash on the mechanical properties of MOC is investigated, especially when subject to water attack. First, the basic mix design of the MOC with a suitable combination of the molar ratios of MgO/MgCl2 and H2O/MgCl2 is developed, and the developed basic MOC mix is modified by adding fly ash to improve its water resistance. Second, the physical and mechanical properties of both the basic MOC and the fly ash modified MOC, such as compressive strength, Young's modulus, flexural strength cured at room temperature, and immersed in water for 28 days at room temperature (25 degrees C) are determined. It is found that the incorporation of fly ash decreases the workability or fluidity, retards the setting time, but improves the compressive strength and water resistance of the MOC. The techniques of X-ray diffraction, Fourier transform infrared spectroscopy, thermogravimetric analysis/differential scanning calorimetry, scanning electron microscopy, and mercury intrusion porosimetry are applied to the MOC specimens to discover the mechanism by which fly ash affects on the water resistance of MOC. The microscale analysis shows that the addition of fly ash optimizes the pore distribution in MOC resulting in a denser structure, which contributes to the water repellence.
机译:作为一种环保型建筑材料,氧化氯化物水泥(MOC)近几十年来吸引了许多研究兴趣,然而,其机械性能严重降解了水攻击,这阻止了在工程结构中的广泛应用。作为广泛使用的矿物废物,粉煤灰已在土木工程中应用数十年。粉煤灰中的活性SiO 2被认为是导电,以改善MOC的耐水性。本文研究了粉煤灰对MOC机械性能的影响,特别是当受水攻击时。首先,开发了具有MgO / MgCl2和H 2 O / MgCl2的摩尔比的合适组合的MOC的基本混合设计,通过添加粉煤灰来改变发育的基本MOC混合物以改善其耐水性。二,基本MOC和粉煤灰改性MOC的物理和力学性能,如抗压强度,杨氏模量,在室温下固化的弯曲强度,并在室温下浸入水中28天(25℃)决定。结果发现,粉煤灰的掺入降低了可加工性或流动性,延迟了设定时间,但提高了MOC的抗压强度和耐水性。傅立叶变换红外光谱,热重分析/差示扫描量热法,扫描电子显微镜和汞侵入孔隙测定法施加X射线衍射技术,施加到MOC试样上,发现粉煤灰对MOC耐水性影响的机制。微观分析表明,粉煤灰的添加优化了MOC中的孔径,导致更密集结构,这有助于防水性。

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