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Investigation of properties of cement mortar incorporating pond ash - An environmental sustainable material

机译:环境可持续材料掺入池塘灰的水泥砂浆性能研究。

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This study focused on the use of coal-based pond ash from Bhusawal thermal power plant (India) as a fine aggregate and cement replacement in cement mortar at a replacement percentage from 0% to 100%. Two series of cement mortar mixes were prepared. Experimental analysis based on properties of mortar such as compressive strength, flexural strength, workability, setting time, bulk densities by addition of pond ash in a mortar. Investigation on the physical properties of mortar incorporating pond ash through X-ray diffraction (XRD), X-ray Fluorescence (XRF), and scanning electron microscope (SEM) with an energy dispersive X-ray analysis system (SEM-EDX) was also done to study microstructure analysis and to correlate these physical properties with mechanical properties of cement mortar. The presence of pond ash in series-I affects the strength positively with inclusion up to 40% replaced with sand in mortar series-I. With the increased content of pond ash replacement beyond 10% with cement, the strength of mortar seems to be reduced. The SEM results showed growth of dense crystalline plate-like structure and give evidence of portlandite leads to solidification of mortar mass when pond ash was replaced with sand in the mortar. The presence of portlandite through SEM represents the solidification and densification of mortar mass. The addition of pond ash leads to an increase in the amount of CSH gel in the mortar. This may be the reason for the improved performance of mortar up to certain level of replacements. (C) 2019 Elsevier Ltd. All rights reserved.
机译:这项研究的重点是使用印度Bhusawal热电厂的煤基粉煤灰作为细骨料,并以0%至100%的替代百分比替代水泥砂浆中的水泥。制备了两个系列的水泥砂浆混合物。根据砂浆的性能进行实验分析,例如在砂浆中添加池塘灰分后的抗压强度,抗弯强度,可加工性,凝结时间,堆积密度。还通过X射线衍射(XRD),X射线荧光(XRF)和带有能量色散X射线分析系统(SEM-EDX)的扫描电子显微镜(SEM)对掺入池灰的砂浆的物理性能进行了研究。研究微观结构分析并将这些物理性质与水泥砂浆的机械性质相关联。系列I的池塘灰分的存在对强度有正面影响,用砂浆代替系列I的沙子含量最高可达40%。随着用水泥替代池塘灰的增加量超过10%,砂浆的强度似乎降低了。 SEM结果表明,当用灰浆中的砂子代替池塘的灰烬时,硅酸盐可导致灰浆块的凝固,并显示出致密的晶体状板状结构的生长。通过SEM观察到的硅藻土代表了砂浆的凝固和致密化。池塘灰的添加导致砂浆中CSH凝胶的量增加。这可能是砂浆性能提高到一定程度的替换的原因。 (C)2019 Elsevier Ltd.保留所有权利。

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