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首页> 外文期刊>International Journal of Engineering and Manufacturing(IJEM) >An Investigation on the Micro Structural and Elemental Composition of Sugarcane Bagasse Ash Blended Concrete using SEM and EDS Technique
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An Investigation on the Micro Structural and Elemental Composition of Sugarcane Bagasse Ash Blended Concrete using SEM and EDS Technique

机译:利用SEM和EDS技术研究甘蔗渣灰掺合混凝土的微观结构和元素组成。

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Sugarcane bagasse ash (SBA) is a solid waste obtained from the boilers of sugar factories after the combustion of sugarcane bagasse. Sugarcane bagasse ash mainly consists of amorphous silica and can be used as a supplementary cementitious material in the production of concrete. In the present study, the physical properties of sugarcane bagasse ash, namely, particle size distribution, surface area, specific gravity, morphology and chemical properties like elemental composition of SBA and ordinary Portland cement (OPC) have been investigated. The microstructural observations were made using Scanning Electron Microscope (SEM). Elemental compositions were analyzed and images coupled to microanalysis by Energy dispersive spectroscopy (EDS). The microstructure observations and elemental characterization of cement concrete matrix was also carried out after 28 days of curing. Blended cement concrete specimens were prepared using SBA up to 30% in regular intervals of 10% by weight of pure Portland cement, coarse and fine aggregate, tap water and superplastisizer. SEM results indicates that substitution of SBA particles by Portland cement produces dense matrix as compared to control mix and EDS analysis shows fluctuations in calcium and silica concentrations as the cement replacement level increases in the blended cement concrete.
机译:甘蔗渣灰(SBA)是从甘蔗渣燃烧后从制糖厂的锅炉获得的固体废物。甘蔗渣灰主要由无定形二氧化硅组成,可以用作混凝土生产中的辅助胶结材料。在本研究中,研究了甘蔗渣灰的物理性质,即粒度分布,表面积,比重,形态和化学性质,如SBA和普通硅酸盐水泥(OPC)的元素组成。使用扫描电子显微镜(SEM)进行显微结构观察。分析了元素组成,并通过能量色散光谱(EDS)将图像与微量分析耦合。养护28天后,还进行了水泥混凝土基体的微观结构观察和元素表征。使用SBA制备掺混水泥混凝土标本,按30%的比例定期添加10%重量的纯硅酸盐水泥,粗骨料和细骨料,自来水和超塑化剂。 SEM结果表明,与对照混合料相比,波特兰水泥替代SBA颗粒可产生致密的基体,EDS分析表明,随着水泥替代量的增加,钙和二氧化硅的浓度也会发生波动。

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