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首页> 外文期刊>Journal of nano research >Experimental Analysis of Mechanical Properties on Concrete with Nano Silica Additive
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Experimental Analysis of Mechanical Properties on Concrete with Nano Silica Additive

机译:纳米二氧化硅添加剂混凝土机械性能试验分析

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摘要

In the current scenario nanotechnology and nanomaterials are emerging as key role in engineering and medical industries. The objective of this research is to increase the usage of fly ash in concrete to enhance the strength properties of concrete mixed with nano silica and to reduce the emission control caused by CO2 discharged from cement manufacturing industries. The strength properties of concrete mixture is enhanced with nano size particles filled the voids amoung micron size cement particle, and hence a denser concrete mixture was being attained. Fly ash is used for partial replacement of cement to enhance the environmental sustainability and to reduce the cost. This research work focussed on preparation of nano silica mixed concrete with replacement of fly ash in concrete mixture. Nano silica was added in addition to the above by 1% and 2% to improve the overall strength properties. Different experimental analysis were carried out to obtained the results such as compression strength, ultimate divide tensile strength and elastic modulus of the enriched concrete mixture. From the observed results it was found that, compression strength was increased by adding 1% nano silica and 25% of fly ash and also increased the ultimate tensile strength by 28%. Scanning Electrom Microscope (SEM) results reveal that, the incorporation of the nano silica in concrete increases the mechanical properties and porosity was successfully minimized with enhancement of pore size distribution.
机译:在目前的情况下,纳米技术和纳米材料在工程和医疗产业中的关键作用是新兴。本研究的目的是增加混凝土中粉煤灰的使用,以增强混凝土与纳米二氧化硅混合的强度性能,并降低由水泥制造业排出的二氧化碳引起的排放控制。用纳米尺寸颗粒填充空隙amoung微米尺寸水泥颗粒的混凝土混合物的强度特性,因此达到了更密集的混凝土混合物。飞灰用于部分更换水泥,以提高环境可持续性,降低成本。该研究工作综合作用纳米二氧化硅混合混凝土在混凝土混合物中的粉煤灰的替代品。除了上述1%和2%之外,还加入纳米二氧化硅以改善整体强度性能。进行了不同的实验分析,得到了富集混凝土混合物的压缩强度,最终分裂拉伸强度和弹性模量的结果。从观察结果中发现,通过加入1%纳米二氧化硅和25%的粉煤灰增加了压缩强度,并且还将极限拉伸强度增加28%。扫描电磁显微镜(SEM)结果表明,在混凝土中掺入混凝土中的掺入增加,通过增强孔径分布成功地最小化了机械性能和孔隙率。

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