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The Compressive Strength and Microstructure of Alkali-Activated Binary Cements Developed by Combining Ceramic Sanitaryware with Fly Ash or Blast Furnace Slag

机译:陶瓷卫生洁具与粉煤灰或高炉矿渣结合开发的碱活化二元水泥的抗压强度和微观结构

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The properties of a binder developed by the alkali-activation of a single waste material can improve when it is blended with different industrial by-products. This research aimed to investigate the influence of blast furnace slag (BFS) and fly ash (FA) (0–50 wt %) on the microstructure and compressive strength of alkali-activated ceramic sanitaryware (CSW). 4 wt % Ca(OH) 2 was added to the CSW/FA blended samples and, given the high calcium content of BFS, the influence of BFS was analyzed with and without adding Ca(OH) 2 . Mortars were used to assess the compressive strength of the blended cements, and their microstructure was investigated in pastes by X-ray diffraction, thermogravimetry, and field emission scanning electron microscopy. All the samples were cured at 20 °C for 28 and 90 days and at 65 °C for 7 days. The results show that the partial replacement of CSW with BFS or FA allowed CSW to be activated at 20 °C. The CSW/BFS systems exhibited better mechanical properties than the CSW/FA blended mortars, so that maximum strength values of 54.3 MPa and 29.4 MPa were obtained in the samples prepared with 50 wt % BFS and FA, respectively, cured at 20 °C for 90 days.
机译:当将一种废料与不同的工业副产品混合时,可以通过对一种废料进行碱活化来开发其性能。这项研究旨在研究高炉矿渣(BFS)和粉煤灰(FA)(0–50 wt%)对碱活化陶瓷洁具(CSW)的组织和抗压强度的影响。将4 wt%Ca(OH)2添加到CSW / FA混合样品中,鉴于BFS的钙含量高,分析了添加和不添加Ca(OH)2时BFS的影响。砂浆用于评估掺合水泥的抗压强度,并通过X射线衍射,热重分析和场发射扫描电子显微镜对浆料的微观结构进行了研究。所有样品在20°C下固化28天和90天,在65°C下固化7天。结果表明,用BFS或FA替代CSW可使CSW在20°C下活化。 CSW / BFS系统显示出比CSW / FA混合砂浆更好的机械性能,因此分别用50 wt%BFS和FA在20°C下固化的样品中获得的最大强度值为54.3 MPa和29.4 MPa。 90天。

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