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The relevance of ultrafine fly ash properties and mechanical properties in its fly ash-cement gelation blocks via static pressure forming

机译:粉煤灰水泥胶凝块中超细粉煤灰特性和机械特性通过静压成型的相关性

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Two fly ash samples, collected from the circulating fluidized bed (CFBFA) and pulverized boiler (PCFA) were ultrafine grinded and characterized by the scanning electron microscopy (SEM), the X-ray diffractometer (XRD) and the fourier transform infrared spectroscopy (FT-IR). The characterizations revealed the ultrafine grinding of fly ash resulted in not only the increase of their specific surface areas, also the decrease of crystallinity degree and the anion polymerization degree of silicates and aluminates. In comparison to CFBFA, PCFA showed a higher anion polymerization degree of silicates and aluminates. This was followed by strength behavior studies of the fly ash-cement gelation blocks. The mixing ratio of tested fly ash and cement was 1:1 (by wt%), and the fly ashes included those before and after ultrafine grinding. The results showed that ultrafine fly ash (UFFA)-cement blocks exhibited higher compressive strength as compared to that of original fly ash (OFA)-cement blocks, especially at their early stage. Compared with PCFA, CFBFA was more significant in improvement of mechanical properties of fly ash cement block at its early age for the gelation block. Studies on the water absorption and the thermal weight loss revealed the effectiveness of UFFA in increasing the density and producing more C-S-H in order to improve the mechanical properties in gelation blocks. Due to the difference of CFBFA and PCFA in chemical and mineral compositions, the enhancement of CFBFA in producing C-S-H was greater at its early age but lower at its late age than those of PCFA. (C) 2018 Elsevier Ltd. All rights reserved.
机译:对来自循环流化床(CFBFA)和粉化锅炉(PCFA)的两个粉煤灰样品进行超细粉碎,并通过扫描电子显微镜(SEM),X射线衍射仪(XRD)和傅里叶变换红外光谱(FT)对其进行表征。 -IR)。表征表明,粉煤灰的超细粉碎不仅导致其比表面积的增加,而且导致硅酸盐和铝酸盐的结晶度和阴离子聚合度的降低。与CFBFA相比,PCFA显示出更高的硅酸盐和铝酸盐阴离子聚合度。其次是粉煤灰水泥胶凝块的强度行为研究。测试的粉煤灰和水泥的混合比为1:1(按重量%),粉煤灰包括超细磨之前和之后的粉煤灰。结果表明,与原粉煤灰(OFA)水泥块相比,超细粉煤灰(UFFA)水泥块表现出更高的抗压强度,尤其是在早期。与PCFA相比,CFBFA在早期用于胶凝块的改善粉煤灰水泥块的机械性能方面更为显着。对吸水率和热失重的研究表明,UFFA在提高密度和产生更多C-S-H方面有效,以改善胶凝嵌段的机械性能。由于化学和矿物成分中CFBFA和PCFA的差异,CFBFA在生产C-S-H时的增强作用在早期时要强于PCFA,而在晚期时则要低。 (C)2018 Elsevier Ltd.保留所有权利。

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