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Hydration behavior of spinel containing high alumina cement from high titania blast furnace slag

机译:高二氧化钛高炉渣中含高铝水泥尖晶石的水化行为

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Hydration behavior of the spinel containing high alumina cement prepared from high titania blast furnace slag via smelting reduction method is studied. Cooling condition has considerable effect on the phase compositions and hydration behavior of the prepared cements. Hydraulic CA, CA(2), inert spinel and gehlenite are the main mineral phases of the naturally cooling cement. Glassy phase, CA and some spinel are the main phases of the splat cooling cement. Both of the prepared cements have controllable setting time, water requirements. Strength of splat cooling cement develops slowly than naturally cooling cement. The naturally cooling cement has satisfactory compressive strength, which is higher than splat cooling cement, but lower than commercial CABO and Secar71. XRD and SEM observation confirms that CAH(10) is the main hydrate of splat cooling cement. Metastable CAH(10), C(2)AH(8), are the main hydrates of naturally cooling cement, which will convert to stable C(3)AH(6) with continuing hydration. (C) 2015 Elsevier Ltd. All rights reserved.
机译:研究了高钛高炉矿渣经熔融还原法制得的尖晶石高铝水泥的水化行为。冷却条件对所制备水泥的相组成和水合行为有很大影响。液压CA,CA(2),惰性尖晶石和钠钙石是自然冷却水泥的主要矿物相。玻璃态相,CA和一些尖晶石是飞溅冷却水泥的主要相。两种制备的水泥均具有可控的凝结时间和需水量。短板冷却水泥的强度比自然冷却水泥的发展缓慢。自然冷却的水泥具有令人满意的抗压强度,该强度高于短板冷却的水泥,但低于商品的CABO和Secar71。 XRD和SEM观察证实,CAH(10)是冷却水泥的主要水合物。亚稳态CAH(10),C(2)AH(8)是自然冷却水泥的主要水合物,随着持续水化将转变为稳定的C(3)AH(6)。 (C)2015 Elsevier Ltd.保留所有权利。

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