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Hydration effect of sodium silicate on cement slurry doped with xanthan

机译:硅酸钠对黄原胶掺水泥浆的水化作用

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The effect of polyhydroxy xanthan on the corresponding hydration process of cement and regulation mechanism was discussed, then sodium silicate as coagulant was added into the xanthan-retarded cement paste and its accelerating mechanism for the retarding effect of xanthan was investigated. The results indicate that due to chemisorption between hydrophilic hydroxyl and carboxyl and calcium ions, the core-shell construction of xanthan-cement to a certain extent hinders the hydration process of cement particles, adding sodium silicate in the cement-added xanthan significantly inhibits the retardation of the xanthan, shortens the setting time of the retarding cement, improves the compressive strength of the retarded cement, and to some extent promotes the hydration of C(3)A. The early hydration of C(3)A, C3S and sodium silicate rapidly formed a large amount of C-S-H, which was bound with the ettringite skeleton to promote coagulation hardening of the cement slurry, further established a "suppression-ex citation" system between xanthan and sodium silicate in cement slurry. (C) 2019 Elsevier Ltd. All rights reserved.
机译:讨论了多羟基黄原胶对水泥水化过程的影响及调节机理,然后在黄原胶缓凝水泥浆中加入硅酸钠作凝结剂,研究了其促进黄原胶缓凝作用的机理。结果表明,由于亲水性羟基,羧基和钙离子之间的化学吸附作用,黄原胶的核壳结构在一定程度上阻碍了水泥颗粒的水化过程,在掺水泥的黄原胶中加入硅酸钠显着抑制了缓凝作用。黄原胶的使用,可缩短缓凝水泥的凝结时间,提高缓凝水泥的抗压强度,并在一定程度上促进C(3)A的水合作用。 C(3)A,C3S和硅酸钠的早期水化迅速形成大量的CSH,CSH与钙矾石骨架结合以促进水泥浆的凝结硬化,进一步建立了黄原胶之间的“抑制-激发”体系和水泥浆中的硅酸钠。 (C)2019 Elsevier Ltd.保留所有权利。

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