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Effect of Hardening Accelerators and other Chemical Admixtures on the Properties of a Quick-Setting Mixture

机译:硬化促进剂和其他化学混合物对快速混合混合物性能的影响

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The physicochemical and physicomechanical properties of quick-setting compositions based on fine-grained electric steelmaking slag (ESS) produced by Izhstal PJSC, Russia, have been examined. The study also focuses on the processes of interaction of the components of the compositions based on ESS in combination with hardening accelerators (Li_2CO_3, K_2SO_4) and plasticizing additives (SP-1, Melflux 2651F). It has been found that mechanoactivation of the composition improves the hydration in comparison with chemical admixtures. This can be proved by the obtained results of the setting and testing timing of the mechanical properties of the mixture. Plasticizers being added, the setting time increases at the average by 2.3 times, and accelerators being added, by 2 times compared with the mechanically activated composition. The influence of mechanoactivation on the strength of the compositions has been described. In comparison with the plasticized composition, the strength increases by 10%, while using accelerators - by 30%. Thus, the most effective way of producing a dry mixture with the properties of quick setting and hardening is a short-term mixed grinding of all its components, which makes it possible to exclude accelerating chemical admixtures and plasticizing additives in the mixture. Also, grinding positively affects the strength gain of quick-setting compositions while reducing the gypsum content to 5%.
机译:研究了基于俄罗斯Izhstal PJSC生产的细粒型电动炼钢(ESS)的快速凝固组合物的物理化学和理物理性质。该研究还专注于基于ESS与硬化促进剂(Li_2CO_3,K_2SO_4)和塑化添加剂(SP-1,Melflux 2651F)组合物的相互作用的方法。已经发现,与化学混合物相比,组合物的机械激活改善了水合。这可以通过所获得的混合物的机械性能的确定结果证明。添加的增塑剂,设定时间在平均增加2.3倍,与机械活化组合物相比,增加了2次的加速器。已经描述了机械激活对组合物强度的影响。与塑化组合物相比,强度升高10%,同时使用促进剂 - 递增30%。因此,具有快速设定和硬化性能的制备干混合物的最有效方法是所有其组分的短期混合研磨,这使得可以在混合物中排除加速化学混合物和塑化添加剂。此外,磨削积极影响快速设置组合物的强度增益,同时将石膏含量降低至5%。

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