industrial grade SNF-C super plasticizer

  • industrial grade SNF-C super plasticizer
  • industrial grade SNF-C super plasticizer
  • industrial grade SNF-C super plasticizer
  • What is the optimum dosage of SNF super plasticizer?
  • The optimum dosage of SNF Super Plasticizer is 0.5 and 25% water reduction from the analysis and it is used to determine the strength results of the Perlite added concrete at a replacement percentage of 10, 15, 20 and 25% (from Table 4; Fig. 1).
  • What is the maximum strength of SNF super plasticizer (Sikament 2002 NS)?
  • At a dosage of 0.5% of SNF super plasticizer (Sikament 2002 NS) and 25% water reduction, maximum strength achieved. At 0.6% of PCE super plasticizer (C Flow 175 M) and 25% water reduction all the strength parameters reached peak value.
  • Can SNF be used as a superplasticizer?
  • The key advantage of using SNF as a superplasticizer is the possibility of greatly reducing water content in concrete without the undesirable side effects of the severity of retardation or air entrainment.
  • Is SNF superplasticizer suitable for Cement Admixtures?
  • Strong adaptability. SNF superplasticizer is suitable for cement of various specifications and models. The product has good compatibility with other admixtures, and cooperates with admixtures such as expansion agents, air entraining agents and active admixtures such as fly ash, and the functions complement and stimulate each other.
  • Are PCE superplasticizers better than SNF?
  • The superplasticizer efficiency is reported to be strongly influenced by its molecular architecture and by the ionic species present in the solution. Currently, SNF condensates are the most extensively used superplasticizers. However, PCE superplasticizers are gradually replacing SNF because of their superiority in a number of aspects.
  • Why does SNF Based super plasticizer have high fluidity?
  • SNF-based super plasticizer possesses high fluidity due to reduced monomer and increased molecular weight. Retardation of the cement hydration depends on the molecular weight where the higher the molecular weight, higher the retardation [65, 66].

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