A Study on the Grade Efficiency of Sturtevant Type Air Classifier

스터테반트 공기분급기의 분리효율에 대한 연구

  • 정인기 (영남대학교 기계공학부) ;
  • 박시우 (경일대학교 기계자동차학부)
  • Published : 2004.07.01

Abstract

This research was Performed to raise grade efficiency of Sturtevant type air classifier. to treat powder less than $74\mu\textrm{m}$ particle produced at the crushing process of the dry aggregates manufacturing system or concrete wastes recycling system. The experimental conditions were in the ranges. 0.85 to 5.15 $m^3$/s of primary air flow rate. 0.005 to 0.015 $m^3$/s of secondary air flow rate $30^{\circ}$ to $70^{\circ}$ of auxiliary blades angle. respectively. for 1.7~3.3 kg/min of the powder feed rate. It was found that the grade efficiency of the air classifier was increased as the baffle plate was attached at the expansion region. and the optimal operating conditions of the air flow rates and the blade angle were obtained. The fractional recovery curves from the experiments were well agreement with the theoretical one of Molerus model.

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References

  1. Chem. Eng. Progress Understand Cyclone Design Coker, A. K.
  2. Powder Technology Hou, T. H.
  3. Chemie-Ing-Tech. v.41 Darstellung von Windsichterrennkurven durch ein Stochastisches Modell Molerus, O.;Hoffmann, H.
  4. J. Chem. Eng. Japan v.6 no.6 An Analysis of the Fractional Recovery Curves of Sturtevant-type Air Classifiers in High Solid Concentration Conditions Onuma, E.
  5. Chem. Eng. Commun. v.34 Mechanism of Classification in a Sturtevant-Type Air Classiffier Jimbo, G.;Yamazaki, M.;Tsubaki, J.;Suh, T. S.
  6. Powder Technology v.77 The Origin of the Fish-Hook Effect in Hydrocyclone Separators Rolden-Villasana, E. J.;Williams, R. A.;Dyakowski, T.
  7. Powder Technology v.2 Principle and Construction of Two New Air Classifiers for Particle Size Analysis Leschonski, K.;Rumpf, H.
  8. J. Ind. Tech. v.13 no.1 Dust Separation Efficiency in the Air Cyclone Kang, S. H.;Park, Y. H.;Kim, J. H.;Ju, S. H.
  9. Particle Classification Heiskanen, K.
  10. Powder Technology v.82 On the Difficulties of Implementing Particle Size Control in Particulate Process Heiskanen, K.
  11. Powder Technology Kang, S. H.
  12. Gas Fluidization Technology Geldart, D.
  13. KIGAM Research Report KR-96(C)-16 Research for the Development of Crushed Aggregates Lee, D. N.;Mun, J. S.;Lee, H. J.