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D-Index & Metrics

Engineering and Technology

D-Index
40
Citations
5429
World Ranking
7429
National Ranking
464

Overview

Agba D. Salman is affiliated with the University of Sheffield in the United Kingdom, focusing on research primarily within the field of Engineering. Their academic output spans several subfields including Mechanical Engineering, Computational Mechanics, Food Science, Electrical and Electronic Engineering, and Control and Systems Engineering.

The research topics covered by Salman include granular flow and fluidized beds, mineral processing and grinding, powder metallurgy techniques and materials, microencapsulation and drying processes, injection molding process and properties, proteins in food systems, and advanced control systems optimization.

Frequent publication venues for the scientist's work comprise:

  • Powder Technology
  • Process Safety and Environmental Protection
  • International Journal of Pharmaceutics
  • SSRN Electronic Journal
  • Iraqi Geological Journal

Salman has collaborated extensively with various researchers, with notable coauthors including:

  • Gerhard Niederreiter
  • Stefan Palzer
  • Chalak Omar
  • James D. Litster
  • Annabel Bozon

Recent significant papers authored by Salman include:

  • An interpretable fuzzy logic based data-driven model for the twin screw granulation process (2020, Powder Technology)
  • Drying in a continuous wet granulation line: Investigation of different end of drying control methods (2021, Powder Technology)
  • Tracking of powder lump formation and dispersion with the use of FBRM technology and video recordings (2020, Powder Technology)
  • When swarm meets fuzzy logic: Batch optimisation for the production of pharmaceuticals (2020, Powder Technology)
  • Tableting model assessment of porosity and tensile strength using a continuous wet granulation route (2021, International Journal of Pharmaceutics)

Salman's publications indicate a focus on processes related to powder technology and granulation, illustrating engagement with both experimental techniques and modeling approaches. The work often involves interdisciplinary applications relevant to pharmaceutical sciences and materials engineering.

Best Publications

  • An experimental study of the elastic rebound of spheres

    A.H. Kharaz;D.A. Gorham;A.D. Salman

  • Twin screw wet granulation: Granule properties

    Ranjit M. Dhenge;Richard S. Fyles;James J. Cartwright;David G. Doughty

  • Breakage in granulation: A review

    G.K. Reynolds;J.S. Fu;Y.S. Cheong;M.J. Hounslow

  • An experimental investigation of particle fragmentation using single particle impact studies

    A.D Salman;C.A Biggs;J Fu;I Angyal

  • Kinetics of fluidised bed melt granulation I: The effect of process variables

    H.S. Tan;A.D. Salman;M.J. Hounslow

  • The coefficient of restitution of different representative types of granules

    Chirangano Mangwandi;Y.S. Cheong;M.J. Adams;M.J. Hounslow

  • Twin screw granulation using conveying screws: Effects of viscosity of granulation liquids and flow of powders

    Ranjit M. Dhenge;Kimiaki Washino;James J. Cartwright;Michael J. Hounslow

  • Twin screw wet granulation: Effects of properties of granulation liquid

    Ranjit M. Dhenge;James J. Cartwright;Michael J. Hounslow;Agba D. Salman

  • Drag correlations for particles of regular shape

    H.N. Yow;M.J. Pitt;A.D Salman

  • Twin screw wet granulation: Effect of powder feed rate

    Ranjit M. Dhenge;James J. Cartwright;David G. Doughty;Michael J. Hounslow

  • Twin screw granulation: steps in granule growth.

    Ranjit M. Dhenge;James J. Cartwright;Michael J. Hounslow;Agba D. Salman

  • Impact deformation and rebound of wet granules

    J. Fu;M.J. Adams;G.K. Reynolds;A.D. Salman

  • Impact breakage of fertiliser granules

    A.D Salman;J Fu;D.A Gorham;M.J Hounslow

  • A study of solid particle failure under normal and oblique impact

    A.D. Salman;D.A. Gorham;A. Verba

  • Accurate measurement of particle impact parameters

    A H Kharaz;D A Gorham;A D Salman

  • Building population balance model for fluidized bed melt granulation: lessons from kinetic theory of granular flow

    H.S. Tan;M.J.V. Goldschmidt;R. Boerefijn;M.J. Hounslow

  • Coupling granule properties and granulation rates in high-shear granulation

    C.A. Biggs;C. Sanders;A.C. Scott;A.W. Willemse

  • A new capillary force model implemented in micro-scale CFD–DEM coupling for wet granulation

    K. Washino;H.S. Tan;M.J. Hounslow;A.D. Salman

  • Modelling fragment size distribution using two-parameter Weibull equation

    Y.S. Cheong;G.K. Reynolds;A.D. Salman;M.J. Hounslow

  • Particle fragmentation in dilute phase pneumatic conveying

    A.D Salman;M.J Hounslow;A Verba

  • The fracture of glass spheres

    A.D Salman;D.A Gorham

Frequent Co-Authors

Michael J. Hounslow
Michael J. Hounslow University of Sheffield
Michael Adams
Michael Adams University of Birmingham
James D. Litster
James D. Litster University of Sheffield
Gavin P. Reynolds
Gavin P. Reynolds Sheffield Hallam University
Mojtaba Ghadiri
Mojtaba Ghadiri University of Leeds
Peter Kleinebudde
Peter Kleinebudde Heinrich Heine University Düsseldorf
Yulong Ding
Yulong Ding University of Birmingham
Gavin Walker
Gavin Walker University of Limerick
Stefan Heinrich
Stefan Heinrich Hamburg University of Technology

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