World's Best Scientists 2026 revealed!

D-Index & Metrics

Engineering and Technology

D-Index
66
Citations
13522
World Ranking
1449
National Ranking
88

Overview

Mojtaba Ghadiri is affiliated with the University of Leeds in the United Kingdom. Their research primarily falls within the field of Engineering, with particular emphasis on Computational Mechanics, Mechanical Engineering, and Materials Chemistry.

Their recent publications cover a variety of topics related to powder technology and particle dynamics. Selected recent papers include:

  • A simple method for assessing powder spreadability for additive manufacturing, 2020, Powder Technology
  • Deformation of 3D printed agglomerates: Multiscale experimental tests and DEM simulation, 2020, Chemical Engineering Science
  • Effect of gas-particle interaction on roller spreading process in additive manufacturing, 2020, Powder Technology
  • Modelling the compaction of plastic particle packings, 2021, Computational Particle Mechanics
  • Influence of holdup on gas and particle flow patterns in a spiral jet mill, 2020, Powder Technology

The scientist's research extensively addresses topics such as:

  • Granular flow and fluidized beds
  • Mineral Processing and Grinding
  • Particle Dynamics in Fluid Flows
  • Cyclone Separators and Fluid Dynamics
  • Fluid Dynamics and Heat Transfer
  • Injection Molding Process and Properties
  • High-Velocity Impact and Material Behavior

Frequent collaborators include:

  • Mehrdad Pasha
  • Wei Pin Goh
  • Lewis Scott
  • Wenguang Nan
  • Antonia Borissova

Mojtaba Ghadiri has contributed significantly to publications in several scientific journals, with a concentration in:

  • Powder Technology
  • Pharmaceutics
  • Advanced Powder Technology
  • Chemical Engineering Science
  • Computational Particle Mechanics

The researcher's work is situated at the intersection of particle behavior analysis, compaction modeling, and fluid dynamic interactions of particulate materials. Their expertise incorporates experimental, computational, and simulation approaches to understand and optimize processes relevant to additive manufacturing and powder handling.

Best Publications

  • Triboelectric charging of powders: A review

    Shuji Matsusaka;H. Maruyama;T. Matsuyama;M. Ghadiri

  • Electrostatic enhancement of coalescence of water droplets in oil: a review of the current understanding

    John S. Eow;Mojtaba Ghadiri;Adel O. Sharif;Trevor J. Williams

  • Electrostatic enhancement of coalescence of water droplets in oil: a review of the technology

    John S. Eow;Mojtaba Ghadiri

  • Impact attrition of particulate solids. Part 1: A theoretical model of chipping

    M. Ghadiri;Z. Zhang

  • Electrostatic phase separation: a review

    S. Mhatre;V. Vivacqua;M. Ghadiri;A.M. Abdullah

  • Jamming during particle spreading in additive manufacturing

    Wenguang Nan;Wenguang Nan;Mehrdad Pasha;Tina Bonakdar;Alejandro Lopez

  • Motion, deformation and break-up of aqueous drops in oils under high electric field strengths

    John S Eow;John S Eow;Mojtaba Ghadiri

  • Hydrogen production by sorption-enhanced steam reforming of glycerol

    Binlin Dou;Valerie Dupont;Gavin Rickett;Neil Blakeman

  • Electrification of an elastic sphere by repeated impacts on a metal plate

    Shuji Matsusaka;Mojtaba Ghadiri;Hiroaki Masuda

  • Effect of the impact angle on the breakage of agglomerates: a numerical study using DEM

    R. Moreno;M. Ghadiri;S.J. Antony

  • A review of bulk powder caking

    U. Zafar;V. Vivacqua;G. Calvert;M. Ghadiri

  • Drop–drop coalescence in an electric field: the effects of applied electric field and electrode geometry

    John S. Eow;Mojtaba Ghadiri

  • Effect of mill type on the size reduction and phase transformation of gamma alumina

    S.R. Chauruka;A. Hassanpour;R. Brydson;K.J. Roberts

  • Breakage patterns of agglomerates

    Jesús Subero;Mojtaba Ghadiri

  • Effect of interface energy on the impact strength of agglomerates

    J Subero;Z Ning;M Ghadiri;C Thornton

  • Steam reforming of crude glycerol with in situ CO2 sorption

    Binlin Dou;Gavin L. Rickett;Valerie Dupont;Paul T. Williams

  • Attrition of sorbents during fluidized bed calcination and sulphation

    Fabrizio Scala;Piero Salatino;Renee Boerefijn;Mojtaba Ghadiri

  • Triboelectrification of pharmaceutical powders by particle impact

    Hideo Watanabe;Mojtaba Ghadiri;Tatsushi Matsuyama;Yu Long Ding

  • Thermodynamic analyses of adsorption-enhanced steam reforming of glycerol for hydrogen production

    Haisheng Chen;Tianfu Zhang;Bilin Dou;Valerie Dupont

  • Mechanistic analysis and computer simulation of impact breakage of agglomerates: Effect of surface energy

    R. Moreno-Atanasio;M. Ghadiri

Frequent Co-Authors

Yulong Ding
Yulong Ding University of Birmingham
Roland Clift
Roland Clift University of Surrey
Haisheng Chen
Haisheng Chen Chinese Academy of Sciences
Aboubakr M. Abdullah
Aboubakr M. Abdullah Qatar University
Barry J. Azzopardi
Barry J. Azzopardi University of Nottingham
Paul T. Williams
Paul T. Williams University of Leeds
Valerie Dupont
Valerie Dupont University of Leeds
Dongsheng Wen
Dongsheng Wen Technical University of Munich
Anne Neville
Anne Neville University of Leeds
David Parker
David Parker University of Oxford

If you think any of the details on this page are incorrect, let us know.

Report an issue

We appreciate your kind effort to assist us to improve this page, it would be helpful providing us with as much detail as possible in the text box below:

Best Scientists Citing Mojtaba Ghadiri

Trending Scientists

Recently Published Articles