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Materials Science

D-Index
43
Citations
8753
World Ranking
12244
National Ranking
500

Overview

Jon Binner is affiliated with the University of Birmingham in the United Kingdom. Their research primarily focuses on engineering and materials science, with particular expertise in mechanical engineering and ceramics and composites. Their work extends into materials chemistry, automotive engineering, and building and construction sectors.

The scientist's scholarly contributions cover topics related to advanced ceramic materials synthesis and advanced materials and composites. They have significant involvement in additive manufacturing and 3D printing technologies, as well as in aluminum alloys composites properties. Additional research interests include innovations in concrete and construction materials, MXene and MAX phase materials, and bone tissue engineering materials.

Frequent collaboration partners include:

  • Vinothini Venkatachalam
  • James Wade
  • Jinxing Sun
  • Ji Zou
  • Jiaming Bai

Jon Binner's publications are commonly found in the following venues:

  • Journal of the European Ceramic Society
  • Additive Manufacturing
  • Open Ceramics
  • Journal of the American Ceramic Society
  • Composites Part A Applied Science and Manufacturing

Recent scholarly papers by Jon Binner include:

  • Additive manufacturing of advanced ceramic materials, 2020, Progress in Materials Science
  • A review on additive manufacturing of ceramic matrix composites, 2022, Journal of Material Science and Technology
  • 3D printing of zirconia via digital light processing: optimization of slurry and debinding process, 2020, Journal of the European Ceramic Society
  • A comprehensive study of dense zirconia components fabricated by additive manufacturing, 2021, Additive Manufacturing
  • 3D printing of layered ceramic/carbon fiber composite with improved toughness, 2021, Additive Manufacturing

Best Publications

  • Additive manufacturing of advanced ceramic materials

    Y. Lakhdar;C. Tuck;J. Binner;A. Terry

  • Processing of cellular ceramics by foaming and in situ polymerisation of organic monomers

    P Sepulveda;J.G.P Binner

  • Selection, processing, properties and applications of ultra-high temperature ceramic matrix composites, UHTCMCs – a review

    Jon Binner;Matt Porter;Ben Baker;Ji Zou

  • UHTC composites for hypersonic applications

    Anish Paul;Jon Binner;Bala Vaidhyanathan

  • Production of porous hydroxyapatite by the gel-casting of foams and cytotoxic evaluation.

    P. Sepulveda;J.G.P. Binner;S.O. Rogero;O.Z. Higa

  • UHTC–carbon fibre composites: Preparation, oxyacetylene torch testing and characterisation

    Unknown

  • An evaluation of hydroxyapatite-based filters for removal of heavy metal ions from aqueous solutions

    J. Reichert;J. G. P. Binner

  • The possible role of the pre-exponential factor in explaining the increased reaction rates observed during the microwave synthesis of titanium carbide

    J. G. P. Binner;N. A. Hassine;T. E. Cross

  • Investigation of Electrochemical, Optical and Thermal Effects during Flash Sintering of 8YSZ.

    Mattia Biesuz;Lorenzo Pinter;Theo Saunders;Mike Reece

  • The role of ammonium polyacrylate in dispersing concentrated alumina suspensions

    J. Davies;J.G.P. Binner

  • Evidence for the microwave effect during hybrid sintering

    J. Wang;J. Binner;B. Vaidhyanathan;N. Joomun

  • Effect of surface treatment on the dispersion of nano zirconia particles in non-aqueous suspensions for stereolithography

    Jinxing Sun;Jinxing Sun;Jon Binner;Jiaming Bai

  • Dense nanostructured zirconia by two stage conventional/hybrid microwave sintering

    J.G.P. Binner;Ketharam Annapoorani;Anish Paul;Isabel Santacruz

  • 3D printing of zirconia via digital light processing: optimization of slurry and debinding process

    Jinxing Sun;Jinxing Sun;Jon Binner;Jiaming Bai

  • Processing of ceramic-metal interpenetrating composites

    J.G.P. Binner;Hong Chang;Rebecca L. Higginson

  • Assessing extraterrestrial regolith material simulants for in-situ resource utilisation based 3D printing

    Athanasios Goulas;Jon G.P. Binner;Russell A. Harris;Ross J. Friel

  • Processing of bulk nanostructured ceramics

    J.G.P. Binner;Bala Vaidhyanathan

  • Quantitative X-ray diffraction analysis of polymorphic mixes of pure zirconia

    P. A. Evans;R. Stevens;J. G. P. Binner

  • Characterization of silicon carbide and silicon powders by XPS and zeta potential measurement

    J. Binner;Y. Zhang

  • The oxidation behaviour of carbon fibres

    Y. Yin;J. G. P. Binner;T. E. Cross;S. J. Marshall

  • Synthesis of refractory metal carbide powders via microwave carbothermal reduction

    N.A. Hassine;J.G.P. Binner;T.E. Cross

  • Advanced ceramic processing and technology

    J. Binner

Frequent Co-Authors

Salvatore Grasso
Salvatore Grasso Queen Mary University of London
Michael J. Reece
Michael J. Reece Queen Mary University of London
Diletta Sciti
Diletta Sciti National Research Council (CNR)
Laura Silvestroni
Laura Silvestroni National Research Council (CNR)
Raffaele Savino
Raffaele Savino University of Naples Federico II
Vincenzo M. Sglavo
Vincenzo M. Sglavo University of Trento
William E. Lee
William E. Lee Imperial College London
Frédéric Monteverde
Frédéric Monteverde National Research Council (CNR)
William G. Fahrenholtz
William G. Fahrenholtz Missouri University of Science and Technology
John A. Kilner
John A. Kilner Imperial College London

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