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Engineering and Technology

D-Index
51
Citations
11904
World Ranking
3795
National Ranking
254

Overview

Ricky D. Wildman is affiliated with the University of Nottingham in the United Kingdom. Their research primarily focuses on engineering, with a total of 160 publications in the field. Within engineering, their work spans several subfields, including biomedical engineering, automotive engineering, electrical and electronic engineering, materials chemistry, and organic chemistry.

Their main topics of research include additive manufacturing and 3D printing technologies, 3D printing in biomedical research, advanced sensor and energy harvesting materials, innovative microfluidic and catalytic techniques, nanomaterials and printing technologies, bone tissue engineering materials, and nanofabrication and lithography techniques.

Frequent venues for their research publications include:

  • SSRN Electronic Journal
  • Additive Manufacturing
  • Advanced Functional Materials
  • Materials & Design
  • ACS Applied Materials & Interfaces

Wildman has collaborated frequently with several co-authors, with significant numbers of joint publications including Christopher Tuck, Derek J. Irvine, Richard Hague, Yinfeng He, and Morgan R. Alexander.

Some of the recent papers authored or co-authored include:

  • Additive manufacturing of metamaterials: A review, 2020, Additive Manufacturing
  • Universal mobility characteristics of graphene originating from charge scattering by ionised impurities, 2021, Communications Physics
  • Hydrogels and Bioprinting in Bone Tissue Engineering: Creating Artificial Stem-Cell Niches for In Vitro Models, 2023, Advanced Materials
  • Formulation of functional materials for inkjet printing: A pathway towards fully 3D printed electronics, 2023, Materials Today Electronics
  • 3D printed polymeric drug-eluting implants, 2021, International Journal of Pharmaceutics

Best Publications

  • Understanding the effect of laser scan strategy on residual stress in selective laser melting through thermo-mechanical simulation

    L. Parry;Ian Ashcroft;Ricky D. Wildman

  • A mechanical property evaluation of graded density Al-Si10-Mg lattice structures manufactured by selective laser melting

    Ian Maskery;N.T. Aboulkhair;Adedeji Aremu;Christopher Tuck

  • Insights into the mechanical properties of several triply periodic minimal surface lattice structures made by polymer additive manufacturing

    Ian Maskery;L. Sturm;Adedeji Aremu;Ajit Panesar

  • Additive manufacturing of metamaterials: A review

    Meisam Askari;David A. Hutchins;Peter J. Thomas;Lorenzo Astolfi

  • Effective design and simulation of surface-based lattice structures featuring volume fraction and cell type grading

    Ian Maskery;Adedeji Aremu;Luke Parry;Ricky Wildman

  • A Study on the Laser Spatter and the Oxidation Reactions During Selective Laser Melting of 316L Stainless Steel, Al-Si10-Mg, and Ti-6Al-4V

    Marco Simonelli;Christopher Tuck;Nesma T. Aboulkhair;Ian Maskery

  • Quantification and characterisation of porosity in selectively laser melted Al–Si10–Mg using X-ray computed tomography

    Ian Maskery;N.T. Aboulkhair;M.R. Corfield;Christopher Tuck

  • 3D inkjet printing of tablets exploiting bespoke complex geometries for controlled and tuneable drug release.

    Mary Kyobula;Aremu Adedeji;Morgan R. Alexander;Ehab Saleh

  • Coexistence of two granular temperatures in binary vibrofluidized beds.

    R. D. Wildman;D. J. Parker

  • Investigation the Effect of Particle Size Distribution on Processing Parameters Optimisation in Selective Laser Melting Process

    Bochuan Liu;Ricky Wildman;Christopher Tuck;Ian Ashcroft

  • A voxel-based method of constructing and skinning conformal and functionally graded lattice structures suitable for additive manufacturing

    Adedeji Aremu;J. P. J. Brennan-Craddock;Ajit Panesar;Ian A. Ashcroft

  • 3D extrusion printing of high drug loading immediate release paracetamol tablets.

    Shaban A. Khaled;Morgan R. Alexander;Ricky D. Wildman;Martin J. Wallace

  • 3D printing of tablets using inkjet with UV photoinitiation

    Elizabeth A. Clark;Morgan R. Alexander;Derek J. Irvine;Clive J. Roberts

  • ENERGY INPUTS TO ADDITIVE MANUFACTURING: DOES CAPACITY UTILIZATION MATTER?

    M. Baumers;C. Tuck;R. Wildman;I. Ashcroft

  • Transparency Built-in: Energy Consumption and Cost Estimation for Additive Manufacturing

    Martin Baumers;Chris Tuck;Ricky Wildman;Ian Ashcroft

  • The design of impact absorbing structures for additive manufacture

    J Brennan-Craddock;D Brackett;R Wildman;R Hague

  • Universal mobility characteristics of graphene originating from charge scattering by ionised impurities

    Jonathan H. Gosling;Oleg Makarovsky;Feiran Wang;Nathan D. Cottam

  • Shape complexity and process energy consumption in electron beam melting: a case of something for nothing in additive manufacturing?

    Martin Baumers;Christopher Tuck;Ricky D. Wildman;Ian Ashcroft

  • Mechanical Properties of Ti-6Al-4V Selectively Laser Melted Parts with Body-Centred-Cubic Lattices of Varying cell size

    Ian Maskery;Adedeji Aremu;M. Simonelli;Christopher Tuck

  • Granular temperature profiles in three-dimensional vibrofluidized granular beds

    R. D. Wildman;J. M. Huntley;D. J. Parker

  • Convection in highly fluidized three-dimensional granular beds.

    R. D. Wildman;J. M. Huntley;D. J. Parker

  • Extrusion 3D Printing of Paracetamol Tablets from a Single Formulation with Tunable Release Profiles Through Control of Tablet Geometry

    Shaban A. Khaled;Morgan R. Alexander;Derek J. Irvine;Ricky D. Wildman

Frequent Co-Authors

Christopher Tuck
Christopher Tuck University of Nottingham
Richard J.M. Hague
Richard J.M. Hague University of Nottingham
Ian A. Ashcroft
Ian A. Ashcroft University of Nottingham
Jonathan M. Huntley
Jonathan M. Huntley Loughborough University
Morgan R. Alexander
Morgan R. Alexander University of Nottingham
Clive J. Roberts
Clive J. Roberts University of Nottingham
David Parker
David Parker University of Oxford
Paul Williams
Paul Williams University of Nottingham
Sacha J. Mooney
Sacha J. Mooney University of Nottingham
Jean-Pierre Hansen
Jean-Pierre Hansen University of Cambridge

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