Materials Map

Discover the materials research landscape. Find experts, partners, networks.

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The Materials Map is an open tool for improving networking and interdisciplinary exchange within materials research. It enables cross-database search for cooperation and network partners and discovering of the research landscape.

The dashboard provides detailed information about the selected scientist, e.g. publications. The dashboard can be filtered and shows the relationship to co-authors in different diagrams. In addition, a link is provided to find contact information.

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Materials Map under construction

The Materials Map is still under development. In its current state, it is only based on one single data source and, thus, incomplete and contains duplicates. We are working on incorporating new open data sources like ORCID to improve the quality and the timeliness of our data. We will update Materials Map as soon as possible and kindly ask for your patience.

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Naji, M.
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Krzyzanowski, Michal

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Birmingham City University

in Cooperation with on an Cooperation-Score of 37%

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Publications (36/36 displayed)

  • 2024Laser-directed energy deposition of bioactive glass on Ti-6Al-7Nb titanium alloy substrate with highly refined grain structure2citations
  • 2021Laser cladding of bioactive glass coating on pure titanium substrate with highly refined grain structure28citations
  • 2021Additive manufacturing of multi layered bioactive materials with improved mechanical properties2citations
  • 2021A multiphysics simulation approach to selective laser melting modelling based on cellular automata and lattice Boltzmann methods17citations
  • 2021Development of homogeneous numerical platform for 3D through process simulation of selective laser melting considering changes of aggregative statescitations
  • 2020Development of holistic homogeneous model of selective laser melting based on lattice boltzmann method5citations
  • 2019Analysis of the porosity degree during laser-assisted cladding of bioactive glass on titanium substrates with highly refined grain structurecitations
  • 2019Bioactive glass S520 laser cladding on ultrafine-grained pure titanium substratescitations
  • 2019Modelling aspects of laser cladding of bioactive glass coatings on ultrafine-grained titanium substratescitations
  • 2018Logical Knowledge-based Advanced Cost Estimation Methodology (LKACEM) Applied to Metal Matrix Composite Aero-Engine Bliskcitations
  • 2018Interfacial oxidation in processing of nanocrystallised metallic materials using duplex technique - experimental and modelling aspectscitations
  • 2018Numerical modelling of grain refinement around highly reactive interfaces in processing of nanocrystallised multilayered metallic materials by duplex technique4citations
  • 2018Characterization of nanocrystallised multilayered metallic materials produced by the SMAT followed by constrained compression6citations
  • 2017Inhomogeneity of plastic deformation in austenitic stainless steel after surface mechanical attrition treatment10citations
  • 2016Modelling of transient temperature field and phase transformation changecitations
  • 2016Metallic multilayered materials produced by constrained compressioncitations
  • 2016Modelling of grain refinement around highly reactive interfaces in processing of nanocrystallised multilayered metallic materialscitations
  • 2016Towards processing of multilayered metallic materials - Constrained compression testingcitations
  • 2016Modelling of Transient Temperature Field and Phase Transformation Change: A way for Residual Stress Management in Large Scale Forgingscitations
  • 20163D analysis of thermal and stress evolution during laser cladding of bioactive glass coatings55citations
  • 2015Numerical analysis of highly reactive interfaces in processing of nanocrystallised multilayered metallic materials by using duplex technique4citations
  • 2011Scale deformation and failure in hot rolling2citations
  • 2010Advances on modelling of the tool/workpiece interface during high shear processing1citations
  • 2010Combined discrete/finite element multiscale approach for modelling of the tool/workpiece interface during high shear processing5citations
  • 2010Oxide scale modelling in hot rolling4citations
  • 2007Modelling of oxide scale evolution in hot rolling and descalingcitations
  • 2006Oxide scale behaviour on aluminium and steel under hot working conditions30citations
  • 2006Modelling the behaviour of oxide scale in hot rolling39citations
  • 2005Oxide scale behaviour during thermomechanical processingcitations
  • 2004Improvement of surface finish in steel hot rolling by optimal cooling ahead of entry into the roll gapcitations
  • 2004Hot workability of spray-formed AISI M3:2 high-speed steel4citations
  • 2003Analysis of mechanical descaling16citations
  • 2002Measurement of oxide properties for numerical evaluation of their failure under hot rolling conditions25citations
  • 2001Effect of steel composition on failure of oxide scales in tension under hot rolling conditions13citations
  • 2000Analysis of secondary oxide-scale failure at entry into the roll gap45citations
  • 2000Modelling the boundary conditions for thermo-mechanical processing-oxide scale behaviour and composition effects23citations

Places of action

Chart of shared publication
Bajda, Szymon
15 / 15 shared
Dziadek, Michal
3 / 4 shared
Cholewa-Kowalska, Katarzyna
3 / 9 shared
Kopyscianski, Mateusz
2 / 2 shared
Liu, Yijun
4 / 4 shared
Rai, Adarsh
1 / 1 shared
Semenova, Irina P.
1 / 7 shared
Dymek, Stanislaw
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Tosi, Riccardo
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Polyakov, Alexander V.
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Tokarski, Tomasz
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Svyetlichnyy, Dmytro
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Straka, Robert.
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Lach, Lukasz
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Thakur, Nikhil
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Chinchapatnam, Phani
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Raju, Pathmeswaran
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Retraint, Delphine
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Dymek, Stanisław
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Majta, Janusz
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Kwiecień, Marcin
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Lisiecki, Łukasz
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Ratuszek, Wiktoria
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Rainforth, W. Mark
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Talamantes-Silva, Jesus
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Sroka, Jakub
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Svyetlichnyy, Dmytra
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Triantaphyllou, Andrew
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Glendenning, Malcolm
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Muszka, Krzysztof
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Rainforth, Mark W.
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Wynne, Bradley P.
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Davies, Peter S.
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Rainforth, W. M.
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Beynon, John H.
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Frolish, Mike F.
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Clowe, Samantha
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Beynon, J. H.
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Frolish, M. F.
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Beynon, John Howard
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Rodenburg, C.
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Yang, W.
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Sellars, C. M.
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Tan, K. S.
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Co-Authors (by relevance)

  • Bajda, Szymon
  • Dziadek, Michal
  • Cholewa-Kowalska, Katarzyna
  • Kopyscianski, Mateusz
  • Liu, Yijun
  • Rai, Adarsh
  • Semenova, Irina P.
  • Dymek, Stanislaw
  • Tosi, Riccardo
  • Polyakov, Alexander V.
  • Tokarski, Tomasz
  • Svyetlichnyy, Dmytro
  • Straka, Robert.
  • Lach, Lukasz
  • Thakur, Nikhil
  • Chinchapatnam, Phani
  • Raju, Pathmeswaran
  • Retraint, Delphine
  • Dymek, Stanisław
  • Majta, Janusz
  • Kwiecień, Marcin
  • Lisiecki, Łukasz
  • Ratuszek, Wiktoria
  • Rainforth, W. Mark
  • Talamantes-Silva, Jesus
  • Sroka, Jakub
  • Svyetlichnyy, Dmytra
  • Triantaphyllou, Andrew
  • Glendenning, Malcolm
  • Muszka, Krzysztof
  • Rainforth, Mark W.
  • Wynne, Bradley P.
  • Davies, Peter S.
  • Rainforth, W. M.
  • Beynon, John H.
  • Frolish, Mike F.
  • Clowe, Samantha
  • Beynon, J. H.
  • Frolish, M. F.
  • Beynon, John Howard
  • Rodenburg, C.
  • Yang, W.
  • Sellars, C. M.
  • Tan, K. S.
OrganizationsLocationPeople

document

Advances on modelling of the tool/workpiece interface during high shear processing

  • Krzyzanowski, Michal
  • Rainforth, Mark W.
Abstract

<p>Understanding and prediction of physical phenomena in different scales at the same time that are taking place at the tool/workpiece interface during high shear processing is done in different ways combining the latest finite element (FE) and discrete element (DE) analysis technology. The high shear processing is observed during hot rolling of aluminium, when it produces a highly deformed subsurface layer; and also during friction stir welding (FSW), when it results in significant heat generation and flow. The FE analysis is used for macro-scale simulation while the DE method is applied to simulate meso-scale phenomena taking place in the thin, sometimes a few micron thicknesses, surface layer. Different FE models and numerical techniques combined with DE based transient dynamics approaches are discussed in this work.</p>

Topics
  • impedance spectroscopy
  • surface
  • simulation
  • aluminium
  • hot rolling