Materials Map

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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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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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Lindroos, Matti

  • Google
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VTT Technical Research Centre of Finland

in Cooperation with on an Cooperation-Score of 37%

Topics

Publications (61/61 displayed)

  • 2024On the grain level deformation of BCC metals with crystal plasticity modeling:Application to an RPV steel and the effect of irradiation4citations
  • 2024Analysis of rolling contact and tooth root bending fatigue in a new high-strength steel:Experiments and micromechanical modelling3citations
  • 2024On the grain level deformation of BCC metals with crystal plasticity modeling4citations
  • 2024Crystal plasticity model for creep and relaxation deformation of OFP copper1citations
  • 2024Design and Application of a Miniature Pneumatic Bellows Loading Device for In-Situ Tensile Testing inside the Scanning Electron Microscope1citations
  • 2024Design and Application of a Miniature Pneumatic Bellows Loading Device for In-Situ Tensile Testing inside the Scanning Electron Microscope1citations
  • 2024Analysis of rolling contact and tooth root bending fatigue in a new high-strength steel: Experiments and micromechanical modelling3citations
  • 2023Estimating Long Term Behaviour Of DED-printed AlCoNiFe Alloycitations
  • 2023Estimating Long Term Behaviour Of DED-printed AlCoNiFe Alloycitations
  • 2023Micromechanical modeling of single crystal and polycrystalline UO2 at elevated temperatures2citations
  • 2023Performance Driven Design And Modeling Of Compositionally Complex AM Al-Co-Ni-Fe Alloyscitations
  • 2023Performance Driven Design And Modeling Of Compositionally Complex AM Al-Co-Ni-Fe Alloyscitations
  • 2023Crystal plasticity model for creep and relaxation deformation of OFP copper1citations
  • 2023Micromechanical modeling of single crystal and polycrystalline UO 2 at elevated temperatures2citations
  • 2022Dislocation density in cellular rapid solidification using phase field modeling and crystal plasticity39citations
  • 2022Brittle fracture initiation in decommissioned boiling water reactor pressure vessel head weld14citations
  • 2022Numerical Design Of High Entropy Super Alloy Using Multiscale Materials Modeling And Deep Learningcitations
  • 2022Multiscale analysis of crystalline defect formation in rapid solidification of pure aluminium and aluminium–copper alloys14citations
  • 2022Single-Track Laser Scanning as a Method for Evaluating Printability: The Effect of Substrate Heat Treatment on Melt Pool Geometry and Cracking in Medium Carbon Tool Steel5citations
  • 2022Multiscale analysis of crystal defect formation in rapid solidification of pure aluminium and aluminium-copper alloyscitations
  • 2022Laser Powder Bed Fusion Of High Carbon Tool Steelscitations
  • 2022Crystal Plasticity Modeling of Grey Cast Irons under Tension, Compression and Fatigue Loadings8citations
  • 2022Crystal plasticity modeling of transformation plasticity and adiabatic heating effects of metastable austenitic stainless steels9citations
  • 2022Experimental and Calphad Methods for Evaluating Residual Stresses and Solid-State Shrinkage after Solidification3citations
  • 2022Micromechanical modelling of additively manufactured high entropy alloys to establish structure-properties-performance workflowcitations
  • 2022Opportunities Of Physics-Based Multi-Scale Modeling Tools In Assessing Intra-Grain Heterogeneities, Polycrystal Properties And Residual Stresses Of AM Metalscitations
  • 2022Formation of nanostructured surface layer, the white layer, through solid particles impingement during slurry erosion in a martensitic medium-carbon steel27citations
  • 2022Micromorphic crystal plasticity approach to damage regularization and size effects in martensitic steels27citations
  • 2021Micromechanical modeling approach to single track deformation, phase transformation and residual stress evolution during selective laser melting using crystal plasticity27citations
  • 2021Micromechanics driven design of ferritic–austenitic duplex stainless steel microstructures for improved cleavage fracture toughness15citations
  • 2021Crystal plasticity with micromorphic regularization in assessing scale dependent deformation of polycrystalline doped copper alloys2citations
  • 2021Micromechanical and multi-scale modeling of manganese containing slag comminution in the design of energy efficient secondary raw material beneficiation processes3citations
  • 2020Development and validation of coupled erosion-corrosion model for wear resistant steels in environments with varying pH15citations
  • 2020Micromechanical modeling of polycrystalline high manganese austenitic steel subjected to abrasive contact5citations
  • 2020The significance of spatial length scales and solute segregation in strengthening rapid solidification microstructures of 316L stainless steel129citations
  • 2019Micromechanical modeling of short crack nucleation and growth in high cycle fatigue of martensitic microstructures22citations
  • 2019Data-Driven Optimization Of Metal Additive Manufacturing Solutionscitations
  • 2019On The Linking Performance Evaluation Toolset To Process-structure-properties Mapping Of Selective Laser Melting 316L Stainless Steel Using Micromechanical Approach With A Length-scale Dependent Crystal Plasticitycitations
  • 2019CRM free hard metals for high abrasive wear applicationscitations
  • 2019Process-Structure-Properties-Performance Modeling for Selective Laser Melting39citations
  • 2018Utilizing the theory of critical distances in conjunction with crystal plasticity for low-cycle notch fatigue analysis of S960 MC high-strength steel20citations
  • 2018Crystal plasticity modeling and characterization of the deformation twinning and strain hardening in Hadfield steels26citations
  • 2018Micromechanical model for fatigue limit of metal AM parts and materialscitations
  • 2018Microstructure based modeling of the strain rate history effect in wear resistant Hadfield steels12citations
  • 2018Micromechanical modeling of titanium carbide composites with high work hardening metal matrixcitations
  • 2017Micromechanical modeling of failure behavior of metallic materials5citations
  • 2017A crystal plasticity approach for shear banding in hot rolled high-strength steels4citations
  • 2017On the effect of deformation twinning and microstructure to strain hardening of high manganese austenitic steel 3D microstructure aggregates at large strains14citations
  • 2017The effect of impact conditions on the wear and deformation behavior of wear resistant steels50citations
  • 2016Experimental and numerical studies on the abrasive and impact behavior of wear resistant steelscitations
  • 2016Experimental and numerical studies on the abrasive and impact behavior of wear resistant steels:Dissertationcitations
  • 2016Experimental study on the behavior of wear resistant steels under high velocity single particle impacts27citations
  • 2016Characterization of High-Velocity Single Particle Impacts on Plasma-Sprayed Ceramic Coatings5citations
  • 2015Experimental study on the behavior of wear resistant steels under high velocity single particle impacts27citations
  • 2015Wear behavior and work hardening of high strength steels in high stress abrasion86citations
  • 2015The effect of impact conditions on the wear and deformation behavior of wear resistant steels50citations
  • 2015The effect of impact conditions on the wear and deformation behavior of wear resistant steels50citations
  • 2015The deformation, strain hardening, and wear behavior of chromium-alloyed hadfield steel in abrasive and impact conditions67citations
  • 2013High velocity particle impactorcitations
  • 2012Effects of strain and strain rate on the abrasive wear behavior of high manganese austenitic steel4citations
  • 2010Structural influence on the Rashba-type spin splitting in surface alloys72citations

Places of action

Chart of shared publication
Laukkanen, Anssi
44 / 144 shared
Corrêa Soares, Guilherme
2 / 10 shared
Ren, Sicong
6 / 12 shared
Freimanis, Andris
2 / 6 shared
Biswas, Abhishek
12 / 27 shared
Serrano, Marta
2 / 23 shared
Karlsen, Wade
2 / 22 shared
Marjamaa, Vuokko
2 / 2 shared
Ronkainen, Helena
2 / 74 shared
Vallejo-Rodriquez, Luis
1 / 1 shared
Soares, Guilherme Corrêa
2 / 22 shared
Andersson, Tom
27 / 51 shared
Pakarinen, Janne
2 / 15 shared
Pohja, Rami
2 / 27 shared
Nandy, Supriya
4 / 5 shared
Rantala, Juhani
2 / 25 shared
Roiko, Andrew
2 / 7 shared
Moilanen, Pekka
2 / 16 shared
Vallejo Rodríguez, Luis
2 / 3 shared
Rodriguez, Pilar Rey
2 / 3 shared
Lindroos, Tomi
11 / 55 shared
Lagerbom, Juha
9 / 66 shared
Suhonen, Tomi
7 / 50 shared
Rey Rodriguez, Pilar
2 / 2 shared
Olsson, Pär
2 / 19 shared
Costa, Diogo Ribeiro
1 / 3 shared
Heikinheimo, Janne
2 / 6 shared
Vajragupta, Napat
2 / 21 shared
Ribeiro Costa, Diogo
1 / 6 shared
Pinomaa, Tatu
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Ammar, Kais
3 / 18 shared
Forest, Samuel
4 / 142 shared
Provatas, Nikolas
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Arffman, Pentti
1 / 11 shared
Efsing, Pål
1 / 6 shared
Que, Zaiqing
1 / 39 shared
Lindqvist, Sebastian
1 / 23 shared
Nevasmaa, Pekka
1 / 44 shared
Hytönen, Noora
1 / 13 shared
Lydman, Jari
1 / 12 shared
Kaipainen, Joni
1 / 2 shared
Wang, Lei
2 / 23 shared
Haapalehto, Matias
2 / 3 shared
Jreidini, Paul
2 / 5 shared
Reijonen, Joni
5 / 14 shared
Antikainen, Atte
5 / 13 shared
Balobanov, Viacheslav
1 / 3 shared
Isakov, Matti
1 / 29 shared
Metsäjoki, Jarkko
3 / 33 shared
Ge, Yanling
1 / 25 shared
Sadeghpour, S.
1 / 10 shared
Valtonen, K.
1 / 7 shared
Karjalainen, P.
1 / 16 shared
Pahlevani, F.
1 / 1 shared
Pallaspuro, S.
1 / 24 shared
Haiko, O.
1 / 8 shared
Javaheri, V.
1 / 37 shared
Sarmadi, N.
1 / 1 shared
Kömi, J.
1 / 92 shared
Frondelius, Tero
2 / 11 shared
Scherer, Jean-Michel
1 / 6 shared
Mäntylä, Antti
2 / 12 shared
Vaara, Joona
2 / 13 shared
Uusikallio, Sampo
1 / 4 shared
Porter, David
1 / 17 shared
Kömi, Jukka
1 / 31 shared
Jonsen, Pär
1 / 1 shared
Kajberg, Jörgen
1 / 8 shared
Suarez, Laura
1 / 2 shared
Kallio, Marke
1 / 18 shared
Terva, Juuso
1 / 4 shared
Lindgren, Mari
1 / 14 shared
Walbrühl, Martin
1 / 3 shared
Yashchuk, Ivan
3 / 3 shared
Kemppainen, Jukka
1 / 2 shared
Lintunen, Pertti
1 / 15 shared
Afkhami, S.
1 / 6 shared
Björk, T.
1 / 11 shared
Dabiri, Mohammad
1 / 5 shared
Kuokkala, Veli-Tapani
11 / 64 shared
Cailletaud, Georges
3 / 77 shared
Verho, Tuukka
1 / 13 shared
Apostol, Marian
7 / 9 shared
Molnar, Wolfgang
3 / 4 shared
Ratia, Vilma
2 / 19 shared
Kuokkala, Veli Tapani
3 / 5 shared
Holmberg, Kenneth
8 / 66 shared
Valtonen, Kati
7 / 57 shared
Oja, Olli
2 / 12 shared
Kiilakoski, Jarkko
1 / 14 shared
Koivuluoto, Heli
1 / 58 shared
Vuoristo, Petri
1 / 75 shared
Apostol, Maria
1 / 1 shared
Kemppainen, Anu
1 / 6 shared
Ratia-Hanby, Vilma L.
1 / 13 shared
Heino, Vuokko
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Waudby, Richard
1 / 8 shared
Kivikytö-Reponen, Päivi
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Lehtovaara, Arto
1 / 19 shared
Vuorinen, Johannes
1 / 1 shared
Stadtmüller, Benjamin
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Kern, Klaus
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Gierz, Isabella
1 / 3 shared
Meier, Fabian
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Ast, Christian R.
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Dil, J. Hugo
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Chart of publication period
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Co-Authors (by relevance)

  • Laukkanen, Anssi
  • Corrêa Soares, Guilherme
  • Ren, Sicong
  • Freimanis, Andris
  • Biswas, Abhishek
  • Serrano, Marta
  • Karlsen, Wade
  • Marjamaa, Vuokko
  • Ronkainen, Helena
  • Vallejo-Rodriquez, Luis
  • Soares, Guilherme Corrêa
  • Andersson, Tom
  • Pakarinen, Janne
  • Pohja, Rami
  • Nandy, Supriya
  • Rantala, Juhani
  • Roiko, Andrew
  • Moilanen, Pekka
  • Vallejo Rodríguez, Luis
  • Rodriguez, Pilar Rey
  • Lindroos, Tomi
  • Lagerbom, Juha
  • Suhonen, Tomi
  • Rey Rodriguez, Pilar
  • Olsson, Pär
  • Costa, Diogo Ribeiro
  • Heikinheimo, Janne
  • Vajragupta, Napat
  • Ribeiro Costa, Diogo
  • Pinomaa, Tatu
  • Ammar, Kais
  • Forest, Samuel
  • Provatas, Nikolas
  • Arffman, Pentti
  • Efsing, Pål
  • Que, Zaiqing
  • Lindqvist, Sebastian
  • Nevasmaa, Pekka
  • Hytönen, Noora
  • Lydman, Jari
  • Kaipainen, Joni
  • Wang, Lei
  • Haapalehto, Matias
  • Jreidini, Paul
  • Reijonen, Joni
  • Antikainen, Atte
  • Balobanov, Viacheslav
  • Isakov, Matti
  • Metsäjoki, Jarkko
  • Ge, Yanling
  • Sadeghpour, S.
  • Valtonen, K.
  • Karjalainen, P.
  • Pahlevani, F.
  • Pallaspuro, S.
  • Haiko, O.
  • Javaheri, V.
  • Sarmadi, N.
  • Kömi, J.
  • Frondelius, Tero
  • Scherer, Jean-Michel
  • Mäntylä, Antti
  • Vaara, Joona
  • Uusikallio, Sampo
  • Porter, David
  • Kömi, Jukka
  • Jonsen, Pär
  • Kajberg, Jörgen
  • Suarez, Laura
  • Kallio, Marke
  • Terva, Juuso
  • Lindgren, Mari
  • Walbrühl, Martin
  • Yashchuk, Ivan
  • Kemppainen, Jukka
  • Lintunen, Pertti
  • Afkhami, S.
  • Björk, T.
  • Dabiri, Mohammad
  • Kuokkala, Veli-Tapani
  • Cailletaud, Georges
  • Verho, Tuukka
  • Apostol, Marian
  • Molnar, Wolfgang
  • Ratia, Vilma
  • Kuokkala, Veli Tapani
  • Holmberg, Kenneth
  • Valtonen, Kati
  • Oja, Olli
  • Kiilakoski, Jarkko
  • Koivuluoto, Heli
  • Vuoristo, Petri
  • Apostol, Maria
  • Kemppainen, Anu
  • Ratia-Hanby, Vilma L.
  • Heino, Vuokko
  • Waudby, Richard
  • Kivikytö-Reponen, Päivi
  • Lehtovaara, Arto
  • Vuorinen, Johannes
  • Stadtmüller, Benjamin
  • Kern, Klaus
  • Gierz, Isabella
  • Meier, Fabian
  • Ast, Christian R.
  • Dil, J. Hugo
OrganizationsLocationPeople

document

Micromechanical modelling of additively manufactured high entropy alloys to establish structure-properties-performance workflow

  • Andersson, Tom
  • Laukkanen, Anssi
  • Vallejo Rodríguez, Luis
  • Metsäjoki, Jarkko
  • Suhonen, Tomi
  • Ge, Yanling
  • Lindroos, Matti
Abstract

Additive manufacturing is a manufacturing route able to produce complex components with minimal raw-material utilization and high-level of process control. However, the rapid solidification rates, strong temperature gradients and extremely localized melting lead to non-equilibrium microstructures that require a better understanding of solid-state transformation, solidification behaviour and structure-property-performance workflow of AMed materials. HEAs unique compositions and complex microstructures slow down considerably the AM parameter optimization of these materials. Numerical simulations offer a better understanding of the structure-properties-performance of the materials with a reduced number or physical experiments. Hence, a multi-scale modelling approach is taken. For the alloy design phase, Calphad analysis together with DFT simulations and machine learning tools are used to find the most promising HEA compositions. Studying the different microstructural defects, deformation mechanisms that affect the strain hardening potential, Crystal Plasticity models are developed to evaluate the performance of AMed HEAs and the overall workflow.

Topics
  • impedance spectroscopy
  • microstructure
  • phase
  • experiment
  • simulation
  • defect
  • density functional theory
  • plasticity
  • deformation mechanism
  • additive manufacturing
  • crystal plasticity
  • machine learning
  • CALPHAD
  • rapid solidification