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Calin Daniel Marioara

Calin Daniel Marioara

D-Index & Metrics

Materials Science

D-Index
49
Citations
9369
World Ranking
10497
National Ranking
11

Overview

Calin Daniel Marioara is a researcher affiliated with SINTEF in Norway, focusing on engineering and materials science. Their work spans a diverse set of subfields including aerospace engineering, mechanical engineering, materials chemistry, mechanics of materials, and biomedical engineering.

The primary topics in Calin Daniel Marioara's research include:

  • Aluminum Alloy Microstructure Properties
  • Microstructure and mechanical properties
  • Aluminum Alloys Composites Properties
  • Metallurgy and Material Forming
  • Advanced Materials Characterization Techniques
  • Metal Forming Simulation Techniques
  • Bauxite Residue and Utilization

Their scholarly output includes multiple papers published in notable venues such as:

  • SSRN Electronic Journal
  • Zenodo (CERN European Organization for Nuclear Research)
  • Materials Characterization
  • Materials Science and Engineering A
  • Acta Materialia

Recent papers by Calin Daniel Marioara cover various aspects of aluminum alloys and precipitate microstructures, with selected works including:

  • Atomic structure of solute clusters in Al-Zn-Mg alloys, 2020, Acta Materialia
  • Grain boundary structures and their correlation with intergranular corrosion in an extruded Al-Mg-Si-Cu alloy, 2020, Materials Characterization
  • Precipitation processes and structural evolutions of various GPB zones and two types of S phases in a cold-rolled Al-Mg-Cu alloy, 2020, Materials & Design
  • The evolution of precipitates in an Al-Zn-Mg alloy, 2023, Journal of Materials Research and Technology
  • Linking mechanical properties to precipitate microstructure in three Al-Mg-Si(-Cu) alloys, 2021, Materials Science and Engineering A

Collaboration is a significant part of their research, with frequent coauthors including:

  • Randi Holmestad
  • Elisabeth Thronsen
  • Sigurd Wenner
  • Sigmund J. Andersen
  • Ruben Bjørge

Best Publications

  • The crystal structure of the β′ phase in Al–Mg–Si alloys

    R. Vissers;R. Vissers;M.A. van Huis;J. Jansen;H.W. Zandbergen

  • The influence of temperature and storage time at RT on nucleation of the β phase in a 6082 Al-Mg-Si alloy

    C.D Marioara;C.D Marioara;S.J Andersen;J Jansen;H.W Zandbergen

  • Atomic model for GP-zones in a 6082 Al-Mg-Si system

    C.D. Marioara;C.D. Marioara;S.J. Andersen;J. Jansen;H.W. Zandbergen

  • The crystal structure of the ? phase in AlMgSi alloys

    Unknown

  • Modelling of the microstructure and strength evolution in Al–Mg–Si alloys during multistage thermal processing

    O.R. Myhr;Ø. Grong;H.G. Fjær;C.D. Marioara

  • The influence of alloy composition on precipitates of the Al−Mg−Si system

    C. D. Marioara;S. J. Andersen;H. W. Zandbergen;R. Holmestad

  • Crystal structure of the orthorhombic U2-Al4Mg4Si4 precipitate in the Al–Mg–Si alloy system and its relation to the β′ and β″ phases

    S.J. Andersen;C.D. Marioara;A. Frøseth;R. Vissers

  • The effect of Zn on precipitation in Al–Mg–Si alloys

    Takeshi Saito;Sigurd Wenner;Elisa Osmundsen;Calin Daniel Marioara

  • The effect of Cu on precipitation in Al–Mg–Si alloys

    Unknown

  • Composition of β″ precipitates in Al–Mg–Si alloys by atom probe tomography and first principles calculations

    Håkon S. Hasting;Anders G. Frøseth;Sigmund J. Andersen;Rene Vissers

  • The structural relation between precipitates in Al-Mg-Si alloys, the Al-matrix and diamond silicon, with emphasis on the trigonal phase U1-MgAl2Si2

    S.J. Andersen;C.D. Marioara;R. Vissers;R. Vissers;A. Frøseth

  • Post-β″ phases and their influence on microstructure and hardness in 6xxx Al-Mg-Si alloys

    C. D. Marioara;H. Nordmark;S. J. Andersen;R. Holmestad

  • Detailed atomistic insight into the β″ phase in Al–Mg–Si alloys

    Per Harald Ninive;Are Strandlie;Sverre Gulbrandsen-Dahl;Williams Lefebvre

  • Effect of natural ageing or pre-ageing on the evolution of precipitate structure and strength during age hardening of Al–Mg–Si alloy AA 6016

    O. Engler;C.D. Marioara;Y. Aruga;M. Kozuka

  • The influence of composition and natural aging on clustering during preaging in Al-Mg-Si alloys

    M. Torsæter;H. S. Hasting;W. Lefebvre;C. D. Marioara

  • Precipitates in aluminium alloys

    Sigmund Jarle Andersen;Calin Daniel Marioara;Jesper Friis;Sigurd Wenner

  • Study of intergrown L and Q′ precipitates in Al–Mg–Si–Cu alloys

    M. Torsæter;W. Lefebvre;C.D. Marioara;S.J. Andersen

  • Atomic structure of hardening precipitates in an Al–Mg–Zn–Cu alloy determined by HAADF-STEM and first-principles calculations: relation to η-MgZn2

    Calin D. Marioara;Williams Lefebvre;Sigmund J. Andersen;Jesper Friis

  • Atomic Structures of Precipitates in Al–Mg–Si Alloys with Small Additions of Other Elements

    Takeshi Saito;Eva Anne Mørtsell;Sigurd Wenner;Calin Daniel Marioara

  • Improving Thermal Stability in Cu-Containing Al-Mg-Si Alloys by Precipitate Optimization

    Calin D. Marioara;Sigmund J. Andersen;Jostein Røyset;Oddvin Reiso

  • Bonding in MgSi and Al-Mg-Si compounds relevant to Al-Mg-Si alloys

    Anders G. Frøseth;Ragnvald Høier;Peter M. Derlet;Sigmund J. Andersen

  • The influence of alloy composition on precipitates of the Al-Mg-Si system

    Unknown

  • The Effect of Preaging Deformation on the Precipitation Behavior of an Al-Mg-Si Alloy

    Katharina Teichmann;Calin D. Marioara;Sigmund J. Andersen;Knut Marthinsen

Frequent Co-Authors

Randi Holmestad
Randi Holmestad Norwegian University of Science and Technology
Williams Lefebvre
Williams Lefebvre Centre national de la recherche scientifique, CNRS
John C. Walmsley
John C. Walmsley University of Cambridge
Odd Sture Hopperstad
Odd Sture Hopperstad Norwegian University of Science and Technology
Tore Børvik
Tore Børvik Norwegian University of Science and Technology
Henny W. Zandbergen
Henny W. Zandbergen Delft University of Technology
Rustam Kaibyshev
Rustam Kaibyshev Belgorod National Research University
Yanjun Li
Yanjun Li Norwegian University of Science and Technology
John Banhart
John Banhart Helmholtz-Zentrum Berlin für Materialien und Energie
Quentin M. Ramasse
Quentin M. Ramasse University of Leeds

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