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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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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in Cooperation with on an Cooperation-Score of 37%

Topics

Publications (7/7 displayed)

  • 2023Modification of the Tensile Performance of an Extruded ZK60 Magnesium Alloy with the Addition of Rare Earth Elements12citations
  • 2022Machine Learning-Based Characterization of the Nanostructure in a Combinatorial Co-Cr-Fe-Ni Compositionally Complex Alloy Film9citations
  • 2022Effect of nickel addition on enhancing nano-structuring and suppressing TRIP effect in Fe40Mn40Co10Cr10 high entropy alloy during high-pressure torsioncitations
  • 2022Combinatorial Study of Phase Composition, Microstructure and Mechanical Behavior of Co-Cr-Fe-Ni Nanocrystalline Film Processed by Multiple-Beam-Sputtering Physical Vapor Deposition8citations
  • 2022Influence of Degree of Severe Plastic Deformation on Thermal Stability of an HfNbTiZr Multi-Principal Element Alloy Processed by High-Pressure Torsion3citations
  • 2022On the enhanced hardening ability and plasticity mechanisms in a novel Mn-added CoCrNi medium entropy alloy during high-pressure torsioncitations
  • 2021Microstructure, Hardness, and Elastic Modulus of a Multibeam-Sputtered Nanocrystalline Co-Cr-Fe-Ni Compositional Complex Alloy Film17citations

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Fekete, Klaudia Horváth
1 / 4 shared
Nagy, Peter
1 / 2 shared
Najafi, Soroush
1 / 1 shared
Sheikhani, Alireza
1 / 2 shared
Sabbaghian, Mahdi
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Michler, Johann
3 / 191 shared
Nagy, Péter
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Pethö, László
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Hegedues, Zoltan
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Csabai, István
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Kaszás, Bálint
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Chowdhury, Subham
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Pham, Tran Hung
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Kishore, Kaushal
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Ghosh, Mainak
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Hegedűs, Zoltán
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Widmer, Remo
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Rohbeck, Nadia
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Szabó, Ábel
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2022
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Co-Authors (by relevance)

  • Fekete, Klaudia Horváth
  • Nagy, Peter
  • Najafi, Soroush
  • Sheikhani, Alireza
  • Sabbaghian, Mahdi
  • Michler, Johann
  • Nagy, Péter
  • Pethö, László
  • Hegedues, Zoltan
  • Csabai, István
  • Kaszás, Bálint
  • Chowdhury, Subham
  • Pham, Tran Hung
  • Kishore, Kaushal
  • Ghosh, Mainak
  • Hegedűs, Zoltán
  • Widmer, Remo
  • Rohbeck, Nadia
  • Szabó, Ábel
OrganizationsLocationPeople

article

Modification of the Tensile Performance of an Extruded ZK60 Magnesium Alloy with the Addition of Rare Earth Elements

  • Fekete, Klaudia Horváth
  • Nagy, Peter
  • Najafi, Soroush
  • Sheikhani, Alireza
  • Gubicza, Jeno
  • Sabbaghian, Mahdi
Abstract

<jats:p>The influence of rare earth (RE) elements on the microstructure and mechanical performance of an extruded ZK60 Mg alloy was studied. Two types of RE elements were added to a ZK60 material and then extruded at a ratio of 18:1. The first new alloy contained 2 wt% Y while the second one was produced using 2 wt% Ce-rich mischmetal. The microstructure, the texture, and the dislocation density in a base ZK60 alloy and two materials with RE additives were studied by scanning electron microscopy, electron backscattered diffraction, and X-ray line profile analysis, respectively. It was found that the addition of RE elements caused a finer grain size, the formation of new precipitates, and changes in the initial fiber texture. As a consequence, Y and Ce-rich RE elements increased the strength and reduced the ductility. The addition of these two types of RE elements to the ZK60 alloy decreased the work hardening capacity and the hardening exponent mainly due to grain refinement.</jats:p>

Topics
  • density
  • grain
  • grain size
  • scanning electron microscopy
  • Magnesium
  • magnesium alloy
  • Magnesium
  • strength
  • dislocation
  • texture
  • precipitate
  • ductility
  • rare earth metal