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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in Cooperation with on an Cooperation-Score of 37%

Topics

Publications (4/4 displayed)

  • 2024Experimental Investigations in the Processing of AISI H11 Powder Blends Enriched with Tungsten Carbide Nanoparticles for the Additive Manufacturing of Tailored Hot Working Tools in the Directed Energy Deposition (DED-LB/M)—Impact of Tungsten Carbide Nanoparticles on Microstructural and Mechanical Characteristicscitations
  • 2024Experimental Investigations in the Processing of AISI H11 Powder Blends Enriched with Tungsten Carbide Nanoparticles for the Additive Manufacturing of Tailored Hot Working Tools in the Directed Energy Deposition (DED-LB/M)—Impact of Tungsten Carbide Nanoparticles on Microstructural and Mechanical Characteristicscitations
  • 2022Generation of Polyamide 12 Coatings on Stainless Steel Substrates by Directed Energy Deposition with a Thulium-Doped Fiber Laser (DED-LB/P)7citations
  • 2021Consolidation of thermoplastic coatings by means of a thulium-doped fiber laser8citations

Places of action

Chart of shared publication
Schmidt, Michael
4 / 53 shared
Nikas, Dimitrios
1 / 6 shared
Kohlstruck, Jan
2 / 3 shared
Vetter, Johannes
2 / 5 shared
Hentschel, Oliver
3 / 6 shared
Krakhmalev, Pavel
2 / 24 shared
Dimitrios, Nikas
1 / 3 shared
Sommereyns, Alexander
1 / 3 shared
Heberle, Johannes
1 / 1 shared
Huber, Florian
1 / 8 shared
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2024
2022
2021

Co-Authors (by relevance)

  • Schmidt, Michael
  • Nikas, Dimitrios
  • Kohlstruck, Jan
  • Vetter, Johannes
  • Hentschel, Oliver
  • Krakhmalev, Pavel
  • Dimitrios, Nikas
  • Sommereyns, Alexander
  • Heberle, Johannes
  • Huber, Florian
OrganizationsLocationPeople

article

Generation of Polyamide 12 Coatings on Stainless Steel Substrates by Directed Energy Deposition with a Thulium-Doped Fiber Laser (DED-LB/P)

  • Schmidt, Michael
  • Sommereyns, Alexander
  • Wittmann, Alexander
  • Hentschel, Oliver
Abstract

Due to their good material properties (e.g., corrosion and wear resistance, biocompatibility), thermoplastic materials like polyamide 12 (PA12) are interesting for functional coatings on metallic components. To ensure a spatially resolved coating and to shorten the process chain, directed energy deposition of polymer powders by means of a laser beam (DED-LB/P) offers a promising approach. Due to characteristic absorption bands, the use of a thulium fiber laser with a wavelength of 1.94 μm is investigated in a DED-LB/P setup to generate PA12 coatings on stainless steel substrates without the need to add any absorbing additives. The influence of the energy density and powder mass flow was analyzed by infrared thermography. Furthermore, the coatings were characterized by differential scanning calorimetry, laser-scanning-microscopy, optical microscopy and cross-cutting tests. The results in this study demonstrate for the first time the basic feasibility of an absorber-free DED-LB/P process by using a thulium fiber laser. PA12 coatings with a low porosity and good adhesion are achievable. Depending on the application-specific requirements, a trade-off must be made between the density and surface quality of the PA12 coatings. The use of infrared thermography is appropriate for in-situ detection of process instabilities caused by an excessive energy input.

Topics
  • Deposition
  • density
  • impedance spectroscopy
  • surface
  • energy density
  • stainless steel
  • corrosion
  • wear resistance
  • differential scanning calorimetry
  • porosity
  • optical microscopy
  • thermoplastic
  • directed energy deposition
  • biocompatibility
  • Thulium
  • thermography