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M.Sc. Rahel Jedamski

Darstellung eines Netzwerks mit miteinander verbundenen Knotenpunkten in einem komplexen Muster.
  1. Institute
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  3. Rahel Jedamski
M.Sc.

Details

M.Sc. Rahel Jedamski

Research Scientist

Departments: Physical Analysis , Materials Science

Phone
+49 421 218 51326
Email
jedamski@iwt-bremen.de
Office
Leibniz-Institut für Werkstofforientierte Technologien - IWT
FZB - Room 1130
Badgasteiner Str. 3
28359 Bremen

Personal data

Research profiles

Barkhausen noise
Micromagnetics
Grinding burn
Surface integrity
 

Academic education with degree

10/2016 – 10/2018Master's degree in Production Engineering (University of Bremen; specialization in Materials Science)
 
10/2012 – 09/2016Bachelor's degree in Production Engineering (University of Bremen)

 

Professional career since graduation

Since 10/2018Research scientist at Leibniz-IWT (Physical Analytics)

Latest 10 publications

  • Jedamski, R., Kuhlmann, G., Rößler, M., Karpuschewski, B., Dix, M., Epp, J. 2024.
    Towards developing a control of grinding processes using a combination of grinding power evaluation and Barkhausen noise analysis. Production Engineering. , DOI: 10.1007/s11740-023-01247-x. OPEN ACCESS
  • Kuhlmann, G., Jedamski, R., Heinzel, C. 2024.
    Usage of Barkhausen noise analysis for detection of surface integrity properties in different grinding steps. ICBM - International Conference on Barkhausen Noise and Micromagnetic Testing, Tampere, Finnland, 24-25.09.2024. Tampere, Finnland: Tampere University, 15, 2024, ISBN: ISBN 978-952-03-3450-5. OPEN ACCESS
  • Jedamski, R., Kuhlmann, G., Karpuschewski, B., Epp, J. 2024.
    Detection of thermo-mechanical damages by in-process Barkhausen Noise Analysis combined with Grinding Power Evaluation. Procedia CIRP. 123 , 71-76. DOI: 10.1016/j.procir.2024.05.015. OPEN ACCESS
  • Jedamski, R., Epp, J. 2024.
    Suitability of different micromagnetic measurement methods for the detection of thermo-mechanical surface damages from grinding. CIRP Journal of Manufacturing Science and Technology. 51 , 47-56. DOI: 10.1016/j.cirpj.2024.04.003. OPEN ACCESS
  • Jedamski, R., Gerhardt, B., Müller, Ch., Martinez, J., Epp, J. 2023.
    Detectability of Thermomechanical Surface Damages on Quenched and Tempered, Nitrided and Case-Hardened Steels by Barkhausen Noise Analysis. HTM Journal of Heat Treatment and Materials. 78 (1), 32-48. DOI: 10.1515/htm-2022-1036.
  • Rößler, M., Jedamski, R., Heinzel, J., Karpuschewski, B., Epp, J., Dix, M. 2022.
    Method for monitoring the workpiece‘s surface integrity during non-circular grinding.wt Werkstattstechnik WT WERKSTATTSTECHNIK. 112 (11-12), 743-749. DOI: 10.37544/1436-4980-2022-11-12-17. OPEN ACCESS
  • Jedamski, R., Heinzel, J., Karpuschewski, B., Epp, J. 2022.
    In-Process Measurement of Barkhausen Noise for Detection of Surface Integrity during Grinding. Applied Sciences. 12 (9), DOI: 10.3390/app12094671. OPEN ACCESS
  • Rößler, M., Jedamski, R., Heinzel, J. Karpuschewski, B., Epp, J., Dix, M. 2022.
    Überwachung der Randzone beim Umrundschleifen.wt Werkstatttechnik WT Werkstatttechnik. 112 (11-12), 743-749. DOI: 10.375544/1436-4980-2022-11-12-17.
  • Heinzel, J., Jedamski, R., Rößler, M., Karpuschewski, B., Epp, J., Dix, M. 2022.
    Hybrid approach to evaluate surface integrity based on grinding power and Barkhausen noise. Procedia CIRP. 108 , 489-494. DOI: 10.1016/j.procir.2022.03.076. OPEN ACCESS
  • Heinzel, J., Jedamski, R., Epp, J., Karpuschewski, B. 2021.
    In-process measurement of Barkhausen noise and resulting productivity increase potential in grinding of case hardened steel. CIRP Journal of Manufacturing Science and Technology. 32 , 37-45. DOI: 10.1016/j.cirpj.2020.11.011.
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Leibniz-Institut für 
Werkstofforientierte Technologien - IWT

Badgasteiner Str. 3
28359 Bremen
Germany

Tel.: (0421) 218-51400
Fax: (0421) 218-51333

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  • Home
  • Institute
    • About Us
      • Board of Directors
      • History
        • Directorate History of the of Materials Engineering
        • Directorate History of the Process Engineering
        • Directorate History of the Manufacturing Technology
      • Good scientific practice
      • Alumni
      • Work and family
      • Equality
      • Inclusion
      • Open Science
    • Organisation Chart
    • Founder
    • Leibniz Association
    • Boards
    • Staff
    • Services and Support
      • Workshop
      • Administration
        • Publication of Orders
      • IT
      • Science Communication
    • Contact
    • Getting Here
  • Research
    • Scientific Departments
      • Materials Engineering
        • Heat Treatment
        • Surface Technology
        • Lightweight Materials
        • Mechanical Properties
        • Physical Analysis
        • Metallographic Analysis
        • Metallurgy and Metal Forming
      • Process Engineering
        • Melt Atomization and Spray Forming
        • Multiphase Flow, Heat and Mass Transfer
        • Processing of functional materials
        • Reactive Spray Deposition Technology
      • Manufacturing Technologies
        • Laboratory for Precision Machining (LFM)
        • Cutting and Mechanical Surface Treatment
        • Abrasive Processes and Gear Technology
      • Institute for Materials Testing (MPA)
        • Civil Engineering
        • Metallic Materials and Structures
        • Microbiology
        • Quality Management
    • Research Priorities
      • Additive Manufacturing
        • Current Projects
        • Completed projects
      • Hydrogen Technologies
        • Current Projects
      • Digitization
    • Priority Programmes
      • Collaborative Research Centres
        • CRC TRR 136
        • SFB 1232
      • Priority Programmes
        • SPP 2289
        • SPP 2231
        • SPP 2122
        • SPP 2086
        • SPP 2080
        • SPP 2074
        • SPP 2045
        • SPP 2013
        • SPP 2006
        • SPP 1980
        • SPP 1934
        • SPP 1713
        • SPP 1679
      • Research Units
        • FOR 2688
        • FOR 1845
    • Technology and Knowledge Transfer
    • Publications
  • Young Talent & Career
    • Job Offers
    • Education
    • Offers for students
    • Offers for undergraduates
    • Exchange Programs
  • University & Teaching
    • Research Groups in Teaching
      • Materials Engineering/Metals
      • Mechanical Process Engineering
      • Production Processes
      • Civil and Environmental Engineering
    • Theses
    • Student Jobs
  • Media
    • News
      • Current News
    • Events
      • Current Events
      • IWT & friends - Industry and Cooperation Days
      • IWT-Alumnitag
      • Digital event series: "Leibniz-IWT live"
        • Application of deep learning image recognition techniques
        • Rapid identification of microorganisms with the MALDI bio
        • Towards Useful Ontologies in Material Science Engineering
        • Digital material-oriented production
        • Introduction to atom probe tomography and its application
        • The recyclable material aerated concrete
        • Artificial intelligence in production preparation
        • Material development for laser additive manufacturing
        • Flame-Made Metal Sulfide Nanoparticles
        • Schadensanalyse und Werkstoffprüfung an der MPA
        • Zusammenhänge zwischen Legierungssystem, Einsatzhärten
    • Press
      • Press Releases
      • Press Archiv
    • HTM
    • Annual Report
  • Network & Partners
    • Associations & Committees
    • Links from R&D
  • DE
  • EN
Plain Language