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Prof. Dr.-Ing. habil. Carsten Heinzel

  1. Institute
  2. Staff
  3. Carsten Heinzel
Prof. Dr.-Ing. habil.

Details

Prof. Dr.-Ing. habil. Carsten Heinzel

Stellv. Hauptabteilungsleiter Fertigungstechnik

Departments: Manufacturing Technologies

Phone
+49 421 218 51110
Email
heinzel@iwt.uni-bremen.de
Office
Leibniz-Institut für Werkstofforientierte Technologien - IWT
FZB - Room 0470
Badgasteiner Str. 3
28359 Bremen

Personal data

Research profiles

Akademische Ausbildung mit Abschluss

1994   

Diplom

1988 – 1994   

Studium des Maschinenbaus (Technische Universität Berlin)

Studienrichtung: Strömungsmaschinen

Wissenschaftliche Abschlüsse

08/2009          

Habilitation am Fachbereich Produktionstechnik der Universität Bremen und Erlangung der Lehrbefugnis für das Fachgebiet Fertigungstechnik

Thema der Habilitationsschrift: Schleifprozesse verstehen: Zum Stand der Modellbildung und Simulation sowie unterstützender experimenteller Methoden

01/2000

Promotion zum Dr.-Ing.

Thema der Dissertation: Methoden zur Untersuchung und Optimierung der Kühlschmierung beim Schleifen

Betreuer: Prof. Brinksmeier

Beruflicher Werdegang ab Studienabschluss

seit 06/2012   

Honorarprofessor für das Fachgebiet Fertigungsverfahren/ Fertigungstechnik

Stellvertretender Leiter des Fachgebiets Fertigungsverfahren und Labor für Mikrozerspanung der Universität Bremen

Stellvertretender Leiter der Hauptabteilung Fertigungstechnik im IWT

06/2012 – 02/2019    

Leiter der Abteilung Werkstofforientierte Fertigung im IWT

06/1998 – 06/2012    

Oberingenieur in der Hauptabteilung Fertigungstechnik des IWT und im Fachgebiet Fertigungsverfahren und Labor für Mikrozerspanung der Universität Bremen

Stellvertretender Leiter des Fachgebiets Fertigungsverfahren und Labor für Mikrozerspanung der Universität Bremen

10/1994 – 05/1998    

Wissenschaftlicher Mitarbeiter im IWT

Stellvertretender Leiter der Abt. Fertigungstechnische Verfahrensintegration

Awards

10/2000

3. FAG-Kugelfischer-Preis für die Dissertationsschrift

Offices and Memberships

 

Internationale Akademie für Produktionstechnik (CIRP): Associate Membership

 

Arbeitsgemeinschaft Wärmebehandlung und Werkstofftechnik e.V. (AWT)

 

Gutachtertätigkeiten für die

- Österreichische Forschungsförderungsgesellschaft FFG

- Europäische Kommission

Latest 10 publications

  • Schieber, C., Hettig, M., Muller, V., Zaeh, M. F., Heinzel, C. 2023.
    Modeling of laser processing as a distortion compensation strategy for profile grinding. Production Engineering-Research and Development. 17 (1), 47-56. DOI: 10.1007/s11740-022-01144-9. OPEN ACCESS
  • Zmich, R., Heinzel, C. 2023.
    3D-Printed MWF Nozzles for Improved Energy Efficiency and Performance During Grinding.Manufacturing Driving Circular Economy Manufacturing Driving Circular Economy. Kohl, H.; Seliger, G.; Dietrich, F., Hrsg. Springer, 3-11. DOI: 10.1007/978-3-031-28839-5_1. ISBN: 978-3-031-28838-8. OPEN ACCESS
  • Adam, B., Riemer, O., Rickens, K., Heinzel, C. 2023.
    Precision grinding of BK7 glass with coarse-grained diamond grinding wheels. euspen’s 23rd International Conference & Exhibition, Technical University of Denmark, Copenhagen, DK, 12-16 June 2023. Riemer, O., Nisbet, C., Philips, D., Hrsg. Technical University of Denmark, Copenhagen, DK: euspen, 2023, 501-502. ISBN: 978-1-9989991-3-2.
  • Langenhorst, L., Sölter, J., Heinzel, C. 2022.
    Partitioning of primary shear zone heat in face milling. CIRP Annals. 71 (1), 53-56. DOI: 10.1016/j.cirp.2022.04.010. OPEN ACCESS
  • Schieber, C., Hettig, M., Müller, V., Zaeh, M. F., Heinzel, C. 2022.
    Modeling of laser processing as a distortion compensation strategy for profile grinding. Production Engineering. , 47-56. DOI: 10.1007/s11740-022-01144-9. OPEN ACCESS
  • Schieber, C., Hettig, M., Zaeh, M., Heinzel, C. 2022.
    Modeling of Deep Rolling as a Distortion Compensation Strategy during Profile Grinding. Key Engineering Materials. 926 , 897-905. DOI: 10.4028/p-kl033k. OPEN ACCESS
  • Schieber, C., Hettig, M., Zaeh, M. F., Heinzel, C. 2022.
    Combination of Thermal and Mechanical Strategies to Compensate for Distortion Effects during Profile Grinding. Machines. 10 (12), DOI: 1240 10.3390/machines10121240. OPEN ACCESS
  • Eich, M., Karahan, A., Ljatifi, B., Langenhorst, L., Meyer, D., Heinzel, C. 2022.
    Simulation of internal material loads caused by simultaneous contacts in grinding with predominantly mechanical impact. Procedia CIRP. 108 , 352-357. DOI: 10.1016/j.procir.2022.03.058. OPEN ACCESS
  • Schieber, C., Hettig, M., Zäh, M., Heinzel, C. 2022.
    Verzugskompensationen beim Profilschleifen mittels simulativ ausgelegter thermischer und mechanischer Oberflächenbearbeitung.Jahrbuch Schleifen, Honen, Läppen und Polieren Jahrbuch Schleifen, Honen, Läppen und Polieren. Hoffmeister, H.-W., Denkena, B., Hrsg. Vulkan Verlag, 2-20. ISBN: 978-3-8027-3176-1.
  • Heinzel, J., Guba, N., Hüsemann, T., Heinzel, C. 2022.
    Identifikation thermischer Prozessgrenzen beim Schleifen. Schweizer Schleif-Symposium, 2022, Zürich, 06-07.09.2022. Zürich: 2022,
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Leibniz-Institut für 
Werkstofforientierte Technologien - IWT

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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
      • Advancement of women
      • Inclusion
    • 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
        • Microscopy of Building Materials & Historic preservation
        • 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 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
    • Promotion of Young Talent
      • Students
      • Undergraduates
    • Exchange Programs
  • University & Teaching
    • Research Groups
      • Materials Engineering/Metals
      • Mechanical Process Engineering
      • Production Processes
    • Lectures
    • Theses
  • 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
        • Liquid metal: processing tool for recycling
    • Press
      • Press Releases
      • Press Archiv
    • HTM
    • Annual Report
  • Network & Partners
    • Associations & Committees
    • Links from R&D
  • DE
  • EN
Plain Language