Dieses Bild zeigt Pascal  Heinzelmann

Pascal Heinzelmann

M.Sc.

Wissenschaftlicher Mitarbeiter
Institut für Umformtechnik
Blechumform-und Schneidverfahren

Kontakt

+49 711 685 83849

LinkedIn
Visitenkarte (VCF)

Holzgartenstraße 17
70174 Stuttgart
Deutschland
Raum: 4.002

Fachgebiet

  • Scherschneiden
  1. 2024

    1. Heinzelmann, P., Görz, M., Riedmüller, K. R., & Liewald, M. (2024). A strategy for minimizing the computational time of simulations involving near-surface embossing of sheet metal materials. Material Forming: ESAFORM 2024, 2262--2270. https://doi.org/10.21741/9781644903131-249
    2. Briesenick, D., Liewald, M., & Heinzelmann, P. (2024). Plate Roll Embossing Process - The Efficient and Flexible Embossing of Sheet Metals. In K. Mocellin, P.-O. Bouchard, R. Bigot, & T. Balan (Hrsg.), Proceedings of the 14th International Conference on the Technology of Plasticity - Current Trends in the Technology of Plasticity (1st ed. 2024, S. 78--89). Springer Nature Switzerland and Imprint Springer. https://doi.org/10.1007/978-3-031-40920-2_9
  2. 2023

    1. Heinzelmann, P., Briesenick, D., & Liewald, M. (2023). Characterization of the Mechanical Properties of Selectively Embossed Sheet Metal Materials Under Multi-Axial Loads (No. 1). 1284(1), Article 1. https://doi.org/10.1088/1757-899X/1284/1/012043
    2. Heinzelmannn, P., Briesenick, D., & Liewald, M. (2023). Modifying mechanical properties of sheet metal materials by work hardening mechanisms induced by selective embossing. In Lukasz Madej, Mateusz Sitko, Konrad Perzynski (Hrsg.), Material Forming (S. 951--958). Materials Research Forum LLC. https://doi.org/10.21741/9781644902479-104
  3. 2022

    1. Briesenick, D., Liewald, Mathias., Walzer, S., & Heinzelmann, P. (2022). Manufacturing of high strength sheet metal parts with enhanced mechanical properties by using tailored embossed blankse. 6th International Conference on Steels in Cars and Trucks.
  4. 2021

    1. Heinzelmann, P., Spreng, F., Sollich, D., Eberhard, P., & Williams, J. R. (2021). Analysis of the SPH interpolation moments matrix with regard to the influences of the discretization error in adaptive simulations. Universität Stuttgart. https://doi.org/10.18419/OPUS-11504
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