Auflistung Fakultät für Maschinenbau nach Schlagwort "Cooling"

Auflistung Fakultät für Maschinenbau nach Schlagwort "Cooling"

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  • Denkena, Berend; Bergmann, Benjamin; Gartzke, Tobias; Wilckens, Michael ([Cham] : Springer International Publishing, 2022)
    This study presents original research of the investigation of the coolant supply to the contact area with two different approaches. The cooling and lubrication are key aspects of manufacturing processes such as grinding ...
  • Behrens, Bernd-Arno; Bouguecha, Anas; Gaebel, Christoph Michael; Moritz, Jörn; Schrödter, Jens (Amsterdam : Elsevier, 2014)
    The importance of high-strength steel concepts for car bodies has increased in recent years due to the necessity of weight reduction and improved crash safety. By using hot stamping or also known as press hardening of boron ...
  • Behrens, Bernd-Arno; Hübner, S.; Sunderkötter, C.; Gebel, L.; Gnaß, S.; Berndt, G.; Trimborn, C.; Pfeffer, C. (Bristol : Institute of Physics Publishing, 2018)
    Hot-stamped components are an important part in steel-intensive automobile lightweight design in which the use of the heat-treatable steel 22MnB5 has been established. However, the field of application is limited by the ...
  • Behrens, Bernd-Arno; Bonk, Christian; Hübner, Sven; Uhe, Johanna; Klie, Roman; Moritz, Jörn (London : Elsevier Ltd., 2017)
    Due to the increasing demand for vehicles with a low fuel consumption and consequently low emissions, lightweight construction is an important task in the automotive industry. High-strength profile parts reduce the total ...
  • Malik, I.Y.; Lorenz, U.; Chugreev, A.; Behrens, B.-A. (Bristol : Institute of Physics Publishing, 2019)
    Tools and their maintenance costs in hot forging processes account for a considerable proportion of the total components' costs. Forging tools undergo extreme heating and subsequent cooling during the forging process and ...
  • Behrens, Bernd-Arno; Schröder, Jörg; Brands, Dominik; Brunotte, Kai; Wester, Hendrik; Scheunemann, Lisa; Uebing, Sonja; Kock, Christoph (Berlin ; Heidelberg : Springer, 2021)
    The aim of this work is the adjustment of an advantageous compressive residual stress profile in hot-formed components by intelligent process control with tailored cooling from the forging heat. The feasibility and potential ...

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