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Preload Control of Spindle Bearings by Means of Shape Memory Alloys

Research output: Chapter in book/report/conference proceedingConference contributionResearch

Authors

  • Berend Denkena
  • Benjamin Bergmann
  • Christian Teige

Details

Original languageEnglish
Title of host publicationProceedings of the Machining Innovations Conference (MIC) 2020
Pages154-159
Publication statusPublished - 2020
Event20th Machining Innovations Conference for Aerospace Industry 2020 (MIC 2020) - Hannover, Germany
Duration: 2 Dec 20202 Dec 2020

Publication series

NameSSRN Electronic Journal
ISSN (Print)1556-5068

Cite this

Preload Control of Spindle Bearings by Means of Shape Memory Alloys. / Denkena, Berend; Bergmann, Benjamin; Teige, Christian.
Proceedings of the Machining Innovations Conference (MIC) 2020. 2020. p. 154-159 (SSRN Electronic Journal).

Research output: Chapter in book/report/conference proceedingConference contributionResearch

Denkena, B, Bergmann, B & Teige, C 2020, Preload Control of Spindle Bearings by Means of Shape Memory Alloys. in Proceedings of the Machining Innovations Conference (MIC) 2020. SSRN Electronic Journal, pp. 154-159, 20th Machining Innovations Conference for Aerospace Industry 2020 (MIC 2020), Germany, 2 Dec 2020. https://doi.org/10.2139/ssrn.3724134
Denkena, B., Bergmann, B., & Teige, C. (2020). Preload Control of Spindle Bearings by Means of Shape Memory Alloys. In Proceedings of the Machining Innovations Conference (MIC) 2020 (pp. 154-159). (SSRN Electronic Journal). https://doi.org/10.2139/ssrn.3724134
Denkena B, Bergmann B, Teige C. Preload Control of Spindle Bearings by Means of Shape Memory Alloys. In Proceedings of the Machining Innovations Conference (MIC) 2020. 2020. p. 154-159. (SSRN Electronic Journal). doi: 10.2139/ssrn.3724134
Denkena, Berend ; Bergmann, Benjamin ; Teige, Christian. / Preload Control of Spindle Bearings by Means of Shape Memory Alloys. Proceedings of the Machining Innovations Conference (MIC) 2020. 2020. pp. 154-159 (SSRN Electronic Journal).
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N1 - Acknowledgements The IGF-project 19590 N / 1 (“Hybride Spindel: Prozessabhängige Einstellung der Spindeldynamik zur Produktivitätssteigerung in der spanenden Bearbeitung”) has been funded by the AiF within the programme for sponsorship by Industrial Joint Research (IGF) of the German Federal Ministry of Economic Affairs and Energy based on an enactment of the German Parliament

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