Investigation of the possible applications for microtextured rolling bearings

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Original languageEnglish
Article number1012343
JournalFrontiers in Manufacturing Technology
Volume2
Publication statusPublished - 20 Oct 2022

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Investigation of the possible applications for microtextured rolling bearings. / Kelley, Josephine; Poll, Gerhard; Pape, Florian.
In: Frontiers in Manufacturing Technology, Vol. 2, 1012343, 20.10.2022.

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Kelley J, Poll G, Pape F. Investigation of the possible applications for microtextured rolling bearings. Frontiers in Manufacturing Technology. 2022 Oct 20;2:1012343. doi: 10.3389/fmtec.2022.1012343
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title = "Investigation of the possible applications for microtextured rolling bearings",
author = "Josephine Kelley and Gerhard Poll and Florian Pape",
note = "This work was supported by the Federal Ministry for Economic Affairs and Energy (BMWi) through the “Antriebsstrang 2025: Energieeffiziente Prozessketten zur Herstellung eines reibungs-gewichts- und lebensdaueroptimierten Antriebsstrangs, TP3 Gleichlaufgelenk” project, and also by the German Research Foundation (DFG), through the “Hartfr{\"a}sen von Mikroschmiern{\"a}pfen zur Reibungs-und Verschlei{\ss}reduktion in hochbelasteten W{\"a}lzkontakten” project (project number 407531729). This work was supported by the compute cluster, which is funded by the Leibniz Universit{\"a}t Hannover, the Lower Saxony Ministry of Science and Culture (MWK), and the German Research Foundation (DFG)",
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TY - JOUR

T1 - Investigation of the possible applications for microtextured rolling bearings

AU - Kelley, Josephine

AU - Poll, Gerhard

AU - Pape, Florian

N1 - This work was supported by the Federal Ministry for Economic Affairs and Energy (BMWi) through the “Antriebsstrang 2025: Energieeffiziente Prozessketten zur Herstellung eines reibungs-gewichts- und lebensdaueroptimierten Antriebsstrangs, TP3 Gleichlaufgelenk” project, and also by the German Research Foundation (DFG), through the “Hartfräsen von Mikroschmiernäpfen zur Reibungs-und Verschleißreduktion in hochbelasteten Wälzkontakten” project (project number 407531729). This work was supported by the compute cluster, which is funded by the Leibniz Universität Hannover, the Lower Saxony Ministry of Science and Culture (MWK), and the German Research Foundation (DFG)

PY - 2022/10/20

Y1 - 2022/10/20

U2 - 10.3389/fmtec.2022.1012343

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JO - Frontiers in Manufacturing Technology

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