Zugriffsnummer 42872
Dokumenttyp Zeitschriftenartikel
Peer Review mit Peer Review
Sprache Englisch
Titel Rk material measure - a model based design
Autor(in); Institution
Seewig, Jörg; TU Kaiserslautern, Lehrstuhl für Messtechnik und Sensorik, Kaiserslautern, GERMANY
Eifler, Matthias; TU Kaiserslautern, Lehrstuhl für Messtechnik und Sensorik, Kaiserslautern, GERMANY
Hüser, Dorothee; 5.1, Oberflächenmesstechnik, PTB-Braunschweig
Meeß, Rudolf; 5.5, Wissenschaftlicher Gerätebau, PTB-Braunschweig
Quelle/Jahr Technisches Messen: 86 (2019), 9, 478 - 486
ISSN 0171-8096 (PRINT) ; 2196-7113 (ONLINE)
DOI
Verlag Berlin: De Gruyter
Freie Schlagworte Messung ; Normale ; Rk-Kenngrößen ; Kalibrierung ; Rauheit ; funktionelle Charakterisierung ; ISO 13565
Zusammenfassung The standard ISO 13565-2 defines the Rk-Parameters for the functional characterisation of technical surfaces. So far, no particular material measures for the calibration of these parameters have been defined in the international standardization. For the application and the functional behaviour of technical surfaces the Rk-Parameters however have a critical significance, so there is a demand by the industry to calibrate these parameters as they are increasingly applied for the quality assessment of workpieces. In the present paper, a proposal for suitable material measures is presented. An algorithm is described, which transforms the data of a real measured profile in a way that the exact defined parameters of Rk, Rpk and Rvk are equated. The material measures geometry corresponds to its later application and the target parameters are almost freely selectable. The approach for transforming surface profile data with the aid of the Abbott curve is introduced generically, solves an inverse problem and considers the influences from the manufacturing and measuring process. The designed material measure is manufactured with the aid of ultra-precision turning. In matters of the aspired industrial application, comparison measurements are carried out in order to examine the practical abilities of the material measure and the repeatability of the approach is proven.
Themenbereich der Metrologie Länge, dimensionelle Metrologie

Zitierung

Seewig, J., Eifler, M., Hüser, D., & Meeß, R. (2019). Rk material measure - a model based design. Technisches Messen, 86(9), 478–486. https://doi.org/10.1515/teme-2019-0091

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