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Grinding wheel wear prediction at double face grinding with planetary kinematics using analytic simulation

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Abstract

For optimization purposes at double face grinding with planetary kinematics, an additional development of the tools is necessary. Designing requirement-oriented tools implies deep-process knowledge. Within researches at the Institute for Machine Tools and Factory Management, an analytical simulation model was developed. Including the chip thickness into the model, it will be possible to calculate the tool wear. By the help of analytical simulations, wear-optimized process strategies and requirement-oriented tools can be developed.

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References

  1. Funck A (1995) Planschleifen mit Läppkinematik. Dissertation, Technical University Berlin

  2. Uhlmann E, Ardelt T, Daus N (1998) Kinematische Analyse von Zweischeibenmaschinen. Werkstatttechnik 88(6):273–276

    Google Scholar 

  3. Rußner C (2006) Präzisionsplanschleifen von Al2O3Keramik unter Produktionsbedingungen. Dissertation, Technische Universität Dresden

  4. Uhlmann E, Sammler C, Hoghé T, Borsio Klein T (2006) Einsatz innovativer Schleifverfahren macht Hochleistungsbearbeitung wirtschaftlicher. Maschinenmarkt Issue 30:22–26

    Google Scholar 

  5. Oliveira JFG, Silva EJ, Guo C, Hashimoto F (2009) Industrial challenges in grinding. Ann CIRP 58:663–680

    Article  Google Scholar 

  6. Uhlmann E, Hoghé T (2011) Hoppla – Entwicklung einer wirtschaftlichen Bearbeitungstechnologie für das Hochgeschwindigkeits- und Hochleistungsplanschleifen mit Planetenkinematik. VDI/VDE-IT, Berlin

    Google Scholar 

  7. Uhlmann E, Hoghé T (2012) Wear reduction at double face grinding with planetary kinematics. Prod Eng Res Dev 6(3):237–242

    Article  Google Scholar 

  8. Spur G, Simpfendörfer D (1985) Simulation der Kinematik des Plan(parallel)läppens. Zeitschrift für wirtschaftlichen Fabrikbetrieb 80(7):318–324

    Google Scholar 

  9. Simpfendörfer D (1988) Entwicklung und Verifizierung eines Prozeßmodells beim Planläppen. Dissertation, Technical University Berlin

  10. Spur G, Funck A, Engel A (1995) Problems of flatness in plane surface grinding. Trans NAMRI/SME 13:97–102

    Google Scholar 

  11. Uhlmann E, Ardelt T, Stingl P, Rußner C, Magg T, Reiser A (1999) Planschleifen mit Läppkinematik. Ind Diamanten Rdsch IDR 33(1):79–83

    Google Scholar 

  12. Uhlmann E, Ardelt T (2000) Influence of kinematics on the face grinding process on lapping machines. Ann CIRP 48(1):281–284

    Article  Google Scholar 

  13. Uhlmann E, Ardelt T (2000) Kinematik und Prozeßverhalten beim Planschleifen mit Läppkinematik. Feinstbearbeitung technischer Oberflächen, Tagungsband zum 5. Int. IWF-Kolloquium pp 93–105

  14. Ardelt T (2001) Einfluss der Relativbewegung auf den Prozess und das Arbeitsergebnis beim Planschleifen mit Planetenkinematik. Dissertation, Technical University Berlin

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Uhlmann, E., Hoghé, T. & Kleinschnitker, M. Grinding wheel wear prediction at double face grinding with planetary kinematics using analytic simulation. Int J Adv Manuf Technol 69, 2315–2321 (2013). https://doi.org/10.1007/s00170-013-5197-1

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  • DOI: https://doi.org/10.1007/s00170-013-5197-1

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