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Assessment of the impact of probe head hysteresis on the accuracy of five-axis coordinate measuring systems

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EN
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EN
One of the factors affecting the accuracy of Coordinate Measuring Systems is hysteresis of a probe head. It is important especially in case of touch trigger probes and should be taken into account during the determination of probing strategy. In this article, the authors try to assess how this phenomenon affects the accuracy of five axis coordinate systems which utilize articulating probe head. Such systems allow to measure point coordinates using rotary movements of the head what introduces changes to the probing process. The experiments presented in this paper are based on multiple measurements of the reference elements such as gauge blocks and standard ring.
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autor
  • Cracow University of Technology, Faculty of Mechanical Engineering, Laboratory of Coordinate Metrology (M-10), al. Jana Pawła II 37, 31-864 Cracow, Poland
autor
  • Cracow University of Technology, Faculty of Mechanical Engineering, Laboratory of Coordinate Metrology (M-10), al. Jana Pawła II 37, 31-864 Cracow, Poland
autor
  • Cracow University of Technology, Faculty of Mechanical Engineering, Laboratory of Coordinate Metrology (M-10), al. Jana Pawła II 37, 31-864 Cracow, Poland
autor
  • Cracow University of Technology, Faculty of Mechanical Engineering, Laboratory of Coordinate Metrology (M-10), al. Jana Pawła II 37, 31-864 Cracow, Poland
autor
  • Cracow University of Technology, Faculty of Mechanical Engineering, Laboratory of Coordinate Metrology (M-10), al. Jana Pawła II 37, 31-864 Cracow, Poland
Bibliografia
  • 1.Cauchick-Miguel P. A., King T. G. Factors which influence CMM touch trigger probe performance. International Journal of Machine Tools and Manufacture, 38(4), 1998, 363-374.
  • 2.Dobosz, M., Woźniak, A. CMM touch trigger probes testing using a reference axis. Precision Engineering, 29, 2005, 281–289.
  • 3.Gąska A., Gąska P., Gruza M., Ostrowska K., Sładek J. Assessment Of The Impact Of Stylus Length On Measurement Accuracy For Five-Axis Coordinate Measuring Systems. Proc. of 12th International Scientific Conference Coordinate Measuring Technique, Szczyrk, Polska 2016, 1-5.
  • 4.Gąska A., Gąska P., Gruza M. Simulation Model for Correction and Modeling of Probe Head Errors in Five-Axis Coordinate Systems. Applied Sciences, 6(5), 2016.
  • 5.Hocken R. J., Pereira P. H. Coordinate Measuring Machines and Systems, Second Edition. CRC Press, 2012.
  • 6.ISO 10360-5:2010: Geometrical product specifications (GPS) - Acceptance and reverification tests for coordinate measuring machines (CMM) - Part 5: CMMs using single and multiple stylus contacting probing systems, Second edition, 2010.
  • 7.Ratajczyk E., Woźniak A. Współrzędnościowe systemy pomiarowe. Oficyna Wydawnicza Politechniki Warszawskiej, 2016.
  • 8.Sładek, J: Coordinate Metrology: Accuracy of Systems and Measurements. Springer, 2016.
  • 9.Weckenmann A., Estler T., Peggs G., McMurtry D.: Probing Systems in Dimensional Metrology. CIRP Annals-Manufacturing Technology, 53(2), 2004, 657-684.
  • 10.Woźniak A.: Dokładność stykowych głowic pomiarowych maszyn współrzędnościowych. Oficyna Wydawnicza Politechniki Warszawskiej, 2010.
  • 11.Zaleski K., A study on the properties of surface – active fluids used in burnishing and shot peening processes, Advances in Science and Technology Research Journal, 10(31) 2016, 235-239.
  • 12.Zagórski I., Kuczmaszewski J., Study of chip ignition and chip morphology after milling of magnesium alloys. Advances in Science and Technology Research Journal, 10 (32), 2016, 101-108.
Uwagi
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę (zadania 2017)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-f4d3cd4f-6e2b-43e2-b448-ec4a56cde29e
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