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Air gears must meet high performance criteria for accuracy; therefore, quality control is necessary for their production. CMM Software determines the capabilities and scope of the measuring machines. Measuring machines equipped with specialized software for the measurement of the gears are commercially available. An example might be a company offering Wenzel TGEAR XY software. This specialized software for the measurement of gears allows fully automatic measurement of the contour deviation (involute), line tooth pitch, and radial run out, tooth flank topography. If you do not have a special software to measure the gear, you require a measurement process based on 3D CAD model of the gear. It is necessary in this case, the preparation of a strategy based on measurements of 3D CAD model and load points or paths with the CAD model. The results of the measurement refer to the CAD model treating it as the nominal model. Item will present the methodology of measurement of cylindrical gears using a standard CMM software. Cylindrical gears can be measured through non-contacting or contacting methods – measuring point or scanning. The choice of measurement method should be carried out taking into account the accuracy of gear and taking into account the capabilities of the system and measurement needs. An important advantage of the measurement using the gears multipurpose measuring software is that it is possible to measure any geometry of the wheels in relation to the CAD model. Using this measurement strategy avoids the need to purchase additional software, the measuring machine and its setup. You should only choose a method of analysis that will be carried out directly in the environment-measuring machine, or will be made in the CAD system based on the geometry acquired during the measurement with respect to the virtual model. In the second case, export is needed in the appropriate format measurement data to CAD software.
Słowa kluczowe
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Czasopismo
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Tom
Strony
37--42
Opis fizyczny
Bibliogr. 8 poz., rys.
Twórcy
autor
- Rzeszow University of Technology Faculty of Mechanical Engineering and Aeronautic PowstaĔców Warszawy Av 8, 35-959 Rzeszow, Poland
autor
- Rzeszow University of Technology Faculty of Mechanical Engineering and Aeronautic PowstaĔców Warszawy Av 8, 35-959 Rzeszow, Poland
autor
- Rzeszow University of Technology Faculty of Mechanical Engineering and Aeronautic PowstaĔców Warszawy Av 8, 35-959 Rzeszow, Poland
autor
- Rzeszow University of Technology Faculty of Mechanical Engineering and Aeronautic PowstaĔców Warszawy Av 8, 35-959 Rzeszow, Poland
Bibliografia
- [1] Budzik, G., Geometrical Accuracy of Aircraft Engine Turbine Blades, Oficyna Wydawnicza Politechniki Rzeszowskiej, Rzeszow 2013.
- [2] Budzik, G., Dziubek, T., Markowska, O., Tutak, M., Automatyzacja i robotyzacja pomiarow współrzędnościowych, Stal Metale & Nowe Technologie ISSN 1895-6408, 5-6/2011, s. 34-36.
- [3] Budzik, G., Pisula, J., Dziubek, T., Sobolewski, B., Zaborniak, M., Zastosowanie systemow CAD/RP/CMM w procesie projektowania kół zębatych walcowych o zębach prostych, Miesięcznik Naukowo Techniczny 2013, Mechanik, PL ISSN 0025-6552, NR 12/2011, s. 988, 2011.
- [4] Dziubek, T., Analiza współrzędnościowych systemow pomiarowych koł zębatych, Praca doktorska, Wydział Budowy Maszyn i Lotnictwa, Politechnika Rzeszowska, Rzeszow 2012.
- [5] Dziubek, T., Budzik, G., Kozik, B., Sobolewski, B., The determination of accuracy of test gear wheel for aeronautical dual-power path gear before heat treatment, Journal of KONES Powertrain and Transport, Vol. 20, No. 2, Warszawa 2013.
- [6] Ratajczyk, E., Wspołrzędnościowa technika pomiarowa, Oficyna Wydaw. Politechniki Warszawskiej, Warszawa 2005.
- [7] Marciniec, A., Budzik, G., Dziubek, T., Automated measurement of bevel gears of the aircraft gearbox using GOM, Journal of KONES Powertrain and Transport, Vol. 18, No. 2, pp. 289-292, Warszawa 2011.
- [8] Zaborniak, M., Identyfikacja geometrii kół zębatych z wykorzystaniem współrzędnościowych technik pomiarowych i systemow CAD, Praca doktorska, Wydział Budowy Maszyn i Lotnictwa, Politechnika Rzeszowska, Rzeszow 2013.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-afdb0ba8-0cf5-4901-b633-45c88a95f609