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Modeling of rough rotary milling of crankshaft pins

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Języki publikacji
EN
Abstrakty
EN
The development of the modern automotive industry requires a quick adaptation of new production methods. This is possible thanks to software capable of simulating manufacturing processes. The paper discusses the modeling of the machining operation of a crankshaft’s crankpins for a diesel engine with the use of the planetary milling method. i.e., modeling of milling operation when a disc milling cutter, having its cutting inserts directed inwards, is performing rotary motion, and at the same time, the axis of this milling cutter circulates around the axis of a machined crankpin. For this purpose, a geometrical model of the machining of the crankshaft’s crankpin has been developed. Based on the design documentation of the crankshaft of the 4C90 type diesel engine and the documentation of the Steyr internal disc milling cutter, their CAD models have been developed, and the both models were linked together with suitable kinematic dependencies. In the next step, the crankpin having a length of 25 mm was divided by planes (in quantity lp=21) into 1.25 mm sections. On the main cutting edge of two cutting inserts of the disc milling cutter, points were marked at intersection locations with these planes. Using the Inventor 2016 system, twelve spline curves have been generated for each plane because each plane intersects 12 cutting inserts mounted in cassettes positioned around the circumference of the body of the disc milling cutter. Next, the spline curves were brought to a common coordinate system, rotating them at an angle resulting from the positioning of the cassettes with cutting inserts in the body of the disc milling cutter. Prepared in such a way, spline curves were written in dwg format, which allowed for trimming of the spline curves at the circle with a radius of rcp = 27.90 mm, corresponding to the radius of the crankpin after milling, considering grinding allowance (ø55h6 + 0.80 mm grinding allowance). As a result, it enabled to leave sections of the arcs tangential to the diameter ø55.80 mm and, in such a way, generate the outline of the shape of the crankpin using the REGION command for 21 cross-sections. The outline of the cylindricity of the crankpin was obtained using the strategy of outlines of the roundness, which were generated earlier; this strategy consisted in the collection of 360 points on the circumference of 21 mutually parallel sections cut by planes perpendicular to the axis of the crankpin. To determine the effects of the circular feed rate of the circulating move of the axis of rotation of the internal disc milling cutter on the accuracy of the machining, simulations of the shape of the crankpin were performed for three values of the feedrate: vf = 1200 mm/min; vf = 2100 mm/min and vf = 3000 mm/min. The spline curves with a determined (depending on the duration of the simulation) number of points: 3500, 2100 and 1409 were obtained for each simulation. The calculated cylindricity deviation for the feedrate vf = 1200 mm/min amounted to CYLrck = 0.2272 mm, for the feedrate vf = 2100 mm/min – CYLrck = 0.2406 mm, while for the feedrate vf = 3000 mm/min – CYLrck = 0.2929 mm.
Rocznik
Tom
Strony
45--61
Opis fizyczny
Bibliogr. 17 poz.
Twórcy
  • Faculty of Mechanical Engineering, University of Bielsko-Biala, Willowa 2 Street, 43-309 Bielsko-Biala, Poland
  • Faculty of Mechanical Engineering, University of Bielsko-Biala, Willowa 2 Street, 43-309 Bielsko-Biala, Poland
Bibliografia
  • 1. Adamczak Stanisław. 2009. Pomiary geometryczne powierzchni. Zarysy kształtu, falistość i chropowatość. Warszawa: WNT. ISBN: 978-8-3204-3526-9. [In Polish: Stanislaw Adamczak. 2009. Geometric measurements of surfaces. Shape outlines, waviness and roughness. Warsaw: WNT. ISBN: 978-8-3204-3526-9].
  • 2. Cichosz Piotr. Narzędzia skrawające. 2008. Warszawa: WNT. ISBN: 978-83-7926-08-2. [In Polish: Cichosz Piotr. Cutting tools. 2008. Warsaw: WNT. ISBN: 978-83-7926-08-2].
  • 3. Czech Piotr. 2013. „Diagnosing a car engine fuel injectors' damage”. Communications in Computer and Information Science 395: 243-250. DOI: https://doi.org/10.1007/978-3-642-41647-7_30. Springer, Berlin, Heidelberg. ISBN: 978-3-642-41646-0; 978-3-642-41647-7. ISSN: 1865-0929. In: Mikulski Jerzy (eds), Activities of transport telematics, 13th International Conference on Transport Systems Telematics, Katowice Ustron, Poland, October 23-26, 2013.
  • 4. Czech Piotr. 2012. „Identification of Leakages in the Inlet System of an Internal Combustion Engine with the Use of Wigner-Ville Transform and RBF Neural Networks”. Communications in Computer and Information Science 329: 175-182. DOI: https://doi.org/10.1007/978-3-642-34050-5_47. Springer, Berlin, Heidelberg. ISBN: 978-3-642-34049-9; 978-3-642-34050-5. ISSN: 1865-0929. In: Mikulski Jerzy (eds), Telematics in the transport environment, 12th International Conference on Transport Systems Telematics, Katowice Ustron, Poland, October 10-13, 2012.
  • 5. Grzesik Wit. 2008. Advanced Machining Processes of Metallic Materials. Theory. Modeling and Applications. Amsterdam: Elsevier. ISBN: 978-0-0805-5749-6.
  • 6. Grzesik Wit. 2007. „Toczenie styczne powierzchni obrotowych”. Mechanik 59(6): 257-263. ISSN: 0025-6552. [In Polish: Grzesik Wit. 2007. „Tangular turning of surfaces of revolution". Mechanic 59(6): 257-263. ISSN: 0025-6552].
  • 7. Materials: Heller Company.
  • 8. Materials: Sandvik Coromant Company.
  • 9. Materials: Steyr Company materials.
  • 10. Materials: WFL Company materials.
  • 11. Płonka Stanisław, Pytlak Bogusław, Placuch Krzysztof. 2013. „Modelowanie zgrubnego frezowania obrotowego czopów wałów korbowych”. Mechanik 86(12): 1021-1025. ISSN: 0025-6552. [In Polish: Płonka Stanisław, Pytlak Boguslaw, Placuch Krzysztof. 2013. „Rough Rotary Milling Modeling of Crankshaft Journals". Mechanic 86(12): 1021-1025. ISSN: 0025-6552].
  • 12. PN-EN ISO 1101: 2006, Tolerancje kształtu i położenia – Nazwy i określenia. Warszawa: Polski Komitet Normalizacyjny. [In Polish: PN-EN ISO 1101: 2006, Tolerances of shape and position - Names and definitions. Warsaw: Polish Committee for Standardization].
  • 13. PN-EN ISO 14660-1: 2001, Specyfikacja geometrii wyrobów (GPS) – Elementy geometryczne. Część 1: Podstawowe terminy i definicje. Warszawa: Polski Komitet Normalizacyjny. [In Polish: PN-EN ISO 14660-1: 2001, Specification of product geometry (GPS) - Geometric elements. Part 1: Basic terms and definitions. Warsaw: Polish Committee for Standardization].
  • 14. PN-EN ISO 14660-2: 2001, Specyfikacja geometrii wyrobów (GPS) – Elementy geometryczne. Część 2: Linia środkowa zaobserwowana walca i stożka, powierzchnia środkowa zaobserwowana, wymiar lokalny elementu zaobserwowanego. Warszawa: Polski Komitet Normalizacyjny. [In Polish: PN-EN ISO 14660-2: 2001, Specification of product geometry (GPS) - Geometric elements. Part 2: Observed Cylinder and Cone Centerline, Observed Center Surface, Observed Element Local Dimension. Warsaw: Polish Committee for Standardization].
  • 15. Rakowiecki Tadeusz, Skawiński Piotr, Siemiński Przemysław. 2011. „Wykorzystanie parametrów szablonów system 3D CAD do generowania modeli uzębień kół stożkowych”. Mechanik 84(12): 977-979. ISSN: 0025-6552. [In Polish: Rakowiecki Tadeusz, Piotr Skawinski, Przemysław Sieminski. 2011. „The use of 3D CAD template parameters to generate models of bevel gear teeth”. Mechanic 84(12): 977-979. ISSN: 0025-6552].
  • 16. Skawiński Piotr, Siemiński Przemysław, Pomianowski Radosław. 2011. „Generowanie modeli bryłowych uzębień stożkowych za pomocą symulacji oprogramowanych w systemie 3D CAD”. Mechanik 84(11): 922-925. ISSN: 0025-6552. [In Polish: Skawinski Piotr, Przemysław Sieminski, Radoslaw Pomianowski. 2011. „Generation of solid models of bevel gears using simulations programmed in the 3D CAD system”. Mechanic 84(11): 922-925. ISSN: 0025-6552].
  • 17. Wajand Jan. 2005. Tłokowe silniki spalinowe średnio- i szybkoobrotowe. Warszawa: WNT. ISBN: 83-204-3054-2. [In Polish: Wajand Jan. 2005. Medium- and high-speed internal combustion piston engines. Warsaw: WNT. ISBN: 83-204-3054-2].
Typ dokumentu
Bibliografia
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bwmeta1.element.baztech-ac0364c4-f395-406c-8070-3cd9bddb5fbf
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