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Abstrakty
The article presents study results of the influence of crankshaft construction changes on the choice of support conditions allowing to eliminate deflections and elastic deformations of crankshafts under their self-weight. For the purpose of this study we implemented a programme for strength calculations Nastran FX 2010 which enables modelling the research subject with a finite element method and counting the value if reaction forces ensuring zero value of deflections on main journals at a change in the crankshaft’s angle of rotation.
Wydawca
Czasopismo
Rocznik
Tom
Strony
553--560
Opis fizyczny
Bibliogr. 10 poz., rys.
Twórcy
autor
- Maritime University of Szczecin, Poland
autor
- Maritime University of Szczecin, Poland
autor
- University of Zilina, Slovak Republic
Bibliografia
- 1. Dai, S.P., Gao, L., Gao, K. (2006). The applications of measurement system for crankshaft. 1st International Symposium on Digital Manufacture, vol. 1-3, pp. 833-836.
- 2. Fonte, M., Duarte, P., Anes, V., Freitas, M., Reis, L. (2015). On the assessment of fatigue life of marine diesel engine crankshafts. Engineering failure analysis, vol. 56, p. 51-57.
- 3. Jadhav, A., Chalwa, V., Gaikwad, P. (2013). Fatigue Failure Analysis Of Engine Crankshaft. International Journal of Engineering Research & Technology 2, pp. 614-621.
- 4. Chybowski, L., Gawdzińska, K. (2016). On the Present State-of-the-Art of a Component Importance Analysis for Complex Technical Systems. Advances in Intelligent Systems and Computing, Volume 445, Springer International Publishing, pp. 691-700.
- 5. Nozdrzykowski, K., (2015). Prevention of Elastic Strains in Flexible Large Size Machine Parts with the Use of Elastic Support, Machine Dynamics Research, vol. 39, No 2, pp. 11-122.
- 6. Nozdrzykowski, K., Grządziel, Z. (2015). Simulation tests and measurements of crankshaft deformations by the symmetric method. Scientific journals of the Maritime University of Szczecin, vol. 42, pp. 33-37.
- 7. Quan, W., Wei, J., Zhao, Y.W., Sun, L.H., Biani, XY. (2011). Development of an Automatic Optical Measurement System for Engine Crakshaft. 2011 International Conference on Computational Science and Applications, pp. 68-75.
- 8. Sun, J., Wang, J., Gui, C. (2010). Whole crakshaft beam-element finite-element method for calculating crankshaft deformation and bearing load of an engine. Proceedings of the institution of mechanical engineers part j-journal of engineering tribology, vol. 224, pp. 299-303.
- 9. Walczyk, W., Milenin, A., Pietrzyk, M. (2011). Computer Aided Design of New Forging Technology for Crank Shafts. Steel research international, vol. 82, pp. 187-194.
- 10. Zhao, Y., Cao, S.Q. (2013). Modal Analysis of Largene Crankshaft. Frontiers of manufacturing and design science III, pts 1 and 2, vol. 271-272, p. 1022-1026.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-c3e78757-fdbe-47ab-bdd1-e0ce8dd2defc