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Abstrakty
Dockside cranes must retain adequate strength requirements that will not endanger the safety of their use. This may cause the fact that the impact of vibration on the structure exposed to horizontal forces caused by the transport of goods loading and transverse forces caused by wind can be dangerous for the correct operation of the machine. In addition, there are often consequences of climate-related environment, with fatigue - dynamizującymi destruction of the object. Dynamic loads may cause effects so devastating or catastrophic lead to their destruction [1,6,9,13,21]. Recognizing the need to improve methods for testing of lifting equipment for the purpose of assessing their condition and assess the safety factors in this paper attempts to study the destruction of the structural element of the lift with the help of theoretical methods of modal analysis [4,8,12,21].
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
171--183
Opis fizyczny
Bibliogr. 24 poz., rys., tab.
Twórcy
autor
- Wydział Zarządzania, Uniwersytet Technologiczno-Przyrodniczy w Bydgoszczy
autor
- Wydział Inżynierii Mechanicznej, Uniwersytet Technologiczno-Przyrodniczy w Bydgoszczy
autor
- Wydział Zarządzania, Uniwersytet Technologiczno-Przyrodniczy w Bydgoszczy
Bibliografia
- [1] Batel M., Operational modal analysis – another way of doing modal testing. Sound and Vibration, August 2002.
- [2] Bishop R., Johnson D., The mechanics of vibration. Cambridge University, Press, 1980. 182
- [3] Brandt S., Data analysis ( in Polish). Wydawnictwo Naukowe PWN (Scientific Publishing House), Warszawa 1999.
- [4] Brown D., Allemang R., Multiple Input Experimental Modal Analysis. Fall Technical Meeting, Society of Experimental Stress Analysis, Salt Lake City, UT, November 1983.
- [5] Brunarski L., Non-destructive methods for concrete testing (in Polish). Arkady, Warszawa 1996.
- [6] Formenti D., Richardson M., Parameter estimation from frequency response measurements using rational fraction polynomials (twenty years of progress). Proceedings of International Modal Analysis Conference XX, February 4-7, 2002, Los Angeles, CA.
- [7] Ibrahim S., Mikulcik E.A., Method for the direct identification of vibration parameters from the free response. Shock and Vibration Bulletin, Vol. 47, Part 4, 1977.
- [8] Peeters B., Ventura C., Comparative study of modal analysis techniques for bridge dynamic characteristics. Submitted to Mechanical Systems and Signal Processing, 2001.
- [9] Pickrel C.R., Airplane ground vibration testing – nominal modal model correlation. Sound and Vibration, November 2002.
- [10] Richardson M., Is it a mode shape or an operating deflection shape?. Sound and Vibration, February 1997.
- [11] Richardson M., Structural dynamics measurements. Structural Dynamics @ 2000: Current status and future directions, Research Studies Press, Ltd. Baldock, Hertfordshire, England, December 2000.
- [12] Shih C., Tsuei Y., Allemang, R., Brown D., Complex mode indication function and its applications to spatial domain parameter estimation. Proceedings of International Modal Analysis Conference VII, January 1989.
- [13] Uhl T., Computer-aided identification of mechanical structure models ( in Polish). WNT (Scientific Technical Publishers), Warszawa 1997.
- [14] Williams R., Crowley J., Vold H., The multivariate mode indicators function in modal analysis. Proceedings of International Modal Analysis Conference III, January 1985.
- [15] Vold H., Schwarz B., Richardson M., Display operating deflection shapes from nonstationary data. Sound and Vibration, June 2000.
- [16] Vold H., Kundrat J., Rocklin G.A., Multi-input modal estimation algorithm for minicomputers. S.A.E. paper No. 820194, 1982.
- [17] Żółtowski B., The investigations aid in exploitation. Liptowski Mikulesz. XI International Technical degradation Conference. ISSN 1642-347X-1, Słovakia, 2012.
- [18] Żółtowski M., Measurements of acoustic properties of materials (in Polish). Diagnostyka, PTDT, Polska Akademia Nauk (Polish Academy of Sciences), vol.33, 2005.
- [19] Żółtowski M., Selection of information on identification of the state of machine. UWM, Acta Academia 310, Olsztyn 2007.
- [20] Żółtowski M., Computer-aided management of system’s operation in production enterprise. Integrated management ( in Polish). Oficyna Wydawnicza Polskiego Towarzystwa Zarządzania Produkcją ( Publishing House of Polish Society on Production Management ), vol. 2, Opole 2011.
- [21] Żółtowski M., Modal analysis in the testing of building materials ITE-PIB , Radom 2011.
- [22] Żółtowski M., Żółtowski B., Castaneda L., Study of the state Francis Turbine. Polish Maritime Research No 2/2013, pp 32-38.
- [23] Żółtowski M., Technical state identification of wall-elements based on frequency response function. REM-Revista Escola de Minas Applied Mechanics and Materials, Kolumbia 2014.
- [24] Żółtowski M., Investigations of harbour brick structures by using operational modal analysis. Polish Maritime Research No 1/2014, pp 32-38.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-c7598bf0-ffc9-42fd-8f8f-591c9bae61cc