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Methodology of Prognostic Vibro-Acoustic Analysis of Buildings from Potential Dynamic Loads Generated by Rail Vehicles


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[1] Balážikova, M., Sinay, J. “Implementation of Auditory and Non-Auditory Effects of Noise in the Risk Assessment Process in Mechanical Engineering”, Procedia Engineering 48, pp. 621 – 628, 2012.Search in Google Scholar

[2] Čulík, M., Jochim, S., Ondrejka, V. “Sound Insulation of Partition Wall and Ceiling in Panel Timber Frame Structure”, Akustika 31, pp. 145 – 152, 2019.Search in Google Scholar

[3] Danko, J., Bucha, J., Milesich, T., Magdolen, L., Kevický, I. Minárik, M., Miškovic, Ž., Mitrovic, R. “Dynamic properties modelling analysis of the rubber-metal elements for electric drive”, Strojnícky časopis – Journal of Mechanical Engineering 71 (1), pp. 19 – 26, 2021. DOI: 10.2478/scjme-2021-0002Search in Google Scholar

[4] Milata, M., Musil, M. “Reduction of Crankshaft Stress by Using of the Torsional Vibration Damper”, Strojnícky časopis – Journal of Mechanical Engineering 70 (2), pp. 117 – 132, 2020. DOI: 10.2478/scjme-2020-0025Search in Google Scholar

[5] Šlesar, P., Jančo, R. “Strength and Dynamic Assessment of Cage and Bearing for Railway Carriage”, Strojnícky časopis – Journal of Mechanical Engineering 70 (1), pp. 127 – 134, 2020. DOI: 10.2478/scjme-2020-0012Search in Google Scholar

[6] Žiaran, S., Chlebo, O. “Vibro-acoustic analysis of the SND in connection with the planned construction of a railway track above the underground garages in front of the SND building”, Research Report, Bratislava 2022, Pages 55 – for Ministry of Culture of the Slovak Republic.Search in Google Scholar

[7] Žiaran, S., Chlebo O., Šooš Ľ. “Influence of kinematic excitation on the dynamic load of rotary machines bearings mounted on a rail vehicle”, Vehicle and Automative Engineering 4 Miskolc Hungary 2022, Springer, pp. 835 – 847, 2022.Search in Google Scholar

[8] Žiaran, S., Chlebo, O., Čekan, M., Tuma, J. “Transmission of Vibrations through Vibration Isolators, Theory and Application”, The 15th IFTOMM World Congress, Krakow, Poland, Springer Nature Switzerland AG 2019, pp. 3995 – 4004, 2019.Search in Google Scholar

[9] Žiaran, S., Chlebo, O., Musil, M. “Analysis of the impact of different types of vibration isolation on the dynamic loading of machines and the surrounding environment”, Proceedings of Internoise/ASME NCAD Noise control and acoustics division conference Chicago, USA 2018, Article number: IN2018-6135, 2018.Search in Google Scholar

[10] Žiaran, S., Chlebo, O. “The Transmission of Vibro-acoustic Energy from the Industrial Machines through the Building Structure to the Mounting Base”, ICSV24, London, UK, pp. 23 – 27, 2017.Search in Google Scholar

[11] Žiaran, S. “Technical Diagnostics”, Scientific monograph. Issued by STU Bratislava 2013, pages 332, ISBN 978-80-227-4051-7Search in Google Scholar

[12] Žiaran, S. “Low Frequency Noise and Vibration”, Scientific Monograph. Issued by STU Bratislava 2016, pages 316, ISBN 978-80-227-4536-9Search in Google Scholar

[13] ISO 4866 Mechanical vibration and shock. Vibration of buildings. Guidelines for the measurement of vibration and evaluation of their effects on buildings. ISO, CH 1211 Genève 20, SwitzerlandSearch in Google Scholar

[14] EN ISO 3381 Railway applications. Acoustics. Noise measurement inside railbound vehicles. CEN-CENELEC Management Centre: Rue de la Science 23, B-1040 BrusselsSearch in Google Scholar

[15] EN 13715 Railway applications. Wheelsets and bogies. Wheels. Tread profile. CEN-CENELEC Management Centre: Rue de la Science 23, B-1040 BrusselsSearch in Google Scholar

[16] EN ISO 10140-5 Acoustics. Laboratory measurement of sound insulation properties of building elements. Part 5: Requirements for test facilities and equipment. CEN-CENELEC Management Centre: Rue de la Science 23, B-1040 BrusselsSearch in Google Scholar

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2 veces al año
Temas de la revista:
Engineering, Mechanical Engineering, Fundamentals of Mechanical Engineering, Mechanics