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Języki publikacji
Abstrakty
This article presents a brief overview of weighing systems and devices designed to facilitate fluent and safe road traffic. The number of vehicles on roads is perpetually on the rise, resulting in increased wear of road surfaces. This is why weight check gates have widely been implemented to check the speed and weight of a vehicle against what is permitted by law. A cheaper, albeit more time-consuming, traffic weighing alternative would involve weighing points using weighbridges or mobile axle scales. The second part of this article examines the development of an axle scale. The design and calculation works were performed with the use of the Creo Parametric CAD system and the ANSYS Workbench FEM system.
Rocznik
Tom
Strony
5--15
Opis fizyczny
Bibliogr. 12 poz.
Twórcy
autor
- Faculty of Mechanical Engineering, University of Zilina, Univerzitna 1 Street, 01026 Zilina, Slovak Republic
autor
- Faculty of Mechanical Engineering, University of Zilina, Univerzitna 1 Street, 01026 Zilina, Slovak Republic.
autor
- Faculty of Mechanical Engineering, University of Zilina, Univerzitna 1 Street, 01026 Zilina, Slovak Republic.
Bibliografia
- 1. Skrucany Tomas, Kendra Martin, Skorupa Milan, Figlus Tomasz. 2017. “Comparison of chosen environmental aspects in individual road transport and railway passenger transport”. Procedia Engineering 192: 806-811. DOI: https://doi.org/10.1016/j.proeng.2017.06.139.
- 2. Skrucany Tomas, Sarkan Branislav, Figlus Tomasz, et al. 2017. “Measuring of noise emitted by moving vehicles”. MATEC Web of Conferences 107: 00072. ISBN: 978-1- 5108-4114-7. DOI: https://doi.org/10.1051/matecconf/201710700072.
- 3. IRD. “Lineas Quartz WIM Sensor by Kistler”. Available at: http://www.irdinc.com/pcategory/wim-scales--sensors/lineas-quartz-wim-sensor-by-kistler.html.
- 4. HBM. “C9C”. Available at: http://www.hbm.cz/produkty/snimace-sily/c9c/
- 5. Weighing Review. “Kapsch presents new weigh in motion solution at ITS Europe”. Available at: http://www.weighingreview.com/2013/12/kapsch-presents-new-weigh-in-motion.html.
- 6. Walzscale. “Axle scale wheel weighers”. Available at: https://www.walzscale.com/portable-wheel-axle-load-weighers.
- 7. Samociuk W., Z. Krzysiak, M. Szmigielski, J. Zarajczyk, Z. Stropek, K. Gołacki, G. Bartnik, A. Skic, A. Nieoczym. 2016. “Modernization of the control system to reduce a risk of severe accidents during non-pressurized ammonia storage”. Przemysł Chemiczny 95 (5): 1032-1035. ISSN 0033-2496. DOI: https://doi.org/10.15199/62.2016.5.29.
- 8. Samociuk W. Z. Krzysiak, G. Bartnik, A. Skic, S. Kocira, B. Rachwał, H. Bąkowski, S. Wierzbicki, L. Krzywonos. “Analysis of explosion hazard on propane-butane liquid gas distribution stations during self tankage of vehicles”. Przemysł Chemiczny. 96 (4): 874-875. ISSN 0033-2496. DOI: https://doi.org/10.15199/62.2016.5.29.
- 9. Faturik L., Trsko L., Hrcek S., Bokuvka O. 2014. “Comparison of structural design in high and ultra-high cycle fatigue regions”. Transactions of FAMENA. 38 (4): 1-12. ISSN 1333-1124.
- 10. Droździel Paweł, Monika Wińska, Radovan Madleňák, Paweł Szumski. 2017. “Optimization of the position of the local distribution centre of the regional post logistics network”. Transport Problems 12 (3): 42-74. ISSN 1896-0596. DOI: https://doi.org/10.20858/tp.2017.102.3.4.
- 11. Droździel Paweł, Iwona Rybicka, Radovan Madleňák, Aleksandra Andrusiuk, Dariusz Siłuch. 2017. “The engine set damage assessment in the public transport vehicles”. Advances in science and technology Research Journal Vol. 10 (1): 117-127. ISSN 2299-8624. DOI: https://doi.org/10.12913/22998624/66502.
- 12. Niels van Oort, Rob van Nes. 2017. ”Regularity analysis for optimizing urban transit network design”. Public Transport 1(2): 155-168. https://doi.org/10.1007/s12469-009- 0012-y.
Uwagi
PL
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-285b924d-da94-471d-a023-bc892c3e131e
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