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Welding of S355J+N low alloy steel elements in railway carriages structures

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Various types of structures and materials play an important role in the creation modern means of transport, including various grades of steel with different mechanical properties. For the rolling stock, proper operation and meeting the operational conditions is very important. Welded structures play an important role in the construction of various means of transport. Correct welding of carriages is important both in production and when carrying out various types of repairs. Each repair a carriage depends on its advancement and condition and the time of its operation. Each inspection for a refurbished carriage is defined either by the service life or the big distance traveled by the carriage. Important factor that may lead to damage is the effect of the load transported in the carriage. Therefore, the causes of the wear of the rolling stock are investigated and measures are taken to prevent any damage. The appropriate technical condition of the carriage also ensures safety on railroads for users and owners of the rolling stock. In the case of welded structures in carriages, it is influenced by poorly materials choice, incorrectly selected production processes and wrong selection of parameters. The goal of this paper is the mechanical properties analyse of weld low alloy steel structure of carriages after MAG welding using the parameters of the process. Thick-walled steel structures are used to build carriages, which is often a serious welding problem. The main role of welding conditions is connected with filer materials, welding technology, state of stress and temperature. In this paper, the properties of low alloy steel S3555J+N structures after MAG welding are presented. Furthermore, metallographic structure, tensile strength, bending test and impact toughness welded joints were analysed regarding welding parameters. The amount of acicular ferrite in WMD oxygen after welding was tested. Gas mixtures of argon and carbon dioxide with various percentage was used for shielding gas.
Słowa kluczowe
Rocznik
Tom
Strony
191--200
Opis fizyczny
Bibliogr. 12 poz.
Twórcy
  • Faculty of Transport, The Silesian University of Technology, Krasińskiego 8 Street, 40-019 Katowice, Poland
  • Faculty of Transport, The Silesian University of Technology, Krasińskiego 8 Street, 40-019 Katowice, Poland
  • Faculty of Transport, The Silesian University of Technology, Krasińskiego 8 Street, 40-019 Katowice, Poland
autor
  • Novar Sp. z o. o. Gliwice, Towarowa 2 Street, 44-100 Gliwice, Poland
  • Cobrabid, Łucka 15, 00-842 Warsaw, Poland
Bibliografia
  • 1. Hadryś Damian. 2016. “Mechanical properties of plug welds after micro-jet cooling”. Arch. Metall. Mater 61: 1771-1775.
  • 2. Hadryś Damian. 2015. “Impact load of welds after micro-jet cooling”. Archives of Metallurgy and Materials, 60 (4): 2525-2528.
  • 3. Samardžić I., M. Dunđer, M. Katinić, N. Krnić. 2017. “Weldability investigation on real welded plates of fine-grained high-strength steel S960QL”. Metalurgija 56(1-2): 207-210. ISSN: 0543-5846.
  • 4. Spišák E., J. Majerníková, J. Slota. 2014. “Change of ears creation of AHSS steels after heat treatment of zinc coating”. Metalurgija 53(4): 473-476. ISSN: 0543-5846.
  • 5. Stanik Zbigniew. 2014. “Mechatronic Systems, Mechanics and Materials”. Solid State Phenomena 210: 58-64.
  • 6. Evans Godfrey Matthew. 1994. ”Microstructure and properties of ferritic steel welds containing Al and Ti”. Oerlikon-Schweissmitt 130: 21–39.
  • 7. Fornalczyk A., J. Willner, J. Cebulski, D. Pasek, M. Saternus, P. Czech. 2016. “Structure and surface state of different catalytic conveters applied in cars”. The 5th international Lower Silesia-Saxony conference “Advanced Metal Forming processes in automotive industry (AutoMetForm 2016)”: 327-333.
  • 8. Fornalczyk A., M. Saternus, J. Willner, M. Fafiński, H. Kania, P. Czech. 2016. “The results of platinum recovery from metal substrate catalytic converters by using magneto-hydro-dynamic pump”. 25th Anniversary International Conference on Metallurgy and Materials “METAL 2016”: 1382-1387. ISBN: 978-80-87294-67-3.
  • 9. Burdzik Rafał, Łukasz Konieczny, Zbigniew Stanik, Piotr Folęga, Albert Smalcerz, Aleksander Lisiecki. 2014. „Analysis of impact of chosen parameters on the wear of camshaft”. Archives of Metallurgy and Materials 59 (3): 957-963.
  • 10. Kasuya T., Y. Hashiba, S. Ohkita, M. Fuji. 2001. “Hydrogen distribution in multipass submerged arc weld metals”. Science and Technology of Welding & Joining 6(4): 261-266. DOI: 10.1179/136217101101538767.
  • 11. Lukaszkowicz Krzysztof, Leszek Dobrzański, et al. 2012. „Characterization and properties of PVD coatings applied to extrusion dies”. Vacuum 86: 2082-2088.
  • 12. Evans Godfrey Matthew. 1992. “The effect of micro-alloying elements on the microstructure and properties of ferritic all-weld metal deposits”. IIW Doc II-A-855-92: 1-20.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-54593fb9-ed28-4c42-bdc6-dd4f7c6fa4e6
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