Degradation processes in normalized steels St37·12 and 18G2A of two operational structures from the 20th century
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References
M. Blicharski, Inżynieria materiałowa. Warszawa: WNT, 2017.
E. Tasak and A. Ziewiec, Spawalność materiałów konstrukcyjnych. Tom 1 Spawalność stali. Kraków: Wydawnictwo JAK, 2009.
M. Wińcza, “Analfabetyzm techniczny – rzeczywistość czy fikcja (analiza problemu),” Przegląd Spaw. - Weld. Technol. Rev., vol. 80, no. 6, 2008.
B. K. Wichrowski and K. Konecki, “Kontrowersje dotyczące oceny trwałości historycznych mostów kolejowych,” Inżynieria i Bud., no. 11–12, pp. 547–552, 2021.
A. Pimpinato, Ed., Innovative Bridge Design Handbook.: Construction, Rehabilitation and Maintenance. Amsterdam-Tokyo: Elsevier Publishing Company, 2021.
A. Hobbacher, “Direction of welding and joining technics in production of reliable and economic products,” Bull. Inst. Weld., no. 2, 2004.
B. Wichtowski and W. Jasiński, “Mikrostrukturalne procesy degradacyjne normalizowanej stali zlewnej z mostu kolejowego,” Przegląd Spaw. - Weld. Technol. Rev., vol. 87, no. 5, pp. 96–101, 2015, doi: 10.26628/ps.v87i5.234.
J. Hołowaty and B. Wichtowski, “Ocena wytrzymałościowa stali mostów historycznych w świetle badań nieniszczących,” Przegląd Spaw. - Weld. Technol. Rev., vol. 88, no. 10, pp. 51–56, 2016, doi: 10.26628/ps.v88i10.686.
K. Ferenc, P. Cegielski, T. Chmielewski, and D. Golański, Technika spawalnicza w praktyce: poradnik inżyniera, konstruktora i spawacza. Warszawa: Verlag Dashofer, 2009.
D. F. Wiśniewski, J. R. Casas, and M. Ghosn, “Codes for safety assessment of existing bridges-current state and further development,” Struct. Eng. Int. J. Int. Assoc. Bridg. Struct. Eng., vol. 22, no. 4, pp. 552–561, 2012, doi: 10.2749/101686612X13363929517857.
B. KÜHN et al., Assessment of Existing Steel Structures - Recommendations for Estimation of the Remaining Fatigue Life. 2008.
R. Helmerich, B. Kühn, and A. Nussbaumer, “Assessment of existing steel structures. A guideline for estimation of the remaining fatigue life,” Struct. Infrastruct. Eng., vol. 3, no. 3, pp. 245–255, 2007, doi: 10.1080/15732470500365562.
D. Diamantidis (Editor), “Report rep032 : Probabilistic Assessment of Existing Structures - JCSS Report,” 2001.
H. H. Campbell, The Manufacture And Properties Of Structural Steel (1896). New York – London: The Scientific Publishing Co, 1896.
W. Westhofen, The Forth Bridge. London: Engineering, 1890.
Stahl in Hochbau.: Berlin: Verlag, Julius Springer, 1935.
J. Hołowaty and B. Wichtowski, “Properties of Structural Steels in Historical Railway Bridges by Diagnostic Tests,” ce/papers, vol. 5, no. 4, pp. 73–78, 2022, doi: 10.1002/cepa.1730.
G. Schaper, Stählerne Brücken. Band I. Berlin: Verlag von Wilhelm Ernst & Sohn, 1948.
G. Lesiuk, J. Rabiega, and M. Szata, “Mikrostrukturalne procesy degradacyjne zachodzące w XIX-wiecznych stalach zgrzewnych,” Inżynieria i Bud., vol. 69, no. 11, pp. 610–612, 2013.
B. Wichtowski and Z. Wożniak, “Właściwości normalizowanej stali zlewnej mostu kolejowego po 75 latach eksploatacji,” Przegląd Spaw. - Weld. Technol. Rev., vol. 87, no. 5, pp. 112–116, 2015, doi: 10.26628/ps.v87i5.238.