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Purpose: Condition assessment of material and welded joints with regard to required utility properties of low-alloy steel for operation at elevated temperature. Design/methodology/approach: The structural and mechanical testing of parent material and welded joint at room and elevated temperature after annealing at 550°C and 600°C for 30,000 h was carried out. Findings: The effect of temperature and duration of long-term annealing on mechanical properties, hardness and structure of tested material and welded joint was determined. Practical implications: The presented method can be used for evaluation and qualification of structural changes in power station boiler components operating in creep conditions. Originality/value: The presented results of changes in the mechanical properties, structure and in the precipitation processes are applied to evaluation the condition of the elements in further industrial service.
Słowa kluczowe
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Rocznik
Tom
Strony
5--12
Opis fizyczny
Twórcy
autor
- Institute for Ferrous Metallurgy, ul. K. Miarki 12, 44-100 Gliwice, Poland
autor
Bibliografia
- [1] F. Masuyama, Steam plant material developments in Japan, Proceedings of the 6th International Conference on Materials for Advanced Power Engineering, Liege, 1998, 1087.
- [2] F. Deshayes, W. Bendick, K. Haarmann, J.C Vaillant, New 2-3%Cr Steel Grades for waterwall panels and superheaters raport COST 501, Liege, 1998.
- [3] A. Hernas, T. Wala, Selection of materials for superheaters with improved performance parameters, Materials and technologies for construction of supercritical boilers and waste incinerators, House of the Polish Association of Metallurgical Engineers and Technicians (SITPH ) , Katowice, 2009, 154-171 (in Polish).
- [4] J. Dobrzański, A. Zieliński, A. Hernas, Structure and properties of new creep-resisting ferritic-matrix steels, Materials and technologies used for construction of supercritical boilers and wast e incinerators, House of the Polish Association of Metallurgical Engineers and Technicians (SITPH), Katowice, 2009, 47-101 (in Polish).
- [5] J. Dobrzański, A. Zieliński, M. Sroka, Structure, properties and method of the state evaluation of low-alloyed steel T23 (HCM2S) worked in creep conditions, Proceedings of the 11 th International Scientific Conference on the Contemporary Achievements in Mechanics, Manufacturing and Materials Science, Gliwice-Zakopane, 2005.
- [6] J. Dobrzański, A. Zieliński, J. Pasternak, A. Hernas, Experience in the use of new steels for manufacturing of components of boilers for supercritical parameters, Periodical “Prace IMZ” 62/1 (2009) 51-60 (in Polish).
- [7] H. Heuser, Filler metals for welding of T/P23 and T/P24, The Scientific and Technical Conference, Rudy Raciborskie, 2009 (in Polish).
- [8] J. Dobrzański, S. Fudali, J. Pasternak, W. Zabłocki, Experience in possibility of using T/P24 and VM12 steels under domestic conditions, Proceedings of the Scientific and Technical Conference, Rudy Raciborskie, 2007 (in Polish).
- [9] J. Dobrzański, J. Pasternak, Possibilities of using new low-alloy bainitic steels for membrane wall s of boilers with supercritical parameters under large domestic manufacturer conditions, Periodical “Prace IMiUE” 23 (2009) 127-152 (in Polish).
- [10] H. Paszkowska, A. Zieliński, Assessment of usability of low-alloy steel 7CrMoVTiB10-10 (P24) after service in boilers with supercritical working parameters, Proceedings of the Works of the 38th School of Materials Science, SIM’2010, Krynica, 2009, 429-433 (in Polish).
- [11] J. Dobrzański, J. Pasternak, Mechanical properties and structure of low-alloy steels 7CrWVNb9-6 and 7CrMoVTiB10-10 for components of evaporator collectors of boilers with supercritical working parameters, Proceedings of the 2nd Welding Conference "Powerwelding-2011", Kroczyce-Ostaniec, 2011 (in Polish).
- [12] J. Dobrzański, A. Zieliński, S. Fudali, Effect of the initial state structure and conditions of welding 7CrMoVTiB10-10 steel on quality of welded joints of gas-tight water walls in boilers with supercritical working parameters, Proceedings of the Welding Conference "Powerwelding-2010", Ustroń, 2011 (in Polish).
- [13] J. Dobrzański, K. Radwański, Effect of the initial state structure of 7CrMoVTiB10-10 (T24) steel on quality of welded joints of evaporator tight walls in boilers with supercritical working parameters, Power Industry, Thematic Worksheet 21 (2010) 40-44 (in Polish).
- [14] J. Dobrzański, J. Pasternak, Properties and application of welded joints in heat resisting bainitic and martensitic steels, Proceedings of the 25th International Conference “Welding 2008”, Subotica, Serbia, 2008, 137.
- [15] J. Dobrzański, J. Pasternak, Properties selection and evaluation of welded joints made of new generation creep- resisting steel - a decisive factor accounting for reliability and safety of the power equipment, Welding in the World 52 (2008) 429-436.
- [16] J. Dobrzański, J. Pasternak, Properties evaluation and applications of base material s and welded joints made from new generation bainitic creep-resisting steels, Proceedings of the 41st Kraftwerkstechnisches Colloquium 2009, Sichere und nachhaltige Energieversorgung, Betrieb und Instandhaltung, Dresden, 2009, poster P22.
- [17] J. Dobrzański, J. Pasternak, Reliability and safety of the power equipment in respect of properties evaluation of welded joints made from new generation creep-resisting steels, ASME, Pressure Ve ssels and Piping Division 6/B (2010) 1717-1730.
- [18] J. Dobrzański, J. Pasternak, A. Zieliński, Evaluation of base material and welded joints designated for membrane wall components made from low-alloy steels in large boilermaker conditions, Proceedings of the 9th Liege Conference on Materials for Advanced Power Engineering, Liege, 2010, 390-399.
- [19] J. Dobrzański, Structure and properties of new bainitic and martensitic steels, Legal and technical conditions for construction and modernisation of power boilers, ordered research paper, Materials of the Office of Technical Inspection Seminar, “Akademi a UDT” Publishing House, Gliwice, 2010 (in Polish).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-c92ccac1-10df-4d0a-8cd5-8fbd7d363a7a