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Energy Materials
Materials Science and Engineering for Energy Systems
Volume 13, 2018 - Issue 1
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Original Research Paper

Material behaviour and plant experience of P91/P92 components

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Pages 289-297 | Received 19 Aug 2016, Accepted 31 Aug 2016, Published online: 17 Apr 2017

References

  • Blum R, Hald J, Bendick W, et al. Newly developed high-temperature ferritic-martensitic steels from USA, Japan and Europe. VGB Kraftwerkstechnik. 1994;74:553–563.
  • Brett SJ, Bates JS, Thomson RC. Aluminium nitride precipitation in low strength grade 91 power plant steels. EPRI – 4th International Conference on Advances in Materials Technology for Fossil Power Plants; South Carolina, 2004.
  • Peters J. Quality alert notice no. 2006-001. Global Supply Group – A Bechtel Company, 2006.
  • Schubert J, Klenk A. Determination of weld stress factors for creep rupture strength of welded joints. ECCC creep conference; 2005 Sep 12–14; London.
  • Kimura K, Tabuchi M, Takahashi Y, Yoshida K, Yagi K. Long-term creep strength and strength reduction factor for welded joints of ASME grades 91, 92 and 122 type steels. Safety and Reliability of Welded Components in Energy and Processing Industry: Proceedings of the IIW International Conference; 2008 Jul 10–11; Graz, Austria.
  • Schubert J, Schwass G. Zeitstandverhalten von modernen martensitischen Stahlguss-Schweißverbindungen im Temperaturbereich 550 bis 650 °C, 35. Vortragsveranstaltung der Arbeitsgemeinschaften für warmfeste Stähle und Hochtemperaturwerkstoffe; 2012 Nov 30; Düsseldorf.
  • Vlasak T, Hakl J, Novak P, Sochor J, Cech J. Creep strength decrease of cast steel P91 weldments. 22nd International Conference on Metallurgy and Materials; 2013; Brno, Czech Republic.
  • VGB-TW507, Ausgabe. Richtreihen zur Bewertung der Gefügeausbildungung und -schädigung zeitstandbeanspruchter Werkstoffe von Hochdruckrohrleitungen und Kesselbauteilen, VGB-Kraftwerkstechnik GmbH Essen, 1992.
  • VGB-TW507, 2. Ausgabe. Richtreihen zur Bewertung der Gefügeausbildungung und Zeitstandschädigung warmfester Stähle für Hochdruckrohrleitungen und Kesselbauteile. Essen: VGB-Power Tech Service GmbH Essen, 2005
  • Maile K, Pöllmann J, Seliger P, Reuter A. Abschlussbericht zum AVIF-Vorhaben A 229, Kriterien zur Schädigungsbeurteilung von Hochtemperaturbauteilen aus martensitischen 9-11% Cr-Stählen. Dresden: MPA Universität Stuttgart und Siempelkamp, 2008.
  • BRITE-EURAM Project BE1702, Contract BRPR-CT95-0128. (1996–1999) Validation, expansion and standardisation of Procedures for High Temperature Defect Assessment (HIDA) Final report 1702/PMB/58 – Uniaxial Creep Rupture (1CrMoV-forged) and CCG, CFG (1CrMoV-forged and P91 Steels) Tests of Lab Specimens and Post Test Metallography of CCG, CFG-Specimens, Siempelkamp Prüf- und Gutachter-Gesellschaft mbH Dresden; 1999
  • Gampe U, Seliger P. Creep crack growth testing of P91 and P22 pipe bends. Int J Pressure Vessels Pip. 2001;78:859–864.10.1016/S0308-0161(01)00100-4
  • Celard NJ, Nikbin KM, Webster GA. Validation, expansion and standardisation of procedures for high temperature defect assessment (HIDA). Final report of Imperial College London; 2000 Apr.
  • European Project G5RD-CT-1999-00118 INTEGRITY. Integrity of repair welds in high temperature plants operation under steady and cyclic loading conditions; 2000–2005.
  • European Project GRD2-2000-30363 WELDON. Weld strength for high temperature components design and operation; 2001–2006
  • Thomas A, Pathiraj B, Veron P. Feature tests on welded and repair welded components at higher temperature – material performance and residual stress evaluation. Eng Fract Mech. 2007;74:969–979.10.1016/j.engfracmech.2006.08.017
  • Seliger P, Lepinski S. Zeitstand- und Kriechverhalten von dickwandigen Rohren aus X10CrMoVNb9-1, hergestellt aus Schmiedestücken. 26. Vortragsveranstaltung der Arbeitsgemeinschaften für warmfeste Stähle und Hochtemperaturwerkstoffe; 2003 Nov 28; Düsseldorf.
  • VdTÜV-Werkstoffblatt 511/3: Warmfester Stahl F91; X10CrMoVNb9-1; Werkstoff-Nr. 1.4903; Stabstahl, Schmiedestück; VdTÜV e.V. Essen; 2013 März.
  • Andersson P, Bergmann M, Brickstad B, Dahlberg L, Nilsson F, Sattari-Far I. A procedure for safety assessment of components with cracks – handbook. revised ed. Stockholm: SAQ Kontroll AB; 1998 Sep.
  • Ewald J, Kussmaul K, Keienburg KH. Hinweise auf Mechanismen und Einflussgrößen zur Beurteilung des Bauteilverhaltens im Kriechbereich anhand von Kleinproben. VDI-Bericht. 1979;354:39–57.
  • Maleki S, Yanhui Zhang Y, Nikbin K. Prediction of creep crack growth properties of P91 parent and welded steel using remaining failure strain criteria. International Conference of WELDS 2009: Design, testing, assessment and safety of high-temperature welded structures; 2009 Jun 24–26; Fort Myers, FL, USA.
  • Yatomi M, Yoshida K, Kimura T. Difference of creep crack growth behaviour for base, heat affected zone and welds of modified 9Cr-1Mo-steel. Mater High Temp. 2011;28(2):109–113.10.1179/096034011X13057032585557
  • Dogan B, Petrovski B. High temperature behaviour of P91-steel weldments. Proceedings of the 9th International Conference; 2001 Apr; Swansea.

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