This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.
Saini, N., Mulik, R.S., Mahapatra, M.M., Study on the effect of ageing on laves phase evolution and their effect on mechanical properties of P92 steel, Mater. Sci. Eng. A, 2018, 716: 179–188SainiN.MulikR.S.MahapatraM.M.Study on the effect of ageing on laves phase evolution and their effect on mechanical properties of P92 steelMater. Sci. Eng. A2018716179188Search in Google Scholar
Khayatzadeh, S., Tanner, D.W.J., Truman, C.E., Flewitt, P.E.J., Smith, D.J., Influence of thermal ageing on the creep behaviour of a P92 martensitic steel, Mater. Sci. Eng. A, 2017, 708: 544–555KhayatzadehS.TannerD.W.J.TrumanC.E.FlewittP.E.J.SmithD.J.Influence of thermal ageing on the creep behaviour of a P92 martensitic steelMater. Sci. Eng. A2017708544555Search in Google Scholar
Zhao, L., Jing, H., Xu, L., An, J., Xia, G., Numerical investigation of factors affecting creep damage accumulation in ASME P92 steel welded joint, Mater. Des., 2012, 34: 566–575ZhaoL.JingH.XuL.AnJ.XiaG.Numerical investigation of factors affecting creep damage accumulation in ASME P92 steel welded jointMater. Des.201234566575Search in Google Scholar
Zhao, D., Li, S., Wang, X., Wang, Y., Liu, F., Cao, X., Proton irradiation induced defects in T92 steels: An investigation by TEM and positron annihilation spectroscopy, Nucl. Instrum. Methods Phys. Res. B, 2019, 442: 59–66ZhaoD.LiS.WangX.WangY.LiuF.CaoX.Proton irradiation induced defects in T92 steels: An investigation by TEM and positron annihilation spectroscopyNucl. Instrum. Methods Phys. Res. B20194425966Search in Google Scholar
Dak, G., Singh, V., Kumar, A., Sirohi, S., Bhattacharyya, A., Pandey, C., et al., Microstructure and mechanical behaviour study of the dissimilar weldment of ‘IN82 buttered’ P92 steel and AISI 304L steel for ultra super critical power plants, Mater. Today Commun., 2023, 37: 107552DakG.SinghV.KumarA.SirohiS.BhattacharyyaA.PandeyC.Microstructure and mechanical behaviour study of the dissimilar weldment of ‘IN82 buttered’ P92 steel and AISI 304L steel for ultra super critical power plantsMater. Today Commun.202337107552Search in Google Scholar
Hald, J., Microstructure and long-term creep properties of 9-12% Cr steels, Int. J. Press. Vessel. Pip., 2008, 85(1/2): 30–37HaldJ.Microstructure and long-term creep properties of 9-12% Cr steelsInt. J. Press. Vessel. Pip.2008851/23037Search in Google Scholar
Hald, J., Korcakova, L., Precipitate stability in creep resistant ferritic steels- experimental investigations and modeling, ISIJ Int., 2003, 43(3): 420–427HaldJ.KorcakovaL.Precipitate stability in creep resistant ferritic steels- experimental investigations and modelingISIJ Int.2003433420427Search in Google Scholar
Suzuki, K., Kumai, S., Toda, Y., Kushima, H., Kimura, K., Two-phase separation of primary MX carbonitride during tempering in creep resistant 9Cr1MoVNb steel, ISIJ Int., 2004, 43(7): 1089–1094SuzukiK.KumaiS.TodaY.KushimaH.KimuraK.Two-phase separation of primary MX carbonitride during tempering in creep resistant 9Cr1MoVNb steelISIJ Int.200443710891094Search in Google Scholar
Dvorak, J., Kral, P., Sklenicka, V., Kvapilova, M., Sifner, J., Koula, V., et al., Study of creep damage in P92 steel using acoustic emission, Procedia Struct. Integr., 2024, 52: 259–266DvorakJ.KralP.SklenickaV.KvapilovaM.SifnerJ.KoulaV.Study of creep damage in P92 steel using acoustic emissionProcedia Struct. Integr.202452259266Search in Google Scholar
Shang, C.G., Wang, M.L., Zhou, Z.C., Yagi, K., Lu, Y.H., The microstructure evolution and its effect on creep behaviors in P92 steel under different stresses, Mater. Charact., 2023, 198: 112744ShangC.G.WangM.L.ZhouZ.C.YagiK.LuY.H.The microstructure evolution and its effect on creep behaviors in P92 steel under different stressesMater. Charact.2023198112744Search in Google Scholar
Lou, M., Niu, S., Ma, Y., Shan, H., Yang, B., Li, Y., The aging characteristics of resistance rivet welded aluminum/steel joints, J. Mater. Res. Technol., 2023, 26: 3615–3628LouM.NiuS.MaY.ShanH.YangB.LiY.The aging characteristics of resistance rivet welded aluminum/steel jointsJ. Mater. Res. Technol.20232636153628Search in Google Scholar
He, H., Shen, Y., Guo, Y., Precipitates change of P92 steel under 3.5 MeV Fe13+ ion irradiation at 400°C, Mater. Charact., 2023, 205: 113273HeH.ShenY.GuoY.Precipitates change of P92 steel under 3.5 MeV Fe13+ ion irradiation at 400°CMater. Charact.2023205113273Search in Google Scholar
Dudova, N., Mishnev, R., Kaibyshev, R., Effect of long-term aging on the low cycle fatigue behavior and microstructure of a 10% Cr martensitic steel with low nitrogen and high boron contents at 650°C, Mater. Today Commun., 2024, 38: 108323DudovaN.MishnevR.KaibyshevR.Effect of long-term aging on the low cycle fatigue behavior and microstructure of a 10% Cr martensitic steel with low nitrogen and high boron contents at 650°CMater. Today Commun.202438108323Search in Google Scholar
Sklenicka, V., Kucharova, K., Svobodova, M., Kral, P., Kvapilova, M., Dvorak, J., The effect of a prior short-term ageing on mechanical and creep properties of P92 steel, Mater. Charact., 2018, 136: 388–397SklenickaV.KucharovaK.SvobodovaM.KralP.KvapilovaM.DvorakJ.The effect of a prior short-term ageing on mechanical and creep properties of P92 steelMater. Charact.2018136388397Search in Google Scholar
Maddi, L., Shivhare, R., Kumar, V., Goel, M., Ramesh, M., Ballal, A., Effect of tempering time on the microstructure and stress rupture properties of P92 steel, Mater. Today: Proc., 2021, 44(Part 1): 34–38MaddiL.ShivhareR.KumarV.GoelM.RameshM.BallalA.Effect of tempering time on the microstructure and stress rupture properties of P92 steelMater. Today: Proc.202144Part 13438Search in Google Scholar
Wen, J.-b., Zhou, C.-Y., Li, X., Pan, X.-M., Chang, L., Zhang, G.-D., et al., Effect of temperature range on thermal-mechanical fatigue properties of P92 steel and fatigue life prediction with a new cyclic softening model, Int. J. Fatigue, 2019, 129: 105226WenJ.-b.ZhouC.-Y.LiX.PanX.-M.ChangL.ZhangG.-D.Effect of temperature range on thermal-mechanical fatigue properties of P92 steel and fatigue life prediction with a new cyclic softening modelInt. J. Fatigue2019129105226Search in Google Scholar
Gao, N., Zhang, W., Yin, P., Liang, F., Zhang, G., Xia, X., et al., Multiaxial fatigue behaviour and damage mechanisms of P92 steel under various strain amplitudes and strain ratios at high temperature, Int. J. Fatigue, 2022, 158: 106774GaoN.ZhangW.YinP.LiangF.ZhangG.XiaX.Multiaxial fatigue behaviour and damage mechanisms of P92 steel under various strain amplitudes and strain ratios at high temperatureInt. J. Fatigue2022158106774Search in Google Scholar
Junek, M., Svobodová, M., Janovec, J., Horváth, J., Ducháček, P., Long-term thermal degradation of narrow gap orbital welded P91 and P92 steels, Int. J. Press. Vessel. Pip., 2020, 185: 104133JunekM.SvobodováM.JanovecJ.HorváthJ.DucháčekP.Long-term thermal degradation of narrow gap orbital welded P91 and P92 steelsInt. J. Press. Vessel. Pip.2020185104133Search in Google Scholar
Yang, X., Liao, B., Xiao, F.-r., Yan, W., Shan, Y.-y., Yang, K., Ripening behavior of M23C6 carbides in P92 steel during aging at 800°C, J. Iron Steel Res. Int., 2017, 24(8): 858–864YangX.LiaoB.XiaoF.-r.YanW.ShanY.-y.YangK.Ripening behavior of M23C6 carbides in P92 steel during aging at 800°CJ. Iron Steel Res. Int.2017248858864Search in Google Scholar
Xia, X., Zhu, B., Jin, X., Tang, M., Yang, L., Xue, F., et al., Analysis on microstructure and properties evolution and life prediction of P92 steel in high temperature service, Int. J. Press. Vessel. Pip., 2021, 194(Part A): 104482XiaX.ZhuB.JinX.TangM.YangL.XueF.Analysis on microstructure and properties evolution and life prediction of P92 steel in high temperature serviceInt. J. Press. Vessel. Pip.2021194Part A104482Search in Google Scholar
Zhang, W., Zhang, T., Wang, X., Chen, H., Gong, J., Remaining creep properties and fracture behaviour of P92 steel welded joint under prior low cycle fatigue loading, J. Mater. Res. Technol., 2020, 9(4): 7887–7899ZhangW.ZhangT.WangX.ChenH.GongJ.Remaining creep properties and fracture behaviour of P92 steel welded joint under prior low cycle fatigue loadingJ. Mater. Res. Technol.20209478877899Search in Google Scholar
Dak, G., Sirohi, S., Pandey, C., Study on microstructure and mechanical behavior relationship for laser-welded dissimilar joint of P92 martensitic and 304L austenitic steel, Int. J. Press. Vessel. Pip., 2022, 196: 104629DakG.SirohiS.PandeyC.Study on microstructure and mechanical behavior relationship for laser-welded dissimilar joint of P92 martensitic and 304L austenitic steelInt. J. Press. Vessel. Pip.2022196104629Search in Google Scholar
Xin, Z., Zhigang, Z., Xiaoru, W., Ran, W., Liwei, W., Research progress on reheat cracks in welded joints of power plant boiler pressure pipelines, Mech. Eng. Mater., 2017, 41(2): 8–14 + 111 (in Chinese)XinZ.ZhigangZ.XiaoruW.RanW.LiweiW.Research progress on reheat cracks in welded joints of power plant boiler pressure pipelinesMech. Eng. Mater.2017412814 + 111 (in Chinese)Search in Google Scholar
Vaillant, J.C., Vandenberghe, B., Hahn, B., Heuser, H., Jochum, C., T/P23, 24, 911an d 92: new grades for advanced coal fire power plants: properties and experience, Int. J. Press. Vessel. Pip., 2008, 85(1/2): 38–46VaillantJ.C.VandenbergheB.HahnB.HeuserH.JochumC.T/P23, 24, 911an d 92: new grades for advanced coal fire power plants: properties and experienceInt. J. Press. Vessel. Pip.2008851/23846Search in Google Scholar
Adhithan, B., Pandey, C., Study on effect of grain refinement of P92 steel base plate on mechanical and microstructural features of the welded joint, Int. J. Press. Vessel. Pip., 2021, 192: 104426AdhithanB.PandeyC.Study on effect of grain refinement of P92 steel base plate on mechanical and microstructural features of the welded jointInt. J. Press. Vessel. Pip.2021192104426Search in Google Scholar
Zhang, X., Yanchang, Q., Comparative study of different welding wires on T92 welded joints, Philos. Mag. Lett., 2018, 9(4): 133–138ZhangX.YanchangQ.Comparative study of different welding wires on T92 welded jointsPhilos. Mag. Lett.201894133138Search in Google Scholar
Meng, L., Research on safety performance of abnormal hardness of P92 steel, Tianjin University, Tianjin, 2013MengL.Research on safety performance of abnormal hardness of P92 steelTianjin UniversityTianjin2013Search in Google Scholar