Low-cycle fatigue properties of P92 ferritic-martensitic steel at elevated temperature

Z Zhang, ZF Hu, S Schmauder, M Mlikota… - Journal of Materials …, 2016 - Springer
The low-cycle fatigue behavior of P92 ferritic-martensitic steel and the corresponding
microstructure evolution at 873 K has been extensively studied. The test results of fatigue …

Low cycle fatigue behavior of a 10Cr–2W–Mo–3Co–NbV steel

R Mishnev, N Dudova, R Kaibyshev - International Journal of Fatigue, 2016 - Elsevier
Low cycle fatigue (LCF) behavior of a 10% Cr–2% W–0.7% Mo–3% Co–NbV steel with
0.008 wt.% B and 0.003 wt.% N additions was studied under fully reversed tension …

Characterization of low cycle fatigue of ferritic–martensitic P92 steel: effect of temperature

X Wang, Y Jiang, J Gong, Y Zhao… - steel research …, 2016 - Wiley Online Library
Isothermal, strain‐controlled low cycle fatigue (LCF) tests of P92 steel are conducted in air at
different temperatures ranging from 20 to 650° C and various strain ranges to clarify the …

Механические свойства и микроструктура сварного соединения мартенситной жаропрочной стали с 9% Cr

ЯЭ Шахова, АН Беляков, РО Кайбышев - Физика металлов и …, 2016 - elibrary.ru
Изучены структура и механические свойства сварного соединения стали
10Х9К3В2МФБР (в мас.% 0.097 С; 0.17 Si; 0.54 Mn; 8.75 Cr; 0.21 Ni; 0.51 Mo; 0.07 Nb; …

Mechanical characteristics and microstructure of weld joint of high-temperature martensitic steel containing 9% Cr

YE Shakhova, AN Belyakov, RO Kaibyshev - The Physics of Metals and …, 2016 - Springer
The structure and mechanical characteristics of a weld joint of 10Kh9K3V2MFBR steel
(0.097 C, 0.17. Si, 0.54 Mn, 8.75 Cr, 0.21 Ni, 0.51 Mo, 0.07 Nb, 0.23 V, 0.004 N, 0.003 B, 1.6 …