[1]Iseda A, Okada H, Semba H, et al. Long term creep properties and microstructure of SUPER304H, TP347HFG and HR3C for A-USC boilers[J]. Energy Materials, 2007, 2(4): 199-206. [2]Solenthaler C, Ramesh M, Uggowitzer P J, et al. Precipitation strengthening of Nb-stabilized TP347 austenitic steel by a dispersion of secondary Nb(C,N) formed upon a short-term hardening heat treatment[J]. Materials Science and Engineering A, 2015, 647: 294-302. [3]彭志方, 党莹樱, 彭芳芳. C和Nb含量对TP347HFG钢在650 ℃析出相参量和持久寿命的影响[J]. 金属学报, 2012, 48(4): 450-454. Peng Zhifang, Dang Yingying, Peng Fangfang. Effect of carbon and niobium contents on phase parameters and creep rupture time at 650 ℃ for TP347HFG steel[J]. Acta Metallurgica Sinica, 2012, 48(4): 450-454. [4]王 伟, 王志武, 李文胜, 等. 不同Cr、Ni含量下TP347H钢的热力学平衡相[J]. 金属热处理, 2016, 41(10): 99-101. Wang Wei, Wang Zhiwu, Li Wensheng, et al. Thermodynamic equilibrium phases of TP347H steel with different Cr and Ni content[J]. Heat Treatment of Metals, 2016, 41(10): 99-101. [5]李振梁, 王甲安, 肖旻砚. 高温再热器SA-213TP347H钢管爆管原因分析[J]. 金属热处理, 2015, 40(8): 191-194. Li Zhenliang, Wang Jiaan, Xiao Minyan. Failure analysis of SA-213TP347H steel reheater tube[J]. Heat Treatment of Metals, 2015, 40(8): 191-194. [6]邓 勇, 刘盛波, 彭芳芳, 等. 600 MW超临界锅炉TP347H屏式过热器管高温蒸气氧化腐蚀探讨[J]. 腐蚀与防护, 2009, 30(2): 124-127. Deng Yong, Liu Shengbo, Peng Fangfang, et al. High temperature steam oxidization resistance of TP347H panel division super-heater tubes for 600 MW super-critical boiler[J]. Corrosion and Protection, 2009, 30(2): 124-127. [7]Zhou H W, He Y Z, Cui M, et al. Dependence of dynamic strain ageing on strain amplitudes during the low-cycle fatigue of TP347H austenitic stainless steel at 550 ℃[J]. International Journal of Fatigue, 2013, 56: 1-7. |