[1] 刘正东.G115耐热钢应用于超600 ℃超超临界火电机组[N].世界金属导报,2015-06-16(B12). [2] 文新理,章清泉,陈 列.650 ℃第三代超超临界锅炉管候选钢种的化学成分研究现状[J].材料导报,2018,32(13):2167-2175. Wen Xinli,Zhang Qingquan,Chen Lie.A state of the art review of chemical component study of the canditate steel for 650 ℃ ultra-supercritial Bolier tube[J].Material Review,2018,32(13):2167-2175. [3] Yang P,Liu Z D,Liu W,et al.Hot deformation behavior of a new 9% Cr heat resistant steel G115[J].Journal of Iron and Steel Research International,2013,20(9):73-79. [4] 李海昭,梁 军,周 超,等.正火温度对G115钢组织及650℃强度的影响[J].金属热处理,2018,43(2):173-177. Li Haizhao,Liang Jun,Zhou Chao,et al.Effect of normalizing temperature on microstructure of G115 steel and strength at 650 ℃[J].Heat Treatment of Metals,2018,43(2):173-177. [5] 李海昭,梁 军,林万鹏,等.正火温度对G115钢组织及室温强度的影响[J].材料热处理学报,2018,39(1):71-76. Li Haizhao,Liang Jun,Lin Wanpeng,et al.Effect of normalizing temperature on microstructure and room temperature strength of G115 steel[J].Transactions of Materials and Heat Treatment,2018,39(1):71-76. [6] 马龙腾,刘正东,白 银.二次正火处理对9Cr3W3Co 钢微观组织和冲击韧性的影响[J].金属热处理,2017,42(3):1-6. Ma Longteng,Liu Zhengdong,Bai Yin.Effect of doubled normalization on microstructure and impact toughness of 9Cr3W3Co steel[J].Heat Treatment of Metals,2017,42(3):1-6. [7] 马龙腾,刘正东,白 银.9Cr3W3Co钢的持久性能[J].金属热处理,2018,43(3):225-229. Ma Longteng,Liu Zhengdong,Bai Yin.Creep rupture property of 9Cr3W3Co steel.Heat Treatment of Metals,2018,43(3):225-229. [8] Liu Zhengdong,Bao Hansheng,Chen Zhengzong,et al.Creep strength and oxidation resistance of industrially made G115 steel pipe.In:Liu Xingbo,Liu Zhengdong,Kyle Brinkman,et al.Energy Materials 2017.The Minerals,Metals &Materials Series[M].Springer,Cham.https://doi.org/10.1007/978-3-319-52333-0_14 [9] 徐松乾,赵海平.应力对G115马氏体耐热钢晶界特性的影响[J].金属热处理,2019,44(2):58-62. Xu Songqian,Zhao Haiping.Effect of stress on grain boundary characteristic of G115 martensitic heat-resistant steel[J].Heat Treatment of Metals,2019,44(2):58-62. |