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·902 北京科技大学学报 第36卷 B]Yan G H,Huang X M,Wang Y Q,et al.Effects of heat treat- lution in H13 hot work steel.Trans Mater Heat Treat,2009,30 ment on mechanical properties of H13 steel.Met Sci Heat Treat, (5):122 2010,52(8):393 (宋雯雯,闵永安,吴晓春.H13钢中的碳化物分析及其演变 4]Nilsson H.The influence of austenitization temperature and cooling 规律研究.材料热处理学报,2009,30(5):122) rate after austenitization on the mechanical properties of the hot- [11]Ye D L,Hu J H.Practical Inorganic Thermodynamic Data Man- work tool steels H11 and H13 /Proceedings of a Symposium. ual.2nd Ed.Beijing:Metallurgical Industry Press,2002 Sweden,1983:51 (叶大伦,胡建华.实用无机物热力学数据手册.2版.北京: [5]Tsujii N,Abe C,Fukura K,et al.Effect of testing atmosphere on 治金工业出版社,2002) low cycle fatigue of hot work tool steel at elevated temperature. [12]Yong QL.The Second Phase of the Steel Materials.Beijing: 1Snt,1995,35(7):920 Metallurgical Industry Press,2006 [6]Hu X B,Li L,Wu X C.Coarsening kinetics of carbides in (雍歧龙.钢铁材料中的第二相.北京:治金工业出版社, 4Cr5MoSiVI hot work tool steel during thermal fatigue.Trans Ma- 2006) ter Heat Treat,2005,26(1):57 [13]Chen J X.Steelmaking Common Chart Data Manual.2nd Ed. (胡心彬,李麟,吴晓春.4C5MSiV1热作模具钢热疲劳中碳 Beijing:Metallurgical Industry Press,2010 化物粗化动力学分析.材料热处理学报,2005,26(1):57) (陈家样.炼钢常用图表数据手册.2版.北京:治金工业出 Central Iron and Steel Institute,Ministry of Metallurgical Industry. 版社,2010) Physicochemical Phase Analysis of Steels,Irons and Nickel-based [14]Yue E B,Qiu S T,Gan Y.Thermodynamics of carbide and ni- Alloys.Shanghai:Shanghai Science and Technology Press,1981: tride precipitation in HSLA steel.J Iron Steel Res,2007,19 65 (1):35 (治金工业部钢铁研究总院编.钢和铁、镍基合金的物理化学 (岳尔斌,仇圣陶,干勇.低合金高强度钢中氮化物和碳化 相分析.上海:上海科学技术出版社,1981:65) 物析出热力学.钢铁研究学报,2007,19(1):35) [8]Ren H P.Effect of carbide on H13 steel annealing softening.J 15]Wu Y J,Jiang Z H,Liang L K,et al.Calculation on liquidus Iron Steel Res,1997,9(5)66 temperature of steel.J /ron Steel Res,2002,14(6):6 (任慧平.碳化物对H13钢退火软化的影响.钢铁研究学报, (武拥军,姜周华,梁连科,等.钢的液相线温度的计算。钢 1997,9(5):66) 铁研究学报,2002,14(6):6) Hu X B.Thermal Fatigue Beharior of Niobium Microalloyed H13 [16]Feng K,Han Z W,Wang Y,et al.Prediction and regression Steel [Dissertation].Shanghai:Shanghai University,2005 analysis of actual solidus temperature of carbon steel.Foundry (胡心彬.铌微合金化H13钢的热疲劳行为[学位论文].上 Technol,2007,28(7):937 海:上海大学,2005) (冯科,韩志伟,王勇,等.碳钢实际固相线温度的理论预测 [0]Song WW,Min Y A,Wu X C.Study on earbides and their evo- 及回归分析.铸造技术,2007,28(7):937)北 京 科 技 大 学 学 报 第 36 卷 [3] Yan G H,Huang X M,Wang Y Q,et al. Effects of heat treat￾ment on mechanical properties of H13 steel. Met Sci Heat Treat, 2010,52( 8) : 393 [4] Nilsson H. The influence of austenitization temperature and cooling rate after austenitization on the mechanical properties of the hot￾work tool steels H11 and H13 / / Proceedings of a Symposium. Sweden,1983: 51 [5] Tsujii N,Abe G,Fukura K,et al. Effect of testing atmosphere on low cycle fatigue of hot work tool steel at elevated temperature. ISIJ Int,1995,35( 7) : 920 [6] Hu X B,Li L,Wu X C. Coarsening kinetics of carbides in 4Cr5MoSiV1 hot work tool steel during thermal fatigue. Trans Ma￾ter Heat Treat,2005,26( 1) : 57 ( 胡心彬,李麟,吴晓春. 4Cr5MoSiV1 热作模具钢热疲劳中碳 化物粗化动力学分析. 材料热处理学报,2005,26( 1) : 57) [7] Central Iron and Steel Institute,Ministry of Metallurgical Industry. Physicochemical Phase Analysis of Steels,Irons and Nickel-based Alloys. Shanghai: Shanghai Science and Technology Press,1981: 65 ( 冶金工业部钢铁研究总院编. 钢和铁、镍基合金的物理化学 相分析. 上海: 上海科学技术出版社,1981: 65) [8] Ren H P. Effect of carbide on H13 steel annealing softening. J Iron Steel Res,1997,9( 5) : 66 ( 任慧平. 碳化物对 H13 钢退火软化的影响. 钢铁研究学报, 1997,9( 5) : 66) [9] Hu X B. Thermal Fatigue Behavior of Niobium Microalloyed H13 Steel [Dissertation]. Shanghai: Shanghai University,2005 ( 胡心彬. 铌微合金化 H13 钢的热疲劳行为[学位论文]. 上 海: 上海大学,2005) [10] Song W W,Min Y A,Wu X C. Study on carbides and their evo￾lution in H13 hot work steel. Trans Mater Heat Treat,2009,30 ( 5) : 122 ( 宋雯雯,闵永安,吴晓春. H13 钢中的碳化物分析及其演变 规律研究. 材料热处理学报,2009,30( 5) : 122) [11] Ye D L,Hu J H. Practical Inorganic Thermodynamic Data Man￾ual. 2nd Ed. Beijing: Metallurgical Industry Press,2002 ( 叶大伦,胡建华. 实用无机物热力学数据手册. 2 版. 北京: 冶金工业出版社,2002) [12] Yong Q L. The Second Phase of the Steel Materials. Beijing: Metallurgical Industry Press,2006 ( 雍歧龙. 钢铁材料中的第二相. 北京: 冶金工业出版社, 2006) [13] Chen J X. Steelmaking Common Chart Data Manual. 2nd Ed. Beijing: Metallurgical Industry Press,2010 ( 陈家祥. 炼钢常用图表数据手册. 2 版. 北京: 冶金工业出 版社,2010) [14] Yue E B,Qiu S T,Gan Y. Thermodynamics of carbide and ni￾tride precipitation in HSLA steel. J Iron Steel Res,2007,19 ( 1) : 35 ( 岳尔斌,仇圣陶,干勇. 低合金高强度钢中氮化物和碳化 物析出热力学. 钢铁研究学报,2007,19( 1) : 35) [15] Wu Y J,Jiang Z H,Liang L K,et al. Calculation on liquidus temperature of steel. J Iron Steel Res,2002,14( 6) : 6 ( 武拥军,姜周华,梁连科,等. 钢的液相线温度的计算. 钢 铁研究学报,2002,14( 6) : 6) [16] Feng K,Han Z W,Wang Y,et al. Prediction and regression analysis of actual solidus temperature of carbon steel. Foundry Technol,2007,28( 7) : 937 ( 冯科,韩志伟,王勇,等. 碳钢实际固相线温度的理论预测 及回归分析. 铸造技术,2007,28( 7) : 937) · 209 ·
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