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824 工程科学学报,第43卷.第6期 (洪陆阔,艾立群,程荣,等.铁碳合金薄带气固反应脱碳工艺 field.Steel Res Int,2014,85(3):461 钢铁研究学报,2016,28(5):36) [20]Chen J,Hao J J,Wang C L,et al.Solid-phase decarburization of [8]Hong L K,Ai L Q,Cheng R,et al.Experimental of gas-solid high-carbon ferrochrome powders containing calcium carbonate by decarburization of Fe-C alloy ribbon./ron Steel,2016,51(3):27 microwave heating.J Univ Sci Technol Beijing,2014,36(12): (洪陆阔,艾立群,程荣,等.铁碳合金薄带气固反应脱碳试验 1626 钢铁,2016,51(3):27) (陈津,郝赳赳,王晨亮,等.微波加热内配碳酸钙高碳铬铁粉固 [9]Hong L K,Cheng R,AiL Q,et al.Mechanism of carbon diffusion 相脱碳.北京科技大学学报,2014,36(12):1626) in the iron Sheet during gas-solid decarburization.Trans Indian [21]Chen R Y.Reduction of wustite scale by dissolved carbon in steel ntMe1,2019,72(2):335 at650-900℃.Oxid Met,.2018,89(1-2):1 [10]Park J O,Long T V,Sasaki Y.Feasibility of solid-state [22]Chen Y R,Zhang F,Liu Y.Decarburization of 60Si2MnA in 20 steelmaking from cast iron -decarburization of rapidly solidified Pct HO-N2 at 700 C to 900 C.Metall Mater Trans A,2020. cast iron.ISIJ Int,2012,52(1):26 51(4):1808 [11]McDonald C.Solid state steelmaking:process technical and [23]Chen Y R,Liu Y,Xu XX.Oxidation of 60Si2MnA steel in economic viability.Ironmak Steelmak,2012,39(7):487 atmospheres containing different levels of oxygen,water vapour [12]Lee W H,Park J O,Lee J S,et al.Solid state steelmaking by and carbon dioxide at 700-1000 C.Oxid Met,2020,93(1-2):53 decarburisation of rapidly solidified high carbon iron sheet. [24]Zhao F,Zhang C L,Liu Y Z.Ferrite decarburization of high Ironmak Steelmak,2012,39(7):530 silicon spring steel in three temperature ranges.Arch Metall Mater, [13]Sharif-Sanavi E,Mirjalili M,Vahdati Khaki J,et al.A new 2016,61(3:1715 approach in solid state steelmaking from thin cast iron sheets [25]Duan X N,Yu H,Lu J,et al.Temperature dependence and through decarburization in CaCO;pack./S//Int,2018,58(10): formation mechanism of surface decarburization behavior in 1791 35CrMo steel.Steel Res Int,2019,90(9):1900188 [14]Jing Y A.Yuan Y M,Yan X L,et al.Decarburization mechanism [26]Luo H W,Xiang R,Chen L F,et al.Modeling the decarburization during hydrogen reduction descaling of hot-rolled strip steel.Int Hydrogen Energy,2017,42(15):10611 kinetics of grain-oriented silicon steel.Chin Sci Bull,2014, [15]Zhang K.Chen Y L.Sun Y H,et al.Effect of H2O(g)on 59(15):1778 decarburization of 55SiCr spring steel during the heating process. [27]Zeng G M,Luo H W,Li J,et al.Experimental studies and Acta Metall Sin,2018,54(10):1350 numerical simulation on the nitriding process of grain-oriented (张凯,陈银莉,孙意辉,等.加热过程中H,O(g)对55SiCr弹簧钢 silicon steel.Acta Metall Sin,2017,53(6):743 脱碳的影响.金属学报,2018.54(10):1350) (曾贵民,罗海文,李军,等.取向硅钢低温加热工艺中渗氮工序 [16]Liu Y B,Zhang W,Tong Q,et al.Effect of Si and Cr on complete 的实验与数值模拟研究.金属学报,2017,53(6):743) decarburization behavior of high carbon steels in atmosphere of 2 [28]Zhao X M,Zhang K,Yang Y.Investigation of surface vol.%O.J Iron Steel Res Int,2016,23(12):1316 decarburization behavior in 42CrMo steel.J Iron Steel Res,2019, [17]Guo L N,Chen J,Zhang M,et al.Decarburization 31(2):196 thermodynamics of high-carbon ferromanganses powders during (赵宪明,张坤,杨祥.42CMo钢表面脱碳行为研究.钢铁研究学 gas-solid fluidization process.fron Steel Res Int,2012,19(5):I 报,2019,31(2):196) [18]Guo L N,Chen J,Shi W L,et al.Solid-phase decarburization of [29]Chen Y L,Zuo M F,Luo Z L,et al.Theoretical and experimental high-carbon ferromanganses powders by microwave heating.J study on surface decarburization of 60Si2Mn spring steel.Trans Iron Steel Res Int,2013,20(8):34 Mater Heat Treat,2015,36(1):192 [19]Hao J J,Chen J,Han P D,et al.Solid phase decarburization (陈银莉,左茂方,罗兆良,等.6OSi2M弹簧钢表面脱碳理论及 kinetics of high-carbon ferrochrome powders in the microwave 试验研究.材料热处理学报,2015,36(1):192)(洪陆阔, 艾立群, 程荣, 等. 铁碳合金薄带气固反应脱碳工艺. 钢铁研究学报, 2016, 28(5):36) Hong L K, Ai L Q, Cheng R, et al. Experimental of gas ‒solid decarburization of Fe‒C alloy ribbon. Iron Steel, 2016, 51(3): 27 (洪陆阔, 艾立群, 程荣, 等. 铁碳合金薄带气固反应脱碳试验. 钢铁, 2016, 51(3):27) [8] Hong L K, Cheng R, Ai L Q, et al. Mechanism of carbon diffusion in the iron Sheet during gas ‒solid decarburization. Trans Indian Inst Met, 2019, 72(2): 335 [9] Park J O, Long T V, Sasaki Y. Feasibility of solid-state steelmaking from cast iron –decarburization of rapidly solidified cast iron. ISIJ Int, 2012, 52(1): 26 [10] McDonald C. Solid state steelmaking: process technical and economic viability. Ironmak Steelmak, 2012, 39(7): 487 [11] Lee W H, Park J O, Lee J S, et al. Solid state steelmaking by decarburisation of rapidly solidified high carbon iron sheet. Ironmak Steelmak, 2012, 39(7): 530 [12] Sharif-Sanavi E, Mirjalili M, Vahdati Khaki J, et al. A new approach in solid state steelmaking from thin cast iron sheets through decarburization in CaCO3 pack. ISIJ Int, 2018, 58(10): 1791 [13] Jing Y A, Yuan Y M, Yan X L, et al. Decarburization mechanism during hydrogen reduction descaling of hot-rolled strip steel. Int J Hydrogen Energy, 2017, 42(15): 10611 [14] Zhang K, Chen Y L, Sun Y H, et al. Effect of H2O(g) on decarburization of 55SiCr spring steel during the heating process. Acta Metall Sin, 2018, 54(10): 1350 (张凯, 陈银莉, 孙彦辉, 等. 加热过程中H2O(g)对55SiCr弹簧钢 脱碳的影响. 金属学报, 2018, 54(10):1350) [15] Liu Y B, Zhang W, Tong Q, et al. Effect of Si and Cr on complete decarburization behavior of high carbon steels in atmosphere of 2 vol.% O2 . J Iron Steel Res Int, 2016, 23(12): 1316 [16] Guo L N, Chen J, Zhang M, et al. Decarburization thermodynamics of high-carbon ferromanganses powders during gas-solid fluidization process. J Iron Steel Res Int, 2012, 19(5): 1 [17] Guo L N, Chen J, Shi W L, et al. Solid-phase decarburization of high-carbon ferromanganses powders by microwave heating. J Iron Steel Res Int, 2013, 20(8): 34 [18] Hao J J, Chen J, Han P D, et al. Solid phase decarburization kinetics of high-carbon ferrochrome powders in the microwave [19] field. Steel Res Int, 2014, 85(3): 461 Chen J, Hao J J, Wang C L, et al. Solid-phase decarburization of high-carbon ferrochrome powders containing calcium carbonate by microwave heating. J Univ Sci Technol Beijing, 2014, 36(12): 1626 (陈津, 郝赳赳, 王晨亮, 等. 微波加热内配碳酸钙高碳铬铁粉固 相脱碳. 北京科技大学学报, 2014, 36(12):1626) [20] Chen R Y. Reduction of wustite scale by dissolved carbon in steel at 650–900 ℃. Oxid Met, 2018, 89(1-2): 1 [21] Chen Y R, Zhang F, Liu Y. Decarburization of 60Si2MnA in 20 Pct H2O ‒N2 at 700 ℃ to 900 ℃. Metall Mater Trans A, 2020, 51(4): 1808 [22] Chen Y R, Liu Y, Xu X X. Oxidation of 60Si2MnA steel in atmospheres containing different levels of oxygen, water vapour and carbon dioxide at 700–1000 ℃. Oxid Met, 2020, 93(1-2): 53 [23] Zhao F, Zhang C L, Liu Y Z. Ferrite decarburization of high silicon spring steel in three temperature ranges. Arch Metall Mater, 2016, 61(3): 1715 [24] Duan X N, Yu H, Lu J, et al. Temperature dependence and formation mechanism of surface decarburization behavior in 35CrMo steel. Steel Res Int, 2019, 90(9): 1900188 [25] Luo H W, Xiang R, Chen L F, et al. Modeling the decarburization kinetics of grain-oriented silicon steel. Chin Sci Bull, 2014, 59(15): 1778 [26] Zeng G M, Luo H W, Li J, et al. Experimental studies and numerical simulation on the nitriding process of grain-oriented silicon steel. Acta Metall Sin, 2017, 53(6): 743 (曾贵民, 罗海文, 李军, 等. 取向硅钢低温加热工艺中渗氮工序 的实验与数值模拟研究. 金属学报, 2017, 53(6):743) [27] Zhao X M, Zhang K, Yang Y. Investigation of surface decarburization behavior in 42CrMo steel. J Iron Steel Res, 2019, 31(2): 196 (赵宪明, 张坤, 杨洋. 42CrMo钢表面脱碳行为研究. 钢铁研究学 报, 2019, 31(2):196) [28] Chen Y L, Zuo M F, Luo Z L, et al. Theoretical and experimental study on surface decarburization of 60Si2Mn spring steel. Trans Mater Heat Treat, 2015, 36(1): 192 (陈银莉, 左茂方, 罗兆良, 等. 60Si2Mn弹簧钢表面脱碳理论及 试验研究. 材料热处理学报, 2015, 36(1):192) [29] · 824 · 工程科学学报,第 43 卷,第 6 期
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