正在加载图片...
234 工程科学学报,第44卷.第2期 慢,而在中间阶段则迅速升高,这种变化规律,即 deformation on graphitization of 45 steel.J Univ Sci Technol 实验用钢石墨化动力学过程可用JMAK方程来描 Liaoning,2018,41(5):351 (张政,李瑞武,马柯鑫,等.中温形变对45钢石墨化的影响.辽 述;通过对实验数据的拟合,确定了本实验条件下 宁科技大学学报,2018,41(5):351) 该方程中的n值为1.5~1.7,也即得到实验用钢不 [15]Zhang Y J.Research and Development of Hypoeutectoid 同温度下的动力学方程 Graphitized Free Cutting Steel [Dissertation].Beijing:University of Science and Technology Beijing,Shougang Research Institute 参考文献 ofTechnology.2006 [1]Inam A,Edmonds D.Machinability of an experimental graphitised (张永军.亚共析石墨化易切削钢的研究与开发博士后研究工 carbon steel.Mater Sci Forum,2016,879:477 作报告].北京:北京科技大学,首钢技术研究院,2006) [2] Inam A,Brydson R,Edmonds D V.Effect of starting [16]Zhang Y J,Han J T,Wang Q L,et al.Research and development microstructure upon the nucleation sites and distribution of of graphitized hypoeutectoid free cutting steel.Iron Steel,2008, graphite particles during a graphitising anneal of an experimental 43(8):73 medium-carbon machining steel.Mater Charact,2015,106:86 (张永军,韩静涛,王全礼,等.亚共析石墨化易切削钢的开发 [3] He K,Daniels H R,Brown A,et al.An electron microscopic study 钢铁,2008,43(8):73) of spheroidal graphite nodules formed in a medium-carbon steel by [17]Zhang Y J,Han J T.Microstructure and properties of graphitized annealing.Acta Mater,2007,55(9):2919 free-cutting steel.Russ Metall (Mer),2018,2018(3):248 [4]Katayama S,Toda M.Machinability of medium carbon graphitic [18]Zhang Y J,Zhang P C,Zhang B,et al.Inhomogeneous steel.J Mater Process Technol,1996,62(4):358 deformation behavior in compressive deformation process at room [5] Iwamoto T,Murakami T.Bar and wire steels for gears and valves temperature of graphitized carbon steel.Chin J Eng,2019,41(8): of automobiles-eco-friendly free cutting steel without lead 1037 addition.Jfe Giho,2004,4:74 (张永军,张鹏程,张波,等.石墨化碳素钢室温压缩过程中的不 [6] Iwamoto T,Hoshino T,Matsuzaki A,et al.A new developed 均匀变形行为.工程科学学报,2019,41(8):1037) unleaded free cutting steel which has both of high fatigue strengh [19]Zhang Y J,Wang J H,Li X P,et al.Experimental research on the and excellent machinability using graphitization of carbon in the deformation behavior of graphitized steel under medium steel.Material Japan,2003,42(2):163 temperature compression.J Harbin Eng Univ,2021,42(3):433 [7]Mokhtari A.Rashidi A M.The transformation of CK45 steel to the (张永军,王九花,李新鹏,等,石墨化钢压缩温变形行为的试验 dual phase graphite steel and the study of its microstructure.Indian 研究.哈尔滨工程大学学报,2021,42(3):433) J Fund Appl Life Sci,2015,5(S2):1749 [20]Yin YY,Fang F,Yan X,et al.Microstructure and properties of 西 Rounaghi S A,Kiani-Rashid A R.A study on graphitisation environmental graphitized free-cutting steel.Trans Mater Heat acceleration during annealing of martensitic hypereutectoid steel. Tea,2013,34(4):133 Phase Transitions,2011,84(11-12):981 (尹云洋,方芳,严翔,等.环保石墨易切削钢的组织及性能.材 [9] Inam A,He K J,Edmonds D.Graphitisation:A potential new 料热处理学报,2013,34(4)片133) route to free-machining steels /Proceedings of HSLA Steels 2015 [21]Yin YY,Fang F,Luo G H,et al.Microstructure evolution of and Micro alloying 2015 and OES 2015.Hangzhou,2016:817 environmental graphitized hypoeutectoid free cutting steel.App/ [10]Kim Y J,Bae S W,Lim N S,et al.Graphitization behavior of Mech Mater,2014,633-634:192 medium-carbon high-silicon steel and its dependence on [22]Jia B.High carbon cold rolled sheet with excellent formability. temperature and grain size.Mater SciEngA,020,785:139392 ron Steel,1993(9:75) [11]Gao J X,Wei B Q,Li DD,et al.Nucleation and growth (佳贝.加工性能优良的高碳冷轧薄板.钢铁,1993(9):75)) characteristics of graphite spheroids in bainite during [23]Fukui K,Mizui N,Arai M,et al.Effect of carbon and phosphorus graphitization annealing of a medium carbon steel.Mater Charact, contents on the graphitization of cementite in high carbon sheet 2016,118:1 steels.Tetsu-to-hagan,199,82(12):1029 [12]Chen X Y.Study on Graphitization Process of Medium Carbon [24]Neri M A,Colas R,Valtierra S.Graphitization in high carbon Steel [Dissertation].Kunming:Kunming University of Science and commercial steels.J Mater Eng Perform,1998,7(4):467 Technology,2016 [25]Guo Z H.Kinetics and Crystallography of Solid State (陈宣宇.中碳钢的石墨化工艺研究学位论文】.昆明:昆明理工 Transformations.Shanghai:Shanghai Jiao Tong University Press, 大学,2016) 2019 [13]Chen X Y,Cao J C.Zhou X L.Effect of heat treatment on (郭正洪.固态相变动力学及品体学.上海:上海交通大学出版 microstructure of graphitized free-cutting steel.Hot Work Technol, 社,2019) 2017,46(4):234 [26]Cai X.Fundamentals of Materials Science and Engineering. (陈宜宇,曹建春,周晓龙.热处理对石墨易切削钢显微组织的 Shanghai:Shanghai Jiao Tong University Press,2010 影响.热加工工艺,2017,46(4):234) (蔡珣.材料科学与工程基础.上海:上海交通大学出版社, [14]Zhang Z,Li R W,Ma K X,et al.Effect of medium temperature 2010)慢,而在中间阶段则迅速升高,这种变化规律,即 实验用钢石墨化动力学过程可用 JMAK 方程来描 述;通过对实验数据的拟合,确定了本实验条件下 该方程中的 n 值为 1.5~1.7, 也即得到实验用钢不 同温度下的动力学方程. 参    考    文    献 Inam A, Edmonds D. Machinability of an experimental graphitised carbon steel. Mater Sci Forum, 2016, 879: 477 [1] Inam  A,  Brydson  R,  Edmonds  D  V.  Effect  of  starting microstructure  upon  the  nucleation  sites  and  distribution  of graphite particles during a graphitising anneal of an experimental medium-carbon machining steel. Mater Charact, 2015, 106: 86 [2] He K, Daniels H R, Brown A, et al. An electron microscopic study of spheroidal graphite nodules formed in a medium-carbon steel by annealing. Acta Mater, 2007, 55(9): 2919 [3] Katayama S, Toda M. Machinability of medium carbon graphitic steel. J Mater Process Technol, 1996, 62(4): 358 [4] Iwamoto T, Murakami T. Bar and wire steels for gears and valves of  automobiles-eco-friendly  free  cutting  steel  without  lead addition. Jfe Giho, 2004, 4: 74 [5] Iwamoto  T,  Hoshino  T,  Matsuzaki  A,  et  al.  A  new  developed unleaded free cutting steel which has both of high fatigue strengh and  excellent  machinability  using  graphitization  of  carbon  in  the steel. Material Japan, 2003, 42(2): 163 [6] Mokhtari A, Rashidi A M. The transformation of CK45 steel to the dual phase graphite steel and the study of its microstructure. Indian J Fund Appl Life Sci, 2015, 5(S2): 1749 [7] Rounaghi  S  A,  Kiani-Rashid  A  R.  A  study  on  graphitisation acceleration  during  annealing  of  martensitic  hypereutectoid  steel. Phase Transitions, 2011, 84(11-12): 981 [8] Inam  A,  He  K  J,  Edmonds  D.  Graphitisation:  A  potential  new route to free-machining steels // Proceedings of HSLA Steels 2015 and Micro alloying 2015 and OES 2015. Hangzhou, 2016: 817 [9] Kim  Y  J,  Bae  S  W,  Lim  N  S,  et  al.  Graphitization  behavior  of medium-carbon  high-silicon  steel  and  its  dependence  on temperature and grain size. Mater Sci Eng A, 2020, 785: 139392 [10] Gao  J  X,  Wei  B  Q,  Li  D  D,  et  al.  Nucleation  and  growth characteristics  of  graphite  spheroids  in  bainite  during graphitization annealing of a medium carbon steel. Mater Charact, 2016, 118: 1 [11] Chen  X  Y. Study on Graphitization Process of Medium Carbon Steel [Dissertation]. Kunming: Kunming University of Science and Technology, 2016 ( 陈宣宇. 中碳钢的石墨化工艺研究[学位论文]. 昆明: 昆明理工 大学, 2016) [12] Chen  X  Y,  Cao  J  C,  Zhou  X  L.  Effect  of  heat  treatment  on microstructure of graphitized free-cutting steel. Hot Work Technol, 2017, 46(4): 234 (陈宣宇, 曹建春, 周晓龙. 热处理对石墨易切削钢显微组织的 影响. 热加工工艺, 2017, 46(4):234) [13] [14] Zhang Z, Li R W, Ma K X, et al. Effect of medium temperature deformation  on  graphitization  of  45  steel. J Univ Sci Technol Liaoning, 2018, 41(5): 351 (张政, 李瑞武, 马柯鑫, 等. 中温形变对45钢石墨化的影响. 辽 宁科技大学学报, 2018, 41(5):351) Zhang  Y  J. Research and Development of Hypoeutectoid Graphitized Free Cutting Steel [Dissertation]. Beijing: University of  Science  and  Technology  Beijing,  Shougang  Research  Institute of Technology, 2006 ( 张永军. 亚共析石墨化易切削钢的研究与开发[博士后研究工 作报告]. 北京: 北京科技大学, 首钢技术研究院, 2006) [15] Zhang Y J, Han J T, Wang Q L, et al. Research and development of  graphitized  hypoeutectoid  free  cutting  steel. Iron Steel,  2008, 43(8): 73 (张永军, 韩静涛, 王全礼, 等. 亚共析石墨化易切削钢的开发. 钢铁, 2008, 43(8):73) [16] Zhang Y J, Han J T. Microstructure and properties of graphitized free-cutting steel. Russ Metall (Met), 2018, 2018(3): 248 [17] Zhang  Y  J,  Zhang  P  C,  Zhang  B,  et  al.  Inhomogeneous deformation behavior in compressive deformation process at room temperature of graphitized carbon steel. Chin J Eng, 2019, 41(8): 1037 (张永军, 张鹏程, 张波, 等. 石墨化碳素钢室温压缩过程中的不 均匀变形行为. 工程科学学报, 2019, 41(8):1037) [18] Zhang Y J, Wang J H, Li X P, et al. Experimental research on the deformation  behavior  of  graphitized  steel  under  medium temperature compression. J Harbin Eng Univ, 2021, 42(3): 433 (张永军, 王九花, 李新鹏, 等. 石墨化钢压缩温变形行为的试验 研究. 哈尔滨工程大学学报, 2021, 42(3):433) [19] Yin Y Y, Fang F, Yan X, et al. Microstructure and properties of environmental  graphitized  free-cutting  steel. Trans Mater Heat Treat, 2013, 34(4): 133 (尹云洋, 方芳, 严翔, 等. 环保石墨易切削钢的组织及性能. 材 料热处理学报, 2013, 34(4):133) [20] Yin  Y  Y,  Fang  F,  Luo  G  H,  et  al.  Microstructure  evolution  of environmental  graphitized  hypoeutectoid  free  cutting  steel. Appl Mech Mater, 2014, 633-634: 192 [21] Jia  B.  High  carbon  cold  rolled  sheet  with  excellent  formability. Iron Steel, 1993(9): 75) (佳贝. 加工性能优良的高碳冷轧薄板. 钢铁, 1993(9):75)) [22] Fukui K, Mizui N, Arai M, et al. Effect of carbon and phosphorus contents  on  the  graphitization  of  cementite  in  high  carbon  sheet steels. Tetsu-to-hagané, 1996, 82(12): 1029 [23] Neri  M  A,  Colás  R,  Valtierra  S.  Graphitization  in  high  carbon commercial steels. J Mater Eng Perform, 1998, 7(4): 467 [24] Guo  Z  H. Kinetics and Crystallography of Solid State Transformations. Shanghai: Shanghai Jiao Tong University Press, 2019 ( 郭正洪. 固态相变动力学及晶体学. 上海: 上海交通大学出版 社, 2019) [25] Cai  X. Fundamentals of Materials Science and Engineering. Shanghai: Shanghai Jiao Tong University Press, 2010 ( 蔡珣. 材料科学与工程基础. 上海: 上海交通大学出版社, 2010) [26] · 234 · 工程科学学报,第 44 卷,第 2 期
<<向上翻页
©2008-现在 cucdc.com 高等教育资讯网 版权所有