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湛文龙等:高炉内铁-焦界面的渗碳润湿行为研究 601· 40(12):1434 Temperatures.Oxford:Pergamon Press,1999 (程礼梅,张立峰,沈平钢铁治金过程中的界面润湿性的基础 [21]Lee J,Morita K.Dynamic interfacial phenomena between gas, 工程科学学报,2018,40(12):1434) liquid iron and solid Cao during desulfurization./SI/Int,2004, [16]Frenznick S,Swaminathan S,Stratmann M,et al.A novel appro- 44(2):235 ach to determine high temperature wettability and interfacial reacti- [22]Makkonen L.Young's equation revisited.J.Phys Condens Matter, ons in liquid metal/solid interface.Mater Sci,2010,45(8):2106 201628(13):135001 [17]Tandjaoui A.Cherif M,Carroz L,et al.Investigation of liquid [23]Liu Y M,Shi J Y,Lu QQ,et al.Research progress on calculation oxide interactions with refractory substrates via sessile drop of solid surface tension based on Young's equation.Mater Rep, method.J Mater Sci,2016,51(4):1701 2013,27(6):123 [18]Mao W J,Noji T,Teshima K,et al.Wettability of molten (刘永明,施建宇,鹿芹芹,等.基于杨氏方程的固体表面能计算 aluminum-silicon alloys on graphite and surface tension of those 研究进展.材料导报,2013,27(6):123) alloys at 1273 K (1000 C).Metall Mater Trans A,2016.47(6): [24]Shinozaki N,Satoh N,Shinozaki H,et al.Measurement of 3201 interfacial free energy between carbon saturated molten iron and [19]Yin D X,Ma P S,Xia S Q.Progress on methods for measuring graphite based on the sign rule.JJpn Inst Met,2006,70(12):950 surface tension of liquids.Bull Sci Technol,2007,23(3):424 [25]Nguyen C S,Ohno K,Maeda T,et al.Role of Al2O;in interfacial (尹东霞,马沛生,夏淑倩.液体表面张力测定方法的研究进展. morphology and reactive wetting behaviour between carbon- 科技通报,2007,23(3):424) unsaturated liquid iron and simulant coke substrate./S//Int,2016, [20]Eustathopoulos N,Nicholas M G,Drevet B.Wettabiliry at High 56(8):132540(12): 1434 (程礼梅, 张立峰, 沈平. 钢铁冶金过程中的界面润湿性的基础. 工程科学学报, 2018, 40(12):1434) Frenznick S, Swaminathan S, Stratmann M, et al. A novel appro￾ach to determine high temperature wettability and interfacial reacti￾ons in liquid metal/solid interface. J Mater Sci, 2010, 45(8): 2106 [16] Tandjaoui  A,  Cherif  M,  Carroz  L,  et  al.  Investigation  of  liquid oxide  interactions  with  refractory  substrates  via  sessile  drop method. J Mater Sci, 2016, 51(4): 1701 [17] Mao  W  J,  Noji  T,  Teshima  K,  et  al.  Wettability  of  molten aluminum-silicon  alloys  on  graphite  and  surface  tension  of  those alloys at 1273 K (1000 ℃). Metall Mater Trans A, 2016, 47(6): 3201 [18] Yin  D  X,  Ma  P  S,  Xia  S  Q.  Progress  on  methods  for  measuring surface tension of liquids. Bull Sci Technol, 2007, 23(3): 424 (尹东霞, 马沛生, 夏淑倩. 液体表面张力测定方法的研究进展. 科技通报, 2007, 23(3):424) [19] [20] Eustathopoulos  N,  Nicholas  M  G,  Drevet  B. Wettability at High Temperatures. Oxford: Pergamon Press, 1999 Lee  J,  Morita  K.  Dynamic  interfacial  phenomena  between  gas, liquid  iron  and  solid  CaO  during  desulfurization. ISIJ Int,  2004, 44(2): 235 [21] Makkonen L. Young’s equation revisited. J. Phys Condens Matter, 2016, 28(13): 135001 [22] Liu Y M, Shi J Y, Lu Q Q, et al. Research progress on calculation of  solid  surface  tension  based  on  Young's  equation. Mater Rep, 2013, 27(6): 123 (刘永明, 施建宇, 鹿芹芹, 等. 基于杨氏方程的固体表面能计算 研究进展. 材料导报, 2013, 27(6):123) [23] Shinozaki  N,  Satoh  N,  Shinozaki  H,  et  al.  Measurement  of interfacial  free  energy  between  carbon  saturated  molten  iron  and graphite based on the sign rule. J Jpn Inst Met, 2006, 70(12): 950 [24] Nguyen C S, Ohno K, Maeda T, et al. Role of Al2O3 in interfacial morphology  and  reactive  wetting  behaviour  between  carbon￾unsaturated liquid iron and simulant coke substrate. ISIJ Int, 2016, 56(8): 1325 [25] 湛文龙等: 高炉内铁−焦界面的渗碳润湿行为研究 · 601 ·
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