全面综述了合金凝固微观偏析模型化方面的研究,介绍了该领域内的代表性工作以及最新的研究进展,包括典型的二元合金微观偏析模型、多元合金偏析模型以及微观偏析模型化与相图计算耦合方面的工作.重点关注了枝晶形貌、固相反扩散、热力学数据获取效率等因素对微观偏析模拟的影响,并指出了该领域需要进一步研究的问题.
参考文献
[1] | 熊守美;许庆彦;康进武.铸造过程模拟仿真技术[M].北京:机械工业出版社,2004:1. |
[2] | 梁作俭,许庆彦,柳百成.微观偏析建模与仿真的研究进展[J].材料工程,2002(08):39-43. |
[3] | Kraft T;Chang Y A .Predicting microstructure and microsegregation in muticomponent alloys[J].J Minerals Metals Mater Soc,1997,49:20. |
[4] | Battle T P .Mathematical modelling of solute segregation in solidifying materials[J].International Materials Reviews,1992,37(6):249. |
[5] | Kraft T;Exner H E .Numerical simulation of solidification,Part 1:Microsegregation in binary alloys[J].ZEITSCHRIFT FUR METALLKUNDE,1996,87:598. |
[6] | Flemings M C.Solidification processing[M].New York:McGraw-Hill Book Company,Inc,1974:31. |
[7] | Battle T P;Pehlke R D .Mathematical modeling of microsegregation in binary metallic alloys[J].Metallurgical Transactions B,1990,21:357. |
[8] | Geiger G H;Poirier D R.Transport phenomena in metallurgy[M].Menlo Park:Addison-Wesley Publishing Company,1973:431. |
[9] | Dupont J N;Robino C V;Marder A R et al.Solidification of Nb-bearing superalloys:Part Ⅱ.Pseudoternary solidification surface[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,1998,29(11):2797. |
[10] | Du Y;Chang Y A;Liu S H et al.Thermodynamics description of the Al-Fe-Mg-Mn-Si system and investigation of microstructure and microsegregation during directional solidification of an Al-Fe-Mg-Mn-Si alloy[J].ZEITSCHRIFT FUR METALLKUNDE,2005,96(12):1351. |
[11] | Brody H D;Flemings M C .Solute redistribution in dendritic solidification[J].Transactions of the Metallurgical Society of ALME,1966,236:615. |
[12] | Clyne T W;Kurz W .Solute redistribution during solidification with rapid solid state diffusion[J].METALLURGICAL TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE,1981,12:965. |
[13] | Ohnaka I .Mathematical analysis of solute redistribution during solidification with diffusion in solid phase[J].ISIJ Trans,1986,26:1045. |
[14] | Voller V R .A semi-analytical model of microsegregation in a binary alloy[J].Journal of Crystal Growth,1999,197:325. |
[15] | Voller V R;Beckermann C .A unified model of microsegregation and coarsening[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,1999,30(8):2183. |
[16] | Voller V R;Beckermann C .Approximate models of microsegregation with coarsening[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,1999,30:3016. |
[17] | Won Y M;Thomas B G .Simple model of microsegregation during solidification of steels[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,2001,32:1755. |
[18] | Xu D M .A unified microscale parameter approach to solidification-transport process-based macrosegregation modeling for dendritic solidification:Part Ⅰ.Mixture average-based analysis[J].Metallurgical and Materials Transactions B:Process Metallurgy and Materials Processing Science,2001,32:1129. |
[19] | Xu D M .A unified micro-scale parameter approach to solidification-transport process-based macrosegregation modeling for dendritic solidification:Part Ⅱ.Numerical example computations[J].Metallurgical and Materials Transactions B:Process Metallurgy and Materials Processing Science,2002,33:451. |
[20] | Bower T F;Brody H D;Flemings M C .Measurements of solute redistribution in dendritic solidification[J].Transactions of the Metallurgical Society of ALME,1966,236:624. |
[21] | Kobayashi S .A mathematical model for solute redistribution during dendritic solidification[J].ISIJ International,1988,28:535. |
[22] | Nastac L;Stefanescu D M .An analytical model for solute redistribution during solidification of planar,columnar,or equiaxed morphology[J].METALLURGICAL TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE,1993,24:2107. |
[23] | 徐达鸣,傅恒志,郭景杰,贾钧,李庆春.一种合金枝晶凝固微观溶质再分布统一模型[J].哈尔滨工业大学学报,2003(10):1156-1161. |
[24] | Xu D M;Guo J J;Fu H Z.A unified microsegregation equation deduced from a multi-scale dendrite solidification model[A].Sheffield,2007:94. |
[25] | 冯科,韩志伟,王勇,毛敬华.基于枝晶粗化和反向扩散的二元合金微观偏析数学模型[J].铸造,2006(07):699-703. |
[26] | Mehrabian R;Flemings M C .Macrosegregation in ternary alloys[J].Metallurgical and Materials Transactions B:Process Metallurgy and Materials Processing Science,1970,1(2):455. |
[27] | Sharp R M;Flemings M C .The composition of interdendritic eutectic[J].Metallurgical Transactions,1973(4):997. |
[28] | Sharp R M;Flemings M C .Solute redistribution in cellular solidification[J].Metallurgical Transactions,1974,5(4):823. |
[29] | Lacaze J;Lesoult G;Relave O et al.Thermodynamics and solidification of Al-Cu-Mg-Si alloys[J].ZEITSCHRIFT FUR METALLKUNDE,1987,78:141. |
[30] | Wolf M;Kurz W .The effect of carbon content on solidification of steel in the continuous casting mold[J].Metallurgical Transactions B,1981,12(1):85. |
[31] | Clyne T W;Wolf M;Kurz W .The effect of melt composition on solidification cracking of steel,with particular reference to continuous casting[J].Metallurgical Transactions B,1982,13(2):259. |
[32] | Ogilvy A J;Kirkwood D H .A model for the numerical computation of microsegregation in alloys[J].J Appl Sci Res,1987,44:43. |
[33] | Howe A A.Micro-segregation in peritectic alloys[A].Davos,1991:461. |
[34] | Matsumiya T .Mathematical analysis of segregation and chemical compositional changes of nonmetallic inclusions during solidification of steels[J].MATERIALS TRANSACTIONS,1992,33(9):783. |
[35] | Kobayashi S;Tomono H;Gunji K .Mathematical analysis of solidification process with consideration on solute segregation[J].ISIJ International,1988,28(3):214. |
[36] | Lacaze J;Lesoult G .Modelling the development of microsegregation during solidification of an Al-Cu-Mg-Si alloy[J].ISIJ International,1995,35(6):658. |
[37] | Ro6sz A;Exner H E .Numerical modelling of dendritic solidification in aluminim-rich Al-Cu-Mg alloys[J].ACTA METALLURGICA ET MATERIALIA,1990,38(2):375. |
[38] | J.N. DuPONT .Mathematical Modeling of Solidification Paths in Ternary Alloys: Limiting Cases of Solute Redistribution[J].Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science,2006(6):1937-1947. |
[39] | Thuinet, L;Combeau, H .A new model of microsegregation for macrosegregation computation in multicomponent steels. Part I: theoretical formulation and algorithm[J].Computational Materials Science,2009(2):294-304. |
[40] | Thuineta L;Combeau H .A new model of microsegregation for macrosegregation computation in multicomponent steels.Part Ⅱ:Application to Fe-Ni-C alloys[J].Comput Mater Sei,2009,45(2):285. |
[41] | Miettinen J .Mathematical simulation of interdendritic solidification of low-alloyed and stainless steels[J].METALLURGICAL TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE,1992,23:1155. |
[42] | Kenichi OHSASA;Susumu NAKAUE;Masayuki KUDOH .Analysis of Solidification Path of Fe-Cr-Ni Ternary Alloy[J].ISIJ International,1995(6):629-636. |
[43] | Boettinger W J.Analysis of solidification path and microsegregation in multicomponent alloys[A].San Diego,1998:159. |
[44] | Xie FY.;Zuo Y.;Moon CH.;Chang YA.;Kraft T. .Microstructure and microsegregation in Al-rich Al-Cu-Mg alloys[J].Acta materialia,1999(2):489-500. |
[45] | Yan X;Chen S;Xie F et al.Computational and experimental investigation of microsegregation in a Al-rich Al-Cu-MgSi quaternary alloy[J].ACTA MATERIALIA,2002,50:2199. |
[46] | Xie F Y;Yan X Y;Ding L et al.A study of microstructure and microsegregation of aluminum 7050 alloy[J].MATERIALS SCIENCE & ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING,2003,355:144. |
[47] | Shawn C A;Krane J M .Microsegregation in open and closed multicomponent systems[J].Mater Sei Eng A,2003,359:91. |
[48] | Vuganovi(c) I;(S)arler B;Krane M M .Microsegregation during the solidification of an Al-Mg-Si alloy in the presence of back diffusion and macrosegregation[J].MATERIALS SCIENCE & ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING,2005,413-414:217. |
[49] | Du Q;Eskin DG;Jacot A;Katgerman L .Two-dimensional modelling and experimental study on microsegregation during solidification of an Al-Cu binary alloy[J].Acta materialia,2007(5):1523-1532. |
[50] | Du Q;Jacot A .A two-dimensional micro segregation model for the description of microstructure formation during solidification in multicomponent alloys: Formulation and behaviour of the model[J].Acta materialia,2005(12):3479-3493. |
[51] | Larouche D .Computation of solidification paths in multiphase alloys with back-diffusion[J].Calphad: Computer Coupling of Phase Diagrams and Thermochemistry,2007(4):490-504. |
[52] | 张瑞杰,王晓颖,介万奇.Al-Si-Mg三元合金的溶质分凝及其对凝固过程的影响[J].中国有色金属学报,2003(06):1483-1487. |
[53] | Jie W Q;Zhang R J;He Z .Thermodynamic description of multi-component multi-phase alloys and its application to the solidification process[J].MATERIALS SCIENCE & ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING,2005,413-414:497. |
[54] | 戴挺,朱鸣芳,陈双林,曹伟生,洪俊杓.铝基四元合金枝晶组织及微观偏析的数值模拟[J].金属学报,2008(10):1175-1182. |
[55] | 赵光伟,李新中,徐达鸣,傅恒志,杜勇,贺跃辉.三元合金单相凝固路径的统一解析模型[J].金属学报,2011(09):1135-1140. |
[56] | 赵光伟,徐达鸣,宋梦华,傅恒志,杜勇,贺跃辉.基于微观偏析统一模型及Thermo-Calc的三元合金凝固路径耦合计算[J].金属学报,2009(08):956-963. |
[57] | Zhao Guangwei,Li XinZhong,Xu Daming,Guo JingJie,Fu Hengzhi,Du Yong,He Yuehui.Thermo-Calc based multi-component micro-segregation model and solidification paths calculations[J].中国铸造,2012(03):269-274. |
[58] | Doré X;Combeau H;Rappaz M .Modelling of microsegregation in ternary alloys:Application to the solidification of Al-Mg-Si[J].ACTA MATERIALIA,2000,48:3951. |
[59] | Du Q;Eskin D G;Katgerman L .An efficient technique for describing a multi-component open system solidification path[J].Calphad-computer coupling of phase diagrams and thermochemistry,2008,32:478. |
[60] | Zhao Guangwei;Li Xinzhong;Xu Daming et al.Numerical computations for temperature,fraction of solid phase and composition couplings in ternary alloy solidification with three different thermodynamics data-acquisition methods[J].Calphad-computer coupling of phase diagrams and thermochemistry,2012,36:155. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%