Effects of prior austenite deformation and non-metallic inclusions on the ferrite nucleation and grain refinement of two kinds of low-carbon steels have been studied. The ferrite nucleation on MnS and V(C,N) is observed. The combination of thermomechanical processes with adequate amounts of non-metallic inclusions formed in low-carbon steels could effectively refine the grain size and the microstructure. Ferrite nucleated on the single MnS or V(CN) inclusions and complex MnS+V(C,N) inclusion. The proper addition of elements S and V could effectively promote the formation of ferrite and further refinement of ferrite grains.
参考文献
[1] | Garcia C I;Lis A K;Pytel S M et al.Ultra-Low Carbon Bai-nitic Plate Steels:Processing,Microstructure and Properties[J].ISS Trans,1992,13:103. |
[2] | Hulka K;Hesterkamp F;Nachtel L.Microstructure and Properties of HSLA Steels[M].Warrendale,TMS,1988 |
[3] | Chiaki OUCHI .Development of Steel Plates by Intensive Use of TMCP and Direct Quenching Processes[J].ISIJ International,2001(6):542-553. |
[4] | J.-L. LEE;Y.-T. PAN .The formation of intragranular acicular ferrite in simulated heat-affected zone[J].ISIJ International,1995(8):1027-1033. |
[5] | Zhang Z;Farrar R A .Role of Non-Metallic Inclusions in For-mation of Acicular Ferrite in Low Alloy Weld Metals[J].Materials Science and Technology,1996,12(03):237. |
[6] | Madariaga I.;Gutierrez I. .Role of the particle-matrix interface on the nucleation of acicular ferrite in a medium carbon microalloyed steel[J].Acta materialia,1999(3):951-960. |
[7] | J.-H. SHIM;Y. W. CHO .NUCLEATION OF INTRAGRANULAR FERRITE AT Ti2O3 PARTICLE IN LOW CARBON STEEL[J].Acta materialia,1999(9):2751-2760. |
[8] | Mills A R;Thewlis G;Whiteman J A .Nature of Inclusions in Steel Weld Metals and Their Influence on Formation of Acicular Ferrite[J].Materials Science and Technology,1987,3(12):1051. |
[9] | Shigesato G;Sugiyama M .Development of in situ observation technique using scanning ion microscopy and demonstration of Mn depletion effect on intragranular ferrite transformation in low-alloy steel.[J].Journal of Electron Microscopy,2002(6):359-367. |
[10] | HAN S. KIM;HAE-GEON LEE;KYUNG-SHIK OH .MnS Precipitation in Association with Manganese Silicate Inclusions in Si/Mn Deoxidized Steel[J].Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science,2001(6):1519-1525. |
[11] | J. -H. SHIM;Y. -J. OH;J. -Y SUH .FERRITE NUCLEATION POTENCY OF NON-METALLIC INCLUSIONS IN MEDIUM CARBON STEELS[J].Acta materialia,2001(12):2115-2122. |
[12] | Yang ZG.;Enomoto M. .A discrete lattice plane analysis of coherent f.c.c./B1 interfacial energy[J].Acta materialia,1999(18):4515-4524. |
[13] | Yang Z G;Enomoto M .Calculation of the Interfacial Energy of Bl-Type Carbides and Nitrides With Austenite[J].Metallurgical and Materials Transactions,2001,32A(02):267. |
[14] | Yang Z G;Enomoto M .Discrete Lattice Plane Analysis of Baker-Nutting Related Bl Compound/Ferrite Interfacial Energy[J].Materials Science and Engineering,2002,A332:184. |
[15] | G. Miyamoto;T. Shinyoshi;J. Yamaguchi;T. Furuhara;T. Maki;R. Uemori .Crystallography of intragranular ferrite formed on (MnS + V(C, N)) complex precipitate in austenite[J].Scripta materialia,2003(4):371-377. |
[16] | Pan T;Yang Z G;Bai B Z et al.Study of Thermal Stress and Strain Energy in y-Fe Matrix Around Inclusion Caused by Thermal Coefficient Difference[J].Acta Mater Sinica,2003,39(10):1037. |
[17] | Enomoto M .Nucleation of Phase Transformations at Intragranular Inclusions in Steel[J].Metallic Materials,1998,4(02):115. |
[18] | Gibbs R K;Hodgson P D;Parker B A.The Formation of the Highly Crystallographic Bainitic[A].Warrendale:TMS,1991:73. |
[19] | Bakkaloglu A .Effect of Processing Parameters on the Micro-structure and Properties of an Nb Microalloyed Steel[J].Materials Letters,2000,56(03):200. |
[20] | Chiou CS.;Huang CY.;Yang JR. .The effect of prior compressive deformation of austenite on toughness property in an ultra-low carbon bainitic steel[J].Materials Chemistry and Physics,2001(1/3):113-124. |
[21] | Wang J P;Yang Z G;Bai B Z et al.Grain Refinement and Microstructural Evolution of Grain Boundary Allotriomorphic Ferrite/Granular Bainite Steel After Prior Austenite Deformation[J].Materials Science and Engineering,2004,369A(1/2):112. |
[22] | Misra RDK;Nathani H;Hartmann JE;Siciliano F .Microstructural evolution in a new 770 MPa hot rolled Nb-Ti microalloyed steel[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2005(1/2):339-352. |
[23] | Lee J L;Pan Y T .Effect of Sulfur Content on the Microstruc-ture and Toughness of Simulated Heat-Affected Zone in Ti-Killed Steels[J].Metallurgical and Materials Transactions,1993,24A(06):1399. |
[24] | Tomita Y;Saito N .Improvement in HAZ Toughness of Steel by TiN-MnS Addition[J].ISIJ International,1994,34(10):829. |
[25] | James L. Maloney;Warren M. Garrison Jr .The effect of sulfide type on the fracture behavior of HY180 steel[J].Acta materialia,2005(2):533-551. |
[26] | A.M. Guo;S.R. Li;J. Guo .Effect of zirconium addition on the impact toughness of the heat affected zone in a high strength low alloy pipeline steel[J].Materials Characterization,2008(2):134-139. |
[27] | PAN T;YANG Z G;ZHANG C et al.Kinetics and Mechanisms of Intragranular Ferrite Nucleation on Non-Metallic Inclusions in Low Carbon Steels[J].Materials Science and Engineering,2006,438-440A:1128. |
[28] | Maki T;Furuhara T .Effect of Oxygen Potential on Cohesion of Pulverized Iron Oxide Under a Reducing Atmosphere[J].Tetsu To Hagane-Journal of the Iron & Steel Institute of Japan,2005,91(01):16. |
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%