Steels of constant manganese and carbon contents with silicon content of 0.34% -2.26% were cast. The as-cast steels were then hot rolled at 1100 ℃ in five passes to reduce the cast ingot thickness from 80 to 4 mm,air cooled to room temperature and cold rolled to 2 mm in thickness. Dual phase microstructures with different volume fraction of martensite were obtained through the intercritical annealing of the steels at different temperatures for 15 min followed by water quenching. In addition to intercritical annealing temperature,silicon content also altered-the volume fraction of martensite in dual phase steels. The partitioning of manganese in dual phase silicon steels was investigated using energy-dispersive spectrometer (EDS). The partitioning coefficient,defined as the ratio of the amounts of alloying element in the austenite to that in the adjacent ferrite,for manganese increased with increasing intercritical annealing temperature and silicon content of steels. It was also found that the solubility of manganese in ferrite and austenite decreased with increasing intercritical temperature. The results were discussed by the diffusivity and the solubility of manganese in ferrite and austenite existed in dual phase silicon steels.
参考文献
[1] | Matlock D K;Krauss G;Ramos L F.Structure and Properties of Dual Phase Steels[M].Warrendale:AIME,1979 |
[2] | Hoel R H .Metallography and Partitioning of Alloying Elements in Dual Phase Steels[J].Metallograghy,1984,17:273. |
[3] | Khaira H K;Jena A K;Chaturvedi M C.Effects of Heat Treatment Cycle on Equilibrium Between Ferrite and Austenite During Intercritical Annealing[J].Materials Science and Engineering,1993(161):267. |
[4] | Chaturvedi M C;Jena A K.Effect of Intercritical Annealing Temperature on Equilibrium Between Ferrite and Austenite[J].Materials Science and Engineering,1987(94):1. |
[5] | Chang P H .Retained Austenite in a Brine Quenched 0.08%C-0.96%Mn Dual Phase Steel[J].Scripta Metallurgica,1984,18:1245. |
[6] | Nassar A;Vipond R;Mintz B.Influence of Intercritical Annealing on Strength and Impact Behaviour of Nb Containing steels[J].Materials Science and Engineering,1991(07):699. |
[7] | Navara E;Lee C H;Smith D J.Investigation of Microstructur-al Changes Occuring During Warm Working of Manganese Partitioned Dual Phase Steel[J].Materials Science and Technology,1990(06):151. |
[8] | Sun SJ.;Pugh M. .Properties of thermomechanically processed dual-phase steels containing fibrous martensite[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2002(1/2):298-308. |
[9] | Lis J.;Morgiel J.;Lis A. .The effect of Mn partitioning in Fe-Mn-Si alloy investigated with STEM-EDS techniques[J].Materials Chemistry and Physics,2003(2/3):466-468. |
[10] | Sakuma Y;Matlock D K;Krauss G .Intercritically Annealed and Isothermally Transformed 0.15 Pet C Steels Containing 1.2 Pct Si-1.5 Pct Mn and 4 Pet Ni:Part I.Transformation,Microstructure,and Room-Temperature Mechanical Properties[J].Metallurgical and Materials Transactions,1992,23:1221. |
[11] | Navara E;Harrysson R .On the Mechanism of Austenite Formation During Inter and Subcritical Annealing of a C-Mn Steel[J].Scripta Metallurgica,1984,18:605. |
[12] | Garcia C I;DeArdo A J .Formation of Austenite in Low Alloy Steels[J].Metallurgical and Materials Transactions,1981,12:521. |
[13] | Davies R G .Influence of Silicon and Phosphorous on the Mechanical Properties of Both Ferrite and Dual Phase Steels[J].Metallurgical and Materials Transactions,1979,10:113. |
[14] | Leslie W C;Rauch G C .Precipitation of Carbides in Low-Carbon Fe-Al-C Alloys[J].Metallurgical and Materials Transactions,1978,9:343. |
[15] | Andrews K W.Empirical Formulae for the Calculation of Some Transformation Temperatures[J].Journal of the Iron and Steel Institute,1965(203):721. |
[16] | Reed-Hill R E;Abbaschian R.Physical Metallurgy Principles[M].Boston:PWS Publishing Company,1994 |
[17] | Sarosiek A M;Owen W S .On the Importance of Extrinsic Transformation Accommodation Hardening in Dual Phase Steels[J].Scripta Metallurgica,1983,17:227. |
[18] | Yang D Z;Brown E L;Matlock D K .The Formation of Austenite at Low Intercritical Annealing Temperatures in a Normalized 0.08C-1.45Mn-0.21Si Steel[J].Metallurgical and Materials Transactions,1985,16:1385. |
[19] | Sun S;Pugh M.Manganese Partitioning in Dual Phase Steel During Annealing[J].Materials Science and Engineering,2000(276):167. |
[20] | Aaronson H I;Domain H A.Thermodynamics of the Austenite to Proeutectoid Ferrite Transformation II Fe-CX Alloys[J].TMS-AIME,1966(236):768. |
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