Kinetics analysis of two-stage austenitization in supermartensitic stainless steel
暂无分享,去创建一个
J. Hald | F. Niessen | M. Villa | M. Somers
[1] J. Hald,et al. In Situ Techniques for the Investigation of the Kinetics of Austenitization of Supermartensitic Stainless Steel , 2016 .
[2] W. M. Rainforth,et al. Predicting microstructure and strength of maraging steels: Elemental optimisation , 2016 .
[3] P. F. Morris,et al. Austenite Formation from Martensite in a 13Cr6Ni2Mo Supermartensitic Stainless Steel , 2016, Metallurgical and Materials Transactions A.
[4] Yiyi Li,et al. Investigation of the evolution of retained austenite in Fe–13%Cr–4%Ni martensitic stainless steel during intercritical tempering , 2015 .
[5] T. Nakamoto,et al. Effect of retained austenite on subsequent thermal processing and resultant mechanical properties of selective laser melted 17–4 PH stainless steel , 2015 .
[6] B. Chi,et al. Study of tempering behavior of lath martensite using in situ neutron diffraction , 2015 .
[7] Henrik Larsson,et al. A model for 1D multiphase moving phase boundary simulations under local equilibrium conditions , 2014 .
[8] Quentin Kuperman-Le Bihan,et al. In situ synchrotron X-ray diffraction and dilatometric study of austenite formation in a multi-component steel: Influence of initial microstructure and heating rate , 2014 .
[9] Jun Li,et al. Reverse Transformation Mechanism of Martensite to Austenite in 00Cr15Ni7Mo2WCu2 Super Martensitic Stainless Steel , 2014 .
[10] L. Rong,et al. Reversed austenite in 0Cr13Ni4Mo martensitic stainless steels , 2014 .
[11] A. Zhao,et al. Precipitation Behavior and Textural Evolution of Cold-Rolled High Strength Deep Drawing Dual-Phase Steels , 2013 .
[12] Z. G. Yang,et al. Effect of retained austenite on austenite memory of a 13% Cr–5% Ni martensitic steel , 2013 .
[13] M. Herbig,et al. Segregation engineering enables nanoscale martensite to austenite phase transformation at grain boun , 2013 .
[14] Jun Li,et al. Effect of Heat Treatment on Reversed Austenite in Cr15 Super Martensitic Stainless Steel , 2013 .
[15] Jun Li,et al. Effect of Cu addition on microstructure and mechanical properties of 15%Cr super martensitic stainless steel , 2012 .
[16] P. F. Morris,et al. In-situ determination of austenite and martensite formation in 13Cr6Ni2Mo supermartensitic stainless steel , 2012 .
[17] D. Ponge,et al. Nanoscale austenite reversion through partitioning, segregation and kinetic freezing: Example of a d , 2012, 1202.4135.
[18] T. Tsuchiyama,et al. Temperature Dependence of Austenite Nucleation Behavior from Lath Martensite , 2011 .
[19] Wenbo Liu,et al. An in situ study on austenite memory and austenitic spontaneous recrystallization of a martensitic steel , 2010 .
[20] L. Rong,et al. Anomalous Phase Transformation from Martensite to Austenite in Fe-13%Cr-4%Ni-Mo Martensitic Stainless Steel , 2010 .
[21] F. Yin,et al. Microstructural evolution and low temperature impact toughness of a Fe-13%Cr-4%Ni-Mo martensitic stainless steel , 2010 .
[22] Helmut Schaeben,et al. A novel pole figure inversion method: specification of the MTEX algorithm , 2008 .
[23] P. Rivera-Díaz-del-Castillo,et al. In situ study of austenite formation by dilatometry in a low carbon microalloyed steel , 2008 .
[24] G. Rørvik,et al. SEM/EBSD based in situ studies of deformation induced phase transformations in supermartensitic stainless steels , 2008 .
[25] T. Tsuchiyama,et al. Variant Selection of Reversed Austenite in Lath Martensite , 2007 .
[26] Shigekazu Morito,et al. The morphology and crystallography of lath martensite in alloy steels , 2006 .
[27] M. Klaus,et al. The Materials Science Beamline EDDI for Energy-Dispersive Analysis of Subsurface Residual Stress Gradients , 2006 .
[28] R. Kapoor,et al. On the α′ to γ transformation in maraging (grade 350), PH 13-8 Mo and 17-4 PH steels , 2004 .
[29] I. E. Mahallawi,et al. Thermal aging of 16Cr – 5Ni – 1Mo stainless steel Part 1 – Microstructural analysis , 2004 .
[30] Tadashi Furuhara,et al. The morphology and crystallography of lath martensite in Fe-C alloys , 2003 .
[31] W. Jin,et al. Reverse transformation mechanism of martensite to austenite and amount of retained austenite after reverse transformation in Fe-3Si-13Cr-7Ni (wt-%) martensitic stainless steel , 2003 .
[32] J. Jun,et al. Amount of retained austenite at room temperature after reverse transformation of martensite to austenite in an Fe–13%Cr–7%Ni–3%Si martensitic stainless steel , 2001 .
[33] P. D Bilmes,et al. Characteristics and effects of austenite resulting from tempering of 13Cr–NiMo martensitic steel weld metals , 2001 .
[34] L. Höglund,et al. DICTRA, a tool for simulation of diffusional transformations in alloys , 2000 .
[35] E. Mittemeijer. Analysis of the kinetics of phase transformations , 1992 .
[36] C. Servant,et al. TEM investigation of the tempering behaviour of the maraging PH 17.4 Mo stainless steel , 1987 .
[37] C. M. Wayman,et al. Characteristics of lath martensite: Part I. crystallographic and substructural features , 1983 .
[38] E. Laine. A high-speed determination of the volume fraction of ferrite in austenitic stainless steel by EDXRD , 1978 .
[39] C. Servant,et al. Structural transformations produced during tempering of Fe-Ni-Co-Mo alloys , 1977 .
[40] Glen E. Gordon,et al. X-ray Diffraction: New High-Speed Technique Based on X-ray Spectrography , 1968, Science.
[41] O. Redlich,et al. Algebraic Representation of Thermodynamic Properties and the Classification of Solutions , 1948 .
[42] Ole Ravn,et al. Danish Hydrocarbon Research and Technology Centre Technology Conference 2018 Automated counteraction planning in complex industrial processes , 2018 .
[43] F. Niessen,et al. In Situ Investigation of the Evolution of Lattice Strain and Stresses in Austenite and Martensite During Quenching and Tempering of Steel , 2017, Metallurgical and Materials Transactions A.
[44] A. Marshall,et al. Welding of ferritic and martensitic 11-14% Cr steels , 2001 .
[45] J. Farkas,et al. Minimum cost design of a truck floor welded from aluminium-alloy profiles , 2001 .
[46] H. Niederau. A new low-carbon 16Cr-5Ni stainless martensitic cast steel , 1982 .