Processing Variants in Medium-Mn Steels
Abstract
:1. Introduction
2. Hot-Forming of Medium-Mn Steels
3. “Double Soaking” of Medium-Mn Steels for Cold Forming Applications
4. Quenching and Partitioning of Steels Containing Elevated Manganese Additions
5. Summary
Author Contributions
Funding
Acknowledgments
Conflicts of Interest
References
- Wang, J.; Liu, Y.; Lu, Q.; Pang, J.; Wang, Z.; Enloe, C.M.; Singh, J.P.; Horvath, C.D. Effect of microstructure on impact toughness of press hardening steels with tensile strength above 1.8 GPa. In Proceedings of the 6th CHS2 Conference, Atlanta, GA, USA, 4–7 June 2017; AIST: Warrendale, PA, USA, 2017; pp. 717–727. [Google Scholar]
- Lu, Q.; Wang, J.; Liu, Y.; Wang, Z. Impact toughness of a medium-Mn steel after hot stamping. In Proceedings of the 6th CHS2 Conference, Atlanta, GA, USA, 4–7 June 2017; AIST: Warrendale, PA, USA, 2017; pp. 737–746. [Google Scholar]
- Rana, R.; Carson, C.H.; Speer, J.G. Hot forming response of medium manganese transformation induced plasticity steels. In Proceedings of the 5th CHS2 Conference, Toronto, ON, Canada, 31 May–3 June 2015; AIST: Warrendale, PA, USA, 2015; pp. 391–399. [Google Scholar]
- Han, Q.; Bi, W.; Jin, X.; Xu, W.; Wang, L.; Xiong, X.; Wang, J.; Belanger, P. Low temperature hot forming of medium-Mn steel. In Proceedings of the 5th CHS2 Conference, Toronto, ON, Canada, 31 May–3 June 2015; AIST: Warrendale, PA, USA, 2015; pp. 381–390. [Google Scholar]
- Speer, J.; Matlock, D.K.; De Moor, E.; Thomas, G.A. Highlights of recent progress in automotive sheet development. In Proceedings of the Fifth Baosteel Biennial Academic Conference, Shanghai, China, 4–6 June 2013; pp. E59–E65. [Google Scholar]
- Li, X.; Chang, Y.; Wang, C.; Hu, P.; Dong, H. Comparison of the hot-stamped boron-alloyed steel and the warm-stamped medium-Mn steel on microstructure and mechanical properties. Mater. Sci. Eng. A 2017, 679, 240–248. [Google Scholar] [CrossRef]
- Hanamura, T.; Torizuka, S.; Sunahara, A.; Imagumba, M.; Takechi, H. Excellent total mechanical-properties-balance of 5% Mn, 30000 MPa% steel. ISIJ Int. 2011, 51, 685–697. [Google Scholar] [CrossRef]
- Chang, Y.; Wang, C.Y.; Zhao, K.M.; Dong, H.; Yan, J.W. An introduction to medium-Mn steel: Metallurgy, mechanical properties and warm stamping process. Mater. Des. 2016, 94, 424–432. [Google Scholar] [CrossRef]
- De Moor, E.; Speer, J.G.; Matlock, D.K. Heat treating opportunities for medium manganese steels. In Proceedings of the ICAS 2016 & HMnS 2016, Jeju, Korea, 5–10 September 2016; pp. 182–185. [Google Scholar]
- Glover, A.; Speer, J.G.; De Moor, E. Double soaking of a 0.14C-7.14Mn steel. In Proceedings of the International Symposium on New Developments in Advanced High-Strength Sheet Steels, Keystone, CO, USA, 30 May–2 June 2017; AIST: Warrendale, PA, USA, 2017; pp. 189–197. [Google Scholar]
- Glover, A. Private Communication; Colorado School of Mines: Golden, IL, USA, 2018. [Google Scholar]
- Taylor, M.D.; Choi, K.S.; Sun, X.; Matlock, D.K.; Packard, C.E.; Xu, L.; Barlat, F. Correlations between nanoindentation hardness and macroscopic mechanical properties in DP980 steels. Mater. Sci. Eng. A 2014, 597, 431–439. [Google Scholar] [CrossRef]
- Liu, S.; Xiong, Z.; Guo, H.; Shang, C.; Misra, R.D.K. The significance of multi-step partitioning: Processing-structure-property relationship in governing high strength-high ductility combination in medium-manganese steel. Acta Mater. 2017, 124, 159–172. [Google Scholar] [CrossRef]
- Heo, Y.U.; Suh, D.W.; Lee, H.C. Fabrication of an ultrafine-grained structure by a compositional pinning. Acta Mater. 2014, 77, 236–247. [Google Scholar] [CrossRef]
- Glover, A.; Gibbs, P.J.; Liu, C.; Brown, D.W.; Clausen, B.; Speer, J.G.; De Moor, E. Deformation behavior of a double soaked medium manganese steel with varied martensite strength. Metals 2019, 7, 761. [Google Scholar] [CrossRef]
- Xie, Z.J.; Yuan, S.F.; Zhou, W.H.; Yang, J.R.; Guo, H.; Shang, C.J. Stabilization of retained austenite by the two-step intercritical heat treatment and its effect on the toughness of a low alloyed steel. Mater. Des. 2014, 59, 193–198. [Google Scholar] [CrossRef]
- Xu, Y.; Hu, Z.; Zou, Y.; Tan, X.; Han, D.; Chen, S. Effect of two-step intercritical annealing on microstructure and mechanical properties of hot-rolled medium manganese TRIP steel containing δ-ferrite. Mater. Sci. Eng. A 2017, 688, 40–55. [Google Scholar] [CrossRef]
- De Moor, E.; Kähkönen, J.; Speer, J.G.; Matlock, D.K. Quenching and partitioning of a 5 wt pct manganese steel. In Proceedings of the Ninth Pacific Rim International Conference Advanced Materials and Processing (PRICM9), Kyoto, Japan, 1–5 August 2016; Furuhara, T., Nishida, M., Miura, S., Eds.; Japan Institute of Metals and Materials: Sendai, Japan, 2016; pp. 167–170. [Google Scholar]
- De Moor, E.; Speer, J.G.; Matlock, D.K.; Kwak, J.H.; Lee, S.B. Quenching and partitioning of CMnSi steels containing elevated manganese levels. Steel Res. Int. 2012, 83, 322–327. [Google Scholar] [CrossRef]
- Thomas, G.; Speer, J.G.; Matlock, D.K.; De Moor, E.; Garza, L. Alloy design for fundamental study of quenched and partitioned steels. In Proceedings of the Materials Science & Technology (MS&T) 2011, Columbus, OH, USA, 16–20 October 2011; TMS: Plano, TX, USA, 2011; pp. 552–567. [Google Scholar]
- Bigg, T.D.; Matlock, D.K.; Speer, J.G.; Edmonds, D.V. Dynamics of the quenching and partitioning (Q&P) process. Solid State Phenom. 2011, 172–174, 827–832. [Google Scholar]
- Thomas, G.A.; De Moor, E.; Speer, J.G. Tensile properties obtained by Q&P processing of Mn-Ni steels with room temperature quench temperatures. In Proceedings of the International Symposium on New Developments in Advanced High-Strength Sheet Steels, Vail, CO, USA, 23–27 June 2013; AIST: Warrendale, PA, USA, 2013; pp. 153–165. [Google Scholar]
- Hou, Z.R.; Zhao, X.M.; Zhang, W.; Liu, H.L.; Yi, H.L. A medium manganese steel designed for water quenching and partitioning. Mater. Sci. Technol. 2018, 34, 1168–1175. [Google Scholar] [CrossRef]
- Yi, H.L.; Du, P.J.; Wang, B.G. A new invention of press-hardened steel achieving 1880 MPa tensile strength combined with 16% elongation in hot-stamped parts. In Proceedings of the 5th CHS2 Conference, Toronto, ON, Canada, 31 May–3 June 2015; AIST: Warrendale, PA, USA, 2015; pp. 725–734. [Google Scholar]
- Pang, J.; Lu, Q.; Wang, J.; Enloe, C.; Wang, G.; Yi, H. A new low density press hardening steel with superior performance. In Proceedings of the 7th CHS2 Conference, Luleå, Sweden, 2–5 June 2019; AIST: Warrendale, PA, USA, 2019; pp. 123–130. [Google Scholar]
- Hu, B.; Luo, H.; Yang, F.; Dong, H. Recent progress in medium-Mn steels made with new designing strategies, a review. J. Mater. Sci. Technol. 2017, 33, 1457–1464. [Google Scholar] [CrossRef]
- Thomas, G.; Speer, J.G. Interface migration during partitioning of Q&P steel. Mater. Sci. Technol. 2014, 30, 998–1007. [Google Scholar]
© 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
Share and Cite
Speer, J.; Rana, R.; Matlock, D.; Glover, A.; Thomas, G.; De Moor, E. Processing Variants in Medium-Mn Steels. Metals 2019, 9, 771. https://doi.org/10.3390/met9070771
Speer J, Rana R, Matlock D, Glover A, Thomas G, De Moor E. Processing Variants in Medium-Mn Steels. Metals. 2019; 9(7):771. https://doi.org/10.3390/met9070771
Chicago/Turabian StyleSpeer, John, Radhakanta Rana, David Matlock, Alexandra Glover, Grant Thomas, and Emmanuel De Moor. 2019. "Processing Variants in Medium-Mn Steels" Metals 9, no. 7: 771. https://doi.org/10.3390/met9070771
APA StyleSpeer, J., Rana, R., Matlock, D., Glover, A., Thomas, G., & De Moor, E. (2019). Processing Variants in Medium-Mn Steels. Metals, 9(7), 771. https://doi.org/10.3390/met9070771