Skip to main content
Top
Published in: Strength of Materials 1/2020

15-04-2020

Effect of the Second-Phase Particle Precipitation on the Recrystallization Texture of High-Strength and Fine-Grain Interstitial-Free Steel

Authors: H. M. Zhang, R. Chen, C. S. Wang, Y. Li, H. B. Jia, Z. Y. Jiang

Published in: Strength of Materials | Issue 1/2020

Log in

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

The effect of the second-phase particle precipitation on the recrystallization texture of high-strength and fine-grain interstitial-free steel was studied. It is shown experimentally that the sizes of second-phase particles increase and their number decreases with holding time and annealing temperature. The texture is mainly influenced by the size, number, and distribution of the particles. Finely dispersed second-phase particles are strongly pinned on the grain boundaries, which significantly hinders the development of {111} surface textures. It the pinning force on the grain boundary decreases, the {111) surface texture improves due to the aggregation and growth of second-phase particles with holding time. The strength of the γ-phase ({111}<112> texture) grows and reaches maximum (annealing temperature 850°C), finally declines with annealing temperature. Precipitated particles of 40–60 nm favor the development of the {111} texture component.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literature
1.
go back to reference L. Wang, X. F Yang, and J. X. Lu, “Development of high strength steel sheets for lightweight automobile,” Iron Steel, 41, No. 9, 1–8 (2006). L. Wang, X. F Yang, and J. X. Lu, “Development of high strength steel sheets for lightweight automobile,” Iron Steel, 41, No. 9, 1–8 (2006).
2.
go back to reference Y. Hosoya, T. Urabe, K. Tahara, et al., “Super formable steel sheet with tensile strength of 390–440 N/mm 2 ,” NKK Tech. Rev., No. 72, 1–9 (1995). Y. Hosoya, T. Urabe, K. Tahara, et al., “Super formable steel sheet with tensile strength of 390–440 N/mm 2 ,” NKK Tech. Rev., No. 72, 1–9 (1995).
3.
go back to reference S. K. Tiwary, C. N. Jha, A. J. Khan, et al., “Development of interstitial free steel at Tata steel,” Trans Indian Inst. Met., 54, No. 3, 117–123 (2001). S. K. Tiwary, C. N. Jha, A. J. Khan, et al., “Development of interstitial free steel at Tata steel,” Trans Indian Inst. Met., 54, No. 3, 117–123 (2001).
4.
go back to reference J. Ma, W. M. Gao, and X. Y. Luo, “Analysis and research of second phase particles in cold rolled annealed sheet of IF steel,” Gansu Metallurgy, No. 3, 21–26 (2017). J. Ma, W. M. Gao, and X. Y. Luo, “Analysis and research of second phase particles in cold rolled annealed sheet of IF steel,” Gansu Metallurgy, No. 3, 21–26 (2017).
5.
go back to reference J. C. Zhang, H. S. Di, G. W. Jiang, and C. Yu, “Effect of annealing temperature on FeTiP-type precipitate in P-Added IF high strength steel,” J. Northeastern Univ., No. 35, 1404–1410 (2014). J. C. Zhang, H. S. Di, G. W. Jiang, and C. Yu, “Effect of annealing temperature on FeTiP-type precipitate in P-Added IF high strength steel,” J. Northeastern Univ., No. 35, 1404–1410 (2014).
6.
go back to reference Y. J. Li, Research of Relationship between Cold-Rolled Process Parameters and Deep Drawing Performance of IF Steel, Hebei University of Technology, Tangshan (2002). Y. J. Li, Research of Relationship between Cold-Rolled Process Parameters and Deep Drawing Performance of IF Steel, Hebei University of Technology, Tangshan (2002).
7.
go back to reference T. Urabe, F. Kitano, T. Fujita, et al., “State-of-art high strength steel sheet for the automotive application,” Mater. Sci. Forum, 539–543, 4369–4374 (2007).CrossRef T. Urabe, F. Kitano, T. Fujita, et al., “State-of-art high strength steel sheet for the automotive application,” Mater. Sci. Forum, 539–543, 4369–4374 (2007).CrossRef
8.
go back to reference Z. D. Wang, Y. H. Guo, D. Q. Sun, et al., “Texture comparison of an ordinary IF steel and a high-strength IF steel under ferritic rolling and high-temperature coiling,” Mater. Charact., 57, Nos. 4–5, 402–407 (2006). Z. D. Wang, Y. H. Guo, D. Q. Sun, et al., “Texture comparison of an ordinary IF steel and a high-strength IF steel under ferritic rolling and high-temperature coiling,” Mater. Charact., 57, Nos. 4–5, 402–407 (2006).
9.
go back to reference I. L. Dillamore and W. T. Roberts, “Rolling textures in f.c.c. and b.c.c. metals,” Acta Metall. Mater., 12, No. 3, 281–293 (1964).CrossRef I. L. Dillamore and W. T. Roberts, “Rolling textures in f.c.c. and b.c.c. metals,” Acta Metall. Mater., 12, No. 3, 281–293 (1964).CrossRef
10.
go back to reference P. Jia, “Study on development and production technology of IF steel,” Gansu Metallurgy, No. 3, 39–42 (2017). P. Jia, “Study on development and production technology of IF steel,” Gansu Metallurgy, No. 3, 39–42 (2017).
11.
go back to reference F. Y. Yu, Y. N. Wang, and Q. W. Jiang, “The research of deep drawing IF steel recrystallization {111} fiber texture’s formation mechanism,” Int. J. Mater. Sci. Technol., 16, No. 5, 30–35 (2006). F. Y. Yu, Y. N. Wang, and Q. W. Jiang, “The research of deep drawing IF steel recrystallization {111} fiber texture’s formation mechanism,” Int. J. Mater. Sci. Technol., 16, No. 5, 30–35 (2006).
12.
go back to reference H. W. Yen, P. Y. Chen, C. Y. Huang, and J. R. Yang, “Interphase precipitation of nanometer-sized carbides in a titanium-molybdenum-bearing low-carbon steel,” Acta Mater., 59, No. 16, 6264–6274 (2011).CrossRef H. W. Yen, P. Y. Chen, C. Y. Huang, and J. R. Yang, “Interphase precipitation of nanometer-sized carbides in a titanium-molybdenum-bearing low-carbon steel,” Acta Mater., 59, No. 16, 6264–6274 (2011).CrossRef
13.
go back to reference S. Matsuoka, K. Hasegawa, and Y. Tanaka, “Newly-developed ultra-high tensile strength steels with excellent formability and weldability,” JFE Tech. Rep., No. 10, 13–20 (2007). S. Matsuoka, K. Hasegawa, and Y. Tanaka, “Newly-developed ultra-high tensile strength steels with excellent formability and weldability,” JFE Tech. Rep., No. 10, 13–20 (2007).
14.
go back to reference T. Urabe and J. J. Jonas, “Modeling texture change during the recrystallization of an IF steel,” ISIJ Int., 34, No. 5, 435–442 (1994).CrossRef T. Urabe and J. J. Jonas, “Modeling texture change during the recrystallization of an IF steel,” ISIJ Int., 34, No. 5, 435–442 (1994).CrossRef
15.
go back to reference Q. W. Jiang, E. B. Zhao, J. G. Zhang, et al., “Texture, microstructure and second- phase particles in a Ti+P interstitial free (IF) steel,” Mater. Sci. Forum, 495–497, 423–428 (2005).CrossRef Q. W. Jiang, E. B. Zhao, J. G. Zhang, et al., “Texture, microstructure and second- phase particles in a Ti+P interstitial free (IF) steel,” Mater. Sci. Forum, 495–497, 423–428 (2005).CrossRef
16.
go back to reference S. Tangen, K. Sjølstad, T. Furu, and E. Nes, “Effect of concurrent precipitation on recrystallization and evolution of the P-Texture component in a commercial Al-Mn alloy,” Metall. Mater. Trans. A, 41, No. 11, 2970–2983 (2010).CrossRef S. Tangen, K. Sjølstad, T. Furu, and E. Nes, “Effect of concurrent precipitation on recrystallization and evolution of the P-Texture component in a commercial Al-Mn alloy,” Metall. Mater. Trans. A, 41, No. 11, 2970–2983 (2010).CrossRef
17.
go back to reference C. Y. Huang, H. W. Yen, Y. T. Pan, and J. R. Yang, “The development of nano-precipitation strengthened hot-rolled automobile steels,” Int. J. Min. Metall., 53, 45–60 (2010). C. Y. Huang, H. W. Yen, Y. T. Pan, and J. R. Yang, “The development of nano-precipitation strengthened hot-rolled automobile steels,” Int. J. Min. Metall., 53, 45–60 (2010).
18.
go back to reference H. W. Yen, C. Y. Chen, T. Y. Wang, et al., “Orientation relationship transition of nanometre sized interphase precipitated TiC carbides in Ti bearing steel,” Mater. Sci. Tech., 26, No. 4, 421–430 (2010).CrossRef H. W. Yen, C. Y. Chen, T. Y. Wang, et al., “Orientation relationship transition of nanometre sized interphase precipitated TiC carbides in Ti bearing steel,” Mater. Sci. Tech., 26, No. 4, 421–430 (2010).CrossRef
19.
go back to reference Z. C. Wang, X. J. Wang,and X. G. Zhu, “The character feature of interstitial free high strength steel,” Iron Steel, 30, No. 2, 63–68 (1995). Z. C. Wang, X. J. Wang,and X. G. Zhu, “The character feature of interstitial free high strength steel,” Iron Steel, 30, No. 2, 63–68 (1995).
20.
go back to reference Z. S. Zhao, W. M. Mao, and Y. N. Yu, “The effect of Ti on the second-phase particles precipitation and mechanical properties for high strength steel,” Iron Steel, 35, No. 9, 47–51 (2000). Z. S. Zhao, W. M. Mao, and Y. N. Yu, “The effect of Ti on the second-phase particles precipitation and mechanical properties for high strength steel,” Iron Steel, 35, No. 9, 47–51 (2000).
21.
go back to reference R. Song, D. Ponge, D. Raabe, and R. Kaspar, “Microstructure and crystallographic texture of an ultrafine grained C–Mn steel and their evolution during warm deformation and annealing,” Acta Mater., 53, No. 3, 845–858 (2005).CrossRef R. Song, D. Ponge, D. Raabe, and R. Kaspar, “Microstructure and crystallographic texture of an ultrafine grained C–Mn steel and their evolution during warm deformation and annealing,” Acta Mater., 53, No. 3, 845–858 (2005).CrossRef
22.
go back to reference A. Merlini and P. A. Beck, “Study of the origin of the cube texture,” Acta Metall. Mater., 1, No. 6, 598–606 (1953).CrossRef A. Merlini and P. A. Beck, “Study of the origin of the cube texture,” Acta Metall. Mater., 1, No. 6, 598–606 (1953).CrossRef
23.
go back to reference J. Shi and X. Wang, “Comparison of precipitate behaviors in ultra-low carbon, titanium-stabilized interstitial free steel sheets under different annealing processes,” J. Mater. Eng. Perform., 8, No. 6, 641–648 (1999).CrossRef J. Shi and X. Wang, “Comparison of precipitate behaviors in ultra-low carbon, titanium-stabilized interstitial free steel sheets under different annealing processes,” J. Mater. Eng. Perform., 8, No. 6, 641–648 (1999).CrossRef
24.
go back to reference P. Ghosh, C. Ghosh, and R. K. Ray, “Precipitation in interstitial free high strength steels,” ISIJ Int., 49, No. 7, 1080–1086 (2009).CrossRef P. Ghosh, C. Ghosh, and R. K. Ray, “Precipitation in interstitial free high strength steels,” ISIJ Int., 49, No. 7, 1080–1086 (2009).CrossRef
25.
go back to reference P. Ghosh, C. Ghosh, R. K. Ray, and B. Bhattacharaya, “Precipitation behavior and texture formation at different stages of processing in an interstitial free high strength steel,” Scripta Mater., 59, No. 3, 276–278 (2008).CrossRef P. Ghosh, C. Ghosh, R. K. Ray, and B. Bhattacharaya, “Precipitation behavior and texture formation at different stages of processing in an interstitial free high strength steel,” Scripta Mater., 59, No. 3, 276–278 (2008).CrossRef
Metadata
Title
Effect of the Second-Phase Particle Precipitation on the Recrystallization Texture of High-Strength and Fine-Grain Interstitial-Free Steel
Authors
H. M. Zhang
R. Chen
C. S. Wang
Y. Li
H. B. Jia
Z. Y. Jiang
Publication date
15-04-2020
Publisher
Springer US
Published in
Strength of Materials / Issue 1/2020
Print ISSN: 0039-2316
Electronic ISSN: 1573-9325
DOI
https://doi.org/10.1007/s11223-020-00148-z

Other articles of this Issue 1/2020

Strength of Materials 1/2020 Go to the issue

Premium Partners