Skip to main content
Top
Published in: Journal of Materials Engineering and Performance 4/2008

01-08-2008

Investigations on Heat Treatment of a High-Speed Steel Roll

Authors: Hanguang Fu, Yinhu Qu, Jiandong Xing, Xiaohui Zhi, Zhiqiang Jiang, Mingwei Li, Yi Zhang

Published in: Journal of Materials Engineering and Performance | Issue 4/2008

Log in

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

search-config
loading …

Abstract

High-carbon high-speed steels (HSS) are very abrasion-resistant materials primarily due to their high hardness MC-type carbide and high hardness martensitic matrix. The effects of quenching and tempering treatment on the microstructure, mechanical properties, and abrasion resistance of centrifugal casting high-carbon HSS roll were studied. Different microstructures and mechanical properties were obtained after the quenching and tempering temperatures of HSS roll were changed. With air-cooling and sodium silicate solution cooling, when the austenitizing temperature reaches 1273 K, the metallic matrix all transforms into the martensite. Afterwards, the eutectic carbides dissolve into the metallic matrix and their continuous network distribution changes into the broken network. The second hardening temperature of high-carbon HSS roll is around 793 K. No significant changes in tensile strength and elongation percentage are observed unless the tempering temperature is beyond 753 K. The tensile strength increases obviously and the elongation percentage decreases slightly beyond 753 K. However, the tensile strength decreases and the elongation percentage increases when the tempering temperature exceeds 813 K. When the tempering temperature excels 773 K, the impact toughness has a slight decrease. Tempering at 793-813 K, high-carbon HSS roll presents excellent abrasion resistance.

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 Sun L., Zhang Q., Chen X., B. Wu, Z. Yu, L. Li (2002) Application of Simulated Annealing Algorithm to Improve Work Roll Wear Model in Plate Mill. J. Univ. Sci. Technol. Beijing 9: 224–227 Sun L., Zhang Q., Chen X., B. Wu, Z. Yu, L. Li (2002) Application of Simulated Annealing Algorithm to Improve Work Roll Wear Model in Plate Mill. J. Univ. Sci. Technol. Beijing 9: 224–227
2.
go back to reference Furumoto H., Yamada K., Yanagimoto J. (2002) Effect of the Number of Work-Roll Surface Division on Prediction of Contact Length in Coupled Analysis of Roll and Strip Deformation During Sheet Rolling. ISIJ Int. 42: 736–743CrossRef Furumoto H., Yamada K., Yanagimoto J. (2002) Effect of the Number of Work-Roll Surface Division on Prediction of Contact Length in Coupled Analysis of Roll and Strip Deformation During Sheet Rolling. ISIJ Int. 42: 736–743CrossRef
3.
go back to reference Xavier R.R., De Carvalho M.A., Cannizza E., White T.H., Rivaroli Jr. A., Sinatora A. (2004) High-Speed Steel Rolls for Long Products Iron Steel Technol. 1: 28–33 Xavier R.R., De Carvalho M.A., Cannizza E., White T.H., Rivaroli Jr. A., Sinatora A. (2004) High-Speed Steel Rolls for Long Products Iron Steel Technol. 1: 28–33
4.
go back to reference Ichino K., Ishikawa S., Kataoka Y., Toyooka T. (2003) Improvement of Hot Wear Characteristic of High Speed Tool Steel Roll by Increase in Cr and Mo Contents. J. Iron Steel Inst. Jpn. 89: 680–685CrossRef Ichino K., Ishikawa S., Kataoka Y., Toyooka T. (2003) Improvement of Hot Wear Characteristic of High Speed Tool Steel Roll by Increase in Cr and Mo Contents. J. Iron Steel Inst. Jpn. 89: 680–685CrossRef
5.
go back to reference Andersson M., Finnstrom R., Nylen T. (2004) Introduction of Enhanced Indefinite Chill and High Speed Steel Rolls in European Hot Strip Mills. Ironmak. Steelmak. 31: 383–388CrossRef Andersson M., Finnstrom R., Nylen T. (2004) Introduction of Enhanced Indefinite Chill and High Speed Steel Rolls in European Hot Strip Mills. Ironmak. Steelmak. 31: 383–388CrossRef
6.
go back to reference Kim C.K., Par J.I., Lee S., Chan K.Y., Kim N.J., Seung Y.J. (2005) Effects of Alloying Elements on Microstructure, Hardness, and Fracture Toughness of Centrifugally Cast High-Speed Steel Rolls. Metall. Mater. Trans. A 36: 87–97CrossRef Kim C.K., Par J.I., Lee S., Chan K.Y., Kim N.J., Seung Y.J. (2005) Effects of Alloying Elements on Microstructure, Hardness, and Fracture Toughness of Centrifugally Cast High-Speed Steel Rolls. Metall. Mater. Trans. A 36: 87–97CrossRef
7.
go back to reference Ichino K., Kataoka Y., Koseki T. (1997) Development of Centrifugal Cast Roll with High Wear Resistance for Finishing Stands of Hot Strip Mill. Kawasaki Steel Tech. Rep. 37: 13–18 Ichino K., Kataoka Y., Koseki T. (1997) Development of Centrifugal Cast Roll with High Wear Resistance for Finishing Stands of Hot Strip Mill. Kawasaki Steel Tech. Rep. 37: 13–18
8.
go back to reference Gong K., Y. Dong, C. Gao (1998) Research and Manufacture of Compound High Speed Steel Rolls. Iron Steel (Peking) 33: 67–71 Gong K., Y. Dong, C. Gao (1998) Research and Manufacture of Compound High Speed Steel Rolls. Iron Steel (Peking) 33: 67–71
9.
go back to reference Shimizu M., Shitamura O., Matsuo S., Kamata T., Kondo Y. (1992) Development of High Performance New Composite Roll. ISIJ Int. 32: 1244–1249CrossRef Shimizu M., Shitamura O., Matsuo S., Kamata T., Kondo Y. (1992) Development of High Performance New Composite Roll. ISIJ Int. 32: 1244–1249CrossRef
10.
go back to reference Hashimoto M., Otomo S., Yoshida K. (1992) Development of High-Performance Roll by Continuous Pouring Process for Cladding, ISIJ Int. 32: 1202–1210CrossRef Hashimoto M., Otomo S., Yoshida K. (1992) Development of High-Performance Roll by Continuous Pouring Process for Cladding, ISIJ Int. 32: 1202–1210CrossRef
11.
go back to reference T. Tanaka, H. Takigawa, and M. Hashimoto, The Application and Performance of High-Speed-Steel (HSS) Rolls at Hot Rolling, Mechanical Working and Steel Processing Conference Proceedings (Warrendale, PA), The Iron and Steel Society, Inc., 1998, 35, p 435–444 T. Tanaka, H. Takigawa, and M. Hashimoto, The Application and Performance of High-Speed-Steel (HSS) Rolls at Hot Rolling, Mechanical Working and Steel Processing Conference Proceedings (Warrendale, PA), The Iron and Steel Society, Inc., 1998, 35, p 435–444
12.
go back to reference Ikawa Y., Itami T., Kumagai K., Kawashima Y., Leatham A.G., Coombs J.S., Brooks R.G. (1990) Spray Deposition Method and Its Application to the Production of Mill Rolls. ISIJ Int. 30: 756–763CrossRef Ikawa Y., Itami T., Kumagai K., Kawashima Y., Leatham A.G., Coombs J.S., Brooks R.G. (1990) Spray Deposition Method and Its Application to the Production of Mill Rolls. ISIJ Int. 30: 756–763CrossRef
13.
go back to reference Zhou C.D., Fan J.F., Le H.R., Lin Y.J., Sun D.S., Zhang J.G. (2004) Microstructural Characteristics and Mechanical Properties of Spray Formed High Speed Steel for Work Roll Acta Metall. Sin. (English Lett.) 17: 548–553 Zhou C.D., Fan J.F., Le H.R., Lin Y.J., Sun D.S., Zhang J.G. (2004) Microstructural Characteristics and Mechanical Properties of Spray Formed High Speed Steel for Work Roll Acta Metall. Sin. (English Lett.) 17: 548–553
14.
go back to reference Fu H., Zhao A., Xing J. (2003) Development of Centrifugal Casting High Speed Steel Rolls. J. Univ. Sci. Technol. Beijing 10: 61–66 Fu H., Zhao A., Xing J. (2003) Development of Centrifugal Casting High Speed Steel Rolls. J. Univ. Sci. Technol. Beijing 10: 61–66
15.
go back to reference Ichino K. (2002) Development of Centrifugal Cast HSS Roll with Excellent Surface Deterioration Resistance in Hot Strip Mill CAMP-ISIJ 15: 995 Ichino K. (2002) Development of Centrifugal Cast HSS Roll with Excellent Surface Deterioration Resistance in Hot Strip Mill CAMP-ISIJ 15: 995
16.
go back to reference Z. Xin and M.C. Perks, Centrifugal Casting of HSS Roll for Narrow Strip and Rod Mills, 42nd Mechanical Working and Steel Processing Conference Proceedings (Warrendale, PA), The Iron and Steel Society, Inc., 2000, 38, p 183–191 Z. Xin and M.C. Perks, Centrifugal Casting of HSS Roll for Narrow Strip and Rod Mills, 42nd Mechanical Working and Steel Processing Conference Proceedings (Warrendale, PA), The Iron and Steel Society, Inc., 2000, 38, p 183–191
17.
go back to reference Xu L., J. Xing, S. Wei, H. Chen, R. Long (2006) Comparative Investigation to Rolling Wear Properties Between High-Vanadium High-Speed Steel and High-Chromium Cast Iron J. Xi’an Jiaotong Univ. 40: 275–278 Xu L., J. Xing, S. Wei, H. Chen, R. Long (2006) Comparative Investigation to Rolling Wear Properties Between High-Vanadium High-Speed Steel and High-Chromium Cast Iron J. Xi’an Jiaotong Univ. 40: 275–278
18.
go back to reference Wei S., J. Zhu, L. Xu (2006) Effects of Vanadium and Carbon on Microstructures and Abrasive Wear Resistance of high Speed Steel. Tribol. Int. 39: 641–648CrossRef Wei S., J. Zhu, L. Xu (2006) Effects of Vanadium and Carbon on Microstructures and Abrasive Wear Resistance of high Speed Steel. Tribol. Int. 39: 641–648CrossRef
19.
go back to reference Zhou H., J. Wang, Y. Su, J. Lian, Ogi K. (2000) Heat Treatment of High Carbon Vanadium High Speed Steel for Roller. Iron Steel (Peking) 35: 47–50 Zhou H., J. Wang, Y. Su, J. Lian, Ogi K. (2000) Heat Treatment of High Carbon Vanadium High Speed Steel for Roller. Iron Steel (Peking) 35: 47–50
20.
go back to reference Zhao Y., Y. Cai, R. Xu (2003) Composition Design and Heat Treatment of High-Speed-Steel Rolls. J. Liaoning Tech. Univ. (Natural Science Edition) 22: 836–838 Zhao Y., Y. Cai, R. Xu (2003) Composition Design and Heat Treatment of High-Speed-Steel Rolls. J. Liaoning Tech. Univ. (Natural Science Edition) 22: 836–838
21.
go back to reference Kuskov Yu M. (2004) High-Alloy High-Speed Steels for Rollers. Stal’ 4: 43–48 Kuskov Yu M. (2004) High-Alloy High-Speed Steels for Rollers. Stal’ 4: 43–48
22.
go back to reference Tuo J., S. Chen, Z. Li, C. Liu, H. Li (2006) Effect of Laser Surface Modification on Microstructure and Hardness of High Speed Steel Roll. Heat Treat. Metals 31: 56–59 Tuo J., S. Chen, Z. Li, C. Liu, H. Li (2006) Effect of Laser Surface Modification on Microstructure and Hardness of High Speed Steel Roll. Heat Treat. Metals 31: 56–59
23.
go back to reference ASTM E-8, Annual Book of ASTM Standards, 03.01, p 545–557 ASTM E-8, Annual Book of ASTM Standards, 03.01, p 545–557
24.
go back to reference Tabret C.P., Sare I.R. (1997) Effect of Heat Treatment on the Abrasion Resistance of Alloy White Irons. Wear 203-204: 206–219CrossRef Tabret C.P., Sare I.R. (1997) Effect of Heat Treatment on the Abrasion Resistance of Alloy White Irons. Wear 203-204: 206–219CrossRef
25.
go back to reference Tabrett C.P., Sare I.R. (1998) Effect of High Temperature and Sub-Ambient Treatments on the Matrix Structure and Abrasion Resistance of a High-Chromium White Iron. Scripta Mater. 38: 1747–1753CrossRef Tabrett C.P., Sare I.R. (1998) Effect of High Temperature and Sub-Ambient Treatments on the Matrix Structure and Abrasion Resistance of a High-Chromium White Iron. Scripta Mater. 38: 1747–1753CrossRef
26.
go back to reference Zevin L.E., Kimmel G. (1995) Quantitative X-ray Diffractometry New York: SpringerCrossRef Zevin L.E., Kimmel G. (1995) Quantitative X-ray Diffractometry New York: SpringerCrossRef
27.
go back to reference Kim C.M. (1979) X-Ray Method of Measuring Retained Austenite in Heat Treated White Cast Irons. J. Heat Treat. 1: 43–51CrossRef Kim C.M. (1979) X-Ray Method of Measuring Retained Austenite in Heat Treated White Cast Irons. J. Heat Treat. 1: 43–51CrossRef
28.
go back to reference Fan X. (1981) Metallography of X-Ray. Machinery Industry Press, Beijing Fan X. (1981) Metallography of X-Ray. Machinery Industry Press, Beijing
29.
go back to reference Bai W., S. Wei, R. Long, L. Xu, Z. Dong, X. Yang (2007) Effects of Retained Austenite on Rolling Wear Properties of High Vanadium High Speed Steel. Lubr. Eng. 32: 66–72 (in Chinese) Bai W., S. Wei, R. Long, L. Xu, Z. Dong, X. Yang (2007) Effects of Retained Austenite on Rolling Wear Properties of High Vanadium High Speed Steel. Lubr. Eng. 32: 66–72 (in Chinese)
30.
go back to reference Measurement of Retained Austenite in the Steel – X-ray Diffractometer Method. GB8362-1987 Measurement of Retained Austenite in the Steel – X-ray Diffractometer Method. GB8362-1987
31.
go back to reference Fu H., Z. Jiang (2006) A Study of Abrasion Resistant Cast Fe-B-C Alloy. Acta Metall. Sin. 42: 545–548 Fu H., Z. Jiang (2006) A Study of Abrasion Resistant Cast Fe-B-C Alloy. Acta Metall. Sin. 42: 545–548
32.
go back to reference Shi H., H. Fu, W. Zhang (2001) A Study on Low-Alloy Cast Steel Wear-Resistance Hammer with Multi-Phase Foundry 51: 103–105 (in Chinese) Shi H., H. Fu, W. Zhang (2001) A Study on Low-Alloy Cast Steel Wear-Resistance Hammer with Multi-Phase Foundry 51: 103–105 (in Chinese)
33.
go back to reference Liu Z. (1997) Friction and Wear Characteristics of M50 High Speed Steel at Elevated Temperature. Tribology 17: 38–44 (in Chinese) Liu Z. (1997) Friction and Wear Characteristics of M50 High Speed Steel at Elevated Temperature. Tribology 17: 38–44 (in Chinese)
34.
go back to reference Fu H., J. Liu, J. Xing (2003) Study on Microstructure and Properties of High Speed Steel Guide Plate Modified by RE-Mg-Ti. J. Iron Steel Res. 15: 39–43 (in Chinese) Fu H., J. Liu, J. Xing (2003) Study on Microstructure and Properties of High Speed Steel Guide Plate Modified by RE-Mg-Ti. J. Iron Steel Res. 15: 39–43 (in Chinese)
35.
go back to reference Hwang K.C., Lee S.H., Lee H.C. (1998) Effects of Alloying Elements on Microstructure and Fracture Properties of Cast High Speed Steel Rolls Part I: Microstructural Analysis. Mater. Sci. Eng. A254: 282–295CrossRef Hwang K.C., Lee S.H., Lee H.C. (1998) Effects of Alloying Elements on Microstructure and Fracture Properties of Cast High Speed Steel Rolls Part I: Microstructural Analysis. Mater. Sci. Eng. A254: 282–295CrossRef
36.
go back to reference Yamamoto K., Kogin T., Harakawa T., Murai N., Kuwano M., Ogi K. (2000) Effects of Alloying Elements in Hardenability for high C High Speed Steel Type Alloy. Imono 72: 90–95 Yamamoto K., Kogin T., Harakawa T., Murai N., Kuwano M., Ogi K. (2000) Effects of Alloying Elements in Hardenability for high C High Speed Steel Type Alloy. Imono 72: 90–95
37.
go back to reference Deng Y., J. Chen, S. Wang (2002) High Speed Tool Steel. Beijing: Metallurgical Industry Press Deng Y., J. Chen, S. Wang (2002) High Speed Tool Steel. Beijing: Metallurgical Industry Press
38.
go back to reference Ernst C., Haberling E., Rasche K. (1995) Carbide Dissolution and Precipitation Processes During Hardening of a High-Speed Steel. Stahl und Eisen 115: 71–76 Ernst C., Haberling E., Rasche K. (1995) Carbide Dissolution and Precipitation Processes During Hardening of a High-Speed Steel. Stahl und Eisen 115: 71–76
39.
go back to reference Nogueira R.A., Ribeiro O.C.S., Das Neves M.D.M., De Lima L.F.C.P., Filho F.A., Friedrich D., Boehs L. (2003) Influence of the Heat Treatment on the Microstructure of AISI T15 High Speed Steel. Mater. Sci. Forum 416-418: 89–94CrossRef Nogueira R.A., Ribeiro O.C.S., Das Neves M.D.M., De Lima L.F.C.P., Filho F.A., Friedrich D., Boehs L. (2003) Influence of the Heat Treatment on the Microstructure of AISI T15 High Speed Steel. Mater. Sci. Forum 416-418: 89–94CrossRef
40.
go back to reference Dobrzanski L.A., Kasprzak W. (2001) Influence of 5% Cobalt Addition on Structure and Working Properties of the 9-2-2-5, 11-2-2-5 and 11-0-2-5 High-Speed Steels. J. Mater. Process. Technol. 109: 52–64CrossRef Dobrzanski L.A., Kasprzak W. (2001) Influence of 5% Cobalt Addition on Structure and Working Properties of the 9-2-2-5, 11-2-2-5 and 11-0-2-5 High-Speed Steels. J. Mater. Process. Technol. 109: 52–64CrossRef
41.
go back to reference Qi Z., Q. Feng, L. Wu, Z. Xie (2001) Red Hardness of High Speed Steel. Heat Treat. Metals 26: 8–11 (in Chinese) Qi Z., Q. Feng, L. Wu, Z. Xie (2001) Red Hardness of High Speed Steel. Heat Treat. Metals 26: 8–11 (in Chinese)
42.
go back to reference Singh N., Prabhakar S.R. (2003) Performance Appraisal of High Speed Steel Turning Tools. Mater. Technol. 18: 218–224CrossRef Singh N., Prabhakar S.R. (2003) Performance Appraisal of High Speed Steel Turning Tools. Mater. Technol. 18: 218–224CrossRef
Metadata
Title
Investigations on Heat Treatment of a High-Speed Steel Roll
Authors
Hanguang Fu
Yinhu Qu
Jiandong Xing
Xiaohui Zhi
Zhiqiang Jiang
Mingwei Li
Yi Zhang
Publication date
01-08-2008
Publisher
Springer US
Published in
Journal of Materials Engineering and Performance / Issue 4/2008
Print ISSN: 1059-9495
Electronic ISSN: 1544-1024
DOI
https://doi.org/10.1007/s11665-007-9174-4

Other articles of this Issue 4/2008

Journal of Materials Engineering and Performance 4/2008 Go to the issue

Premium Partners