Effects of austenizing time on wear behavior of D6 tool steel after deep cryogenic treatment

Springer Science and Business Media LLC - Tập 16 Số 6 - Trang 29-32 - 2009
Ali Alizadeh1, M.A. Golozar2, Azita Shafeie2, M. Kholghy2
1Department of Materials Engineering, Isfahan University of Technology, Isfahan, Iran
2Department of Materials Engineering, Isfahan University of Technology, 8415683111 Isfahan, Iran

Tóm tắt

Từ khóa


Tài liệu tham khảo

Bensely A, Prabhakaran A, Mohan Lal D, et al. Enhancing the Wear Resistance of Case Carburized Steel (En 353) by Cryogenic-Treatment [J]. Cryogenics, 2005. 45: 747.

Mohan Lal D, Renganarayanan S, Kalanidhi A. Cryogenic Treatment to Augment Wear Resistance of Tool and Die Steel [J]. Cryogenics, 2001, 41: 149.

Zhirafar S, Rezaeian A, Pugh M. Effect of Cryogenic Treatment on the Mechanical Properties of 4340 Steel [J]. J Mater Process Tech, 2007, 186: 298.

Hübner W. Phase Transformations in Auslenitic Stainless Steels During Low Temperature Tribological Stressing [J]. Trib Int, 2001, 34: 231.

Molinari A, Pellizzari M, Gialanella S, et al. Effect of Deep Cryogenic Treatment on the Mechanical Properties of Tool Steels [J]. J Mater Process Tech, 2001, 118: 350.

Islam A, Ali Bepari M. Structure and Properties of Carburized and Hardened Niobium Micro-Alloyed Steels [J]. J Mater Process Tech, 1998, 74: 183.

Meng F, Tagashira K, Azuma R, et al. Role of Eta-Carbide Precipitations in the Wear Resistance Improvements of Fe-12Cr-Mo-V-1.4C Tool Steel by Cryogenic Treatment [J]. ISIJ Int, 1993, 34: 205.

Danil’chenko VE, Sagaradze VV, l’Heritier PH. Martensite Crystal Structure of Nickel Steel at Cryogenic Temperatures [J]. Mater Sei Eng A, 2003, 358: 26.

Bensely A, Venkatesh S, Mohan Lal D, et al. Effect of Cryogenic Treatment on Distribution of Residual Stress in Case Carburized En 353 Steel [J]. Mater Sci Eng A, 2007, 479(1–2): 229.

Liu H, Wang J, Yang H, et al. Effects of Cryogenic Treatment on Microstructure and Abrasion Resistance of CrMnB High-Chromium Cast Iron Subjected to Sub-Critical Treatment [J]. Mater Sci Eng A, 2007, 178(1–2): 324.

Tabrett CP, Sare IR. Effect of High Temperature and Sub-Ambient Treatments on the Matrix Structure and Abrasion Resistance of a High-Chromium White Iron [J]. Scripta Mate, 1998, 38: 1717.

Ali Khan A, Mirghani A. Improving Tool Life Using Cryogenic Cooling [J]. J Mater Process Tech, 2007, 196(1–3): 149.

Indumathi J, Bijwe J, Ghosh AK, et al. Wear of Cryo-Treated Engineering Polymers and Composites [J]. Wear, 1999, 225–229: 343.

Darwin JD, Mohan Lal D, Nagarajan G. Optimization of Cryogenic Treatment to Maximize the Wear Resistance of 18%Cr Martensitic Stainless Steel by Taguchi Method [J]. J Mater Process Tech, 2007, 195(1–3): 241.