A Study on Austenite Catalytic Cryogenic Treatment of Cr-W-Mo-V High Alloy Medium-Upper Carbon Steel
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Published:2014-06
Issue:
Volume:936
Page:1173-1178
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ISSN:1662-8985
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Container-title:Advanced Materials Research
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language:
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Short-container-title:AMR
Author:
Ma Yong Qing1, Zhang Xiao Jing2, Liang Yu Fen2, Liu Guo Fang2
Affiliation:
1. Dalian Maritime University 2. Changzhou Machinery Blade CO. LTD.
Abstract
The processing of austenite catalytic cryogenic treatment of two components of Cr-W-Mo-V high alloy medium-upper carbon steels and the effect on the retained austenite transformation and tempering hardness were studied in this paper. The results show that, the effect of austenite catalytic cryogenic treatment of Cr-W-Mo-V high alloy medium-upper carbon steel is better than that of direct cryogenic treatment after quenching, and the content of residual austenite reduced to below 5%, and the hardness improved by 1.5HRC than that of conventional quenching and tempering. The retained austenite catalytic temperature of Cr-W-Mo-V high alloy medium-upper carbon steel merely is higher than 10°C~20°C of the temperature for the highest tempering hardness. Catalytic temperature Tc can be determined by experimental method of conventional quenching and tempering of the steel, in which the microstructure feature is precipitation of M3C carbide particle of 0.01μm~0.03μm in martensite matrix, and the content of retained austenite decreases evidently. By cryogenic treatment after the austenite catalyzed the retained austenite of quenching are transformed into more martensite, and in the subsequent tempering processing the original quenching martensite and the martensite from retained austenite transformation almost will form synchronous precipitation hardening. Thus the tempering hardness improves evidently as well.
Publisher
Trans Tech Publications, Ltd.
Subject
General Engineering
Reference9 articles.
1. D Mohan, S Renganarayanan, A Kalanidhi, Cryogenic treatment to augment wear resistant of tool and die steels[J], Cryogenics, Vol. 41, Issues 3, March 2001, pp.149-155. 2. A Mlinan, M Pellizzan, S Gidanella, el, Effect of deep cryogenic treatment on the mechanical properties of tool steels[J], Journal of Materials Processing Technology, Vol. 118, Issues 1-3, 3 December 2001, pp.350-365. 3. J. Y Huang, Y. T Zhu, X. Z Liao, el, T. E Mitchell, Microstructure of cryogenic treated M2 tool steel[J], Materials Science and Engineering: A, Vol. 339, Issues 1-2, 3 January 2003, pp.241-244. 4. Hsu Tzu-yao, Martensitic Transformation and Martensite[M], Beijing, Science Press, 1999, pp.593-623 (in Chinese). 5. Zhang Xiaojing, LiuGuofang, Ma Yongqing, Material and heat treatment of knives of rotary and plane cutting for wood working[J], Heat Treatment of Metals, 2012, 37(7): 114-117(in Chinese).
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