FEM prediction of retained austenite evolution in cold work die steel during deep cryogenic treatment

被引:12
作者
Li, Junwan [1 ]
Feng, Yuan [1 ]
Tang, Leilei [1 ]
Wu, Xiaochun [1 ]
机构
[1] Shanghai Univ, Sch Mat Sci & Engn, Shanghai 200072, Peoples R China
基金
中国国家自然科学基金;
关键词
Deep cryogenic treatment; Phase transformation; Retained austenite; Simulation and modeling; Thermal analysis; MECHANICAL-PROPERTIES; TOOL; SIMULATION;
D O I
10.1016/j.matlet.2013.03.046
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
A multi-physical field coupling numerical model is built to reproduce the deep cryogenic treatment (DCT) of a cold work die steel Cr8Mo2SiV (SDC99) Navy C-ring specimen immersed in liquid nitrogen and to investigate the retained austenite evolution. In addition, the predicted results are validated via X-ray diffraction (XRD) analysis. The results indicate that, after QT, a large amount of unstable retained austenite (about 15.5%) remains in specimen, especially in the edge and corner of specimen. Subjected to DCT, the unstable retained austenite will continue to transform to martensite until its volume fraction is reduced to 2.3%. However, this austenite transformation is still incomplete, which principally congregates at the gap region of specimen. The predicted results agree well with the experimental data obtained from the XRD analysis. Crown Copyright (C) 2013 Published by Elsevier B.V. All rights reserved.
引用
收藏
页码:274 / 277
页数:4
相关论文
共 13 条
[1]   Effects of deep cryogenic treatment on static mechanical properties of 18NiCrMo5 carburized steel [J].
Baldissera, Paolo ;
Delprete, Cristiana .
MATERIALS & DESIGN, 2009, 30 (05) :1435-1440
[2]  
Boyle E., 2007, SAE Technol. Pap, V1, P31
[3]   Metallurgical principles of cryogenically treated tool steels-a review on the current state of science [J].
Gill, Simranpreet Singh ;
Singh, Jagdev ;
Singh, Rupinder ;
Singh, Harpreet .
INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2011, 54 (1-4) :59-82
[4]  
Hua GT, 1997, YB T 5127 93 STEEL D
[5]   Development and implementation of CAE system ''HEARTS'' for heat treatment simulation based on metallo-thermo-mechanics [J].
Inoue, T ;
Arimoto, K .
JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 1997, 6 (01) :51-60
[6]   Cryogenic Treatment of Tool Materials: A Review [J].
Kalsi, Nirmal S. ;
Sehgal, Rakesh ;
Sharma, Vishal S. .
MATERIALS AND MANUFACTURING PROCESSES, 2010, 25 (10) :1077-1100
[7]   Cryogenic treatment to augment wear resistance of tool and die steels [J].
Lal, DM ;
Renganarayanan, S ;
Kalanidhi, A .
CRYOGENICS, 2001, 41 (03) :149-155
[8]   High-speed data acquisition of the cooling curves and evaluation of heat transfer coefficient in quenching process [J].
Li Huiping ;
Zhao Guoqun ;
He Lianfang ;
Mu Yue .
MEASUREMENT, 2008, 41 (06) :676-686
[9]   FEM simulation and experimental verification of temperature field and phase transformation in deep cryogenic treatment [J].
Li Jun-wan ;
Tang Lei-lei ;
Li Shao-hong ;
Wu Xiao-chun .
TRANSACTIONS OF NONFERROUS METALS SOCIETY OF CHINA, 2012, 22 (10) :2421-2430
[10]   Influence of deep cryogenic treatment on microstructure and evaluation by internal friction of a tool steel [J].
Li, Shaohong ;
Deng, Lihui ;
Wu, Xiaochun ;
Min, Yong'an ;
Wang, Hongbin .
CRYOGENICS, 2010, 50 (11-12) :754-758