Uncovering the white etching area and crack formation mechanism in bearing steel

被引:7
作者
Nikolic, Ksenija [1 ,2 ,6 ]
Ferreira, Vitoria Mattos [3 ]
Malet, Loic [4 ]
Depover, Tom [5 ]
Verbeken, Kim [5 ]
Petrov, Roumen H. [1 ,3 ]
机构
[1] Univ Ghent, Dept Electromech Syst & Met Engn, Technol Pk 46, B-9052 Ghent, Belgium
[2] SIM Vzw, Technol Pk 48, B-9052 Ghent, Belgium
[3] Delft Univ Technol, Dept Mat Sci & Engn, Mekelweg 2, NL-2600 Delft, Netherlands
[4] Ecole Polytech Bruxelles, Campus Solbosch,Ave FD Roosevelt 50, B-1050 Brussels, Belgium
[5] Univ Ghent, Dept Mat Text & Chem Engn, Technol Pk 46, B-9052 Ghent, Belgium
[6] Technol Pk 46, B-9052 Ghent, Belgium
关键词
Rolling contact fatigue; White etching cracks; White etching area; Bearing steel; EBSD; FIB; TEM; ROLLING-CONTACT FATIGUE; MICROSTRUCTURAL ALTERATIONS; 100CR6; BEARING; NONMETALLIC INCLUSIONS; THRUST BEARING; REDISTRIBUTION; WEC;
D O I
10.1016/j.matchar.2023.112659
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The microstructure of a damaged bearing from the field was characterized in this work with the intention to better understand microstructural features behind formation of White Etching Cracks (WEC) in bearings. Microstructural characterization of the altered white etching area (WEA) involved conventional electron backscattered diffraction (EBSD), followed by transmission electron microscopy (TEM), and transmission Kikuchi diffraction (TKD). In addition, automated crystallographic orientation mapping in TEM was performed on lamellae from selected regions of the WEA extracted via focus ion beam milling. The results revealed that the orientation of detectable grains within WEA is similar to that of the vicinal bulk material. WEA consists of small spherical grains (average 30 nm) and the orientation of the grains varied significantly in the deformed zone, suggesting that recrystallization had occurred. The interface between bulk material and the deformed zone is very sharp. Furthermore, needle-like grains, most likely originating from the zone undergoing only modest levels of severe plastic deformation, occurred in WEA. The occurrence of different grain sizes in WEA and incomplete plastic deformation strongly support the hypothesis of WEC formation via severe plastic deformation followed by recrystallization.
引用
收藏
页数:9
相关论文
共 50 条
[31]   Heterogenous structure and formation mechanism of white and brown etching layers in bainitic rail steel [J].
Gao, Guhui ;
Liu, Miao ;
Gui, Xiaolu ;
Hu, Jie ;
Luan, Junhua ;
Jiao, Zengbao ;
Wang, Xi ;
Bai, Bingzhe ;
Yang, Zhigang .
ACTA MATERIALIA, 2023, 250
[32]   A Review: The Dilemma With Premature White Etching Crack (WEC) Bearing Failures [J].
Stadler, Kenred ;
Lai, Junbiao ;
Vegter, Reinder Hindrik .
BEARING STEEL TECHNOLOGIES: 10TH VOLUME: ADVANCES IN STEEL TECHNOLOGIES FOR ROLLING BEARINGS, 2015, 1580 :487-508
[33]   Broad review of "White Etching Crack" failure in wind turbine gearbox bearings: Main factors and experimental investigations [J].
Jose Lopez-Urunuela, Fernando ;
Fernandez-Diaz, Beatriz ;
Pagano, Francesco ;
Lopez-Ortega, Ainara ;
Pinedo, Bihotz ;
Bayon, Raquel ;
Aguirrebeitia, Josu .
INTERNATIONAL JOURNAL OF FATIGUE, 2021, 145 (145)
[34]   Effect of Retained Austenite on White Etching Crack Behavior of Carburized AISI 8620 Steel Under Boundary Lubrication [J].
Sougata Roy ;
Benjamin Gould ;
Ye Zhou ;
Nicholaos G. Demas ;
Aaron C. Greco ;
Sriram Sundararajan .
Tribology Letters, 2019, 67
[35]   Lubricant performance against white etching areas (WEAs) formation in AISI 52100 bearing steel under cyclic compressive loading [J].
Linto, D. ;
Ramkumar, P. .
PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART J-JOURNAL OF ENGINEERING TRIBOLOGY, 2023, 237 (04) :1012-1024
[36]   Influence of MnS inclusion characteristics on generation of white etching cracks in 100Cr6 bearing steel [J].
Kiranbabu, Srikakulapu ;
Morsdorf, Lutz ;
Gonzalez, Ivan ;
Koelling, Michael ;
Bross, Christian ;
Ponge, Dirk ;
Herbig, Michael ;
Mayweg, David .
WEAR, 2023, 534
[37]   Formation mechanisms of white etching cracks and white etching area under rolling contact fatigue [J].
Evans, M-H ;
Wang, L. ;
Wood, R. J. K. .
PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART J-JOURNAL OF ENGINEERING TRIBOLOGY, 2014, 228 (10) :1047-1062
[38]   Threshold Maps for Inclusion-Initiated Micro-Cracks and White Etching Areas in Bearing Steel: The Role of Impact Loading and Surface Sliding [J].
Bruce, T. ;
Long, H. ;
Dwyer-Joyce, R. S. .
TRIBOLOGY LETTERS, 2018, 66 (03)
[39]   A study on the initiation processes of white etching cracks (WECs) in AISI 52100 bearing steel [J].
Spille, J. ;
Wranik, J. ;
Barteldes, S. ;
Mayer, J. ;
Schwedt, A. ;
Zuercher, M. ;
Lutz, T. ;
Wang, L. ;
Holweger, W. .
WEAR, 2021, 477
[40]   Mechanical Properties of White Etching Areas in Carburized Bearing Steel Using Spherical Nanoindentation [J].
Leung, Jonathan F. W. ;
Bedekar, Vikram ;
Voothaluru, Rohit ;
Neu, Richard W. .
METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 2019, 50A (11) :4949-4954