Nature of Microcracks in Ferritic Steels Occurred during Fracture under Conditions of Ductile-Brittle Transition Temperature Region

被引:0
作者
M. M. Kantor
K. G. Vorkachev
K. A. Solntsev
机构
[1] Russian Academy of Sciences,Baikov Institute of Metallurgy and Materials Science
来源
Inorganic Materials | 2018年 / 54卷
关键词
microcracks; ferritic steel; electron backscatter diffraction; impact toughness;
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摘要
It has been shown by means of EBSD techique that fracture of ferritic steel in ductile-brittle transition temperature region, along with the formation of previously discribed cleavage microcracks, results in the formation of ductile microcracks. It has also been shown that microstructure of plastic zones under brittle and ductile fracture components produced by the main crack propagation differ significantly. Better developed plastic zone under ductile fracture component protects steel from overstress. The plastic zone under brittle fracture surface, apparently, has a reduced local plasticity. Consequently, the cleavage microcracks formation precedes the fracture process. During the main crack formation such microcracks occur in steel microvolumes located both in front of its tip and in adjacent to its edges microvolumes. Further propagation of the main crack is realized in steel which already contains scattered cavities and reduces to ductile fracture of the connections between them.
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页码:1071 / 1077
页数:6
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共 27 条
[1]  
McMahon C.J.(1965)Initiation of cleavage in polycrystalline iron Acta Metall. 13 591-604
[2]  
Cohen M.(1983)Cleavage fracture of steels with fine grain size Met. Sci. 17 581-589
[3]  
Okamura N.(2003)Electron backscattering diffraction analysis of secondary cleavage cracks in a reactor pressure vessel steel Mater. Charact. 49 211-217
[4]  
Nohava J.(1997)Advances in the mechanism of cleavage of low alloy steel at low temperature. Part I: Critical event Int. J. Fract. 83 105-120
[5]  
Hausild P.(1972)Mechanisms of fast fracture and arrest in steels Metall. Trans. 3 123-136
[6]  
Karlik M.(1998)Microscopic investigation of crack growth in a pressure vessel steel Mater. Sci. Eng., A 241 169-178
[7]  
Bompard P.(1980)Micromechanisms of fibrous crack extension in engineering steels Met. Sci. 14 327-336
[8]  
Chen J.H.(2014)Scattering of values of impact toughness of low–alloy steel in the ductilebrittle transition temperature region Inorg. Mater.: Appl. Res. 5 293-302
[9]  
Wang Y.Z.(1976)Fatigue crack tip plastic zones in low carbon steel Int. J. Fract. 12 579-585
[10]  
Yan C.(2011)A review of strain analysis using electron backscatter diffraction Microsc. Microanal. 17 316-329