Mechanical Behaviors of Ultrafine-Grained 301 Austenitic Stainless Steel Produced by Equal-Channel Angular Pressing

被引:59
|
作者
Huang, C. X. [1 ,2 ]
Yang, G. [3 ]
Wang, C. [3 ]
Zhang, Z. F. [1 ]
Wu, S. D. [1 ]
机构
[1] Chinese Acad Sci, Shenyang Natl Lab Mat Sci, Inst Met Res, Shenyang 110016, Peoples R China
[2] Rhein Westfal TH Aachen, Inst Phys Met & Met Phys, D-52074 Aachen, Germany
[3] Cent Iron & Steel Res Inst, Beijing 100081, Peoples R China
关键词
SEVERE PLASTIC-DEFORMATION; LUDERS BAND DEFORMATION; NANOSTRUCTURED MATERIALS; MARTENSITE FORMATION; TENSILE DEFORMATION; ROOM-TEMPERATURE; ALUMINUM-ALLOY; STRAIN; DUCTILITY; NANOCRYSTALLINE;
D O I
10.1007/s11661-010-0575-x
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The technique of equal-channel angular pressing (ECAP) was used to refine the microstructure of an AISI 301 austenitic stainless steel (SS). An ultrafine-grained (UFG) microstructure consisting mainly of austenite and a few martensite was achieved in 301 steel after ECAP processing for four passes at 523 K (250 A degrees C). By submitting the as-ECAP rods to annealing treatment in the temperature range from 853 K to 893 K (580 A degrees C to 620 A degrees C) for 60 minutes, fully austenitic microstructures with grain sizes of 210 to 310 nm were obtained. The uniaxial tensile tests indicated that UFG 301 austenitic SS had an excellent combination of high yield strength (> 1.0 GPa) and high elongation-to-fracture (> 30 pct). The tensile stress-strain curves exhibited distinct yielding peak followed by obvious Luders deformation. Measurements showed that Luders elongation increased with an increase in strength as well as a decrease in grain size. The microstructural changes in ultrafine austenite grains during tensile deformation were tracked by X-ray diffraction and transmission electron microscope. It was found that the strain-induced phase transformation from austenite to martensite took place soon after plastic deformation. The transformation rate with strain and the maximum strain-induced martensite were promoted significantly by ultrafine austenite grains. The enhanced martensitic transformation provided extra strain-hardening ability to sustain the propagation of Luders bands and large uniform plastic deformation. During tensile deformation, the Luders bands and martensitic transformation interacted with each other and made great contribution to the excellent mechanical properties in UFG austenitic SS.
引用
收藏
页码:2061 / 2071
页数:11
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