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Relationships Between the Phase Transformation Kinetics, Texture Evolution, and Microstructure Development in a 304L Stainless Steel Under Biaxial Loading Conditions: Synchrotron X-ray and Electron Backscatter Diffraction Studies
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  • 作者:Ercan Cakmak (1)
    Hahn Choo (2)
    Jun-Yun Kang (3)
    Yang Ren (4)

    1. Materials Science and Technology Division
    ; Oak Ridge National Laboratory ; Oak Ridge ; TN ; 37831-6064 ; USA
    2. Department of Materials Science and Engineering
    ; The University of Tennessee ; 411 Ferris Hall ; Knoxville ; TN ; 37996-2100 ; USA
    3. Ferrous Alloys Group
    ; Korea Institute of Materials Science ; 797 Changwondaero ; Changwon ; 642-831 ; South Korea
    4. X-ray Science Division
    ; Argonne National Laboratory ; Argonne ; IL ; 60439 ; USA
  • 刊名:Metallurgical and Materials Transactions A
  • 出版年:2015
  • 出版时间:May 2015
  • 年:2015
  • 卷:46
  • 期:5
  • 页码:1860-1877
  • 全文大小:2,810 KB
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  • 刊物类别:Chemistry and Materials Science
  • 刊物主题:Chemistry
    Materials Science
    Metallic Materials
    Structural Materials
    Physical Chemistry
    Ceramics,Glass,Composites,Natural Materials
  • 出版者:Springer Boston
  • ISSN:1543-1940
文摘
The relationships between the martensitic phase transformation kinetics, texture evolution, and the microstructure development in the parent austenite phase were studied for a 304L stainless steel that exhibits the transformation-induced plasticity effect under biaxial loading conditions at ambient temperature. The applied loading paths included: pure torsion, simultaneous biaxial torsion/tension, simultaneous biaxial torsion/compression, and stepwise loading of tension followed by torsion (i.e., first loading by uniaxial tension and then by pure torsion in sequence). Synchrotron X-ray and electron backscatter diffraction techniques were used to measure the evolution of the phase fractions, textures, and microstructures as a function of the applied strains. The influence of loading character and path on the changes in martensitic phase transformation kinetics is discussed in the context of (1) texture-transformation relationship and the preferred transformation of grains belonging to certain texture components over the others, (2) effects of axial strains on shear band evolutions, and (3) volume changes associated with martensitic transformation.

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