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7856983 
Journal Article 
Grain size dependence of twinning behaviors and resultant cryogenic impact toughness in high manganese austenitic steel 
Chen, Jun; Dong, Futao; Liu, Zyu; Wang, GuoD 
2021 
10 
175-187 
Two high manganese austenitic steels with different grain size were prepared to comprehensively investigate size effect on twinning and resultant cryogenic impact toughness at -196 degrees C. The microstructure was characterized by means of electron back-scattered diffraction, transmission electron microscopy and X-ray diffraction. It is found that the Charpy impact absorbed energy can be enhanced by 36% via increasing grain size from similar to 11 to similar to 47 mu m, exhibiting an inverse size effect of cryogenic impact toughness. The major difference in deformed microstructure is that the number fraction of type III grains (intense twinning in grain interior) increases from similar to 16% to similar to 56% as the grain size increases from similar to 11 to similar to 47 mu m. Moreover, it has been demonstrated that the larger grain size, inducing better Charpy impact toughness at -196 degrees C, is due to the following aspects: (1) stronger dynamic grain refinement; (2) higher dislocation density and wider extended dislocations contributing to stronger strain hardening and better plasticity as well as (3) relatively homogeneous plastic deformation. (C) 2020 The Author(s). Published by Elsevier B.V. 
High manganese austenitic steel; Transmission electron microscopy; Grain size; Stacking fault energy; Twinning; Toughness