Grain boundary engineering of AL6XN super-austenitic stainless steel: Distinctive effects of planar-slip dislocations and deformation twins
Xianjun Guan(Northeastern University), Xiaowu Li(Chinese Academy of Sciences), Z.P. Jia(Northeastern University)
Cited by 41
Related Papers
Breaking the trade-off relation of strength and electrical conductivity in pure Al wire by controlling texture and grain boundary
|Journal of Alloys and Compounds|2018|142
Nano-scale precipitates: The key to high strength and high conductivity in Al alloy wire
|Materials & Design|2017|134
Improving intergranular corrosion resistance in a nickel-free and manganese-bearing high-nitrogen austenitic stainless steel through grain boundary character distribution optimization
|Corrosion Science|2016|128
In Situ Two-Phase Ligand Exchange: A New Method for the Synthesis of Alloy Nanoclusters with Precise Atomic Structures
|Journal of the American Chemical Society|2017|127
Mechanical properties of crossed-lamellar structures in biological shells: A review
|Journal of the mechanical behavior of biomedical materials/Journal of mechanical behavior of biomedical materials|2017|120