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Type Isheim, Dieter; Kolli, R. Prakash; Fine, Morris E.; Seidman, David N.
  Publication An atom-probe tomographic study of the temporal evolution of the nanostructure of Fe-Cu based high-strength low-carbon steels Volume Journal Article
Pages 2006
  Abstract Scripta Materialia  
  Corporate Author Scripta Mater.  
Publisher 55  
  Summary Language 35-40 Series Editor Precipitation strengthening; Interfacial segregation; Ferritic steels; Nanostructure; Temporal evolution; LEAP  
Abbreviated Series Title A three-dimensional (3D) knowledge of the atomic-scale structure is necessary for improving the design and understanding of modern materials with complex microstructures, such as high-performance steels. Local-electrode atom-probe tomography is used to obtain atom-by-atom 3D reconstructions to characterize three versions of a copper, nickel, manganese, and aluminum bearing high-strength low-carbon steel, which achieve their high tensile yield strength, up to 1170 MPa (170 ksi), from the formation of nanometer-radius copper rich precipitates. The temporal evolution of these precipitates is followed at 500
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no NU @ p-kolli @ 790
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