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  • J. Bono, John N. Dupont, Divya Jain, Sung-Il Baik, David N. Seidman
  • Materials Science
  • Metallurgical and Materials Transactions A
  • 2015 (First Publication: 1 November 2015)
  • NUCu-140 is a ferritic copper precipitation-strengthened steel that is a candidate material for use in many naval and structural applications. Previous work has shown that the heat-affected zoneContinue Reading
  • Divya Jain, Dieter Isheim, Allen H. Hunter, David N. Seidman
  • Materials Science
  • Metallurgical and Materials Transactions A
  • 2016 (First Publication: 1 August 2016)
  • HSLA-115 is a novel high-strength low-alloy structural steel derived from martensitic Cu-bearing HSLA-100. HSLA-100 is typically used in conditions with overaged Cu precipitates, to obtain acceptableContinue Reading
  • Jeffrey D. Farren, Allen H. Hunter, John N. Dupont, David N. Seidman, Charles V. Robino, Ernst Kozeschnik
  • Materials Science
  • Metallurgical and Materials Transactions A
  • 2012 (First Publication: 1 November 2012)
  • NUCu-140 is a copper-precipitation-strengthened steel that exhibits excellent mechanical properties with a relatively simple chemical composition and processing schedule. As a result, NUCu-140 is aContinue Reading
  • M Hartshorne, Caroline Mccormick, +4 authors Mitra L. Taheri
  • Materials Science
  • Metallurgical and Materials Transactions A
  • 2016 (First Publication: 1 April 2016)
  • The microstructure of a new martensitic high-strength steel (Fe-0.40C-3.81Ni-1.31Cr-1.50Si-0.75Mn-0.52Mo-0.51Cu-0.30V) with high fracture toughness is characterized by transmission electronContinue Reading
  • Erin J. Barrick, Divya Jain, John N. Dupont, David N. Seidman
  • Materials Science
  • Metallurgical and Materials Transactions A
  • 2017 (First Publication: 1 December 2017)
  • Abstract10 wt pct Ni steel is a high-strength steel that possesses good ballistic resistance from the deformation induced transformation of austenite to martensite, known as theContinue Reading