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Metastable Austenite in 17-4 Precipitation-Hardening Stainless Steel Produced by Selective Laser Melting
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March 2010 |
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Characteristics of lath martensite: Part I. crystallographic and substructural features
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April 1983 |
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Effects of Strain State and Strain Rate on Deformation-Induced Transformation in 304 Stainless Steel: Part I. Magnetic Measurements and Mechanical Behavior
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April 1982 |
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Effects of Strain State and Strain Rate on Deformation-Induced Transformation in 304 Stainless Steel: Part II. Microstructural Study
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April 1982 |
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Ductility and strain-induced transformation in a high-strength transformation-induced plasticity-aided dual-phase steel
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November 1992 |
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On the analysis of delamination fractures in high-strength steels
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September 1990 |
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Kinetics of strain-induced martensitic nucleation
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April 1975 |
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Stress- and strain-induced formation of martensite and its effects on strength and ductility of metastable austenitic stainless steels
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July 1971 |
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Beneficial effects of nitrogen Atomization on an Austenitic Stainless Steel
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December 1992 |
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Quenching and Partitioning (Q&P) Processing of Martensitic Stainless Steels
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September 2012 |
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Additively Manufactured Nitrogen-Atomized 17-4 PH Stainless Steel with Mechanical Properties Comparable to Wrought
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February 2019 |
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Nitrogen Effects in Additively Manufactured Martensitic Stainless Steels: Conventional Thermal Processing and Comparison with Wrought
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March 2020 |
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Microstructure and Mechanical Behavior of 17-4 Precipitation Hardenable Steel Processed by Selective Laser Melting
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September 2014 |
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Investigating Additively Manufactured 17-4 PH for Structural Applications
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July 2019 |
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Additive Manufacturing of 17-4 PH Stainless Steel: Post-processing Heat Treatment to Achieve Uniform Reproducible Microstructure
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December 2015 |
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Influence of Postbuild Microstructure on the Electrochemical Behavior of Additively Manufactured 17-4 PH Stainless Steel
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January 2017 |
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Microstructure and Deformation Behavior of Additively Manufactured 17–4 Stainless Steel: Laser Powder Bed Fusion vs. Laser Powder Directed Energy Deposition
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November 2021 |
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Criterion for the action of applied stress in the martensitic transformation
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September 1953 |
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On the change in the austenite lattice parameter due to the martensitic transformation in an Fe-32Ni alloy
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June 1983 |
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A constitutive model for transformation plasticity accompanying strain-induced martensitic transformations in metastable austenitic steels
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July 1992 |
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The effect of ageing upon the microstructure and mechanical properties of type 15-5 PH stainless steel
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December 2002 |
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On the role of martensitic transformation on damage and cracking resistance in TRIP-assisted multiphase steels
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January 2001 |
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Carbon partitioning into austenite after martensite transformation
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May 2003 |
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Microstructures and Properties of 17-4 PH Stainless Steel Fabricated by Selective Laser Melting
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October 2012 |
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Formation of shear bands and strain-induced martensite during plastic deformation of metastable austenitic stainless steels
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October 2007 |
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Chemical gradients across phase boundaries between martensite and austenite in steel studied by atom probe tomography and simulation
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January 2011 |
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Phase transformation of Cu precipitates from bcc to fcc in Fe–3Si–2Cu alloy
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January 2013 |
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Self-stabilization of untransformed austenite by hydrostatic pressure via martensitic transformation
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May 2016 |
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Quenching and partitioning (Q&P) processing of fully austenitic stainless steels
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July 2017 |
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Elucidating the temperature dependence of TRIP in Q&P steels using synchrotron X-Ray diffraction, constituent phase properties, and strain-based kinetics models
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September 2022 |
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Effects of building orientation and heat treatment on fatigue behavior of selective laser melted 17-4 PH stainless steel
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January 2017 |
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Quasi-static and dynamic investigation of an advanced high strength and corrosion resistant 10 % Cr nanocomposite martensitic steel
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December 2021 |
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Fracture of an anisotropic rare-earth-containing magnesium alloy (ZEK100) at different stress states and strain rates: Experiments and modeling
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November 2019 |
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Microstructure and property of a selective laser melting process induced oxide dispersion strengthened 17-4 PH stainless steel
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September 2019 |
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Effect of retained austenite on subsequent thermal processing and resultant mechanical properties of selective laser melted 17–4 PH stainless steel
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September 2015 |
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Evolution of the microstructure of a 15-5PH martensitic stainless steel during precipitation hardening heat treatment
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October 2016 |
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Effect of scan pattern on the microstructure and mechanical properties of Powder Bed Fusion additive manufactured 17-4 stainless steel
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journal
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November 2017 |
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Quantitative electron microscopy and physically based modelling of Cu precipitation in precipitation-hardening martensitic stainless steel 15-5 PH
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April 2018 |
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Effect of reverted austenite on mechanical properties of precipitation hardenable 17-4 stainlesssteel
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April 2013 |
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Impact of composition on the heat treatment response of additively manufactured 17–4 PH grade stainless steel
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December 2018 |
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Micromechanical response quantification using high-energy X-rays during phase transformations in additively manufactured 17-4 stainless steel
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June 2019 |
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Impact of retained austenite on the aging response of additively manufactured 17-4 PH grade stainless steel
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June 2021 |
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Effects of geometry, location, and direction on microstructure and mechanical properties of 15–5PH stainless steel fabricated by directed energy deposition
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July 2021 |
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Comparative study of the microstructure between a laser beam melted 17-4PH stainless steel and its conventional counterpart
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August 2021 |
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Achieving high strength and ductility in 17-4 PH steel with a periodic layer structure by laser direct metal depositing and aging
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September 2021 |
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Development of computational framework for titanium alloy phase transformation prediction in laser powder-bed fusion additive manufacturing
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December 2020 |
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Examining the Relationship Between Post-Build Microstructure and the Corrosion Resistance of Additively Manufactured 17-4PH Stainless Steel
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May 2022 |
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Quenching and partitioning processing of transformable ferritic stainless steels
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November 2011 |
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Cu precipitation-mediated formation of reverted austenite during ageing of a 15–5 PH stainless steel
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September 2021 |
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Quantitative high temperature calorimetry on precipitation in steel and nickel alloys
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July 2019 |
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High-resolution electron microscopy studies of the structure of Cu precipitates in α-Fe
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July 1994 |
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Transmission electron microscope investigations of the structure of copper precipitates in thermally-aged Fe—Cu and Fe—Cu—Ni
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December 1991 |
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A high-resolution electron microscopy study of copper precipitation in Fe-1.5 wt% Cu under electron irradiation
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June 1995 |
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Crystallographic model for bcc-to-9R martensitic transformation of Cu precipitates in ferritic steel
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January 2007 |
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Additive manufacturing of a shift block via laser powder bed fusion: the simultaneous utilisation of optimised topology and a lattice structure
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September 2020 |
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On the role of interlath retained austenite in the deformation of lath martensite
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May 2014 |
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Assessment of bias errors caused by texture and sampling methods in diffraction-based steel phase measurements
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May 2018 |
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Refinements in phase fraction determination of textured alloys from transmission diffraction data
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October 2021 |
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Powder characterization and part density for powder bed fusion of 17-4 PH stainless steel
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December 2020 |
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Mechanical Characterization and Modeling of Direct Metal Laser Sintered Stainless Steel GP1
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March 2019 |
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Strain rate sensitivity and mechanical anisotropy of selective laser melted 17-4 PH stainless steel
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January 2014 |
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The "quenching and partitioning" process: background and recent progress
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December 2005 |
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Anomalous Changes in Austenite and Martensite Lattice Parameters of Fe–Mn–C Alloys
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January 1980 |
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Effects of Volume Fraction and Stability of Retained Austenite on Ductility of TRIP-aided Dual-phase Steels.
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January 1992 |
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On the Factors Governing Austenite Stability: Intrinsic versus Extrinsic
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August 2020 |
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Mechanical Properties of Austenitic Stainless Steel Made by Additive Manufacturing
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January 2014 |