161
Views
26
CrossRef citations to date
0
Altmetric
Original Articles

Micromechanisms of deformation of an austenoferritic duplex stainless steel

, , , &
Pages 1079-1091 | Received 25 Sep 1996, Accepted 11 Feb 1997, Published online: 13 Sep 2006

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (1)

N. Haghdadi, P. Cizek, P. D. Hodgson, V. Tari, G. S. Rohrer & H. Beladi. (2018) Five-parameter crystallographic characteristics of the interfaces formed during ferrite to austenite transformation in a duplex stainless steel. Philosophical Magazine 98:14, pages 1284-1306.
Read now

Articles from other publishers (25)

Zhilong Dong, Xue-Fang Xie, Jingwen Li & Yu Wan. (2023) Thickness-Dependent Microstructure and its Effect on Anisotropic Mechanical Properties of Duplex Stainless Steel 2205 Multi-pass Welded Joints. Acta Metallurgica Sinica (English Letters) 36:11, pages 1883-1892.
Crossref
Fuji Wang, Siyao You, Dayue Jiang, Xiangyu Yuan, Rao Fu & Fuda Ning. (2023) Microstructure evolution, phase formation, corrosion, and mechanical properties of stainless steel fabricated by extrusion-based sintering-assisted additive manufacturing. Additive Manufacturing 75, pages 103746.
Crossref
Ghiath Monnet. (2022) Constitutive Flow Equation for Cast Austenite–Ferrite Stainless Steels. Metallurgical and Materials Transactions A 54:1, pages 53-63.
Crossref
Darshan Chalapathi, P.V. Sivaprasad, Guocai Chai & Anand K. Kanjarla. (2022) Anisotropic work hardening behaviour in duplex stainless steel under uni-axial loading: Interplay between phase morphology and crystallographic texture. Materials Science and Engineering: A 849, pages 143418.
Crossref
Saereh Mirzababaei, Brian K. Paul & Somayeh Pasebani. (2022) Microstructure-property relationship in binder jet produced and vacuum sintered 316 L. Additive Manufacturing 53, pages 102720.
Crossref
X.Z. Li, C. Li, L. Lu, J.Y. Huang & S.N. Luo. (2021) Interactions between slip bands and interfaces in a compressed duplex stainless steel. Materials Science and Engineering: A 818, pages 141325.
Crossref
Frances M. Ross & Andrew M. Minor. 2019. Springer Handbook of Microscopy. Springer Handbook of Microscopy 101 187 .
N. Haghdadi, P. Cizek, P.D. Hodgson, V. Tari, G.S. Rohrer & H. Beladi. (2018) Effect of ferrite-to-austenite phase transformation path on the interface crystallographic character distributions in a duplex stainless steel. Acta Materialia 145, pages 196-209.
Crossref
N. Haghdadi, P. Cizek, H. Beladi & P. D. Hodgson. (2017) Dynamic Restoration Processes in a 23Cr-6Ni-3Mo Duplex Stainless Steel: Effect of Austenite Morphology and Interface Characteristics. Metallurgical and Materials Transactions A 48:10, pages 4803-4820.
Crossref
M. Breda, E. Ramous, E. Almanza & I. Calliari. (2017) Strain-Induced Martensite Detection Methods in Cold-Rolled Duplex Stainless Steels. Materials Performance and Characterization 6:3, pages MPC20160065.
Crossref
Reza Rahimi, Christiane Ullrich, David Rafaja, Horst Biermann & Javad Mola. (2016) Microstructural Evolution of an Al-Alloyed Duplex Stainless Steel During Tensile Deformation Between 77 K and 473 K (−196 °C and 200 °C). Metallurgical and Materials Transactions A 47:6, pages 2705-2716.
Crossref
Cem Örnek & Dirk L Engelberg. (2016) An experimental investigation into strain and stress partitioning of duplex stainless steel using digital image correlation, X-ray diffraction and scanning Kelvin probe force microscopy. The Journal of Strain Analysis for Engineering Design 51:3, pages 207-219.
Crossref
Marco Breda, Katya Brunelli, Francesco Grazzi, Antonella Scherillo & Irene Calliari. (2014) Effects of Cold Rolling and Strain-Induced Martensite Formation in a SAF 2205 Duplex Stainless Steel. Metallurgical and Materials Transactions A 46:2, pages 577-586.
Crossref
L. Chen, F.P. Yuan, P. Jiang, J.J. Xie & X.L. Wu. (2014) Simultaneous improvement of tensile strength and ductility in micro-duplex structure consisting of austenite and ferrite. Materials Science and Engineering: A 618, pages 563-571.
Crossref
F. Onimus, L. Dupuy & F. Mompiou. (2012) In situ TEM observation of interactions between gliding dislocations and prismatic loops in Zr-ion irradiated zirconium alloys. Progress in Nuclear Energy 57, pages 77-85.
Crossref
A. El Bartali, M.-C. Marinelli, M. Balbi, V. Aubin, I. Alvarez-Armas & S. Degallaix-Moreuil. (2012) Stade I d’endommagement par fatigue plastique oligocyclique (FPO) dans un acier inoxydable duplex (AID). Matériaux & Techniques 100:1, pages 69-78.
Crossref
M.C. Marinelli, M.G. Moscato, Javier Signorelli, A. El Bartali & I. Alvarez-Armas. (2011) K-S Relationship Identification Technique by EBSD. Key Engineering Materials 465, pages 415-418.
Crossref
A. EL BARTALI, V. AUBIN & S. DEGALLAIX. (2008) Fatigue damage analysis in a duplex stainless steel by digital image correlation technique. Fatigue & Fracture of Engineering Materials and Structures 31:2, pages 137-151.
Crossref
I. Alvarez-Armas, M.C. Marinelli, S. Hereñú, S. Degallaix & A.F. Armas. (2006) On the cyclic softening behavior of SAF 2507 duplex stainless steel. Acta Materialia 54:19, pages 5041-5049.
Crossref
Madeleine Durand-CharreMadeleine Durand-Charre. 2004. Microstructure of Steels and Cast Irons. Microstructure of Steels and Cast Irons 375 398 .
W. Zieliński, W. Świątnicki, M. Barstch & U. Messerschmidt. (2003) Non-uniform distribution of plastic strain in duplex steel during TEM in situ deformation. Materials Chemistry and Physics 81:2-3, pages 476-479.
Crossref
. (2003) Effects of Nitrogen on Deformation Behavior of Duplex Stainless Steel. Transactions of Materials Processing 12:4, pages 284-289.
Crossref
Francois Louchet & Hiroyasu Saka. (2003) Comments on the paper: observation of dislocation dynamics in the electron microscope, by B.W. Lagow et al.. Materials Science and Engineering: A 352:1-2, pages 71-75.
Crossref
S. Bugat, J. Besson & A. Pineau. (1999) Micromechanical modeling of the behavior of duplex stainless steels. Computational Materials Science 16:1-4, pages 158-166.
Crossref
C.W Sinclair, J.D Embury & G.C Weatherly. (1999) Basic aspects of the co-deformation of bcc/fcc materials. Materials Science and Engineering: A 272:1, pages 90-98.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.