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Corrigendum to “Vacuum heat treatment of iron parts produced by selective laser melting: Microstructure, residual stress and tensile behavior” [Mater. Des. 54 (2014) 727–733]

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Correction Crossref 2 open · 2 total · 0 disputed
DOI
10.1016/j.matdes.2013.08.085
Notice DOI
10.1016/j.matdes.2019.108335
Event date
2019-11-07
Machine twin
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01Notices on this DOI

02One-hop citing occurrences

Correction Open
Solidification-cell confinement of domain-wall pinning in additively manufactured ferromagnets

ref [22] · 2608.18418 · notice #10795 · dispute

Raw extraction · citation context

, Micromagnetism and the microstructure of ferromagnetic solids, Cambridge university press, 2003.doi:https://doi.org/10.1080/00107514.2010.534181. [22] B. Song, S. Dong, Q. Liu, H. Liao, C. Coddet, Vacuum heat treatment of iron parts produced by selective laser melting: Microstructure, residual stress and tensile behavior, Materials & Design (1980-2015) 54 (2014) 727-733.doi:https://doi.org/10.1016/j.matdes.2013.08.085. [23] D. Rosenthal, The theory of moving sources of heat and its application to metal treatments, Transactions of the American Society of Mechanical Engineers 68 (8) (1946) 849-865.doi:https: //doi.org/10.1115/1.4018624. [24] W. Kurz, D. Fisher, M. Rappaz, Fundamentals of solidification (2023). [25] S. Katayama, A. Matsunawa, Solidification microstructure of laser welded stainless steels, in: Inter-

Parser render (TeX stripped for reading; raw above is the evidence)

Micromagnetism and the microstructure of ferromagnetic solids, Cambridge university press, 2003.doi:https://doi.org/10.1080/00107514.2010.534181. [22] B. Song, S. Dong, Q. Liu, H. Liao, C. Coddet, Vacuum heat treatment of iron parts produced by selective laser melting: Microstructure, residual stress and tensile behavior, Materials & Design (1980-2015) 54 (2014) 727-733.doi:https://doi.org/10.1016/j.matdes.2013.08.085. [23] D. Rosenthal, The theory of moving sources of heat and its application to metal treatments, Transactions of the American Society of Mechanical Engineers 68 (8) (1946) 849-865.doi:https: //doi.org/10.1115/1.4018624. [24] W. Kurz, D. Fisher, M. Rappaz, Fundamentals of solidification (2023). [25] S. Katayama, A. Matsunawa, Solidification microstructure of laser welded stainless steels, in: Inter-

Correction Open
Solidification-cell confinement of domain-wall pinning in additively manufactured ferromagnets

ref [22] · 2608.18418 · notice #10777 · dispute

Raw extraction · citation context

, Micromagnetism and the microstructure of ferromagnetic solids, Cambridge university press, 2003.doi:https://doi.org/10.1080/00107514.2010.534181. [22] B. Song, S. Dong, Q. Liu, H. Liao, C. Coddet, Vacuum heat treatment of iron parts produced by selective laser melting: Microstructure, residual stress and tensile behavior, Materials & Design (1980-2015) 54 (2014) 727-733.doi:https://doi.org/10.1016/j.matdes.2013.08.085. [23] D. Rosenthal, The theory of moving sources of heat and its application to metal treatments, Transactions of the American Society of Mechanical Engineers 68 (8) (1946) 849-865.doi:https: //doi.org/10.1115/1.4018624. [24] W. Kurz, D. Fisher, M. Rappaz, Fundamentals of solidification (2023). [25] S. Katayama, A. Matsunawa, Solidification microstructure of laser welded stainless steels, in: Inter-

Parser render (TeX stripped for reading; raw above is the evidence)

Micromagnetism and the microstructure of ferromagnetic solids, Cambridge university press, 2003.doi:https://doi.org/10.1080/00107514.2010.534181. [22] B. Song, S. Dong, Q. Liu, H. Liao, C. Coddet, Vacuum heat treatment of iron parts produced by selective laser melting: Microstructure, residual stress and tensile behavior, Materials & Design (1980-2015) 54 (2014) 727-733.doi:https://doi.org/10.1016/j.matdes.2013.08.085. [23] D. Rosenthal, The theory of moving sources of heat and its application to metal treatments, Transactions of the American Society of Mechanical Engineers 68 (8) (1946) 849-865.doi:https: //doi.org/10.1115/1.4018624. [24] W. Kurz, D. Fisher, M. Rappaz, Fundamentals of solidification (2023). [25] S. Katayama, A. Matsunawa, Solidification microstructure of laser welded stainless steels, in: Inter-

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