Heat treatment for metal additive manufacturing

M Laleh, E Sadeghi, RI Revilla, Q Chao… - Progress in Materials …, 2023 - Elsevier
Metal additive manufacturing (AM) refers to any process of making 3D metal parts layer-
upon-layer via the interaction between a heating source and feeding material from a digital …

Directed energy deposition of metals: processing, microstructures, and mechanical properties

SH Li, P Kumar, S Chandra… - International Materials …, 2023 - journals.sagepub.com
Amongst the many additive manufacturing (AM) techniques, directed energy deposition
(DED) is a prominent one, which can also be used for the repair of damaged components. In …

Periodic porous 3D electrodes mitigate gas bubble traffic during alkaline water electrolysis at high current densities

T Kou, S Wang, R Shi, T Zhang… - Advanced Energy …, 2020 - Wiley Online Library
Alkaline water electrolysis at high current densities is plagued by gas bubble generation and
trapping in stochastic porous electrodes (eg, Ni foams), which causes a significant reduction …

Corrosion performance of additively manufactured stainless steel parts: A review

AH Ettefagh, S Guo, J Raush - Additive manufacturing, 2021 - Elsevier
The application of additively manufactured (AM) stainless steel (SS) parts is rapidly
emerging in a broad spectrum of industries. Laser powder bed fusion (LPBF) and direct …

Corrosion of additively manufactured alloys: a review

G Sander, J Tan, P Balan, O Gharbi… - …, 2018 - meridian.allenpress.com
Additive manufacturing (AM), often termed 3D printing, has recently emerged as a
mainstream means of producing metallic components from a variety of metallic alloys. The …

On the enhanced corrosion resistance of a selective laser melted austenitic stainless steel

Q Chao, V Cruz, S Thomas, N Birbilis, P Collins… - Scripta Materialia, 2017 - Elsevier
Corrosion of stainless steels, including the austenitic Fe-Cr-Ni alloys, is associated with MnS
inclusions that provide local sites for corrosion pits. Much research effort has been focused …

Heat treatment effect on the microstructure and corrosion behavior of 316L stainless steel fabricated by selective laser melting for proton exchange membrane fuel …

D Kong, X Ni, C Dong, L Zhang, C Man, J Yao, K Xiao… - Electrochimica …, 2018 - Elsevier
Microstructure and corrosion behavior of 316L stainless steel fabricated by selective laser
melting (SLM) for bipolar plate were investigated and the subsequent heat treatment effect …

Hardened austenite steel with columnar sub-grain structure formed by laser melting

K Saeidi, X Gao, Y Zhong, ZJ Shen - Materials Science and Engineering: A, 2015 - Elsevier
Laser melting (LM), with a focused Nd: YAG laser beam, was used to form solid bodies from
a 316L austenite stainless steel powder. The microstructure, phase content and texture of …

Effect of heat treatment on microstructure and mechanical properties of 316L steel synthesized by selective laser melting

OO Salman, C Gammer, AK Chaubey, J Eckert… - Materials Science and …, 2019 - Elsevier
The influence of annealing at different temperatures (573, 873, 1273, 1373 and 1673 K) on
the stability of phases, composition and microstructure of 316L stainless steel fabricated by …

Microstructure and mechanical properties of AISI 316L produced by directed energy deposition-based additive manufacturing: A review

A Saboori, A Aversa, G Marchese, S Biamino… - Applied sciences, 2020 - mdpi.com
Directed energy deposition (DED) as a metal additive manufacturing technology can be
used to produce or repair complex shape parts in a layer-wise process using powder or …