Regeneration of the Damaged Parts with the Use of Metal Additive Manufacturing-Case Study.

M300 maraging steel additive manufacturing laser-based powder bed fusion of metals regeneration selective laser melting tensile strength

Journal

Materials (Basel, Switzerland)
ISSN: 1996-1944
Titre abrégé: Materials (Basel)
Pays: Switzerland
ID NLM: 101555929

Informations de publication

Date de publication:
16 May 2023
Historique:
received: 24 04 2023
revised: 11 05 2023
accepted: 15 05 2023
medline: 27 5 2023
pubmed: 27 5 2023
entrez: 27 5 2023
Statut: epublish

Résumé

The paper shows the results related to regeneration possibilities analysis of a damaged slider removed from a hydraulic splitter that was repaired using additive manufacturing (AM), laser-based powder bed fusion of metals (PBF-LB/M) technology. The results demonstrate the high quality of the connection zone between the original part and the regenerated zone. The hardness measurement conducted at the interface between the two materials indicated a significant increase equal to 35% by using the M300 maraging steel, as a material for regeneration. Additionally, the use of digital image correlation (DIC) technology enabled the identification of the area where the largest deformation occurred during the tensile test, which was out of the connection zone between the two materials.

Identifiants

pubmed: 37241398
pii: ma16103772
doi: 10.3390/ma16103772
pmc: PMC10223511
pii:
doi:

Types de publication

Journal Article

Langues

eng

Subventions

Organisme : Military University of Technology
ID : 22-830

Références

Materials (Basel). 2020 Oct 01;13(19):
pubmed: 33019766
Materials (Basel). 2020 Oct 27;13(21):
pubmed: 33120911
Materials (Basel). 2021 Oct 29;14(21):
pubmed: 34772048
Materials (Basel). 2023 Feb 17;16(4):
pubmed: 36837329

Auteurs

Piotr Sawczuk (P)

Institute of Robots & Machine Design, Faculty of Mechanical Engineering, Military University of Technology, Gen. S. Kaliskiego St. 2, 00-908 Warsaw, Poland.

Janusz Kluczyński (J)

Institute of Robots & Machine Design, Faculty of Mechanical Engineering, Military University of Technology, Gen. S. Kaliskiego St. 2, 00-908 Warsaw, Poland.

Bartłomiej Sarzyński (B)

Institute of Robots & Machine Design, Faculty of Mechanical Engineering, Military University of Technology, Gen. S. Kaliskiego St. 2, 00-908 Warsaw, Poland.

Ireneusz Szachogłuchowicz (I)

Institute of Robots & Machine Design, Faculty of Mechanical Engineering, Military University of Technology, Gen. S. Kaliskiego St. 2, 00-908 Warsaw, Poland.

Katarzyna Jasik (K)

Institute of Robots & Machine Design, Faculty of Mechanical Engineering, Military University of Technology, Gen. S. Kaliskiego St. 2, 00-908 Warsaw, Poland.

Jakub Łuszczek (J)

Institute of Robots & Machine Design, Faculty of Mechanical Engineering, Military University of Technology, Gen. S. Kaliskiego St. 2, 00-908 Warsaw, Poland.

Krzysztof Grzelak (K)

Institute of Robots & Machine Design, Faculty of Mechanical Engineering, Military University of Technology, Gen. S. Kaliskiego St. 2, 00-908 Warsaw, Poland.

Paweł Płatek (P)

Institute of Armaments Technology, Faculty of Mechatronics, Armaments and Aerospace, Military University of Technology, Gen. S. Kaliskiego St. 2, 00-908 Warsaw, Poland.

Janusz Torzewski (J)

Institute of Robots & Machine Design, Faculty of Mechanical Engineering, Military University of Technology, Gen. S. Kaliskiego St. 2, 00-908 Warsaw, Poland.

Marcin Małek (M)

Institute of Civil Engineering, Faculty of Civil Engineering and Geodesy, Military University of Technology, Gen. S. Kaliskiego St. 2, 00-908 Warsaw, Poland.

Classifications MeSH