Next Article in Journal
The Influence of the Degree of Tension and Compression of Copper on the Indentation Size Effect (ISE)
Previous Article in Journal
Microstructure and Mechanical Properties of a Weld Seam from Magnetron High-Current CO2 Welding
Previous Article in Special Issue
Effect of Rotational Shear and Heat Input on the Microstructure and Mechanical Properties of Large-Diameter 6061 Aluminium Alloy Additive Friction Stir Deposition
 
 
Font Type:
Arial Georgia Verdana
Font Size:
Aa Aa Aa
Line Spacing:
Column Width:
Background:
Article

Fabrication of Cu-Infiltrated Journal Bearing by Binder Jetting Additive Manufacturing

1
Industrial Component R&D Department, Korea Institute of Industrial Technology, Incheon 21999, Republic of Korea
2
Department of Materials Science and Engineering, Inha University, Incheon 22212, Republic of Korea
Crystals 2024, 14(11), 912; https://doi.org/10.3390/cryst14110912
Submission received: 30 September 2024 / Revised: 16 October 2024 / Accepted: 17 October 2024 / Published: 22 October 2024

Abstract

In this study, considering the economic feasibility of products that can be produced through the binder jetting additive manufacturing process, 316L stainless steel, a widely used material with a wide particle size ranging from 15 to 106 μm, was used. The lubrication effect was increased by internal patterning through design for additive manufacturing, and journal bearing parts with excellent load resistance and wear resistance were implemented by using wear-resistant Cu as an infiltration material. In addition, to investigate the amount of Cu infiltrated as a function of porosity, the parts were pre-sintered from 1423 K to 1573 K, and the best performance was obtained when Cu was infiltrated after pre-sintering at 1473 K. As a result of rig testing of Cu-infiltrated journal bearings, mechanical properties were obtained that were more than 50% improved compared to those of mass products.
Keywords: binder jetting additive manufacturing; 316L stainless steel; pre-sintering; molten copper infiltration; journal bearings binder jetting additive manufacturing; 316L stainless steel; pre-sintering; molten copper infiltration; journal bearings

Share and Cite

MDPI and ACS Style

Jang, J.M. Fabrication of Cu-Infiltrated Journal Bearing by Binder Jetting Additive Manufacturing. Crystals 2024, 14, 912. https://doi.org/10.3390/cryst14110912

AMA Style

Jang JM. Fabrication of Cu-Infiltrated Journal Bearing by Binder Jetting Additive Manufacturing. Crystals. 2024; 14(11):912. https://doi.org/10.3390/cryst14110912

Chicago/Turabian Style

Jang, Jin Man. 2024. "Fabrication of Cu-Infiltrated Journal Bearing by Binder Jetting Additive Manufacturing" Crystals 14, no. 11: 912. https://doi.org/10.3390/cryst14110912

APA Style

Jang, J. M. (2024). Fabrication of Cu-Infiltrated Journal Bearing by Binder Jetting Additive Manufacturing. Crystals, 14(11), 912. https://doi.org/10.3390/cryst14110912

Note that from the first issue of 2016, this journal uses article numbers instead of page numbers. See further details here.

Article Metrics

Back to TopTop