DOAJ Open Access 2025

Characterization of Laser-Ablated Bound Metal Deposition (laBMD)

Alexander Watson Masoud Rais-Rohani John Belding Jasper McGill Brett D. Ellis

Abstrak

Additive manufacturing of metals is limited by a fundamental tradeoff between deposition rates and manufacturability of fine-scale features. To overcome this problem, a laser-ablated bound metal deposition (laBMD) process is demonstrated in which 3D-printed green-state bound metal deposition (BMD) parts are post-processed via laser ablation prior to conventional BMD debinding and sintering. The laBMD process is experimentally characterized via a full-factorial design of experiments to determine the effect of five factors—number of laser passes (one pass, three passes), laser power (25%, 75%), scanning speed (50%, 100%), direction of laser travel (perpendicular, parallel), and laser resolution (600 dpi, 1200 dpi)—on as-sintered ablated depth, surface roughness, width, and angle between ablated and non-ablated regions. The as-sintered ablation depth/pass ranged from 3 to 122 µm/pass, the ablated surface roughness ranged from 3 to 79 µm, the angle between ablated and non-ablated regions ranged from 1° to 68°, and ablated bottom widths ranged from 729 to 1254 µm. This study provides novel insights into as-manufactured ablated geometries and surface finishes produced via laser ablation of polymer–metallic composites. The ability to inexpensively and accurately manufacture fine-scale features with tailorable geometric tolerances and surface finishes is important to a variety of applications, such as manufacturing molds for microfluidic devices.

Penulis (5)

A

Alexander Watson

M

Masoud Rais-Rohani

J

John Belding

J

Jasper McGill

B

Brett D. Ellis

Format Sitasi

Watson, A., Rais-Rohani, M., Belding, J., McGill, J., Ellis, B.D. (2025). Characterization of Laser-Ablated Bound Metal Deposition (laBMD). https://doi.org/10.3390/jmmp9040119

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Informasi Jurnal
Tahun Terbit
2025
Sumber Database
DOAJ
DOI
10.3390/jmmp9040119
Akses
Open Access ✓