3D Printing of Metals
- (a)
- Shorter lead time
- (b)
- Low cost
- (c)
- Small volume of parts without the need of tooling or fixture
- (d)
- Capability to fabricate near net shapes
- (e)
- Design freedom that allows the fabrication of simple and complex shapes
- (f)
- Potential to handle conventional and specialized materials.
- Aluminum-based materials
- Magnesium-based materials
- Steels
- Titanium-based materials
- Oxide dispersion-strengthened aluminum-based composites
- Micro-coating metal additive manufacturing (MCMAM)—new technique
- Electron beam melting
- Selective laser melting
- Laser metal deposition
- Sheet metal forming
- Effect of heat treatment
- Failure under compression
- Porosity distribution, microstructure and hardness
- Forming defects as a function of processing parameters
- Wear properties
- Interrelation between structure size, mechanical characteristics and process defect
- Interrelation between aging behavior and mechanical performance.
- Aerospace sector
- Biomedical sector
- Defense
- Automobile
Conflicts of Interest
References
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Gupta, M. 3D Printing of Metals. Metals 2017, 7, 403. https://doi.org/10.3390/met7100403
Gupta M. 3D Printing of Metals. Metals. 2017; 7(10):403. https://doi.org/10.3390/met7100403
Chicago/Turabian StyleGupta, Manoj. 2017. "3D Printing of Metals" Metals 7, no. 10: 403. https://doi.org/10.3390/met7100403
APA StyleGupta, M. (2017). 3D Printing of Metals. Metals, 7(10), 403. https://doi.org/10.3390/met7100403