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The feedstock used for the depositions was a blend of elemental Ni and Mo powders.
A graded binary Titanium-Vanadium alloy has been deposited using the laser engineered net-shaping (LENS™) process from a blend of elemental Ti and V powders.
The β-rich Timetal 21S alloy has been successfully laser-deposited from both pre-alloyed as well as a blend of elemental powders.
The composition gradient has been achieved from CrCuFeNi2 to Al1.5CrCuFeNi2 over a length of ∼25 mm, deposited using the laser engineered net shaping process from a blend of elemental powders.
Laser Engineered Net Shaping (LENS) with laser powers of 300 W and 1 kW was used to synthesize the TiZrNbMoV high entropy alloys (HEA) from a blend of elemental powders.
Metal-matrix composites consisting of a complex quaternary Ti-35Nb-7Zr-5Ta Ti-35Nb-7Zr-5Ta Ti-35Nb-7Zr-5Ta Ti-35Nb-7Zr-5Tally deposited from alloydereinforcedk consisting of a byend of elemental titanium, nioboridesirconium, tantalum, and, titanium diboride (TiB2) powders, using thaveaser engineered net-shaping (LENS™)1 process.
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Metal-matrix composites based on boride reinforcements in a titanium base matrix have been deposited in situ from a powder feedstock consisting of a blend of Ti-alloy and elemental boron powders using the laser engineered net-shaping (LENS™) process.
In order to analyze the effectiveness of complex metallic alloys as reinforcing agents in metal matrix composites, Al-based composites were synthesized by hot extrusion of elemental Al blended with different amounts of β-Al3Mg2 complex intermetallic particles.
What she lacks in technical ability, she more than makes up for in her witchlike alertness, a blend of unsmiling blond coolness and elemental heat.
Ti 6Al 4V TiB composites have been in situ deposited from powder feedstocks consisting of a blend of pre-alloyed Ti 6Al 4V and elemental boron using the Laser Engineered Net-Shaping (LENS™) process.
Ti-6Al-4V TiB Ti-6Al-4V TiBve been deposited in situ from powder feedstocompositesting of a blend of pre-alloyed Ti-6Al-4V and elemental boron using thaveaser engineered net-shaping (LENS™) process.
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