INVESTIGADORES
GOMEZ Leopoldo Raimundo
artículos
Título:
Velocity Distributions in a Gas-Gun Microparticle Accelerator
Autor/es:
SIRIA BARRIOS; PEDRO LANCE; ABATE, ANABELLA A.; GERMAN PRIETO; NICOLAS A. GARCÍA; MARTIN PIQUERAS; DANIEL A. VEGA; ANGEL SATTI; LEOPOLDO R. GÓMEZ
Revista:
REVIEW OF SCIENTIFIC INSTRUMENTS
Editorial:
AMER INST PHYSICS
Referencias:
Lugar: New York; Año: 2022
ISSN:
0034-6748
Resumen:
Here we build and characterize a single-stage gas-gun microparticle accelerator, where a pressurized gas expands and launches particles on a target. The microparticles in the range of 60 - 250 μm are accelerated by the expansion of pressurized nitrogen. By using a high-speed camera, we study how the velocity distribution of accelerated particles is modified by particle size, pressure in the gas reservoir, valve’s opening time, and diaphragm’s thickness and composition. We employ this microparticle accelerator to study the impact of glass particles with diameters of (69 ± 6) μm accelerated at moderate velocities ∼ (10 - 25) m/s, using films of poly-dimethylsiloxane (PDMS) as targets.