Results 201 to 210 of about 1,262 (224)
Gas velocity measurements from a close-coupled spray deposition atomizer
Abstract Gas-atomized melt spraying is used for the manufacture of metallic particulate and spray-deposited preforms. The flow behaviour of the gas in the spray is a critical component of the spraying process. Knowledge of the gas flow field generated by the atomizer is a prerequisite for characterizing the transport phenomena controlling droplet ...
B.P. Bewlay, B. Cantor
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Numerical Simulation and Validation of Gas and Molten Metal Flows in Close-Coupled Gas Atomization
Molten metal atomization in close-coupled gas atomization dies can operate between two limiting conditions, jetting and filming, together with several complex mechanisms: liquid-gas drafting, downward/upward shearing, melt bouncing, etc. Liquid jet deformation depends on flow and geometric parameters, such as liquid Reynolds, liquid Weber, and gas Mach
F. Hernandez +6 more
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Study of the gas jet in a close-coupled gas-metal atomizer
P. Espina, U. Piomelli
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A STUDY OF LIQUID METAL ATOMIZATION USING CLOSE-COUPLED NOZZLES, PART 1: GAS DYNAMIC BEHAVIOR
Atomization and Sprays, 2005S. P. Mates, Gary S. Settles
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Chinese Physics B, 2021
The paper aims at modeling and simulating the atomization process of the close-coupled ring-hole nozzle in vacuum induction gas atomization (VIGA) for metallic powder production. First of all, the primary atomization of the ring-hole nozzle is simulated by the volume of fluid (VOF) coupled large eddy simulation (LES) model.
Peng Wang +9 more
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The paper aims at modeling and simulating the atomization process of the close-coupled ring-hole nozzle in vacuum induction gas atomization (VIGA) for metallic powder production. First of all, the primary atomization of the ring-hole nozzle is simulated by the volume of fluid (VOF) coupled large eddy simulation (LES) model.
Peng Wang +9 more
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Effect of closed-couple gas atomization pressure on the performances of Al-20Sn-1Cu powders
Rare Metals, 2008Al-20Sn-1Cu powders were prepared by gas atomization in an argon atmosphere with atomizing pressures of 1.1 and 1.6 MPa. The charac-teristics of the powders are determined by means of dry sieving, scanning electron microscopy (SEM), optical microscopy (OM), and X-ray diffractometry (XRD).
X ZHAO, J XU, X ZHU, S ZHANG
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Close coupling-wave packet formalism for gas phase nonreactive atom–diatom collisions
The Journal of Chemical Physics, 1987In this paper we discuss the adaptation of the close coupling-wave packet (CCWP) method for solving the time dependent Schrödinger equation for inelastic, nonreactive gas phase atom–diatom collisions. The approach is novel in that (a) it is an initial value rather than boundary value method, (b) it can be formulated to either avoid or include the ...
D. J. Kouri, R. C. Mowrey
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Spherical wave close coupling wave packet formalism for gas phase nonreactive atom–diatom collisions
The Journal of Chemical Physics, 1987In this paper we discuss the use of the total angular momentum representation in the close coupling-wave packet (CCWP-J) method for solving the time dependent Schrödinger equation for inelastic, nonreactive gas phase atom–diatom collisions. This enables the wave packet propagation for the relative motion to be reduced from three dimensions to one.
Y. Sun, R. C. Mowrey, D. J. Kouri
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Body frame close coupling wave packet approach to gas phase atom–rigid rotor inelastic collisions
The Journal of Chemical Physics, 1989The close coupling wave packet (CCWP) method is formulated in a body-fixed representation for atom–rigid rotor inelastic scattering. For total J>jmax the computational cost of propagating the coupled channel wave packets in the body frame scales approximately as N3/2 where N is the total number of channels.
Y. Sun, R. S. Judson, D. J. Kouri
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