Solutions for discharge chamber sputtering and anode deposit spalling in small mercury ion thrusters
1975 · 17 citations · 1 references
EngineeringGlow DischargeMechanical EngineeringBlastingSputter ErosionAccelerated Life TestVacuum DevicePlasma ProcessingIon ImplantationCorrosionIon BeamIon EmissionMaterials ScienceMaterials EngineeringElectrical EngineeringDischarge Chamber SputteringPropulsionMicroelectronicsIon PropulsionMicrostructureMaterial SpallingMicrofabricationGas Discharge PlasmaIon ThrustersAnode Deposit
Proposed solutions to the problems of sputter erosion and sputtered material spalling in the discharge chamber of small mercury ion thrusters are presented. The accelerated life test evaluated three such proposed solutions: (1) the use of tantalum as a single low sputter yield material for the exposed surfaces of the discharge chamber components subject to sputtering, (2) the use of a severely roughened anode surface to improve the adhesion of the sputter-deposited coating, and (3) the use of a wire cloth anode surface in order to limit the size of any coating flakes which might spall from it. Because of the promising results obtained in the accelerated life test with anode surfaces roughened by grit-blasting, experiments were carried out to optimize the grit-blasting procedure. The experimental results and an optimal grit-blasting procedure are presented.
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L. N. Large · Electronics and Power · 1968
574 citations