Proceedings Isdeiv Xviith International Symposium On Discharges And Electrical Insulation In Vacuum
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Author | : Ryan Jonathan Umstattd |
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Total Pages | : 208 |
Release | : 1998 |
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Vacuum arc deposition is employed to create a barium and/or strontium plasma which is subsequently deposited/implanted onto a nickel cathode substrate. The primary motivation for this work is the critical need for a reliable, repeatable, long-lived thermionic cathode for the production of high power, microsecond duration microwave pulses; such cathodes may also have applicability for lower current density continuous wave devices. This novel approach to manufacturing an oxide cathode eliminates the binders that may subsequently (and unpredictably) poison cathode emission. Removal of the poisoning mechanisms has yielded oxide cathodes capable of emission densities in the 20 A/sq cm regime. Cathode lifetime and emission may be varied via the control over the deposition parameters such as coating thickness, implantation energy, and plasma stoichiometry. The deposition is performed by generating a cathodic arc discharge at the surface of a barium or barium-strontium alloy rod. The metal plasma thus created is then deposited on the substrate which can be negatively biased to encourage implantation during the deposition process. The deposition is performed with sufficient background oxygen present to oxidize the highly reactive metal coating. The plasma deposition is monitored via a rate thickness monitor, an optical emission spectrometer for plasma composition information, and an electrostatic Langmuir probe for the determination of the plasma density and temperature profile. Cathodes thus produced are analyzed by drawing pulsed current at a constant voltage for various values of decreasing cathode temperature in order to generate practical work function distributions which provide an indication of the quality and expected life time of the cathode.
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Total Pages | : 670 |
Release | : 1994 |
Genre | : Technology & Engineering |
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Total Pages | : 1860 |
Release | : 1997 |
Genre | : Electrical engineering |
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Total Pages | : 714 |
Release | : 2002 |
Genre | : Electric discharges through gases |
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Total Pages | : 456 |
Release | : 1998 |
Genre | : Breakdown (Electricity) |
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Author | : Bella H. Chudnovsky |
Publisher | : CRC Press |
Total Pages | : 678 |
Release | : 2017-03-07 |
Genre | : Science |
ISBN | : 1498754775 |
The revised edition presents, extends, and updates a thorough analysis of the factors that cause and accelerate the aging of conductive and insulating materials of which transmission and distribution electrical apparatus is made. New sections in the second edition summarize the issues of the aging, reliability, and safety of electrical apparatus, as well as supporting equipment in the field of generating renewable energy (solar, wind, tide, and wave power). When exposed to atmospheric corrosive gases and fluids, contaminants, high and low temperatures, vibrations, and other internal and external impacts, these systems deteriorate; eventually the ability of the apparatus to function properly is destroyed. In the modern world of "green energy", the equipment providing clean, electrical energy needs to be properly maintained in order to prevent premature failure. The book’s purpose is to help find the proper ways to slow down the aging of electrical apparatus, improve its performance, and extend the life of power generation, transmission, and distribution equipment.
Author | : British Library. Document Supply Centre |
Publisher | : |
Total Pages | : 870 |
Release | : 2001 |
Genre | : Conference proceedings |
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Total Pages | : 1480 |
Release | : 1996 |
Genre | : Periodicals |
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A union list of serials commencing publication after Dec. 31, 1949.
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Total Pages | : 408 |
Release | : 1999 |
Genre | : Engineering |
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Total Pages | : 508 |
Release | : 2002 |
Genre | : Dielectric devices |
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