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High Voltage Insulation Applications

IEEE Transactions on Electrical Insulation, 1978
This paper is intended to present an outline and a discussion of thevarious aspects and areas of application of electrical insulation forhigh voltage. The specific objectives of the applications will beparticularly pointed out, and the present state of the art indicated.Also, the relation of basic dielectric research, and research and developmentent ...
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Pulsed high-voltage insulation experiments

2014 IEEE 41st International Conference on Plasma Sciences (ICOPS) held with 2014 IEEE International Conference on High-Power Particle Beams (BEAMS), 2014
It has been conjectured that vacuum dielectric surface flashover can be avoided by preventing its initiation1. Assuming that the flashover process is initiated by impact of charged particles on the insulator surface, by deflecting these particles away from the surface, the development of a flashover avalanche can be repressed.
J. Z. Gleizer   +3 more
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Insulation for High Voltage Equipment

2021
The insulation of high voltage apparatus is distinguished between internal and external insulation. The internal insulation is made fluid, gaseous or solid material. Beside the well-known insulation with oil-paper, SF6, or cast resin there are also new trends discussed. As external insulation porcelain as well as composite insultors are described.
Ruthard Minkner, Joachim Schmid
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High voltage generator insulation

1963 EI Electrical Insulation Conference Materials and Application, 1963
The insulation of high voltage stator windings for electric utility generators must have a very high order of reliability. Machines of this category have always been of extreme importance because of their size with the accompanying high capital investment and the dependence of so many things in our society upon their continuous and uninterrupted ...
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Insulation characteristics of high-voltage cables

Proceedings of the American Institute of Electrical Engineers, 1917
The insulation characteristics of different types of single- and three-conductor cable, determined largely by dielectric energy loss measurements, are discussed in detail. Particular attention is given to paper insulated cable, both new cable and cable that has been in service being considered.
W. S. Clark, G. B. Shanklin
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Insulators, High-Voltage

1991
Publisher Summary This chapter discusses the standards, basic design considerations, glaze composition, manufacturing materials and operations, and future requirements of high-voltage insulators. A high-voltage insulator is a nonconducting mechanical support for an electrical conductor.
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Fundamentals of high voltage insulation

Conference Record of 1993 Annual Pulp and Paper Industry Technical Conference, 2002
A practical view of high-voltage insulation encountered mainly in rotating electrical machines is presented, with only the essential mathematics in elementary form. Insulation fundamentals are discussed, and specific insulation materials and applications are described. >
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Polymer insulated high voltage cables

IEEE Electrical Insulation Magazine, 2006
This article reviews the different components, conductors, semiconductive shields, insulation, sheaths, and jackets, that make up extruded, high-voltage cables. The different types of conductors are described as are the different insulation systems that are available for medium and HV cables.
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High-voltage power-transformer insulation

Proceedings of the Institution of Electrical Engineers, 1963
The increase in transmission system voltages in recent years to 500 kV, with even higher prospective values, makes the internal insulation a large proportion of the transformer cost and therefore economically more important. The associated increase in MVA rating, and hence in size and weight, has reached beyond transport limits and demands better ...
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Outdoor high voltage insulation [Editorial

IEEE Transactions on Dielectrics and Electrical Insulation, 2010
The 37 papers in this special issue focus on outdoor high voltage insulation. The content is broad, covering aspects of insulator performance and testing, selection and evaluation of materials, including evaluation of nanocomposites, development of new testing and diagnostic methods.
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