DocumentCode :
2075898
Title :
Stability of the electrical resistance and mechanism of conductivity of the composite semiconducting materials
Author :
Malamud, R.Y.
Author_Institution :
Oak Park, Michigan, MI, USA
Volume :
1
fYear :
1997
fDate :
19-22, Oct 1997
Abstract :
Summary form only given. Semiconducting composite materials with electrical insulation matrix and semiconducting fillers have been investigated with the aim of producing them with stable resistance for equalizing electrical field intensity in high-voltage turbogenerator winding insulation. For semiconducting fillers, different kinds of silicon carbide powders (SiC), soot carbon, and copper-bearing glass fiber tape have been used. For insulation binder ternary epoxy compounds and oil-glyptal enamel have been used. The mechanism for the operation of semiconducting compositions has been analyzed on the basis of obtained dependencies of the magnitude of the electrical resistance and its non-linear coefficient from electrical field intensity for compositions with different concentrations of semiconducting fillers, and by its correlation with a mathematical model of conductivity for semiconducting grain conglomerate. On the basis of the understanding of the two mechanisms: (i) the semiconducting structure formation and (ii) the operation such compositions, semiconducting materials with stable characteristics have been developed. The stability of the materials developed has been confirmed by testing and using them for a long time in high-voltage winding of the turbogenerators and hydrogenerators, produced by the Large Electrical Machines Plant “Electrotyazhmash” (Kharkov, Ukraine/), where this work was done
Keywords :
composite insulating materials; electrical conductivity; machine insulation; machine windings; semiconductor materials; turbogenerators; composite semiconducting material; conductivity; copper-bearing glass fiber tape; electrical field intensity; electrical insulation binder matrix; electrical resistance; high-voltage turbogenerator winding insulation; hydrogenerator; oil-glyptal enamel; semiconducting filler; silicon carbide powder; soot carbon; stability; ternary epoxy compound; Composite materials; Conducting materials; Dielectrics and electrical insulation; Electric resistance; Powders; Semiconductivity; Semiconductor materials; Silicon carbide; Stability; Turbogenerators;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electrical Insulation and Dielectric Phenomena, 1997. IEEE 1997 Annual Report., Conference on
Conference_Location :
Minneapolis, MN
Print_ISBN :
0-7803-3851-0
Type :
conf
DOI :
10.1109/CEIDP.1997.634594
Filename :
634594
Link To Document :
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