Claims
- 1. A tubular polymeric shed comprising a central tubular portion and at least two radial wall fin extensions extending therefrom, the shed being made of a molded polymeric composition which has at its molding temperature a Shore A hardness of about 1 to about 80 and has an elongation of about 50 to 1,200% and having mold flash lines located peripherally on the edges of the radial wall fin extensions, wherein the ratio ID/L of the internal diameter ID to the length L of the fin extensions is from about 0.250 to about 10 and the wall thickness t of the central tubular portion is from about 0.254 to about 12.7 mm.
- 2. A shed according to claim 1, further having a closed end circumferential outer tubular member joined to the central tubular portion of the shed at the closed end, such that the shed has a leakage distance to clearance ratio of greater than 5 to 1.
- 3. A shed according to claim 2, wherein the closed end circumferential outer tubular member is bell-shaped and has sufficient diameter such that the shed design further includes at least multiple concentric tubular bell shaped members interior to the outer bell shape joined at the closed end and wherein the surface leakage to clearance ratio is greater than 5 to 1 for each of the tubular concentric bell shaped members.
- 4. A shed according to claim 2, outer tubular member has a third tubular shed portion located on the interior thereof, the third tubular shed portion having two or more radial wall fin extension rings, thereby increasing the surface creepage length to reduce the effective electrical stress and the ingress of airborne contaminates.
- 5. A shed according to any of claims 3 through 5, further including at least one wet flashover ring extension having an extension ratio between about 0.1 and about 2.0, located on the outer edge of the bell shape.
CROSS-REFERENCE TO RELATED APPLICATIONS
This application is a continuation of application Ser. No. 08/298,107, filed Aug. 30, 1994, now abandoned, which is a continuation-in-part of application Ser. No. 08/117,261, filed Sep. 3, 1993, now abandoned, the disclosures of which are incorporated herein by reference.
US Referenced Citations (11)
Foreign Referenced Citations (7)
Number |
Date |
Country |
0 314 160 A2 |
May 1989 |
EPX |
0314160A2 |
May 1989 |
EPX |
0 218 461 B1 |
Dec 1989 |
EPX |
2 672 423 |
Aug 1992 |
FRX |
2 231 492 |
Dec 1994 |
FRX |
1048434 |
Mar 1965 |
GBX |
2 065 661 A |
Jul 1981 |
GBX |
Non-Patent Literature Citations (10)
Entry |
Product Bulletin Raychem Corporation "Contamination-resistant design combines the advantages of polymers and ceramics" Sep. 24, 1993. |
Product Bulletin Raychem Corporation "Hybrid Insulators-Combining the Advantages of Polymer and Porcelain" Dec. 1984. |
International Electrochemical Commission IEC Report Publicatn 815, 1986 first edition "Guide for the selection of Insulators in espect of polluted conditions". |
Technical Guide NGK Insulators "Standard Sheds for Porcelain Shells" 1978. |
"Performance of Polymerc Insulating Materials in Salt-Fog" R.S. Gorur et al. Ontario Hydro and University of Windsor 1986 IEEE. |
Technical Information Silastic.RTM. 29760-V Gray High Voltage Insulator Compound Dow Corning STI 1992. |
Raysulate Creepage Extenders A remidy for pollutionflashovers of insulators Raychem EPP0355 Sep. 1990. |
"Insulators for High Voltages" J.S. T. Looms, 1988 Peter Peregrinus Ltd. on behalf of the Institute of Electrical Engineers. |
Chung Rung Insulators Co. Ltd., Taiwan Power Co Sep. 1971, NGK Insulators Ltd. Drg No. D-139175 (May 1989). |
NGK Insulators Ltd. Drg No.D-139175 (May 1989). |
Continuations (1)
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Number |
Date |
Country |
Parent |
298107 |
Aug 1994 |
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Continuation in Parts (1)
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Number |
Date |
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Parent |
117261 |
Sep 1993 |
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