Terminal connection device for a power cable
US-9960530-B2 · May 1, 2018 · US
US10955442B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10955442-B2 |
| Application number | US-201616087768-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 23, 2016 |
| Priority date | Mar 23, 2016 |
| Publication date | Mar 23, 2021 |
| Grant date | Mar 23, 2021 |
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Elastic sleeve ( 1 ) for electrically insulating a HV/MV power conductor in a power network, comprising a) a shrinkable or expandable elastic sleeve body ( 10 ); b) a receiving space ( 20 ) in the sleeve body, for receiving the power conductor; c) a cavity ( 30 ) formed in the sleeve body; and d) a divider assembly ( 40 ), arranged, at least partially, in the cavity and comprising a plurality of discrete impedance elements, operable as a voltage divider for sensing a voltage of an inner conductor of the power conductor.
Opening claim text (preview).
The invention claimed is: 1. Elastic sleeve for electrically insulating a HV/MV power conductor in a power network, the elastic sleeve comprising: a) an elastic sleeve body for insulating the power conductor, the sleeve body comprising one or more layers each comprising an elastic material, the sleeve body being radially shrinkable around the power conductor or radially expandable when pushed over the power conductor; b) a receiving space, formed in the sleeve body, for receiving a section of the power conductor such that the sleeve body surrounds the power conductor; c) a cavity, formed in the sleeve body, having at least one opening and delimited by a cavity wall formed within the elastic material of a sleeve body layer; and d) a divider assembly, arranged, at least partially, in the cavity and comprising a plurality of discrete impedance elements, of which at least two of said impedance elements are electrically connected in series such as to be operable as a voltage divider for sensing a voltage of an inner conductor of the power conductor. 2. Elastic sleeve according to claim 1 , wherein the plurality of discrete impedance elements comprises one or more resistors, and/or one or more capacitors and/or one or more inductances. 3. Elastic sleeve according to claim 1 , wherein the plurality of discrete impedance elements comprises a plurality of capacitors, and wherein a respective resistor is electrically connected in parallel to at least one of the plurality of capacitors. 4. Elastic sleeve according claim 1 , wherein the plurality of discrete impedance elements is arranged in a straight chain or in a Z-shaped chain. 5. Elastic sleeve according claim 1 , further comprising a shielding layer, arranged around the plurality of discrete impedance elements. 6. Elastic sleeve according to claim 1 , wherein the plurality of discrete impedance elements is arranged on a flexible printed circuit board. 7. Elastic sleeve according to claim 1 , wherein the divider assembly comprises an encapsulation body, in which the plurality of discrete impedance elements is encapsulated. 8. Elastic sleeve according to claim 1 , wherein the divider assembly is removable from the cavity. 9. Elastic sleeve according to claim 1 , further comprising e) a high-voltage contact for electrical connection of a first discrete impedance element of the plurality of discrete impedance elements to an inner conductor of the power conductor, and/or f) a low-voltage contact for electrical connection of a second discrete impedance element of the plurality of discrete impedance elements to electrical ground, accessible from outside the elastic sleeve. 10. Elastic sleeve according to claim 1 , wherein the cavity has an elongated shape and extends longitudinally in a first direction, and wherein the receiving space has an elongated shape and extends longitudinally in a second direction, and wherein the first direction is parallel to the second direction within an angle of +/−10°. 11. Elastic sleeve according to claim 1 , further comprising an electrically insulating voidfilling material, arranged in the cavity, wherein the voidfilling material is arranged between at least a portion of the divider assembly and at least a portion of the cavity wall such as to fill a space between the divider assembly and the cavity wall. 12. Elastic sleeve according to claim 1 , wherein the voidfilling material consists of a mastic or a gel, in particular a silicone gel. 13. Power network comprising a HV/MV power conductor insulated by an elastic sleeve according to claim 1 . 14. Kit of parts for being assembled to form an elastic sleeve according to claim 1 , comprising a) an elastic sleeve body according to claim 1 ; and b) a divider assembly according to claim 1 , wherein the divider assembly is arrangeable in the cavity. 15. Kit of parts according to claim 14 , wherein the plurality of discrete impedance elements comprises a plurality of capacitors, and wherein a respective resistor is electrically connected in parallel to at least one of the plurality of capacitors. 16. Kit of parts according to claim 14 , further comprising c) an electrically insulating voidfilling material, adapted for being arranged in the cavity such that the voidfilling material is arranged between at least a portion of the divider assembly and at least a portion of the cavity wall such as to fill a space between the divider assembly and the cavity wall. 17. Elbow plug or cable splicing device or termination or separable connector for use with a MV/HV cable, comprising an elastic sleeve according to claim 1 . 18. Method of applying an elastic sleeve on a MV/HV power conductor, the method comprising the following steps, in any sequence: a) providing a kit of parts according to claim 14 and providing a MV/HV power conductor; b) arranging a section of the power conductor in the receiving space of the sleeve body; c) arranging the divider assembly in the cavity of the sleeve body. 19. Elastic sleeve according to claim 1 , wherein at least two of the discrete impedance elements are fully disposed within the cavity. 20. Elastic sleeve according to claim 1 , wherein the cavity extends longitudinally through the sleeve body.
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