IP Library Granted Patent US 10,855,063
Granted Patent B2
US 10,855,063 · App. 15/870,249 · Granted Dec 1, 2020

Method in the manufacturing of an insulated electric high voltage DC termination or joint

View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,855,063
App. No.
15/870,249
Granted
Dec 1, 2020
Kind
B2
Abstract

A method in the manufacturing of an insulated electric high voltage DC termination or joint includes providing an insulated electric high voltage DC cable including a high voltage DC conductor, a polymer based insulation system surrounding the high voltage DC conductor, the polymer based insulation system including an insulation layer and a semiconducting layer surrounding the insulation layer, and a grounding layer surrounding the semiconducting layer; removing the grounding layer and the semiconducting layer in at least one end portion of the high voltage DC cable, mounting a field grading adapter or joint body in the at least one end portion of the high voltage DC cable; and subjecting the insulation layer of the polymer based insulation system in the at least one end portion of the high voltage DC cable for a heat treatment procedure, while being covered by the mounted field grading adapter or joint body.

Claims (13)

1. A method in the manufacturing of an insulated electric high voltage DC termination or joint comprising the steps of:

providing an insulated electric high voltage DC cable comprising a high voltage DC conductor, a polymer based insulation system surrounding the high voltage DC conductor, the polymer based insulation system comprising an insulation layer and a semiconducting layer surrounding the insulation layer, and a grounding layer surrounding the semiconducting layer;

removing the grounding layer and the semiconducting layer in at least one end portion of the high voltage DC cable, thereby exposing the insulation layer of the polymer based insulation system in the at least one end portion of the high voltage DC cable;

mounting a field grading adapter or joint body in the at least one end portion of the high voltage DC cable, thereby covering the insulation layer of the polymer based insulation system in the at least one end portion of the high voltage DC cable, the field grading adapter or joint body being part of the high voltage DC termination or joint, wherein at least one substance is present in the insulation layer of the polymer based insulation system in the at least one end portion of the high voltage DC cable in a non-homogenous distribution; and

subjecting the insulation layer of the polymer based insulation system in the at least one end portion of the high voltage DC cable for a heat treatment procedure, while being covered by the mounted field grading adapter or joint body, thereby equalizing a concentration of the at least one substance in the insulation layer of the polymer based insulation system in the at least one end portion of the high voltage DC cable.

2. The method of claim 1 , further comprising the steps of:

temporarily covering the field grading adapter or joint body by a cover impermeable to the at least one substance present in the insulation layer of the polymer based insulation system in the at least one end portion of the high voltage DC cable in a non-homogenous distribution before performing the step of subjecting; and

removing the cover after the step of subjecting.

3. The method of claim 2 , wherein a second insulated electric high voltage DC cable is provided, the second insulated electric high voltage DC cable comprising a second high voltage DC conductor; a polymer based insulation system surrounding the second high voltage DC conductor, the polymer based insulation system comprising an insulation layer and a semiconducting layer surrounding the insulation layer; and a grounding layer surrounding the semiconducting layer; the grounding layer and the semiconducting layer of the second insulated electric high voltage DC cable are removed in at least one end portion of the second insulated electric high voltage DC cable, thereby exposing the insulation layer of the polymer based insulation system of the second insulated electric high voltage DC cable in the at least one end portion of the second insulated electric high voltage DC cable; and a field grading adapter or joint body of the second insulated electric high voltage DC cable is mounted in the at least one end portion of the second insulated electric high voltage DC cable, thereby covering the insulation layer of the polymer based insulation system of the second insulated electric high voltage DC cable in the at least one end portion of the second insulated electric high voltage DC cable, wherein the at least one substance is present in the insulation layer of the polymer based insulation system in the at least one end portion of the second insulated electric high voltage DC cable in a non-homogenous distribution, and wherein the step of subjecting further comprises the step of:

subjecting the insulation layer of the polymer based insulation system of the second insulated electric high voltage DC cable in the at least one end portion of the second insulated electric high voltage DC cable for the heat treatment procedure, while being covered by the mounted joint body of the second insulated electric high voltage DC cable, thereby equalizing the concentration of the at least one substance in the insulation layer of the polymer based insulation system of the second insulated electric high voltage DC cable in the at least one end portion of the second insulated electric high voltage DC cable.

4. The method of claim 1 , wherein a second insulated electric high voltage DC cable is provided, the second insulated electric high voltage DC cable comprising a second high voltage DC conductor; a polymer based insulation system surrounding the second high voltage DC conductor, the polymer based insulation system comprising an insulation layer and a semiconducting layer surrounding the insulation layer; and a grounding layer surrounding the semiconducting layer; the grounding layer and the semiconducting layer of the second insulated electric high voltage DC cable are removed in at least one end portion of the second insulated electric high voltage DC cable, thereby exposing the insulation layer of the polymer based insulation system of the second insulated electric high voltage DC cable in the at least one end portion of the second insulated electric high voltage DC cable; and a field grading adapter or joint body of the second insulated electric high voltage DC cable is mounted in the at least one end portion of the second insulated electric high voltage DC cable, thereby covering the insulation layer of the polymer based insulation system of the second insulated electric high voltage DC cable in the at least one end portion of the second insulated electric high voltage DC cable, wherein the at least one substance is present in the insulation layer of the polymer based insulation system in the at least one end portion of the second insulated electric high voltage DC cable in a non-homogenous distribution, and wherein the step of subjecting further comprises the step of:

subjecting the insulation layer of the polymer based insulation system of the second insulated electric high voltage DC cable in the at least one end portion of the second insulated electric high voltage DC cable for the heat treatment procedure, while being covered by the mounted joint body of the second insulated electric high voltage DC cable, thereby equalizing the concentration of the at least one substance in the insulation layer of the polymer based insulation system of the second insulated electric high voltage DC cable in the at least one end portion of the second insulated electric high voltage DC cable.

5. The method of claim 1 , wherein the field grading adapter or joint body comprises rubber as a field grading material.

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE ADDRESS OF THE ASSIGNEE PREVIOUSLY RECORDED AT REEL: 051363 FRAME: 0215. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Dec 30, 2019
From: ABB HV CABLES (SWITZERLAND) GMBH
To: NKT HV CABLES GMBH
Reel/Frame 051445/0693 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 26, 2019
From: NKT HV CABLES GMBH
To: NKT HV CABLES AB
Reel/Frame 051366/0051 →
CHANGE OF NAME Recorded Dec 24, 2019
From: ABB HV CABLES (SWITZERLAND) GMBH
To: NKT HV CABLES GMBH
Reel/Frame 051363/0215 →