INSTRUMENT TRANSFORMER AND METHOD TO ISOLATE PARTS
An instrument transformer for high current and/or high voltage conversion has a housing and at least an active part, which is electrically insulated by an isolation material. The isolation material includes particles. A method for the instrument transformer includes the filling of a housing of the instrument transformer with particles, particularly with particles of paper material and/or cellulose, which were impregnated by an insulating fluid, particularly mineral oil and/or a synthetic oil, and/or ester, particularly vegetable esters.
1 - 15 (canceled).
16 . An instrument transformer for high current and/or high voltage conversion, the instrument transformer comprising:
a housing and at least an active part; and
isolation material electrically insulating said active part, said isolation material comprising particles.
17 . The instrument transformer according to claim 16 , wherein said particles are in powder form.
18 . The instrument transformer according to claim 16 , wherein said particles are impregnated by an insulating fluid and/or embedded in fluid.
19 . The instrument transformer according to claim 18 , wherein said insulating fluid is at least one of a liquid or a gas.
20 . The instrument transformer according to claim 18 , wherein said insulating fluid is or comprises oil and/or ester.
21 . The instrument transformer according to claim 18 , wherein said oil is selected from the group consisting of mineral oil and synthetic oil, and said ester are vegetable esters.
22 . The instrument transformer according to claim 16 , wherein said particles are composed of or comprise a material selected from the group consisting of paper material, cellulose, and silicon.
23 . The instrument transformer according to claim 16 , wherein a particle size of said particles lies in a micrometer and/or nanometer range.
24 . The instrument transformer according to claim 16 , wherein said isolation material comprises particles with a size in a micrometer and/or nanometer range.
25 . The instrument transformer according to claim 16 , wherein said particles are formed of a given material, and wherein a surface-to-volume ratio of said particles is at least two times greater than for the given material in form of sheets.
26 . The instrument transformer according to claim 25 , wherein the surface-to-volume ratio of said particles is at least ten times greater than for the given material in form of sheets.
27 . The instrument transformer according to claim 16 , wherein said particles are in spherical form and/or said particles are in fibrous form.
28 . The instrument transformer according to claim 16 , wherein a fill factor of said particles in said isolation material is maximized.
29 . The instrument transformer according to claim 16 , wherein said isolation material with said particles is arranged in said housing between said housing and at least one active part of the instrument transformer.
30 . The instrument transformer according to claim 29 , wherein said isolation material with said particles is arranged in at least one of in a head housing, an isolator, a base, and/or between the housing and a measuring assembly.
31 . The instrument transformer according to claim 29 , wherein said isolation material with said particles is disposed to fill a space between a head housing and/or an isolator and/or a base, and active parts including a measuring assembly.
32 . A method for producing an instrument transformer, the method comprising:
providing particles of paper material and/or cellulose;
impregnating the particles by an insulating fluid selected from the group consisting of a mineral oil and a synthetic oil, and/or ester;
filling the particles into a housing of the instrument transformer.
33 . The method according to claim 32 , which comprises impregnating the particles in the housing of the instrument transformer after filling in the particles into the housing.
34 . The method according to claim 32 , which comprises impregnating the particles to create a pulp, optionally after degassing, and subsequently filling the pulp into the housing of the instrument transformer.
35 . The method according to claim 32 , wherein the impregnated particles in the housing of the instrument transformer are disposed to electrically insulate active parts of the instrument transformer from the housing of the instrument transformer.