Vehicle heater
US-9511648-B2 · Dec 6, 2016 · US
US10524310B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10524310-B2 |
| Application number | US-201615169847-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 1, 2016 |
| Priority date | Jun 2, 2015 |
| Publication date | Dec 31, 2019 |
| Grant date | Dec 31, 2019 |
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A PTC heating element is provided that includes including a PTC heating element strip conductors via which the PTC element is powered and at least one of which is insulated on an outer surface with an electrical insulation layer. In order to provide improved insulation while maintaining adequate heat transfer from the PTC element to the heat-emitting surface through the electrical insulation layer, the electrical insulation layer comprises a film and an electrically insulating mass of good thermal conductivity applied to the film. Also provided is an electric heating device for an automotive vehicle that is provided with at least one PTC heating element of such a type.
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What is claimed is: 1. A PTC heating element comprising: at least one PTC element, electrical strip conductors each having an inner surface in electrical contact with the PTC element, and an electrical insulation layer placed on an outer surface of at least one of the electrical strip conductors, wherein the electrical insulation layer comprises a film and an electrically insulating mass of good thermal conductivity applied to the film, wherein the electrically insulating mass is a paste-like mass applied to the film as a coating, which electrically insulating mass has a layer thickness of between 100 and 300 μm, wherein the electrically insulating mass is cross-linked, and wherein the electrically insulating mass contacts the outer surface of the at least one of the electrical strip conductors. 2. A PTC heating element according to claim 1 , wherein the electrically insulating mass is filled with particles of good thermal conductivity of between 1-5 W/mK. 3. A PTC heating element according to claim 2 , wherein the proportion of the particles of good thermal conductivity in the electrically insulating mass is between 85 vol. % and 95 vol. %. 4. A PTC heating element according to claim 3 , wherein the particles of good thermal conductivity are made from aluminum oxide. 5. A PTC heating element according to claim 1 , wherein the electrically insulating mass is formed by a silicone mass. 6. A PTC heating element according to claim 1 , wherein the insulation layer consists of the film ( 14 ) and the electrically insulating mass. 7. A PTC heating element according to claim 1 , wherein the electrically insulating mass is self-adhesive and adheres to the film. 8. A PTC heating element according to claim 1 , wherein the film is a polyimide film. 9. A PTC heating element according to claim 1 , wherein the electrical insulation layer has a thickness of not more than 250 μm. 10. A PTC heating element according to claim 1 , wherein the electrical insulation layer has a dielectric strength of at least 3 kV DC at a thickness of 250 μm. 11. A PTC heating element according, to claim 1 , wherein the electrical insulation layer has a specific dielectric strength of >20 kV/mm in a temperature range of −40° C. to +260° C. 12. A PTC heating element according to claim 1 , wherein the electrical insulation layer is temperature-stable up to 260° C. 13. A PTC heating element according to claim 1 , wherein a liquid phase of the electrically insulating mass is formed from a cold-curing 2-component mass. 14. A PTC heating element comprising: at least one PTC element, electrical strip conductors each having an inner surface in electrical contact with the PTC element, and an electrical insulation layer provided on an outer surface of at least one of the electrical strip conductors, wherein the electrical insulation layer comprises a film and an electrically insulating mass of good thermal conductivity applied to the film, wherein the mass is filled with particles of good thermal conductivity of between 1-5 W/mK, wherein the proportion of the particles of good thermal conductivity is between 85 vol. % and 95 vol. %, and wherein the electrically insulating mass has a layer thickness of between 100 and 300 μm. 15. A PTC heating element according to claim 14 , wherein the insulation layer consists of the film and the electrically insulating mass. 16. A PTC heating element comprising: at least one PTC element, electrical strip conductors each having an inner surface in electrical contact with the PTC element, and an electrical insulation layer placed on an outer surface of at least one of the electrical strip conductors, wherein the electrical insulation layer comprises a film and an electrically insulating mass of good thermal conductivity applied to the film, wherein the electrical insulation layer has a dielectric strength of at least 3 kV DC at a thickness of 250 μm, wherein the electrical insulation layer has a specific dielectric strength of >20 kV/mm in a temperature range of −40° C. to +260° C., wherein the electrical insulation layer is temperature-stable up to 260° C., wherein the electrically insulating mass is formed by a cross-linked plastic applied to the film as a coating in a paste-like form, which electrically insulating mass has a layer thickness of between 100 and 300 μm, and wherein the coating of the electrically insulating mass is set after being applied to the film and contacted against the outer surface of the at least one of the electrical strip conductors. 17. An electric heating device for an automotive vehicle, comprising: heat-emitting surfaces, and a PTC heating element comprising, at least one PTC element, electrical strip conductors each having an inner surface in electrical contact with the PTC element, and an electrical insulation layer provided on an outer surface of at least one of the electrical strip conductors, wherein the electrical insulation layer comprises a film and an electrically insulating mass of good thermal conductivity applied to the film, and wherein the PTC heating element lies in a heat-conducting manner against the heat-emitting surfaces with interposition of the least one electrical insulation layer therebetween.
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