Patent · US4092626A · A · US
Continuous web consisting of resistance foil material between two insulating foil layers and method for the production of such webs
- (11) Publication number
- US4092626A
- (21) Application number
- 05/747,641
- (22) Filing date
- 1976-12-06
- (30) Priority date
- 1972-10-13
- (43) Publication date
- 1978-05-30
- (45) Date of grant
- 1978-05-30
- (51) IPC
- H01C 3/06; H05B 3/06; H05B 3/36; H05B 3/58
- (52) CPC
- H05B Electric heating; electric light sources not otherwise provided for; circuit arrangements for electric light sources, in general: 3/56, 2203/005, 2203/011, 2203/016, 2203/017, 3/06, 3/36, 3/565
- B29C Shaping or joining of plastics; shaping of material in a plastic state, not otherwise provided for; after-treatment of the shaped products, e.g. repairing: 70/687
- H01C Resistors: 3/06
- Y10T Technical subjects covered by former us classification: 29/49083, 29/49098
- (73) Assignee
- PATENTKONSORTIET ROBERT MEINICH AND Co
- (72) Inventors
- Hans Amund Bergersen
- (54) Title
- Continuous web consisting of resistance foil material between two insulating foil layers and method for the production of such webs
- (57) Abstract
A continuous composite web from which electrical low temperature heating mats can be produced by transverse cutting at certain positions and possibly by effecting an edge insulation and attaching electrical connections. A method for the production of such webs is also disclosed. The web consists of resistance foil material between two insulating foil layers which are joined in the areas of direct contact to secure the resistance foil. The resistance foil material is in the form of parallel, continuous, longitudinal strips and transverse strips extending transversely to said longitudinal strips at desired intervals and connected thereto to form electrical connections between adjacent foil strips. The transverse strips extend substantially across the total width of the web and can be in the form of an insulation strip having flat foil conductive pieces on the insulation strip.
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Claims (7)
- In a flexible composite web of longitudinally extending and transversely spaced resistance foil strips positioned between insulating layers and in which said resistance foil strips are connected into a meander resistance path by a row of short conductive pieces, the improvement wherein said row of short conductive pieces comprises a non-conductive carrier strip, at least one row of spaced conductive flat foil tabs carried by said carrier strip and facing the resistance foil strips and making electrical contact therewith, said conductive flat foil tabs each connecting the strips of adjacent resistance foil strips.
- A web according to claim 1, wherein said carrier strip carries two rows of conductive flat foil tabs, the flat foil tabs in one row being arranged directly opposite the flat foil tabs in the other row.
- A web according to claim 1, wherein said carrier strip carries two rows of conductive flat foil tabs, the flat foil tabs in one row being transversely offset from the flat foil tabs in the other row by a distance corresponding to the distance between the centers of adjacent resistance foil strips.
- A web according to claim 1, wherein said carrier strip also carries conductive end elements extending sideways beyond the web, said end elements being connected to the outer resistance foil strips for serving as terminal connections.
- In a method for the production of a flexible composite web of longitudinally extending and transversely spaced resistance foil strips positioned between insulating layers, the improvement comprising providing a non-conductive carrier strip carrying at least one row of spaced conductive flat foil tabs, placing said carrier strip upon the resistance foil strips transversely thereacross in a position in which the conductive flat foil tabs face the resistance foil strips and make electrical contact therewith, said conductive flat foil tabs each connecting the strips of a pair of adjacent resistance foil strips, and electrically joining said conductive flat foil tabs to said resistance foil strips.
- A method as claimed in claim 5, wherein the transverse strips are produced by applying precut conductive flat foil tabs to a non-conductive carrier strip at desired intervals, the conductive flat foil tabs being arranged in two rows, the tabs in one row being arranged directly opposite the tabs in the other row.
- A method as claimed in claim 5, wherein the transverse strips are produced by applying precut conductive flat foil tabs to a non-conductive carrier strip, the tabs being arranged in two rows, the tabs in one row being transversely offset from the tabs in the other row by a distance corresponding to the distance between centers of adjacent foil strips.
Description
This application is a divisional application of Ser. No. 602,189 filed Aug. 6, 1975 now U.S. Pat. No. 4,025,893 which is a continuation of Ser. No. 405,076 filed Oct. 10, 1973, now abandoned.
The present invention relates to a continuous web which by transverse cutting at selected positions and possibly by effecting an edge insulation and attaching electrical connections provides electrical low temperature heating mats, said web consisting of resistance foil material between two insulating foil layers which are joined in the areas of direct contact to secure the resistance foil, a plurality of parallel, conductive, longitudinal foil strips and transverse strips extending transversely to said longitudinal strips at desired intervals lying between the insulating layers, said transverse strips being connected to the longitudinal strips and being so constructed as to form electrical connections between adjacent longitudinal strips. The invention also relates to a method for the production of such webs.
Heating mats of the abovementioned type has hitherto been produced as disclosed in Norwegian Patent Specification 109 918 (corresponds to U.S. Pat. No. 3,263,307), i.e. by cutting a continuous web consisting of a resistance foil lying between two broader, insulating layers that are joined in the areas of direct contact, i.e. outside the resistance foil and through slots therein. The desired configuration of the resistance foil and through slots therein.
Citations (4)
- US1514618A
- US2815124A
- GB925184A
- US3075705A
Record as JSON
{
"publication_number": "US4092626A",
"country": "US",
"kind": "A",
"title": "Continuous web consisting of resistance foil material between two insulating foil layers and method for the production of such webs",
"abstract": "A continuous composite web from which electrical low temperature heating mats can be produced by transverse cutting at certain positions and possibly by effecting an edge insulation and attaching electrical connections. A method for the production of such webs is also disclosed. The web consists of resistance foil material between two insulating foil layers which are joined in the areas of direct contact to secure the resistance foil. The resistance foil material is in the form of parallel, continuous, longitudinal strips and transverse strips extending transversely to said longitudinal strips at desired intervals and connected thereto to form electrical connections between adjacent foil strips. The transverse strips extend substantially across the total width of the web and can be in the form of an insulation strip having flat foil conductive pieces on the insulation strip.",
"claims": [
"1. In a flexible composite web of longitudinally extending and transversely spaced resistance foil strips positioned between insulating layers and in which said resistance foil strips are connected into a meander resistance path by a row of short conductive pieces, the improvement wherein said row of short conductive pieces comprises a non-conductive carrier strip, at least one row of spaced conductive flat foil tabs carried by said carrier strip and facing the resistance foil strips and making electrical contact therewith, said conductive flat foil tabs each connecting the strips of adjacent resistance foil strips.",
"2. A web according to claim 1, wherein said carrier strip carries two rows of conductive flat foil tabs, the flat foil tabs in one row being arranged directly opposite the flat foil tabs in the other row.",
"3. A web according to claim 1, wherein said carrier strip carries two rows of conductive flat foil tabs, the flat foil tabs in one row being transversely offset from the flat foil tabs in the other row by a distance corresponding to the distance between the centers of adjacent resistance foil strips.",
"4. A web according to claim 1, wherein said carrier strip also carries conductive end elements extending sideways beyond the web, said end elements being connected to the outer resistance foil strips for serving as terminal connections.",
"5. In a method for the production of a flexible composite web of longitudinally extending and transversely spaced resistance foil strips positioned between insulating layers, the improvement comprising providing a non-conductive carrier strip carrying at least one row of spaced conductive flat foil tabs, placing said carrier strip upon the resistance foil strips transversely thereacross in a position in which the conductive flat foil tabs face the resistance foil strips and make electrical contact therewith, said conductive flat foil tabs each connecting the strips of a pair of adjacent resistance foil strips, and electrically joining said conductive flat foil tabs to said resistance foil strips.",
"6. A method as claimed in claim 5, wherein the transverse strips are produced by applying precut conductive flat foil tabs to a non-conductive carrier strip at desired intervals, the conductive flat foil tabs being arranged in two rows, the tabs in one row being arranged directly opposite the tabs in the other row.",
"7. A method as claimed in claim 5, wherein the transverse strips are produced by applying precut conductive flat foil tabs to a non-conductive carrier strip, the tabs being arranged in two rows, the tabs in one row being transversely offset from the tabs in the other row by a distance corresponding to the distance between centers of adjacent foil strips."
],
"description_excerpt": "This application is a divisional application of Ser. No. 602,189 filed Aug. 6, 1975 now U.S. Pat. No. 4,025,893 which is a continuation of Ser. No. 405,076 filed Oct. 10, 1973, now abandoned.\n\nThe present invention relates to a continuous web which by transverse cutting at selected positions and possibly by effecting an edge insulation and attaching electrical connections provides electrical low temperature heating mats, said web consisting of resistance foil material between two insulating foil layers which are joined in the areas of direct contact to secure the resistance foil, a plurality of parallel, conductive, longitudinal foil strips and transverse strips extending transversely to said longitudinal strips at desired intervals lying between the insulating layers, said transverse strips being connected to the longitudinal strips and being so constructed as to form electrical connections between adjacent longitudinal strips. The invention also relates to a method for the production of such webs.\n\nHeating mats of the abovementioned type has hitherto been produced as disclosed in Norwegian Patent Specification 109 918 (corresponds to U.S. Pat. No. 3,263,307), i.e. by cutting a continuous web consisting of a resistance foil lying between two broader, insulating layers that are joined in the areas of direct contact, i.e. outside the resistance foil and through slots therein. The desired configuration of the resistance foil and through slots therein.",
"cpc": [
"H05B 3/56",
"B29C 70/687",
"H01C 3/06",
"H05B 2203/005",
"H05B 2203/011",
"H05B 2203/016",
"H05B 2203/017",
"H05B 3/06",
"H05B 3/36",
"H05B 3/565",
"Y10T 29/49083",
"Y10T 29/49098"
],
"ipc": [
"H01C 3/06",
"H05B 3/06",
"H05B 3/36",
"H05B 3/58"
],
"assignees": [
"PATENTKONSORTIET ROBERT MEINICH AND Co"
],
"inventors": [
"Hans Amund Bergersen"
],
"filing_date": "1976-12-06",
"publication_date": "1978-05-30",
"grant_date": "1978-05-30",
"priority_date": "1972-10-13",
"application_number": "US-74764176-A",
"family_id": "26647510",
"cited_by_count": 11,
"citations": [
"US1514618A",
"US2815124A",
"GB925184A",
"US3075705A"
]
}
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