Claims
- 1. A method for preparing a multi-layer metal tube, comprising the steps of:
breaking the adhesion between at least a portion of a polymeric layer and an outer surface circumference of a metal tube having a corrosion resistant layer applied thereto, thereby causing the polymeric layer portion to retract and loosely adhere to a non-retracted polymeric layer adjacent the polymeric layer portion; and mechanically removing the retracted portion of the polymeric layer while leaving the corrosion resistant layer intact.
- 2. The method as defined in claim 1 wherein the metal tube has an end, and wherein the polymeric layer portion has a first area adjacent the tube end and a second area distal from the tube end.
- 3. The method as defined in claim 2 wherein the breaking step is accomplished by at least one cutting edge disposed on a stripper roll, the cutting edge contacting the polymeric layer portion first area, whereby the first area moves toward the second area as the tube moves relative to the stripper roll cutting edge.
- 4. The method as defined in claim 3 wherein the mechanical removal step is accomplished by at least one removal roll.
- 5. The method as defined in claim 1 wherein the polymeric layer comprises at least one layer, the at least one layer having a predetermined thickness.
- 6. The method as defined in claim 1 wherein the removed polymeric portion has a length ranging between about 1 mm (0.04″) and about 76.2 mm (3″).
- 7. The method as defined in claim 1 wherein the multi-layer metal tube has a diameter ranging between about {fraction (3/16)}″ and about ⅜″.
- 8. The method as defined in claim 7 wherein removal of the at least a portion of the polymeric layer occurs within a single pass and has a cycle time ranging between about 2 seconds and about 4 seconds.
- 9. The method as defined in claim 1 wherein the multi-layer metal tube is a high pressure fluid conduit having two ends, the polymeric layer portion is removed from each end, and wherein the method further comprises the step of:
endforming each of the conduit two ends into one of an SAE-type double and inverted flare, wherein each of the flares is formed where the polymeric layer portion is removed.
- 10. The method as defined in claim 1 wherein the multi-layer metal tube is a high pressure fluid conduit having two ends, the polymeric layer portion is removed from each end, and wherein the method further comprises the step of:
endforming each of the conduit ends into an ISO-type annularly protruding flare, wherein each of the flares is formed where the polymeric layer portion is removed.
- 11. The method as defined in claim 1 wherein the multi-layer tube is at least one of a brakeline, a vacuum line, a transmission oil cooler line, a fuel line, and a vapor return line.
- 12. The method as defined in claim 1 wherein the corrosion resistant layer comprises a zinc layer bonded to the metal tube outer surface, wherein the zinc layer is selected from the group consisting of zinc plating, zinc nickel alloys, zinc cobalt alloys, zinc aluminum alloys, and mixtures thereof.
- 13. The method as defined in claim 12 wherein the multi-layer tube further comprises a surface treatment layer bonded to the zinc layer, wherein the surface treatment layer is selected from the group consisting of a zinc/aluminum/rare earth alloy, phosphate, chromate, and mixtures thereof.
- 14. The method as defined in claim 13 wherein the multi-layer tube further comprises:
a first polymeric layer bonded to the surface treatment layer, wherein the first polymeric layer is selected from the group consisting of thermoplastic elastomers, ionomers, nylons, fluoropolymers, and mixtures thereof; and a second polymeric layer bonded to the first polymeric layer, wherein the second polymeric layer is selected from the group consisting of thermoplastic elastomers, nylons, fluoropolymers, and mixtures thereof.
- 15. The method as defined in claim 14 further comprising a third polymeric layer interposed between, and bonded to the first and second polymeric layers, wherein the third layer is selected from a group consisting of ionomers, nylons, ethylene vinyl alcohol, polyolefins, and mixtures thereof.
- 16. The method as defined in claim 15 further comprising at least one polymeric sublayer.
- 17. The method as defined in claim 14 wherein the first polymeric layer is nylon 12 and the second polymeric layer is nylon 12.
- 18. The method as defined in claim 14 wherein the polymeric layers are applied by at least one of coextrusion, synchronous cross-head application, extrusion, flow coating, electrostatic spray painting, electrostatic powder coating, and shrink fitting.
- 19. A method for preparing a multi-layer metal tube, comprising the steps of:
breaking the adhesion between at least a portion of a polymeric layer and an outer surface circumference of a metal tube, thereby causing the polymeric layer portion to retract and loosely adhere to a non-retracted polymeric layer adjacent the polymeric layer portion; and mechanically removing the retracted portion of the polymeric layer while leaving the metal tube outer surface undamaged.
- 20. An apparatus for preparing a multi-layer metal tube, comprising:
a housing; means, operatively defined within the housing, for orienting the tube; means, operatively defined within the housing, for breaking adhesion between at least a portion of a polymeric layer and an outer surface circumference of the metal tube, thereby causing the polymeric layer portion to retract and loosely adhere to a non-retracted polymeric layer adjacent the polymeric layer portion; and means, operatively defined within the housing between the orienting means and the adhesion breaking means, for removing the retracted polymeric layer portion without damaging the outer surface circumference of the metal tube.
- 21. The apparatus as defined in claim 20 wherein the housing rotates.
- 22. The apparatus as defined in claim 20 wherein the orienting means comprises at least one guide roll.
- 23. The apparatus as defined in claim 20 wherein the adhesion breaking means comprises at least one stripper roll having a cutting edge of a predetermined configuration.
- 24. The apparatus as defined in claim 20 wherein the removing means comprises at least one removal roll having a blade disposed thereon.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional application Ser. No. 60/224,862, filed on Aug. 11, 2000.
Provisional Applications (1)
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Number |
Date |
Country |
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60224862 |
Aug 2000 |
US |