Claims
- 1. Apparatus for manufacturing multi-core cable of the kind in which a plurality of conductive cores are held in parallel and side-by-side relation by surrounding insulation formed from thermoplastic material, the apparatus including drive means for continuously driving through the apparatus a plurality of substantially continuous conductive cores in side-by-side, substantially parallel and spaced relationship, simultaneously with surrounding insulation formed from thermoplastic material, a bonding station including hot air blower means for blowing hot air on the insulation of the cable as the cable passes through the bonding station to heat the insulation and cause fusion of the insulation throughout major portions of the length of the cable, and interruptor means for interrupting the heating of the insulation at predetermined regions along the length of the cable which are short compared to said major portions, so that in the resultant cable the cores are insulated and held in position relative to one another throughout their length by the surrounding insulation except at said regions wherein the cores are separate from one another.
- 2. Apparatus for manufacturing multi-core cable according to claim 1 wherein the interruptor means includes diverter means for diverting the hot air from the insulation to interrupt the heating of the insulation.
- 3. Apparatus for manufacturing multi-core cable according to claim 2 wherein the hot air diverted from the insulation is received by an extractor duct.
- 4. Apparatus for manufacturing multi-core cable according to any one of preceding claims 1 to 3 wherein the apparatus further includes a guillotine whereby as the cable is produced it is severed at said regions to produce predetermined lengths of cable having at least one end region in which the cores are not interconnected.
- 5. Apparatus for manufacturing multi-core cable according to claim 4 wherein the guillotine severs the cable at or near the mid points of said regions so that the lengths of cable produced have both end regions wherein the cores are not interconnected.
- 6. Apparatus for manufacturing multi-core cable of the kind in which a plurality of conductive cores are held in parallel and side-by-side relation by surrounding insulation formed from thermoplastic material, the apparatus including drive means for continuously driving through the apparatus a plurality of leads in side-by-side, substantially parallel relationship, each lead including a conductive core surrounded by an insulating sheath formed from thermoplastic material, a bonding station including contacting means for urging the sheaths of the leads into close contact and hot air blower means for blowing hot air on the sheaths as they pass through the bonding station to heat the sheaths and cause fusion of the sheaths each to its neighbour throughout major portions of their lengths, and interruptor means for interrupting the heating of the sheaths at predetermined regions along the length of the cable which are short compared to said major portions, so that at said predetermined regions in the resultant cable the leads are separate from one another.
- 7. Apparatus for manufacturing multi-core cable according to claim 6 wherein the interruptor means includes diverter means for diverting the hot air from the sheaths to interrupt the heating of the sheaths.
- 8. Apparatus for manufacturing multi-core cable according to claim 7 wherein the hot air diverted from the sheaths is received by an extractor duct.
- 9. Apparatus for manufacturing multi-core cable according to any one of claims 6 to 8 wherein the contacting means comprises locating means and means for maintaining tension on the leads past the locating means and co-operating with the locating means to urge the sheaths into close contact during bonding.
- 10. Apparatus according to claim 9 wherein the locating means is a profile roller.
- 11. Apparatus for manufacturing multi-core cable according to claim 6 wherein the contacting means includes pressure means which presses the heated sheaths each against its neighbour to fuse the sheaths each to its neighbour.
- 12. Apparatus for manufacturing multi-core cable according to any one of preceding claims 6 to 8 wherein the apparatus further includes a guillotine whereby as the cable is produced it is severed at said regions to produce predetermined lengths of cable having at least one end region in which the sheaths are not interconnected.
- 13. Apparatus for manufacturing multi-core cable according to claim 12 wherein the guillotine severs the cable at or near the mid points of said regions so that the lengths of cable produced have both end regions wherein the sheaths are not interconnected.
- 14. Apparatus for producing multi-core cable according to claim 6 wherein the apparatus includes on at least one side of the cable means for supplying backing strip formed from thermoplastic material from a continuous supply to the bonding station, the hot air blower means also blows hot air on the backing strip or strips to heat the strip or strips and cause fusion of the sheaths also to said backing strip or strips throughout said major portions, and said interruptor means also interrupts the heating of the strips at said predetermined regions, so that at said regions the sheaths are bonded neither each to its neighbour nor to said backing strip or strips.
- 15. Apparatus for manufacturing multi-core cable according to claim 14 wherein the interruptor means includes diverter means for diverting the hot air from the sheaths and the backing strip or strips to interrupt the heating of the sheaths and the backing strip or strips.
- 16. Apparatus for manufacturing multi-core cable according to claim 15 wherein the hot air diverted from the sheaths and the backing strip or strips is received by an extractor duct.
- 17. Apparatus for manufacturing multi-core cable according to any one of preceding claims 14 to 16 wherein the apparatus further includes a guillotine whereby as the cable is produced it is severed at said regions to produce predetermined lengths of cable having at least one end region in which the sheaths are not interconnected.
- 18. Apparatus for manufacturing multi-core cable according to claim 17 wherein the guillotine severs the cable at or near the mid points of said regions so that the lengths of cable produced have both end regions wherein the sheaths are not interconnected.
- 19. Apparatus for producing multi-core cable according to any one of preceding claims 6 to 8 wherein the apparatus includes on at least one side of the cable means for feeding backing strip from a continuous supply to the bonding station, cutter means in the path of the strip, or of at least one of the strips, to the bonding station for cutting the strip, control means for operating the cutter means to cut the strip into lengths substantially equal in length to said major portions, and pause means associated with the strip feed for spacing the cut ends of consecutive lengths, whereby said hot air blower means also blows hot air on said lengths of backing strip as they are fed into the bonding station to heat the lengths of strip and cause fusion of the lengths of strip to the sheaths of the leads throughout said major portions, there being no backing strip on at least one side of the cable, at said regions wherein the sheaths are separate from one another.
- 20. Apparatus for manufacturing multi-core cable according to claim 19 wherein the apparatus further includes a guillotine whereby as the cable is produced it is severed at said regions to produce predetermined lengths of cable having at least one end region in which the sheaths are not interconnected.
- 21. Apparatus for manufacturing multi-core cable according to claim 20 wherein the apparatus further includes a guillotine whereby as the cable is produced it is severed at said regions to produce predetermined lengths of cable having at least one end region in which the sheaths are not interconnected.
- 22. Apparatus for manufacturing multi-core cable of the kind in which a plurality of conductive cores are held in parallel and side-by-side relation by surrounding insulation formed from thermoplastic material, the apparatus including drive means for continuously driving through the apparatus a plurality of leads, each including a conductive core in an insulating sheath formed from thermoplastic material, in side-by-side, substantially parallel and spaced relationship, simultaneously with backing strip also formed from thermoplastic material, from a continuous supply on at least one side of the leads, a bonding station including hot air blower means and pressure means, the hot air blower means blowing hot air on the sheaths of the leads and the backing strip or backing strips as the sheaths and the backing strip or backing strips pass through the bonding station, and the pressure means pressing the heated sheaths of the leads against the heated backing strip or strips to cause fusion of the sheaths to the backing strip or strips throughout major portions of the lengths of the leads, and interruptor means for interrupting the heating of the sheaths and the backing strip or strips at predetermined regions along the length of the cable which are short compared to said major portions, so that at said predetermined regions in the resultant cable the sheaths are not interconnected by the backing strip or strips.
- 23. Apparatus for manufacturing multi-core cable according to claim 22 wherein the interruptor means includes diverter means for diverting the hot air from the sheaths and the backing strip or strips to interrupt the heating of the sheaths and the backing strip or strips.
- 24. Apparatus for manufacturing multi-core cable according to claim 23 wherein the hot air diverted from the sheaths and the backing strip or strips is received by an extractor duct.
- 25. Apparatus for manufacturing multi-core cable according to any one of preceding claims 22 to 24 wherein the apparatus further includes a guillotine whereby as the cable is produced it is severed at said regions to produce predetermined lengths of cable having at least one end region in which the sheaths are not interconnected.
- 26. Apparatus for manufacturing multi-core cable according to claim 25 wherein the guillotine severs the cable at or near the mid points of said regions so that the lengths of cable produced have both end regions wherein the sheaths are not interconnected.
- 27. Apparatus for manufacturing multi-core cable of the kind in which a plurality of conductive cores are held in parallel and side-by-side relation by surrounding insulation formed from thermoplastic material, the apparatus including drive means for continuously driving through the apparatus a plurality of substantially continuous, conductive cores in side-by-side, substantially parallel and spaced relationship, simultaneously with opposed substantially continuous insulating strips formed from thermoplastic material, a bonding station wherein the opposed strips are bonded together around and between said cores, the bonding station including hot air blower means and pressure means, the hot air blower means heating the mutually presented surfaces of the strips as the strips pass through the bonding station and the pressure means pressing the heated surfaces of the strips together around and between the cores so that the strips fuse together to effect the bond therebetween throughout major portions of their lengths, and interruptor means for interrupting the heating of the opposed strips at predetermined regions along the length of the cable which are short compared to said major portions, so that in the resultant cable the cores are insulated and held in position relative to one another throughout their length by the bonding together of said opposed strips except at said regions.
- 28. Apparatus for manufacturing multi-core cable according to claim 27 wherein the opposed insulating strips are upper and lower insulating strips.
- 29. Apparatus for manufacturing multi-core cable according to claim 27 wherein the interruptor means includes diverter means for diverting the hot air from the insulating strips to interrupt the heating of the strips.
- 30. Apparatus for manufacturing multi-core cable according to claim 29 wherein the hot air diverted from the insulating strips is received by an extractor duct.
- 31. Apparatus for manufacturing multi-core cable according to any one of preceding claims 27 to 30 wherein the apparatus further includes a guillotine whereby as the cable is produced it is severed at said regions to produce predetermined lengths of cable having at least one end region in which the cores are not interconnected by the strips.
- 32. Apparatus for manufacturing multi-core cable according to claim 31 wherein the guillotine severs the cable at or near the mid points of said regions so that the lengths of cable produced have both end regions wherein the cores are not interconnected.
Priority Claims (1)
Number |
Date |
Country |
Kind |
33340/78 |
Aug 1978 |
GBX |
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Parent Case Info
This application is a division, of application Ser. No. 065,854, filed Aug. 13, 1979 and now U.S. Pat. No. 4,381,208.
US Referenced Citations (3)
Number |
Name |
Date |
Kind |
3226278 |
Scofield et al. |
Dec 1965 |
|
3836415 |
Hilderbrandt |
Sep 1974 |
|
3936344 |
Ball et al. |
Feb 1976 |
|
Divisions (1)
|
Number |
Date |
Country |
Parent |
65854 |
Aug 1979 |
|