Splitting method
US-2017321376-A1 · Nov 9, 2017 · US
US10378128B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10378128-B2 |
| Application number | US-201515524801-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 20, 2015 |
| Priority date | Nov 25, 2014 |
| Publication date | Aug 13, 2019 |
| Grant date | Aug 13, 2019 |
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A facility for manufacturing at least first and second assemblies of M1 filamentary elements and M2 filamentary elements, in which each of the first and second assemblies includes a plurality of filamentary elements wound together in a helix, includes an assembling apparatus and a splitting apparatus. The assembling apparatus of the facility assembles M filamentary elements together into a layer of M filamentary elements around a temporary core, to form a temporary assembly. The splitting apparatus of the facility splits the temporary assembly into at least the first and second assemblies of M1 filamentary elements and M2 filamentary elements.
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The invention claimed is: 1. A facility for manufacturing at least first and second assemblies of M1 filamentary elements and M2 filamentary elements, respectively, each of the first and second assemblies including a plurality of filamentary elements wound together in a helix, the facility comprising: an assembling apparatus structured to assemble M filamentary elements together into a layer of M filamentary elements around a temporary core, to form a temporary assembly; and a splitting apparatus structured to split the temporary assembly into at least the first and second assemblies of M1 filamentary elements and M2 filamentary elements, respectively, wherein the splitting apparatus comprises (a) a first separator structured to separate the first assembly from a temporary collection formed of the second assembly and the temporary core, and (b) a second separator structured to separate the second assembly and the temporary core from each other, the second separator being located downstream of the first separator. 2. The facility according to claim 1 , further comprising a guide apparatus structured to guide the temporary core between an outlet of the splitting apparatus and an inlet of the assembling apparatus. 3. A facility for manufacturing at least first and second assemblies of M1 filamentary elements and M2 filamentary elements, respectively, each of the first and second assemblies including a plurality of filamentary elements wound together in a helix, the facility comprising: an assembling apparatus structured to assemble M filamentary elements together into a layer of M filamentary elements around a temporary core, to form a temporary assembly; and a splitting apparatus structured to split the temporary assembly into at least the first and second assemblies of M1 filamentary elements and M2 filamentary elements, respectively, wherein the splitting apparatus comprises a core splitter structured to split the temporary core between at least the first and second assemblies, and wherein (a) the core splitter includes a first separation section structured to separate at least a first part of the temporary core with first filamentary elements from the temporary assembly so as to form the first assembly, or (b) the core splitter includes a second separation section structured to separate at least a second part of the temporary core with second filamentary elements from the temporary assembly so as to form the second assembly. 4. The facility according to claim 3 , wherein the core splitter includes the first separation section. 5. The facility according to claim 4 , wherein the core splitter further includes the second separation section. 6. The facility according to claim 1 , wherein the assembling apparatus includes a twister structured to twist the M filamentary elements and the temporary core. 7. The facility according to claim 1 , further comprising a balancer apparatus structured to twist-balance the temporary assembly. 8. The facility according to claim 1 , further comprising (1) a first rotation apparatus structured to rotate the first assembly about its direction of travel and (2) a second rotation apparatus structured to rotate the second assembly about its direction of travel, the first rotation apparatus and the second rotation apparatus being arranged downstream of the splitting apparatus. 9. The facility according to claim 1 , wherein, upstream of the assembling apparatus, the M filamentary elements are not preformed. 10. The facility according to claim 3 , wherein the assembling apparatus includes a twister structured to twist the M filamentary elements and the temporary core. 11. The facility according to claim 3 , further comprising a balancer apparatus structured to twist-balance the temporary assembly. 12. The facility according to claim 3 , further comprising (1) a first rotation apparatus structured to rotate the first assembly about its direction of travel and (2) a second rotation apparatus structured to rotate the second assembly about its direction of travel, the first rotation apparatus and the second rotation apparatus being arranged downstream of the splitting apparatus. 13. The facility according to claim 3 , wherein, upstream of the assembling apparatus, the M filamentary elements are not preformed.
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