Method and apparatus for forming tire components using a coextruded strip
US-2019152116-A1 · May 23, 2019 · US
US11279060B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11279060-B2 |
| Application number | US-201616064801-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 21, 2016 |
| Priority date | Dec 22, 2015 |
| Publication date | Mar 22, 2022 |
| Grant date | Mar 22, 2022 |
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An extrusion apparatus intended for the manufacture of a coextruded profiled element P for tyres, produced from rubber compounds of various compositions, comprises a profiling device ( 30 ) arranged at the outlet of at least two flow channels ( 34, 35 ) for rubbery compounds of different composition. The said channels receive the compounds from positive-displacement contrarotating twin-screw extruders ( 10, 20 ), the screw flights interpenetrating and having conjugated profiles.
Opening claim text (preview).
The invention claimed is: 1. An extrusion apparatus for the manufacture of a coextruded profiled element P for tires, produced from rubbery compounds of respective different compositions, the extrusion apparatus comprising: a profiling device comprising a plurality of flow channels and being arranged to perform profiling at the outlet of the plurality of flow channels, the plurality of flow channels being for respective rubbery compounds of respective different compositions; and a plurality of positive-displacement contrarotating twin-screw extruders, arranged to feed the plurality of flow channels in parallel by being juxtaposed to converge into the profiling device, wherein each of the plurality of twin-screw extruders comprises a plurality of screw flights which are interpenetrating and which have conjugated profiles, wherein the plurality of twin-screw extruders are arranged such that the plurality of flow channels receive the rubbery compounds of respective different compositions from the plurality of twin-screw extruders, respectively, wherein the plurality of flow channels comprises more than two flow channels, and wherein the plurality of positive-displacement contrarotating twin-screw extruders comprises more than two positive-displacement contrarotating twin-screw extruders. 2. The extrusion apparatus according to claim 1 , wherein each of the plurality of twin-screw extruders is fed by a respective one of a plurality of secondary single-screw extruders. 3. The extrusion apparatus according to claim 2 , wherein for each of the plurality of twin-screw extruders, the twin-screw extruder and the respective one of the plurality of secondary single-screw extruders are arranged in a common housing. 4. The extrusion apparatus according to claim 3 , wherein for each of the plurality of twin-screw extruders, the respective one of the plurality secondary single-screw extruders comprises an outlet end which communicates with a central inlet orifice of the twin-screw extruder into an internal chamber of the twin-screw extruder. 5. The extrusion apparatus according to claim 2 , wherein each of the plurality of twin-screw extruders and each of the plurality of secondary single-screw extruders has its own respective drive means. 6. The extrusion apparatus according to claim 2 , wherein for each of the plurality of twin-screw extruders, an axis of rotation of the screw of the respective one of the plurality of secondary single-screw extruders is transverse to an axis of rotation of the screws of the twin-screw extruder. 7. The extrusion apparatus according to claim 1 , further comprising a control unit configured to adjust a rotational speed of the screws of the plurality of twin-screw extruders to suit dimensions of the coextruded profiled element P. 8. The extrusion apparatus according to claim 7 , wherein the control unit adjusts the rotational speed of the screws of the plurality of twin-screw extruders to suit operating conditions of an ancillary assembly line. 9. A method for the manufacture of a coextruded profiled element P for tires, produced from rubbery compounds of respective different compositions, the method comprising: feeding a plurality of compound flow channels with respective rubbery compounds of respective different compositions by a respective plurality of positive-displacement contrarotating twin-screw extruders, screw flights of which are interpenetrating and have conjugated profiles; and extruding the coextruded profiled element P through a profiling tool coming from the plurality of compound flow channels, wherein the plurality of twin-screw extruders are arranged to feed the plurality of compound flow channels in parallel by being juxtaposed to converge into the profiling tool, wherein the plurality of compound flow channels comprises more than two compound flow channels, and wherein the plurality of twin-screw extruders comprises more than two twin-screw extruders. 10. The method according to claim 9 , further comprising adjusting a rotational speed of the screws of the plurality of twin-screw extruders to suit dimensions of the coextruded profiled element P. 11. The method according to claim 9 , wherein a flow rate supplied by each of the plurality of twin-screw extruders is greater than 20 kg/min for a speed less than or equal to 40 rpm.
using two or more extruders to feed one die or nozzle · CPC title
Intermeshing counter-rotating screws · CPC title
using two or more serially arranged screws in separate barrels · CPC title
using two or more parallel screws {or at least two parallel non-intermeshing screws}, e.g. twin screw extruders · CPC title
the screws having intermeshing parts · CPC title
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