Process and drum for looping annular anchoring structures in a process for building tyres for vehicle wheels
US-2017173906-A1 · Jun 22, 2017 · US
US9616628B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9616628-B2 |
| Application number | US-200813055114-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 23, 2008 |
| Priority date | Jul 23, 2008 |
| Publication date | Apr 11, 2017 |
| Grant date | Apr 11, 2017 |
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An apparatus for manufacturing tires for vehicle wheels wherein each tire includes a carcass structure formed starting from at least one carcass ply laid on a forming support extended along a longitudinal axis. The apparatus includes at least one device for positioning at least one annular anchoring structure on at least one end edge of the carcass ply, the positioning device being circumferentially extended around the longitudinal axis of the forming support and axially movable with respect to the forming support between an operating position distal from the forming support and at least one operating position close to the forming support. The apparatus further includes a device for turning up the end edge of the carcass ply around the annular anchoring structure, the turning up device being circumferentially extended about the longitudinal axis of the forming support and axially movable for approaching/moving away to/from the forming support. The positioning device and the turning up device are radially expandable/contractible in a synchronous manner with respect to the longitudinal axis of the forming support and are settable in a plurality of different operating radial positions, each operating radial position being selected based on a respective radial dimension of the tire to be manufactured.
Opening claim text (preview).
The invention claimed is: 1. An apparatus for manufacturing a tyre for a vehicle wheel, the tyre comprising a carcass structure formed starting from a carcass ply laid on a forming support extended along a longitudinal axis, comprising: a device for positioning an annular anchoring structure on an edge at an axial end of said carcass ply, the positioning device being circumferentially extended around the longitudinal axis of the forming support and axially movable with respect to the forming support between an operating position distal from the forming support and an operating position close to the forming support; a turning up device for turning up the edge of the carcass ply around the annular anchoring structure, the turning up device being circumferentially extended around the longitudinal axis of the forming support and axially movable for approaching/moving away to/from the forming support, wherein the positioning device comprises a plurality of components mutually synchronized in radial motion and the turning up device comprises a plurality of components mutually synchronized in radial motion, the positioning device and turning up device being settable in a plurality of different operating radial positions, each operating radial position being selected based on a respective radial dimension of the tyre to be manufactured; a device for pulling down the edge of the carcass ply toward the longitudinal axis of the forming support, wherein said pulling down device is distinct from said turning up device, wherein a portion of the positioning device extends through an arm of the pulling down device, and wherein said pulling down device is positioned radially outward of said turning up device, wherein the pulling down device comprises a pulling down member slidably associated with a sliding guide extending parallel to the axis of the forming support, the pulling down member being slidable along the axis of the forming support with respect to the positioning device, wherein the pulling down member is mounted on an annular element and radially movable with respect to the axis of the forming support, wherein the turning up device is configured to move axially with respect to the positioning device during turning up of the edge of the carcass ply around the annular anchoring structure, and wherein the turning up device comprises a plurality of turning up members arranged adjacent to one another along a circumferential direction of the forming support and coaxially with the longitudinal axis of the forming support, said turning up members being radially movable in a synchronous manner with respect to the longitudinal axis of the forming support between a maximum contraction position and a maximum expansion position; and a device for controlling the radial movement of said turning up members, the control device comprising a sliding guide with a spiral shape and having a rotation around the longitudinal axis of the forming support which can be controlled, and a plurality of sliding runners extending radially with respect to said longitudinal axis, each of said turning up members being slidingly coupled to a respective one of the sliding runners and to said sliding guide with a spiral shape so that a predetermined angular movement of the sliding guide causes a predetermined radial movement of each turning up member, wherein each turning up member comprises a roller associated with a free end of a respective arm, each roller being coupled to a circumferentially consecutive roller by a compression spring. 2. The apparatus according to claim 1 , wherein the positioning device comprises a plurality of positioning members arranged adjacent to one another along the circumferential direction and coaxially to the longitudinal axis of the forming support, said positioning members being radially movable in a synchronous manner with respect to the longitudinal axis of the forming support between a maximum contraction position and a maximum expansion position. 3. The apparatus according to claim 2 , comprising a device for controlling the radial movement of said positioning members, the control device for controlling the radial movement of said positioning members comprising a sliding guide with a spiral shape and having a rotation which can be controlled, about the longitudinal axis of the forming support, and a plurality of sliding runners extending radially with respect to said longitudinal axis, each of said positioning members being slidingly coupled to a respective one of the sliding runners of the device for controlling the radial movement of said positioning members and to said sliding guide with a spiral shape of the device for controlling the radial movement of said positioning members so that a predetermined angular movement of the sliding guide of the device for controlling the radial movement of said positioning members causes a predetermined radial movement of each positioning member. 4. The apparatus according to claim 1 , wherein the positioning device comprises a plurality of positioning members arranged adjacent to one another along the circumferential direction and coaxially to the longitudinal axis of the forming support, said positioning members being radially movable in a synchronous manner with respect to the longitudinal axis of the forming support between a maximum contraction position and a maximum expansion position, wherein the positioning device and the turning up device are slidingly mounted on a sliding track extended along a direction parallel to the longitudinal axis of the forming support, the turning up device being associated with said sliding track in an axially outer position to the positioning device with respect to the forming support and wherein the arms of the turning up members are arranged in a radially inner position with respect to the positioning members and configured to axially slide along the sliding track with respect to the positioning members. 5. The apparatus according to claim 1 , wherein said pulling down device is circumferentially extended around the longitudinal axis of the forming support and axially movable separately from the positioning device and the turning up device between an operating position distal from the forming support and an operating position close to the forming support, and wherein said pulling down device is radially expandable/contractible with respect to the longitudinal axis of the forming support synchronously to the positioning device, and is settable in a plurality of different operating radial positions, each operating radial position being selected based on a respective radial dimension of the tyre to be manufactured. 6. The apparatus according to claim 5 , wherein said pulling down device comprises a plurality of ply pulling down members arranged adjacent to one another along the circumferential direction and coaxially to the longitudinal axis of the forming support, said ply pulling down members being radially movable with respect to the longitudinal axis of the forming support between a maximum contraction position and a maximum expansion position. 7. The apparatus according to claim 6 , wherein each of said ply pulling down members comprises at least two longitudinal finger plates side-by-side in the circumferential direction. 8. The apparatus according to claim 7 , wherein the circumferentially adjacent finger plates of two circumferentially consecutive ply pulling down members are partially overlapped in the circumferential direction. 9. The apparatus according to claim 7 , wherein the positioning device is axially slidable in a radially outer position with respect to said finger plates and wherein for a predetermined radial position of the positioning device and of the pulli
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