The present invention relates to a belt ply feeder and a feeding method thereof applicable to the manufacture of tires and belongs to the field of rubber machinery.
The present invention is to provide a belt ply feeder and a feeding method thereof that are able to maintain a belt ply being tangential to a belt ply drum in wrapping the belt ply around the belt ply drum regardless of the size of belt ply drum so as to ensure the belt ply is in firm contact with the belt ply drum.
In order to achieve said objectives, the belt ply feeder is characterized in that the belt ply feeder comprises a rack and a conveying forming board bracket which is mounted on the rack, wherein the conveying forming board bracket is pivoted to the rack. The conveying forming board is positioned on the conveying forming board bracket and inclines downward along the conveying direction of the belt ply. The conveying forming board is provided with a front end which is attached to the belt ply drum. The conveying forming board is characterized in that the front end of the conveying forming board is positioned below the belt ply drum, and the upper surface of the conveying forming board is tangential to the outer circumference of the belt ply drum when the conveying forming board is in the work position of attaching.
In order to enable the conveying forming board to enter the work position of attaching, the rack is provided with a perpendicular adjustment device which drives the front end of the conveying forming board to swing upward and downward longitudinally and a pivot point for the longitudinal swing of the conveying forming board bracket. The extreme position of the conveying forming board in swinging upward is the work position of attaching of the conveying forming board.
Further, said pivot point is the pivot shaft at which the rack is pivoted to the conveying forming board bracket; said perpendicular adjustment device comprises inclined plane tracks mounted on the rack and sliding blocks which can slide on the inclined plane tracks. Therefore, longitudinal swing of the front end of the conveying forming board can be achieved by enabling the sliding blocks to slide on the inclined plane tracks.
Improvements adopted in said invention are described as follows:
The conveying forming board bracket comprises a first front conveying forming board, and a second front conveying forming board, wherein the transverse or lateral spacing between the first front conveying forming board and the second front conveying forming board is not less than the transverse or lateral widths of the first front conveying forming board and the second front conveying forming board. The transverse spacing between the first front conveying forming board and the second front conveying forming board corresponds to the position of the belt ply drum.
The transverse spacing between the first front conveying forming board and the second front conveying forming board is the work position of attachment. The first front conveying forming board and the second front conveying forming board enter into the transverse spacing in sequence to enable the belt ply conveyed to be wrapped around or attached to the belt ply drum. In order to enable the first front conveying forming board and the second front conveying forming board to enter into the transverse spacing in sequence, the conveying forming board is provided with slide tracks and the first front conveying forming board and the second front conveying forming board are connected in a driving manner by the slide tracks and the driving mechanism.
The structural scheme of the belt ply feeder provided by the present invention is listed above. According to this arrangement, the belt ply is conveyed by the conveying forming board and wrapped around the belt ply drum. The belt ply feeder is characterized in that the front end of the conveying forming board is positioned below the belt ply drum; when the belt ply is conveyed to the front end of the conveying forming board, a force is exerted by a perpendicular adjustment device to drive the conveying forming board bracket to swing upward and rotate around a pivot shaft of the rack to positions at which the upper surface of the conveying forming board is tangential to the outer circumference of a belt ply drum.
The perpendicular adjustment device comprises inclined plane tracks which are arranged on the rack and sliding blocks which are capable of sliding on the inclined plane tracks. Longitudinal swing of the front end of the conveying forming board bracket can be achieved by enabling the sliding blocks to slide on the inclined plane tracks.
Improvements adopted in the present invention are described as follows:
The conveying forming board bracket is provided with a first front conveying forming board, and a second front conveying forming board, wherein the transverse or lateral spacing between the first front conveying forming board and the second front conveying forming board is not less than the transverse widths of the first front conveying forming board and the second front conveying forming board. The transverse spacing between the first front conveying forming board and the second front conveying forming board corresponds to the position of the belt ply drum. The first front conveying forming board and the second front conveying forming board enter into the transverse spacing in sequence to enable the belt ply conveyed to enter the work position of attaching and wrap around the belt ply drum.
Said conveying forming board bracket is provided with slide tracks, and the first front conveying forming board and the second front conveying forming board are capable of sliding on the slide tracks to enter into and exit from the transverse spacing.
In summary, according to the belt ply feeder and the feeding method thereof of the present invention, the belt ply is tangential to the belt ply drum all the time and a belt ply is in firm contact with a belt ply drum regardless of the size of the belt ply drum when wrapping the belt ply around the belt ply drum, and accordingly, the quality of shaping the tires manufactured can be improved.
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The detailed feeding method of the belt ply feeder adopted in the present embodiment is described as follows.
Said belt ply support frame in the present embodiment comprises two conveying forming boards, and therefore, two belt plies can be conveyed simultaneously. The belt plies are winded off by a winding-off device to enter into the first rear conveying forming board 53 and the second rear conveying forming board 54, wherein the first rear conveying forming board and the second rear conveying forming board adopt the roller-type conveyance. The belt plies firstly pass through the first centering device 55 and the second centering device 56 to be mechanically centered, and then are lengthened by a length measuring device in the process of moving forward. When the lengths of the belt plies are met with the preset length of the system, the belt plies are cut by the first cutting device 57 and the second cutting device 58, and then conveyed forward to enter into the first front conveying forming board 51 and the second front conveying forming board 52. When the belt plies are conveyed to the front end of the conveying forming board, the first front conveying forming board 51 is driven by a driving mechanism to slide upward to the middle part of the conveying forming board bracket 41 along the slide tracks 50 as shown in the
In summary, the present embodiment combining with the drawings only describes a preferred embodiment of said invention. According to the preferred embodiment, technicians in said field are capable of being inspired to directly produce alternative structures fit for the design conception of the present invention. Accordingly, alternative structural features based on the present invention shall belong to the field of said disclosure of the present invention.
| Number | Date | Country | Kind |
|---|---|---|---|
| 201110456755.9 | Dec 2011 | CN | national |
| Filing Document | Filing Date | Country | Kind | 371c Date |
|---|---|---|---|---|
| PCT/CN2012/087902 | 12/28/2012 | WO | 00 | 6/30/2014 |