HANDLE-ORIENTING PREFORM FEEDING MECHANISM AND ORIENTING PREFORM FEEDING METHOD FOR A BOTTLE PREFORM WITH A HANDLE
20220339844 ยท 2022-10-27
Assignee
Inventors
- Zhijun Deng (Guangzhou, CN)
- Daqun Zou (Guangzhou, CN)
- Kuiwei Song (Guangzhou, CN)
- Dong LI (Guangzhou, CN)
Cpc classification
B29C49/071
PERFORMING OPERATIONS; TRANSPORTING
B29C49/42119
PERFORMING OPERATIONS; TRANSPORTING
B29C49/4205
PERFORMING OPERATIONS; TRANSPORTING
B29C49/42155
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29C49/42
PERFORMING OPERATIONS; TRANSPORTING
Abstract
Provided are a handle-orienting preform feeding mechanism and orienting preform feeding method for a bottle preform with a handle. Under the combined action of the axial rotation of a plastic bottle preform and a handle positioning structure on a preform feeding tray, the handle of the plastic bottle preform with an integrated handle (especially a PET plastic bottle preform with an integrated handle) is positioned so that the plastic bottle preform with an integrated handle enters a heating machine and a bottle blowing machine of the next process according to the predetermined orientation. Accordingly, the wrong orientation of the integrated handle of the plastic bottle preform is avoided so that a mechanical arm can grasp the plastic bottle preform correctly and place the plastic bottle preform at the correct position of a bottle blowing mold. Thus the plastic bottle preform can be blown successfully.
Claims
1. A handle-orienting preform feeding mechanism for a bottle preform with a handle, comprising a base plate wherein a preform feeding component is disposed on the base plate, a preform feeding channel is disposed on a side of the preform feeding component and on the base plate, and a preform blocking mechanism is disposed on a side of the preform feeding channel and on the base plate, a preform feeding tray is joined to and around the preform feeding component and is configured to rotate along with the preform feeding component, a plurality of preform engaging grooves are disposed on an outer edge of the preform feeding tray at intervals, a preform blocking tray is disposed on a periphery of the preform feeding tray and on the base plate, and a transmission gap for conveying a bottle preform is formed between an inner edge, of the preform blocking tray and the outer edge of the preform feeding tray, a head end of the transmission gap is butted to a tail end of the preform feeding channel, a handle positioning structure is disposed on a side of each of the plurality of preform engaging grooves and on the preform feeding tray.
2. The handle-orienting preform feeding mechanism for a bottle preform with a handle according to claim 1, wherein the handle positioning structure comprises an arc-shaped through hole disposed on the preform feeding tray, and a stop pin, is disposed in the arc-shaped through hole and is slidable relative to the arc-shaped through hole.
3. The handle-orienting preform feeding mechanism for a bottle preform with a handle according to claim 2, wherein a scale is disposed on a side of the arc-shaped through hole and on the preform feeding tray.
4. The handle-orienting preform feeding mechanism for a bottle preform with a handle according to claim 1, wherein an axial-rotation guard plate is disposed on the preform blocking tray, and when the plastic bottle preform is conveyed to the axial-rotation guard plate, an inner edge of the axial-rotation guard plate is configured to be engaged into a groove in a neck of the plastic bottle preform and be in contact with a wall of the groove.
5. The handle-orienting preform feeding mechanism for a bottle preform with a handle according to claim 4, wherein an axial-rotation platen is disposed on the axial-rotation guard plate, and the axial-rotation platen is connected to the preform blocking tray through a fastener to press the axial-rotation guard plate onto the preform blocking tray.
6. The handle-orienting preform feeding mechanism for a bottle preform with a handle according to claim 1, wherein the preform blocking tray is disposed on the base plate through a support base.
7. The handle-orienting preform feeding mechanism for a bottle preform with a handle according to claim 1, further comprising a left preform feeding base and a right preform feeding base that are connected to and spaced apart on the base plate, wherein a gap between the left preform feeding base and the right preform feeding base forms the preform feeding channel.
8. An orienting preform feeding method for a bottle preform with a handle, comprising: (1) causing a plastic bottle preform with a handle to enter a preform feeding channel continuously; (2) causing a preform blocking mechanism to retract during a bottle blowing process, conveying the plastic bottle preform into a transmission gap through the preform feeding channel, and then engaging a neck of the plastic bottle preform into one of a plurality of preform engaging grooves on a preform feeding tray; (3) causing the plastic bottle preform to rotate on an axis of the plastic bottle preform when friction is applied to the neck of the plastic bottle preform in the transmission gap, and stopping the plastic bottle preform from rotating on the axis of the plastic bottle preform when the handle of the plastic bottle preform is brought into contact with a handle positioning structure on the preform feeding tray, and (4) causing the preform feeding tray to continue rotating and drive the plastic bottle preform to rotate until the plastic bottle preform is output from a preform feeding mechanism and enters a next process.
9. The orienting preform feeding method for a bottle preform with a handle according to claim 8, wherein in step (1), before the plastic bottle preform is conveyed, a position of a stop pin relative to an arc-shaped through hole is adjusted so that an orientation of the handle of the plastic bottle preform is predetermined.
10. The orienting preform feeding method for a bottle preform with a handle according to claim 8, wherein in step (3), when the plastic bottle preform rotates to an axial-rotation guard plate along with the preform engaging groove, an inner edge of the axial-rotation guard plate is engaged into a groove in the neck of the plastic bottle preform and is in contact with a wall of the groove so that a friction is generated between the plastic bottle preform and the axial-rotation guard plate to cause the plastic bottle preform to rotate on the axis of the plastic bottle preform until the handle of the plastic bottle preform is brought into contact with the stop pin.
11. The handle-orienting preform feeding mechanism for a bottle preform with a handle according to claim 2, wherein an axial-rotation guard plate is disposed on the preform blocking tray, and when the plastic bottle preform is conveyed to the axial-rotation guard plate, an inner edge of the axial-rotation guard plate is configured to be engaged into a groove in a neck of the plastic bottle preform and be in contact with a wall of the groove.
12. The handle-orienting preform feeding mechanism fora bottle preform with a handle according to claim 3, wherein an axial-rotation guard plate is disposed on the preform blocking tray, and when the plastic bottle preform is conveyed to the axial-rotation guard plate, an inner edge of the axial-rotation guard plate is configured to be engaged into a groove in a neck of the plastic brittle preform and be in contact with a wall of the groove.
13. The handle-orienting preform feeding mechanism for a bottle preform with a handle according to claim 2, wherein the preform blocking tray is disposed on the base plate through a support base.
14. The handle-orienting preform feeding mechanism for a bottle preform with a handle according to claim 3, wherein the preform blocking tray is disposed on the base plate through a support base.
15. The handle-orienting preform feeding mechanism for a bottle preform with a handle according to claim 5, wherein the preform blocking tray is disposed on the base plate through a support base.
16. The handle-orienting preform feeding mechanism for a bottle preform with a handle according to claim 2, further comprising a left preform feeding base and a right preform feeding base that are connected to and spaced apart on the base plate, wherein a gap between the left preform feeding base and the right preform feeding base forms the preform feeding channel.
17. The handle-orienting preform feeding mechanism for a bottle preform with a handle according to claim 3, further comprising a left preform feeding base and a right preform feeding base that are connected to and spaced apart on the base plate, wherein a gap between the left preform feeding base and the right preform feeding base forms the preform feeding channel.
18. The handle-orienting preform feeding mechanism for a bottle preform with a handle according to claim 5, further comprising a left preform feeding base and a right preform feeding base that are connected to and spaced apart on the base plate, wherein a gap between the left preform feeding base and the right preform feeding base forms the preform feeding channel.
19. The orienting preform feeding method for a bottle preform with a handle according to claim 9, wherein in step (3), when the plastic bottle preform rotates to an axial-rotation guard plate along with the preform engaging groove, an inner edge of the axial-rotation guard plate is engaged into a groove in the neck of the plastic bottle preform and is in contact with a wall of the groove so that a friction is generated between the plastic bottle preform and the axial-rotation guard plate to cause the plastic bottle preform to rotate on the axis of the plastic bottle preform until the handle of the plastic bottle preform is brought into contact with the stop pin.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0011]
[0012]
[0013]
DETAILED DESCRIPTION
[0014] As shown in
[0015] The handle positioning structure includes an arc-shaped through hole 19 disposed on the preform feeding tray 15. A stop pin 14 is disposed in the arc-shaped through hole 19 and is slidable relative to the arc-shaped through hole 19. The stop pin 14, when sliding to any position of the arc-shaped through hole 19, may be fastened thereto to fix the position of the stop pin 14 and thus orient the integrated handle 21 of the plastic bottle preform 18. A screw 13 is used for ensuring that the stop pin 14 is fixed in the arc-shaped through hole 19. The screw 13 penetrates through the arc-shaped through hole 19 from top to bottom and is screwed into the interior of the stop pin 14, with the head end stuck onto the upper surface of the arc-shaped through hole 19. The stop pin 14 can be locked or unlocked by rotating the screw 13.
[0016] A scale 22 is disposed on a side of the arc-shaped through hole 19 and on the preform feeding tray 15 to determine the sliding distance of the stop pin 14.
[0017] An axial-rotation guard plate 12 is disposed on the preform blocking tray 7. When the plastic bottle preform 18 is conveyed to the axial-rotation guard plate 12, the inner edge of the axial-rotation guard plate 12 is engaged into the groove in the neck of the plastic bottle preform 18 and is in contact with the wall of the groove. The contact between the axial-rotation guard plate 12 and the wall of the groove in the neck of the plastic bottle preform 18 further guarantees sufficient friction to drive the plastic bottle preform 18 to rotate.
[0018] An axial-rotation platen 9 is disposed on the axial-rotation guard plate 12. The axial-rotation platen 9 is connected to the preform blocking tray 15 through fasteners to press the axial-rotation guard plate 12 onto the preform blocking tray 15. The fasteners may be screws (a screw 8 and a screw 10 as shown, with a gasket 11 disposed between the screw 10 and the axial-rotation platen 9) or the like. The axial-rotation guard plate 12, made of relatively soft plastic materials, will be easily deformed if fixed onto the preform blocking tray 15 by screws directly. Accordingly, the axial-rotation platen 9 made of stainless steel is used for pressing the axial-rotation guard plate 12 onto the preform blocking tray 15 to avoid the deformation of the axial-rotation guard plate 12.
[0019] The preform blocking tray 15 is disposed on the base plate 1 through a support base 2. There may exist a plurality of support bases 2 that are disposed at intervals. The support base 2 may be adjusted in height, for example, in a telescopic rod structure or a two-section sleeve threaded connection structure. A support pad 20 is disposed at the bottom of the support base to increase the support strength.
[0020] The handle-orienting preform feeding mechanism for a bottle preform with a handle further includes a left preform feeding base 3 and a right preform feeding base 4 that are connected to and spaced apart on the base plate 1. A gap between the left preform feeding base 3 and the right preform feeding base 4 forms a preform feeding channel.
[0021] The preform blocking mechanism 5 is an air cylinder.
[0022] An orienting preform feeding method for a bottle preform with a handle includes the following steps: (1) causing the plastic bottle preform 18 with the handle 21 to enter the preform feeding channel continuously; (2) causing the preform blocking mechanism 5 to retract (when the bottle blowing stops, the preform blocking mechanism 5 stretches out to prevent the plastic bottle preform 18 from entering) during the bottle blowing process, conveying the plastic bottle preform 18 into the transmission gap through the preform feeding channel, and then engaging the neck of the plastic bottle preform 18 into one of the preform engaging grooves 17 on the preform feeding tray 15; (3) causing the plastic bottle preform 18 to rotate on the axis of the plastic bottle preform 18 when friction is applied to the neck of the plastic bottle preform 18 in the transmission gap, and stopping the plastic bottle preform 18 from rotating on the axis of the plastic bottle preform 18 when the handle 21 of the plastic bottle preform 18 is brought into contact with the handle positioning structure on the preform feeding tray 15; and (4) causing the preform feeding tray 15 to continue rotating and drive the plastic bottle preform 18 to rotate until the plastic bottle preform 18 is output from the preform feeding mechanism and enters the next process.
[0023] In step (1), before the plastic bottle preform 18 is conveyed, the position of the stop pin 14 relative to the arc-shaped through hole 19 is adjusted so that the orientation of the integrated handle 21 of the plastic bottle preform 18 is predetermined.
[0024] In step (3), when the plastic bottle preform 18 rotates to the axial-rotation guard plate 12 along with the preform engaging groove 17, the inner edge of the axial-rotation guard plate 12 is engaged into the groove in the neck of the plastic bottle preform 18 and is in contact with the wall of the groove so that the friction is generated between the plastic bottle preform 18 and the axial-rotation guard plate 12 to cause the plastic bottle preform 18 to rotate on the axis of the plastic bottle preform 18 until the integrated handle 21 of the plastic bottle preform 18 is brought into contact with the stop pin 14.