Claims
- 1. Apparatus for cooling a plurality of plastic articles formed in respective molds during at least two consecutive molding cycles, the plurality of plastic articles loadable into the apparatus from a fixed registration position for each mold, the apparatus comprising:
a) a rotatable cooling turret block having an axis of rotation and at least:
i) a first plurality of cooling structures configured to hold, in use, a first plurality of molded plastic articles formed in a first molding cycle; and ii) a second plurality of cooling structures configured to hold, in use, a second plurality of molded plastic articles formed in a different molding cycle to the first molding cycle; b) a drive assembly coupled to the rotatable cooling turret block to cause, in use, the rotatable cooling turret block to rotate about the axis of rotation, the drive assembly further configured to cause linear displacement of the rotatable cooling turret block in a direction substantially parallel to the axis of rotation, whereby the linear displacement causes the first plurality of cooling structures and then the second plurality of cooling structures to be presentable to and aligned with the fixed registration position for receipt, in use, of molded articles thereinto :
- 2. Apparatus according to claim 1, further comprising a complementary cooling station located adjacent said rotatable cooling turret block, wherein the drive assembly, upon causing rotation of the rotatable cooling turret block, causes the first and second pluralities of cooling structures to be presented together to the complementary cooling station.
- 3. Apparatus according to claim 2, wherein the complementary cooling station is configured to deliver, in use, a flow of cooling fluid into an interior of molded articles held within the first and second pluralities of cooling structures.
- 4. Apparatus for cooling a plurality of plastic articles disposed in/on a plurality of mold portions, comprising:
a cooling device having (i) a first plurality of cooling structures configured to hold a first plurality of molded plastic articles, and (ii) a second plurality of cooling structures configured to hold a second plurality of molded plastic articles; a cooling station disposed adjacent said cooling device and configured to provide a cooling fluid to an interior of the first and second pluralities of molded articles inside the respective first and second pluralities of cooling structures; and movement structure configured to (i) provide a first movement to cause relative movement between said cooling device and the mold portions to cause the first and second pluralities of molded articles inside the respective first and second pluralities of cooling structures to be presented to said cooling station, and (ii) provide a second movement, different from the first movement, to alternately cause the first plurality of cooling structures and then the second plurality of cooling structures to be presented to the plurality of mold portions.
- 5. Apparatus according to claim 4, wherein said movement structure provides the first movement as a rotary movement and the second movement as a linear movement parallel to an axis of the rotary movement.
- 6. Apparatus according to claim 4, wherein said movement structure causes the first plurality of molded articles to be rotated more than 360 degrees with respect to the plurality of mold portions.
- 7. Apparatus according to claim 4, wherein said movement structure causes the first plurality of molded articles to be held in said cooling device for at least four cycles of a molding operation of the plurality of mold portions.
- 8. Apparatus according to claim 4, wherein said movement structure causes one cooling cycle of said cooling device to be substantially equal to four molding cycles of the plurality of mold portions.
- 9. Apparatus according to claim 4, wherein said cooling station is configured to provide a cooling fluid to a distal tip of the interior of the first and second pluralities of molded articles inside the respective first and second pluralities of cooling structures.
- 10. Apparatus according to claim 4, wherein said cooling station is configured to provide a pressurized cooling fluid to the interior of the first and second pluralities of molded articles inside the respective first and second pluralities of cooling structures.
- 11. Apparatus according to claim 4, further comprising blower structure coupled to said cooling device and configured to provide cooling air to exteriors of the plurality of plastic articles disposed in/on a plurality of mold portions.
- 12. Apparatus according to claim 4, wherein said first plurality of cooling structures comprises a first plurality of rows of cooling tubes, and wherein said second plurality of cooling structures comprises a second plurality of rows of cooling tubes which are interleaved with the first plurality of rows of cooling tubes.
- 13. An injection molding machine, comprising:
a mold cavity half having a plurality of mold cavities; a mold core half having a plurality of mold cores corresponding to said plurality of mold cavities; mold movement structure for causing relative movement between said mold cavity half and said mold core half to cause a plurality of molded articles to be extracted from said plurality of mold cavities during each of a plurality of mold cycles; a cooling device movable with respect to said mold core half and having a plurality of cooling tubes to hold the plurality of molded articles extracted from said plurality of mold cavities; and cooling device movement structure coupled to said cooling device and configured to maintain the plurality of molded articles in said plurality of cooling tubes for a time period exceeding two of the mold cycles.
- 14. An injection molding machine according to claim 13, wherein said cooling device movement structure moves said cooling device in a rotary direction and in a direction parallel to an axis of the rotary motion.
- 15. An injection molding machine according to claim 14, wherein said cooling device has a first row of cooling tubes and an adjacent second row of cooling tubes, and wherein said cooling device movement structure moves said cooling device such that (i) the first plurality of cooling tubes receives a first plurality of molded articles from said mold core half in a first mold cycle, and (ii) the second plurality of cooling tubes receives a second plurality of molded articles from said mold core half in a first mold cycle, said cooling device movement structure moving said cooling device in the direction parallel to the axis of the rotary motion between the first and second mold cycles.
- 16. An injection molding machine according to claim 15, wherein said cooling device movement structure moves said cooling device in a rotary direction for more than 360 degrees while the first plurality of cooling tubes holds the first plurality of molded articles.
- 17. An injection molding machine according to claim 16, further comprising a blower configured to blow cooling air onto the first plurality of molded articles before they are received in said first plurality of cooling tubes.
- 18. An injection molding machine according to claim 17, further comprising a cooling station disposed adjacent said cooling device and configured to supply cooling fluid to an interior of said first plurality of molded articles after said cooling device movement structure rotates said cooling device in a direction away from said mold core half.
- 19. An injection molding machine according to claim 18, further comprising cooling station movement structure configured to cause relative movement between said cooling device and said cooling station.
- 20. Apparatus for moving a cooling turret with respect to a plastic injection molding machine portion, comprising:
linear movement structure configured to cause the cooling turret and the plastic injection molding machine portion to move relatively toward and away from each other; rotary movement structure configured to cause relative rotational movement between the cooling turret and the plastic injection molding machine portion; and axial movement structure configured to cause relative axial movement between the cooling turret and the plastic injection molding machine portion.
- 21. Apparatus according to claim 20, further comprising a cooling turret having first and second interleaved rows of cooling tubes disposed on each of two cooling turret faces, and wherein said axial movement structure moves the cooling turret to alternately present the first and second interleaved rows of cooling tubes disposed on each of the two cooling turret faces to a row of mold cores on the molding machine portion.
- 22. Apparatus according to claim 21, further comprising a cooling station having a plurality of cooling structures which respectively correspond to both the first and second rows of cooling tubes, and wherein said rotary movement structure rotates the cooling turret to present the first and second rows of cooling tubes to the plurality of cooling structures.
- 23. Cooling apparatus for a plastic injection molding machine having a plurality of mold cores disposed in at least one row, comprising:
a post mold cooling device moveable with respect to the plurality of mold cores; a rotatable cooling turret coupled to said post mold cooling device and having two faces, each face having at least first and second rows of cooling tubes; a cooling station coupled to said post mold cooling device and having a plurality of cooling probes configured to project a cooling fluid to an interior of molded articles inside both the first and second rows of cooling tubes of one of the faces of said cooling turret; first movement structure configured to cause said post mold cooling device to move toward and away from the plurality of mold cores; second movement structure configured to cause said cooling station to move toward and away from said cooling turret; third movement structure configured to cause said cooling turret to rotate to alternately present the first and second cooling turret faces to said cooling station; and fourth movement structure configured to cause said cooling turret to move axially with respect to its axis of rotation to alternately present the first row of cooling tubes and then the second rows of cooling tubes of a cooling turret face to the row of mold cores.
- 24. A method of cooling a row of molded articles molded on a row of mold cores, comprising the steps of:
transferring the row of molded articles to a first row of cooling tubes disposed on a cooling device; moving the row of molded articles in the first row of cooling tubes to a cooling station; at the cooling station, injecting a cooling fluid into the interior of each molded article in the row of molded articles; moving the row of molded articles to a position away from the cooling station; moving the row of molded articles back to the cooling station; at the cooling station, once again injecting a cooling fluid into the interior of each molded article in the row of molded articles; and moving the row of molded articles to an ejection station.
- 25. A method according to claim 24, wherein the step of moving the row of molded articles to a position away from the cooling station comprises the step of further moving the row of molded articles to a position adjacent the row of mold cores.
- 26. A method according to claim 25, wherein the step of further moving the row of molded articles to a position adjacent the row of mold cores includes the further step of transferring another row of molded articles to a second row of cooling tubes disposed on the cooling device.
- 27. A method according to claim 26, wherein the moving steps comprise rotary movement, and wherein the further movement step comprises axial movement.
Parent Case Info
[0001] This is a Continuation-In-Part of co-pending U.S. patent application Ser. No. 10/147,360, filed May 17, 2002, which is incorporated herein by reference.
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
10147360 |
May 2002 |
US |
Child |
10351596 |
Jan 2003 |
US |