Claims
- 1. In an injection molding machine for the creation of molded articles, a hot runner subsystem comprising;
a generally plate like heated hot runner manifold having at least one primary melt channel disposed therein for the communication of a fluid, an adapter plate rigidly affixed to said manifold, said adapter plate having at least one first melt channel in fluid communication with said at least one primary melt channel, a mixer having an inlet and an exit, said inlet in fluid communication with said first melt channel, and said exit in fluid communication with a secondary melt channel.
- 2. The hot runner subsystem of claim 1, wherein said adapter plate is aligned with said manifold by at least one locator.
- 3. The hot runner subsystem of claim 2, wherein said at least one locator is one selected from the group consisting of a dowel pin, spring pin, clevis pin, spiral pin and threaded fastener.
- 4. The hot runner subsystem of claim 2, wherein said at least one locator is a raised area on said manifold that interfaces with said adapter plate.
- 5. The hot runner subsystem of claim 2, wherein said at least one locator is a raised area on said adapter plate that interfaces with said manifold.
- 6. The hot runner subsystem of claim 1, wherein said adapter plate is rigidly affixed to said manifold by at least one fastener.
- 7. The hot runner subsystem of claim 6, wherein said at least one fastener is one selected from the group consisting of a threaded fastener, rivet, pin, spike, stake, snap ring and e-ring.
- 8. The hot runner subsystem of claim 1, wherein said adapter plate is rigidly affixed to said manifold by one selected from the group consisting of welding, brazing and bonding.
- 9. The hot runner subsystem of claim 1, wherein said at least one first melt channel changes direction by substantially 180°.
- 10. The hot runner subsystem of claim 1, wherein said adapter plate further comprises at least one plug having a smooth surface in fluid communication with said at least one first melt channel.
- 11. The hot runner subsystem of claim 10, wherein said plug is rigidly affixed in said adapter plate by an additional threaded plug.
- 12. The hot runner subsystem of claim 10, wherein said plug is welded into said adapter plate.
- 13. The hot runner subsystem of claim 10, wherein said plug further comprises a tapered section.
- 14. The hot runner subsystem of claim 13, wherein said plug is rigidly affixed in said adapter plate by an additional threaded plug.
- 15. The hot runner subsystem of claim 13, wherein said plug is welded into said adapter plate.
- 16. The hot runner subsystem of claim 1, wherein said mixer is retained between said adapter plate and said manifold.
- 17. The hot runner subsystem of claim 1, wherein said secondary melt channel is in said manifold.
- 18. The hot runner subsystem of claim 1, wherein said secondary melt channel is in said adapter plate.
- 19. The hot runner subsystem of claim 1, wherein said mixer is retained in a bore located in said adapter plate.
- 20. The hot runner subsystem of claim 1, wherein said mixer is retained in a bore located in said manifold.
- 21. The hot runner subsystem of claim 1, wherein said mixer is retained in a bore of said manifold and a bore in said adapter plate.
- 22. The hot runner subsystem of claim 1, wherein said adapter plate is held in alignment with said manifold by said mixer.
- 23. The hot runner subsystem of claim 1, wherein said manifold further comprises an elongated plug for altering the path of said primary melt channel for communication of said fluid to said adapter plate.
- 24. The hot runner subsystem of claim 23, wherein said elongated plug is rigidly affixed to said manifold by a threaded plug.
- 25. The hot runner subsystem of claim 23, wherein said elongated plug is rigidly affixed to said manifold by one selected from the group consisting of welding, brazing and bonding.
- 26. The hot runner subsystem of claim 23, wherein said elongated plug is further comprised of a smooth surface on a face of said plug, said face being in fluid communication with said primary melt channel.
- 27. The hot runner subsystem of claim 1, wherein said mixer further comprises:
a mixer bushing having at least one spiral groove formed in an inner surface of said bushing for the communication of said fluid from said inlet to said exit, a series of lands formed between said at least one spiral groove, a torpedo having an elongated portion inserted in said bushing such that said fluid is forced to flow in said spiral groove for a predetermined distance.
- 28. The hot runner subsystem of claim 27, wherein a gradually increasing gap is formed between said lands and said torpedo in the direction of flow of said fluid.
- 29. The hot runner subsystem of claim 27, wherein said spiral groove decreases in cross-sectional area as it travels from said inlet to said exit.
- 30. The hot runner subsystem of claim 27, wherein said torpedo has an annular disk portion which abuts said mixer bushing.
- 31. The hot runner subsystem of claim 30, wherein said annular disk portion is affixed to said elongated portion of said torpedo by a plurality of spokes.
- 32. The hot runner subsystem of claim 30, wherein said annular disk portion is substantially co-axial to said mixer bushing.
- 33. The hot runner subsystem of claim 1, further comprising a backing plate removably affixed to said manifold, said backing plate having a pocket formed therein to fit around said adapter plate.
- 34. A method for modifying an existing hot runner manifold with at least one primary melt channel running therein for the installation of a mixer comprising the steps of;
forming a first melt channel in said manifold in fluid communication with said primary melt channel, affixing an adapter plate to said manifold, said adapter plate having a melt in fluid communication with said first melt channel and said mixer.
- 35. The method according to claim 34, further comprising the step of forming a bore in said adapter plate for insertion of said mixer.
- 36. The method according to claim 34, further comprising the step of forming a bore in said manifold for the insertion of said mixer.
- 37. The method according to claim 34, further comprising the steps of forming a bore in said adapter plate and said manifold for the insertion of said mixer.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This a Continuation-In-Part of co-pending application Ser. No. 09/605,763 filed Jun. 28, 2000 which is a Continuation-In-Part of co-pending application Ser. No. 09/435,965 filed Nov. 8, 1999. Both of which are incorporated herein by reference.
Continuation in Parts (2)
|
Number |
Date |
Country |
Parent |
09605763 |
Jun 2000 |
US |
Child |
09845399 |
Apr 2001 |
US |
Parent |
09435965 |
Nov 1999 |
US |
Child |
09605763 |
Jun 2000 |
US |