IP Library Granted Patent US 7,122,145
Granted Patent B2
US 7,122,145 · App. 10/892,397 · Granted Oct 17, 2006

Method and apparatus for distributing melt in a multi-level stack mold

Assignee: Mold-Masters Limited
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 7,122,145
App. No.
10/892,397
Granted
Oct 17, 2006
Kind
B2
Abstract

An improved melt distribution system and method is provided for a multi-level stack mold having three or more moving platens. The injection machine communicates with a bifurcated sprue bar for providing pressurized melt through the first moving platen to a central distribution manifold in the second moving platen. From the central distribution manifold, the flow of pressurized melt is distributed to the first and third platens for transfer to a plurality of mold cavities.

Claims (42)

1. A method of distributing pressurized melt in a multi-level stack mold comprising:

providing pressurized melt from a machine nozzle;

transferring the pressurized melt to a distribution manifold coupled to a second moving platen via a mechanically closeable sprue bar assembly;

distributing the pressurized melt to a first manifold in a first moving platen;

distributing the pressurized melt to an additional manifold in a third movable platen; and

injecting the pressurized melt into a plurality of mold cavities from said first manifold and said additional manifold.

2. The method of distributing pressurized melt in a multi-level stack mold according to claim 1 , wherein the pressurized melt is distributed from the distribution manifold to the first manifold through a mechanically closeable runner gate.

3. The method of distributing pressurized melt in a multi-level stack mold according to claim 1 , wherein the pressurized melt is distributed from the distribution manifold to the additional manifold through a mechanically closeable runner gate.

4. The method of distributing pressurized melt in a multi-level stack mold according to claim 1 , wherein the first manifold includes a first portion and a second portion and the pressurized melt is distributed from the distribution manifold to the first portion of the first manifold through a first mechanically closeable runner gate and pressurized melt is distributed from the distribution manifold to the second portion of the first manifold through a second mechanically closeable runner gate.

5. A method of distributing pressurized melt in a multi-level stack mold comprising the steps of:

providing pressurized melt from a machine nozzle;

transferring the pressurized melt to a distribution manifold coupled to a second moving platen via a sprue bar assembly;

distributing the pressurized melt from the distribution manifold to a first manifold in a first moving platen;

distributing the pressurized melt from the distribution manifold to an additional manifold in a third movable platen; and

injecting the pressurized melt into a plurality of mold cavities from said first manifold and said additional manifold,

wherein the pressurized melt is distributed from the distribution manifold to at least one of the first manifold and the additional manifold through a mechanically closeable runner gate.

6. The method of distributing pressurized melt in a multi-level stack mold according to claim 5 , wherein the pressurized melt is distributed from the distribution manifold to both the first manifold and the additional manifold through a mechanically closeable runner gate.

7. A multi-level stack mold comprising:

a mold having a stationary platen and at least a first, second and third moving platens defining a plurality of mold cavities therebetween, said first moving platen disposed between said stationary platen and said second moving platen, said mold moveable longitudinally between an open and a closed position;

a first manifold in said first moving platen, said first manifold in communication with at least one of said plurality of mold cavities;

an additional manifold in said third moving platen, said additional manifold in communication with at least one of said plurality of mold cavities; and

a distribution manifold disposed in said second moving platen and configured to communicate with said first manifold and said additional manifold,

a sprue bar assembly having a first sprue bar portion mounted to said stationary platen and a second sprue bar portion mounted to said second moving platen, said first sprue bar portion communicating with a molding machine nozzle and extending to a first mechanically closeable runner gate, said second sprue bar portion extending from a second closeable runner gate and communicating with said distribution manifold, said first runner gate configured to be in communication with said second runner gate.

8. The multi-level stack mold according to claim 6 , wherein said first manifold includes a first portion that communicates directly with said distribution manifold and a second portion that communicates directly with said distribution manifold.

9. The multi-level stack mold according to claim 8 , wherein said first portion of said first manifold communicates with said distribution manifold though a first control valve assembly and said second portion of said first manifold communicates with said distribution manifold through a second control valve assembly.

10. The multi-level stack mold according to claim 9 , wherein said first and second control valve assemblies include respective valve pins.

11. The multi-level stack mold according to claim 6 , further comprising:

a fourth movable platen, wherein said additional manifold is in communication with at least one cavity defined between said fourth movable platen and said third movable platen.

12. The multi-level stack mold according to claim 6 , wherein said first mechanically closeable runner gate includes a valve pin.

13. The multi-level stack mold according to claim 6 , wherein said second closeable runner gate includes a valve pin.

14. The multi-level stack mold according to claim 13 , wherein said valve pin includes an enlarged piston portion and said valve pin is configured to move such that said enlarged piston portion moves into and out of an enlarged portion of a melt channel that extends through the second spine bar portion, wherein said melt channel is at least partially restricted when said enlarged piston portion is out of said enlarged portion of the melt channel.

15. A multi-level stack mold comprising:

a mold having a stationary platen and at least a first, second and third moving platens defining a plurality of mold cavities therebetween, said first moving platen disposed between said stationary platen and said second moving platen, said mold moveable longitudinally between an open and a closed position;

a first manifold in said first moving platen, said first manifold in communication with at least one of said plurality of mold cavities;

an additional manifold in said third moving platen, said additional manifold in communication with at least one of said plurality of mold cavities; and

a distribution manifold disposed in said second moving platen and configured to communicate with said first manifold and said additional manifold,

a sprue bar assembly communicating with a molding machine nozzle and with said distribution manifold.

16. The multi-level stack mold according to claim 15 , wherein said first manifold includes a first portion that communicates directly with said distribution manifold and a second portion that communicates directly with said distribution manifold.

17. The multi-level stack mold according to claim 16 , wherein said first portion of said first manifold communicates with said distribution manifold through a first control valve assembly and said second portion of said first manifold communicates with said distribution manifold through a second control valve assembly.

18. The multi-level stack mold according to claim 17 , wherein said first and second control valve assemblies include respective valve pins.

19. The multi-level stack mold according to claim 15 , further comprising:

a fourth movable platen, wherein said additional manifold is in communication with at least one cavity defined between said fourth movable platen and said third movable platen.

Assignments (8)
SUPPLEMENTAL SECURITY AGREEMENT Recorded Oct 17, 2014
From: MOLD-MASTERS (2007) LIMITED
To: BANK OF AMERICA, N.A., AS COLLATERAL AGENT
Reel/Frame 034013/0738 →
RELEASE OF SECURITY INTEREST Recorded Apr 10, 2013
From: SOCIETE GENERALE, A CORPORATION OF FRANCE
To: MOLD-MASTERS LUXEMBOURG HOLDINGS S.A.R.L., A LIMITED LIABILITY COMPANY OF LUXEMBOURG; MOLD-MASTERS LUXEMBOURG ACQUISITIONS S.A.R.L., A LIMITED LIABILITY COMPANY OF LUXEMBOURG; 4437667 CANADA INC. A/K/A MOLD-MASTERS (2007) LIMITED, A CORPORATION OF CANADA
Reel/Frame 030192/0257 →
CHANGE OF NAME Recorded Feb 25, 2013
From: 4437667 CANADA INC.
To: MOLD-MASTERS (2007) LIMITED
Reel/Frame 029865/0890 →
SECURITY AGREEMENT Recorded Nov 29, 2007
From: 4437667 CANADA INC.
To: SOCIETE GENERALE
Reel/Frame 020174/0241 →
GENERAL ASSIGNMENT OF PATENTS Recorded Oct 12, 2007
From: MOLD MASTERS LIMITED
To: 4437667 CANADA INC.
Reel/Frame 019955/0213 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 27, 2005
From: INJECTIONEERING INC.
To: MOLD-MASTERS LIMITED
Reel/Frame 016686/0495 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 27, 2005
From: OLARU, GEORGE; BABIN, DENIS; DEWAR, NEIL
To: MOLD-MASTERS LIMITED
Reel/Frame 016686/0499 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 27, 2005
From: MATYSEK, PAUL
To: INJECTIONEERING INC.
Reel/Frame 016686/0733 →
Priority Claims (1)
CA 2271407 · May 10, 1999 · national
Continuity (3)
Continuation 1042092100 · Apr 23, 2003
Division 0956813000 · May 10, 2000
Related Publication 20050058743A1 · Mar 17, 2005