IP Library › Granted Patent US 7,510,387
Granted Patent B2
US 7,510,387 · App. 10/879,582 · Granted Mar 31, 2009

Control system for dynamic feed coinjection process

Assignee: Husky Injection Molding Systems Ltd.
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Quick Facts
Patent No.
US 7,510,387
App. No.
10/879,582
Granted
Mar 31, 2009
Kind
B2
Abstract

Coinjection molding system control apparatus and method preferably includes flow control structure and/or steps configured to reduce pressure on a second melt, preferably causing a relatively small portion of a first melt to flow from a distal portion of a first melt channel in the coinjection nozzle into a distal end of a second melt channel in the coinjection nozzle. This prevents substantial amounts of the second melt from being dragged into the mold cavity when the next shot of the first melt is injected.

Claims (29)

1. Coinjection molding system pressure control apparatus, comprising:

flow control structure configured to cause a first melt to flow from a first melt channel in a coinjection nozzle into a second melt channel in the coinjection nozzle after the first melt and the second melt have been injected into a cavity, wherein said flow control structure comprises:

a second melt shooting pot;

a second melt shooting pot piston; and

an actuation structure configured to move said second melt shooting pot piston in a direction which reduces the pressure on the second melt inside said second melt shooting pot.

2. Apparatus according to claim 1 , wherein said flow control structure is configured to cause the first melt to flow from the first melt channel of the coinjection nozzle, through a valve gate, and into the second melt channel in the coinjection nozzle.

3. Apparatus according to claim 1 , wherein said flow control structure is configured to cause a decompression of the second melt in a second hot runner manifold.

4. Apparatus according to claim 1 , wherein said flow control structure further comprises:

a valve stem; a valve stem piston;

a valve stem piston actuator; and

a controller configured to control said valve stem piston actuator and said actuation structure.

5. Apparatus according to claim 4 , further comprising the coinjection nozzle, which is configured to hold said valve stem.

6. A coinjection mold, comprising:

a mold cavity having a gate;

a coinjection nozzle having a first melt channel and a second melt channel, said coinjection nozzle being configured to (i) inject a first melt into said mold cavity through said mold gate and said first melt channel, and (ii) inject a second melt into said mold cavity through said mold gate and said second melt channel;

a valve stem configured to open and close said mold gate;

a first hot runner manifold configured to provide the first melt to said first melt channel;

a second hot runner manifold configured to provide the second melt to said second melt channel;

pressure reducing structure configured to reduce the pressure on the second melt in the second hot runner manifold before the first melt is injected into said mold cavity;

a first shooting pot configured to inject the first melt into the first hot runner manifold;

a first shooting pot piston configured to discharge the first melt from said first shooting pot;

a second shooting pot configured to inject the second melt into the second hot runner manifold; and

a second shooting pot piston configured to discharge the second melt from said second shooting pot, and wherein said pressure reducing structure reduces the pressure of the second melt in the second hot runner manifold by withdrawing the second shooting pot piston a predetermined distance from the second shooting pot.

7. A coinjection mold according to claim 6 , wherein pressure reducing structure is configured to reduce the pressure on the second melt in the second hot runner manifold to an extent that causes a portion of the first melt to flow into a portion of the second melt channel.

8. A coinjection mold according to claim 6 , wherein said pressure reducing structure reduces the pressure of the second melt in the second hot runner manifold after the second shooting pot has been charged and before it has been discharged by said second shooting pot piston.

9. A coinjection mold according to claim 8 , further comprising:

a first check valve configured to control a flow of the first melt from a first injection unit to said first hot runner manifold; and

a second check valve configured to control a flow of the second melt from a second injection unit to said second hot runner manifold, said second check valve being configured to prevent backflow of the second melt into said second injection unit when said pressure reducing structure reduces the pressure of the second melt in the second hot runner manifold.

10. A coinjection mold according to claim 9 , wherein said second check valve includes a valve occluding torpedo having a non-spherical shape.

Assignments (3)
RELEASE OF SECURITY AGREEMENT Recorded Jul 19, 2011
From: ROYAL BANK OF CANADA
To: HUSKY INJECTION MOLDING SYSTEMS LTD.
Reel/Frame 026647/0595 →
SECURITY AGREEMENT Recorded Jan 30, 2008
From: HUSKY INJECTION MOLDING SYSTEMS LTD.
To: ROYAL BANK OF CANADA
Reel/Frame 020431/0495 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 8, 2005
From: SICILIA, ROBERTO D.
To: HUSKY INJECTION MOLDING SYSTEMS LTD.
Reel/Frame 015686/0589 →
Continuity (1)
Related Publication 20060003040A1 · Jan 5, 2006