IP Library Granted Patent US 7,270,537
Granted Patent B2
US 7,270,537 · App. 11/351,243 · Granted Sep 18, 2007

Non-coaxial injection molding valve flow control

Assignee: Synventive Molding Solutions, Inc.
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Quick Facts
Patent No.
US 7,270,537
App. No.
11/351,243
Granted
Sep 18, 2007
Kind
B2
Abstract

In an injection molding machine having upstream and downstream channels communicating with each other for delivering fluid material to one or more mold cavities, apparatus for controlling delivery of the melt material from the channels to the one or more mold cavities, each channel having an axis, the downstream channel having an axis intersecting a gate of a cavity of a mold, the upstream channel having an axis not intersecting the gate and being associated with an upstream actuator interconnected to an upstream melt flow controller disposed at a selected location within the upstream channel, the apparatus comprising a sensor for sensing a selected condition of the melt material at a position downstream of the upstream melt flow controller; an actuator controller interconnected to the upstream actuator, the actuator controller comprising a computer interconnected to a sensor for receiving a signal representative of the selected condition sensed by the sensor, the computer including an algorithm utilizing a value indicative of the signal received from the sensor as a variable for controlling operation of the upstream actuator; wherein the upstream melt flow controller is adapted to control the rate of flow of the fluid material at the selected location within the upstream channel according to the algorithm.

Claims (24)

1. An injection molding system comprising: a manifold having a plurality of manifold melt channels for conveying a melt stream; a plurality of nozzles, wherein each nozzle has a nozzle melt channel fluidly connected to a respective manifold melt channel and an actuated valve pin having a terminal end disposed within a portion of said nozzle melt channel proximate to a mold gate and slidably positionable for controlling the flow of the melt stream into a mold cavity via the mold gate; and an actuated flow control pin having a flow control surface disposed upstream of the terminal end of said actuated valve pin that is slidably positionable for controlling the flow rate of the melt stream towards the mold gate, wherein said valve pin and said flow control pin are independently actuated.

2. The injection molding system of claim 1 , wherein the actuated flow control pin is disposed within the nozzle melt channel.

3. The injection molding system of claim 1 , wherein the actuated flow control pin is disposed within the manifold melt channel.

4. The injection molding system of claim 1 , wherein each nozzle is in fluid communication with a separate mold cavity.

5. The injection molding system of claim 4 , wherein each mold cavity is of substantially equal size.

6. The injection molding system of claim 4 , wherein at least one mold cavity is of a different size.

7. The injection molding system of claim 1 , wherein at least two nozzles are in fluid communication with a single mold cavity.

8. The injection molding system of claim 1 , wherein said actuated valve pin and said actuated flow control pin are actuated based on injection pressure information received from at least one pressure sensor.

9. The injection molding system of claim 8 , wherein said at least one pressure sensor is in communication with said nozzle melt channel.

10. The injection molding system of claim 8 , wherein said at least one pressure sensor is in communication with said mold cavity.

11. The injection molding system of claim 1 , wherein said flow control pin has a shaft portion and a terminal end, wherein said terminal end has a larger outer diameter than said shaft portion and includes said flow control surface.

12. The injection molding system of claim 1 , wherein at least one of said actuated valve pin and said actuated flow control pin are actuated based on temperature information received from at least one temperature sensor.

13. An injection molding apparatus comprising: a manifold having a manifold melt channel; a nozzle having a nozzle melt channel; a mold cavity having a mold gate to receive a molten material from said nozzle melt channel; a first actuated valve pin to control the flow of said molten material, said first actuated valve pin having a flow control surface configured to constrict the flow of said molten material; and a second actuated valve pin to further control the flow of said molten material from said nozzle melt channel into said mold cavity via said mold gate.

14. The injection molding apparatus of claim 13 , wherein said first actuated valve pin and said second actuated valve pin are independently movable and each has a downstream end located at least partially within said nozzle melt channel.

15. The injection molding apparatus of claim 13 , wherein said first actuated valve pin has a downstream end that is movable in said manifold melt channel and said second actuated valve pin has a downstream end that is movable in said nozzle melt channel.

16. The injection molding apparatus of claim 13 , wherein said first actuated valve pin and said second actuated valve pin are actuated based on injection pressure information received from at least one pressure sensor.

17. The injection molding apparatus of claim 16 , wherein said at least one pressure sensor is in communication with said nozzle melt channel.

18. The injection molding apparatus of claim 16 , wherein said at least one pressure sensor is located in said mold cavity.

19. The injection molding apparatus of claim 13 , wherein said second actuated valve pin is actuated along said nozzle melt channel.

20. The injection molding apparatus according to claim 14 , wherein said first actuated valve pin and said second actuated valve pin are movable along a common axis.

21. The injection molding apparatus of claim 13 , wherein said first actuated valve pin has a shaft portion and a terminal end, wherein said terminal end has a larger outer diameter than said shaft portion and includes said flow control surface.

22. The injection molding apparatus of claim 13 , wherein said flow control surface of said first actuated valve pin constricts the flow of said molten material when positioned within a portion of said nozzle melt channel having a complementary shape to that of said flow control surface.

23. The injection molding apparatus of claim 15 , wherein said flow control surface is on the downstream end of said first actuated valve pin to constrict the flow of said molten material when positioned within a portion of said manifold melt channel having a complementary shape to that of said flow control surface.

24. The injection molding apparatus of claim 14 , wherein said second actuated valve pin is actuated laterally with respect to said first actuated valve pin.

Assignments (7)
RELEASE OF SECURITY INTEREST Recorded Jan 31, 2025
From: BANK OF AMERICA, N.A., AS COLLATERAL AGENT
To: BARNES GROUP INC.; SYNVENTIVE MOLDING SOLUTIONS, INC.
Reel/Frame 070078/0168 →
NOTICE OF GRANT OF SECURITY INTEREST IN PATENTS Recorded Sep 19, 2023
From: BARNES GROUP INC.; SYNVENTIVE MOLDING SOLUTIONS, INC.
To: BANK OF AMERICA, N.A., AS COLLATERAL AGENT
Reel/Frame 064950/0142 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 15, 2012
From: GALATI, VITO; FIRISIN, WESLEY D.
To: SYNVENTIVE MOLDING SOLUTIONS, INC.
Reel/Frame 028788/0515 →
CHANGE OF NAME Recorded Aug 14, 2012
From: KONA CORPORATION
To: DYNISCO HOTRUNNERS, INC.
Reel/Frame 028785/0974 →
MERGER Recorded Aug 14, 2012
From: DYNISCO HOTRUNNERS, INC.
To: SYNVENTIVE MOLDING SOLUTIONS, INC.
Reel/Frame 028784/0600 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 14, 2012
From: DOYLE, MARK
To: KONA CORPORATION
Reel/Frame 028786/0216 →
SUPPLEMENTAL PATENT SECURITY AGREEMENT (FIRST SUPPLEMENTAL FILING) Recorded Jan 17, 2008
From: SYNVENTIVE MOLDING SOLUTIONS, INC.
To: THE ROYAL BANK OF SCOTLAND PLC, AS COLLATERAL AGENT
Reel/Frame 020385/0220 →
Continuity (3)
Continuation 1032845700 · Dec 23, 2002
Provisional Application 6039940900 · Jul 31, 2002
Related Publication 20060127527A1 · Jun 15, 2006