IP Library › Granted Patent US 10,940,622
Granted Patent B2
US 10,940,622 · App. 15/953,904 · Granted Mar 9, 2021

Valve pin position and velocity control method and apparatus

Inventors: Vito Galati (Rowley, MA); Lin Yang (Lynnfield, MA)
Assignee: Synventive Molding Solutions, Inc.
B29C45/7613B29C45/281B29C2045/2824B29C2045/2865B29C2945/76083B29C2945/76551B29C2945/76568
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Quick Facts
Patent No.
US 10,940,622
App. No.
15/953,904
Granted
Mar 9, 2021
Kind
B2
Abstract

Injection molding system having a flow control apparatus and method that controls the movement and/or rate of movement of a valve pin over the course of an injection cycle to cause the pin to move to one or select positions and/or to control the rate of movement of the pin over the course of the injection cycle. In one embodiment the method includes steps of: a) first controllably operating the actuator to drive the valve pin upstream beginning from the first closed position ( 50 ) to be moved to and held in a first selected position ( 51 ) for a first selected period of time during the course of an injection cycle, the first selected position ( 51 ) being the full open position; b) second controllably operating the actuator to drive the valve pin, during the injection cycle, downstream beginning from the first selected position ( 51 ) to be moved to and held in a second closed position ( 52 ) for a second selected period of time; c) third controllably operating the actuator to drive the valve pin, during the injection cycle, upstream beginning from the second closed position ( 52 ) to be moved to and held in a second selected position ( 53 ) for a third selected period of time, the second selected position being an intermediate position or the full open position; and d) fourth controllably operating the actuator to drive the valve pin, during the injection cycle, downstream beginning from the second selected position ( 53 ) to be moved to a third closed position ( 54 ).

Claims (22)

1. A method of performing an injection molding cycle in an injection molding apparatus ( 10 ) comprising a manifold ( 40 ) that receives an injection fluid (F), the manifold distributing the injection fluid to a fluid delivery channel ( 44 ) that delivers the injection fluid under an injection pressure to a gate ( 34 ) of a mold cavity ( 30 ), and a valve pin ( 1041 ) having an axis (A) and a tip end ( 1142 ), the valve pin being slidably mounted for movement along the axis (A) within the fluid delivery channel ( 44 ),

the valve pin being drivably interconnected to an actuator ( 941 ) in an arrangement wherein the actuator is adapted to drive the valve pin ( 1041 ) upstream and downstream along the axis (A) and drive the tip end ( 1142 ) of the valve pin upstream and downstream between a first closed position (GC) where the tip end of the valve pin obstructs the gate ( 34 ) to prevent the injection fluid from flowing into the cavity ( 30 ), a full open position (FOP) where the injection fluid material flows freely without restriction from the tip end of the pin through the gate, and one or more intermediate positions (RP, RP 3 ) between the first closed position and the full open position wherein the tip end of the valve pin restricts flow of the injection fluid along at least a portion of the length of the drive path extending between the first closed position and the intermediate position,

the method comprising steps of:

a) first controllably operating the actuator to drive the valve pin upstream beginning from the first closed position ( 50 ) to be moved to and held in a first selected position ( 51 ) for a first selected period of time during the course of an injection cycle, the first selected position ( 51 ) being the full open position, wherein the valve pin is driven upstream from the first closed position ( 50 ) to the first selected position ( 51 ) at a maximum rate of travel at which the actuator is capable of driving the valve pin;

b) second controllably operating the actuator to drive the valve pin, during the injection cycle, downstream beginning from the first selected position ( 51 ) to be moved to and held in a second closed position ( 52 ) for a second selected period of time, wherein the drive pin is driven downstream from the first selected position ( 51 ) to the second closed position ( 52 ) at a maximum rate of travel at which the actuator is capable of driving the valve pin;

c) third controllably operating the actuator to drive the valve pin, during the injection cycle, upstream beginning from the second closed position ( 52 ) to be moved to and held in a second selected position ( 53 ) for a third selected period of time, the second selected position being an intermediate position or the full open position, wherein the valve pin is driven upstream from the second closed position ( 52 ) to the second selected position ( 53 ) at a reduced rate which is less than the maximum rate of travel at which the actuator is capable of driving the valve pin for at least a portion of the upstream travel from the second closed position ( 52 ) to the second selected position ( 53 ); and

d) fourth controllably operating the actuator to drive the valve pin, during the injection cycle, downstream beginning from the second selected position ( 53 ) to be moved to a third closed position ( 54 ).

2. A method according to claim 1 , wherein the second selected position ( 53 ) is an intermediate position.

3. A method according to claim 1 , wherein the second selected position ( 53 ) is the full open position.

4. A method according to claim 1 , wherein step d) comprises driving the valve pin downstream from the second selected position ( 53 ) to the third closed position ( 54 ) at a maximum rate of travel at which the actuator is capable of driving the valve pin.

5. A method according to claim 1 , wherein the second selected position ( 53 ) in which the valve pin is held is a position at which pressure of the injection fluid is a pack pressure.

6. An injection molding apparatus ( 10 ) comprising a manifold ( 40 ) that receives an injection fluid (F) from an injection molding machine, the manifold distributing the injection fluid to a fluid delivery channel ( 44 ) that delivers the injection fluid under an injection pressure to a gate ( 32 ) of a mold cavity ( 30 ), and a valve pin ( 1041 ) having an axis (A) and a tip end ( 1142 ), the valve pin being slidably mounted for movement along the axis (A) within the fluid delivery channel ( 44 ),

wherein the valve pin ( 1041 ) is interconnected to an actuator ( 941 ) in an arrangement wherein the actuator is adapted to drive the valve pin ( 1041 ) upstream and downstream along the axis and to drive the tip end ( 1142 ) of the valve pin upstream and downstream between a first closed position (GC) where the tip end of the valve pin obstructs the gate to prevent the injection fluid from flowing into the cavity, a full open position (FOP) where the injection fluid material flows freely without restriction from the tip end of the pin through the gate, and one or more intermediate positions (RP, RP 2 ) between the first closed position and the full open position wherein the tip end of the valve pin restricts flow of the injection fluid along at least a portion of the length of the drive path extending between the first closed position and the intermediate position,

the apparatus including a controller ( 16 ) with instructions to first controllably operate the actuator to drive the valve pin upstream beginning from the first closed position ( 50 ) to be moved to and held in a first selected position ( 51 ) for a first selected period of time during the course of an injection cycle, the first selected position ( 51 ) being the full open position, wherein the instructions to the first controllably operate comprise instructions to drive the valve pin upstream from the first closed position ( 50 ) to the first selected position ( 51 ) at a maximum rate of travel at which the actuator is capable of driving the valve pin;

the controller including instructions to second controllably operate the actuator to drive the valve pin, during the injection cycle, downstream beginning from the first selected position ( 51 ) to be moved to and held in a second closed position ( 52 ) for a second selected period of time, wherein the instructions to second controllably operate comprise instructions to drive the valve pin downstream from the first selected position ( 51 ) to the second closed position ( 52 ) at a maximum rate of travel at which the actuator is capable of driving the valve pin;

the controller including instructions to third controllably operate the actuator to drive the valve pin, during the injection cycle, upstream beginning from the second closed position ( 52 ) to be held in a second selected position ( 53 ) for a third selected period of time, the second selected position ( 53 ) being an intermediate position or the full open position, wherein instructions to third controllably operate comprise instructions to drive the valve pin upstream from the second closed position ( 52 ) to the second selected position ( 53 ) at a reduced rate which is less than the maximum rate of travel at which the actuator is capable of driving the valve pin for at least a portion of the upstream travel from the second closed position ( 52 ) to the second selected position ( 53 );

the controller including instructions to fourth controllably operate the actuator to drive the valve pin, during the injection cycle, downstream beginning from the second selected position ( 53 ) to a third closed position ( 54 ).

7. An apparatus according to claim 6 , wherein the second selected position ( 53 ) is an intermediate position.

8. An apparatus according to claim 6 , wherein the second selected position ( 53 ) is the full open position.

9. An apparatus according to claim 6 , wherein the instructions to fourth controllably operate comprise instructions to drive the valve pin downstream from the second selected position ( 53 ) to the third closed position ( 54 ) at a maximum rate of travel at which the actuator is capable of driving the valve pin.

10. An apparatus according to claim 6 , wherein the second selected position ( 53 ) in which the valve pin is held is a position at which pressure of the injection fluid is a pack pressure.

11. An apparatus according to claim 6 , wherein the actuator comprises an electrically powered motor or electric motor or a hydraulic or pneumatic actuator.

Assignments (6)
SECURITY INTEREST Recorded Oct 24, 2025
From: SYNVENTIVE MOLDING SOLUTIONS, INC.; BG MC US HOLDINGS, LLC
To: WILMINGTON TRUST, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 073256/0254 →
RELEASE OF SECURITY INTEREST Recorded Oct 22, 2025
From: WILMINGTON TRUST, NATIONAL ASSOCIATION
To: SYNVENTIVE MOLDING SOLUTIONS, INC.; BARNES GROUP INC.
Reel/Frame 073156/0869 →
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 (FIRST LIEN) Recorded Jan 28, 2025
From: SYNVENTIVE MOLDING SOLUTIONS, INC.
To: WILMINGTON TRUST, NATIONAL ASSOCIATION
Reel/Frame 070031/0121 →
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 May 18, 2018
From: GALATI, VITO; YANG, LIN
To: SYNVENTIVE MOLDING SOLUTIONS, INC.
Reel/Frame 045841/0398 →
Continuity (3)
Continuation PCTUS2015023229 · Mar 20, 2018
Provisional Application 62473681 · Mar 20, 2017
Related Publication 20180264701A1 · Sep 20, 2018