IP Library Patent Application 11685820
Patent Application
App. No. 11/685,820

Hydraulic Valve of Molding System

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Quick Facts
Patent No.
US None
App. No.
11/685,820
Abstract

Disclosed is: (i) a molding system having a hydraulic valve, (ii) a molding system having: (a) an extruder, (b) a hydraulic circuit, and (c) a hydraulic valve, (iii) a hydraulic valve of a molding system, (iv) a method of a molding system having a hydraulic valve, and (v) a valve controller performing a method of a molding system having a hydraulic valve. The hydraulic valve includes: (i) a valve sleeve that is configured to convey a pressurized hydraulic fluid, and (ii) a valve spool that is movable relative to the valve sleeve, once the valve spool is made to move from a valve-closed position to a valve-opened position, the valve spool is imparted with a running start before the pressurized hydraulic fluid is permitted to flow out of the valve sleeve.

Claims (129)

1 . A molding system, comprising:

a hydraulic valve, including:

a valve sleeve being configured to convey a pressurized hydraulic fluid; and

a valve spool being movable relative to the valve sleeve, once the valve spool is made to move from a valve-closed position to a valve-opened position, the valve spool is imparted with a running start before the valve spool permits flow of the pressurized hydraulic fluid from the valve sleeve.

2 . A molded article manufactured by the molding system of claim 1 .

3 . The molding system of claim 1 , wherein the valve sleeve defines a passageway extending between a first port to a second port.

4 . The molding system of claim 1 , wherein the valve spool includes:

an end face, the valve spool being slidably sealable along a passageway extending between a first port to a second port defined by the valve sleeve, once the valve spool is made to move along the passageway from the valve-closed position to the valve-opened position, the end face obtains the running start before the pressurized hydraulic fluid is permitted to flow between the first port and the second port.

5 . The molding system of claim 1 , wherein the valve spool includes:

an end face, the valve spool being slidably sealable along a passageway extending between a first port to a second port defined by the valve sleeve, once the valve spool is made to move along the passageway from the valve-closed position to the valve-opened position, the end face obtains the running start before the pressurized hydraulic fluid is permitted to flow between the first port and the second port, and

in the valve-closed position, the valve spool blocks flow of the pressurized hydraulic fluid between the first port and the second port, and the end face is offset from the second port.

6 . The molding system of claim 1 , wherein:

the valve spool includes:

an end face, the valve spool being slidably sealable along a passageway extending between a first port to a second port defined by the valve sleeve, once the valve spool is made to move along the passageway from the valve-closed position to the valve-opened position, the end face obtains the running start before the pressurized hydraulic fluid is permitted to flow between the first port and the second port; and

the molding system further comprises:

a hydraulic circuit configured to provide the pressurized hydraulic fluid to the first port; and

a hydraulic actuator configured to actuate responsive to receiving the pressurized hydraulic fluid from the second port.

7 . The molding system of claim 1 , wherein:

the valve spool includes:

an end face, the valve spool being slidably sealable along a passageway extending between a first port to a second port defined by the valve sleeve, once the valve spool is made to move along the passageway from the valve-closed position to the valve-opened position, the end face obtains the running start before the pressurized hydraulic fluid is permitted to flow between the first port and the second port; and

the molding system further comprises:

a hydraulic circuit configured to provide the pressurized hydraulic fluid to the first port; and

a hydraulic actuator configured to actuate responsive to receiving the pressurized hydraulic fluid from the second port, the hydraulic actuator being configured to move a screw of an extruder.

8 . The molding system of claim 1 , wherein:

the valve spool includes:

an end face, the valve spool being slidably sealable along a passageway extending between a first port to a second port defined by the valve sleeve, once the valve spool is made to move along the passageway from the valve-closed position to the valve-opened position, the end face obtains the running start before the pressurized hydraulic fluid is permitted to flow between the first port and the second port; and

the molding system further comprises:

a hydraulic circuit configured to provide the pressurized hydraulic fluid to the second port; and

a hydraulic actuator configured to actuate responsive to receiving the pressurized hydraulic fluid from the first port.

9 . The molding system of claim 1 , wherein:

the valve spool includes:

an end face, the valve spool being slidably sealable along a passageway extending between a first port to a second port defined by the valve sleeve, once the valve spool is made to move along the passageway from the valve-closed position to the valve-opened position, the end face obtains the running start before the pressurized hydraulic fluid is permitted to flow between the first port and the second port; and

the molding system further comprises:

a hydraulic circuit configured to provide the pressurized hydraulic fluid to the second port; and

a hydraulic actuator configured to actuate responsive to receiving the pressurized hydraulic fluid from the second port, the hydraulic actuator being configured to move a screw of an extruder.

10 . The molding system of claim 1 , wherein the valve spool includes:

an end face, the valve spool being slidably sealable along a passageway extending between a first port to a second port defined by the valve sleeve, once the valve spool is made to move along the passageway from the valve-closed position to the valve-opened position, the end face obtains the running start before the pressurized hydraulic fluid is permitted to flow between the first port and the second port, and

once the end face passes by, at least in part, the second port, the pressurized hydraulic fluid may flow from the first port to the second port.

11 . The molding system of claim 1 , wherein the valve spool includes:

an end face, the valve spool being slidably sealable along a passageway extending between a first port to a second port defined by the valve sleeve, once the valve spool is made to move along the passageway from the valve-closed position to the valve-opened position, the end face obtains the running start before the pressurized hydraulic fluid is permitted to flow between the first port and the second port, and

once the end face passes by, at least in part, the first port, the pressurized hydraulic fluid may flow from the second port to the first port.

12 . The molding system of claim 1 , wherein:

the valve sleeve defines a passageway extending between a first port to a second port,

the first port is configured to receive, in use, the pressurized hydraulic fluid from a hydraulic circuit,

the passageway is configured to receive, in use, the pressurized hydraulic fluid from the first port to the second port, and

the second port is configured to: (i) couple to a hydraulic actuator, the hydraulic actuator being configured to operatively couple to a screw being disposed in an extruder, and convey the pressurized hydraulic fluid to the hydraulic actuator.

13 . The molding system of claim 1 , wherein:

the valve sleeve defines a passageway extending between a first port to a second port,

the second port is configured to receive, in use, the pressurized hydraulic fluid from a hydraulic circuit,

the passageway is configured to receive, in use, the pressurized hydraulic fluid from the second port to the first port, and

the first port is configured to: (i) couple to a hydraulic actuator, the hydraulic actuator being configured to operatively couple to a screw being disposed in an extruder, and convey the pressurized hydraulic fluid to the hydraulic actuator.

14 . The molding system of claim 1 , wherein:

the valve spool includes an end face, and

the valve sleeve and the end face of the valve spool define a face seal.

15 . The molding system of claim 1 , wherein:

the valve spool includes an end face,

the valve sleeve and the end face of the valve spool define a face seal, and

the valve sleeve and the valve spool include a sliding seal.

16 . The molding system of claim 1 , wherein:

the valve spool includes an end face,

the valve sleeve and the end face of the valve spool define a face seal,

the valve sleeve and the valve spool include a sliding seal,

in the valve-closed position, the valve sleeve abuts the end face of the valve spool at the face seal, and

in the valve-opened position, the end face of the valve spool is offset from the face seal.

17 . The molding system of claim 1 , wherein:

the valve spool includes:

a spigot having an end face.

18 . The molding system of claim 1 , wherein:

the valve spool includes:

a spigot having an end face; and

the valve sleeve includes:

a spigot-receiving space configured to sealably receive the spigot, and the end face of the valve spool defines a face seal.

19 . The molding system of claim 1 , wherein:

the valve spool includes:

a spigot having an end face; and

the valve sleeve includes:

a spigot-receiving space configured to sealably receive the spigot, the end face of the valve spool defines a face seal, and the spigot and the spigot-receiving space define a spigot sliding seal.

20 . The molding system of claim 1 , wherein:

the valve spool includes:

a spigot having an end face, and

the valve sleeve includes:

a spigot-receiving space configured to sealably receive the spigot, and

the end face of the valve spool defines a face seal, the face seal includes:

a sleeve face seat on an inner surface of the valve sleeve; and

a spool face seat on an outer surface of the spigot.

21 . The molding system of claim 1 , wherein:

the valve spool includes:

a spigot having an end face; and

the valve sleeve includes:

a spigot-receiving space configured to sealably receive the spigot,

the end face of the valve spool defines a face seal, the face seal includes:

a sleeve face seat on an inner surface of the valve sleeve; and

a spool face seat on an outer surface of the spigot, and

the spigot and the spigot-receiving space define a spigot sliding seal.

22 . A molding system, comprising:

an extruder, including:

a hopper configured to receive a moldable material;

a feed throat connecting to the hopper so as to receive the moldable material from the hopper;

a barrel defining a channel, the channel connecting to the feed throat so that the channel may receive the moldable material from the feed throat;

a screw being placed in the channel;

a hydraulic actuator connecting to the screw, the hydraulic actuator configured to move the screw so that the moldable material is converted into an injectable molding material;

a hydraulic circuit configured to provide a pressurized hydraulic fluid; and

a hydraulic valve, including:

a valve sleeve being configured to convey the pressurized hydraulic fluid from the hydraulic circuit to the hydraulic actuator; and

a valve spool being movable relative to the valve sleeve, once the valve spool is made to move from a valve-closed position to a valve-opened position, the valve spool is imparted with a running start before the valve spool permits flow of the pressurized hydraulic fluid from the valve sleeve.

23 . The molding system of claim 22 , further comprising:

a clamp assembly, including:

a stationary platen configured to support a stationary mold portion of a mold assembly;

a movable platen configured to support a hot runner, the hot runner configured to connect to a movable mold portion of the mold assembly, the movable platen being movable relative to the stationary platen so as to close the movable mold portion relative to the stationary mold portion, and the movable mold portion and the stationary mold portion define a mold cavity once the movable mold portion and the stationary mold portion are made to abut each other;

tie bars extending from the stationary platen to the movable platen, the tie bars being fixedly attached relative to the stationary platen, and the tie bars being lockable relative to the movable platen;

clamps configured to impart a clamping force to the movable platen and to the stationary platen once the tie bars have been locked to the movable platen; and

a machine nozzle connects the extruder to the hot runner so that the injectable molding material may flow from the extruder, through the hot runner and into the mold cavity.

24 . The molding system of claim 22 , further comprising:

a clamp assembly, including:

a stationary platen configured to support a stationary mold portion of a mold assembly;

a movable platen configured to support a movable mold portion of the mold assembly, the movable platen being movable relative to the stationary platen so as to close the movable mold portion relative to the stationary mold portion, and the movable mold portion and the stationary mold portion define a mold cavity once the movable mold portion and the stationary mold portion are made to abut each other;

tie bars extending from the stationary platen to the movable platen, the tie bars being fixedly attached relative to the stationary platen, and the tie bars being lockable relative to the movable platen;

clamps configured to impart a clamping force to the movable platen and to the stationary platen once the tie bars have been locked to the movable platen; and

a machine nozzle connects the extruder to the movable mold portion so that the injectable molding material may flow from the extruder to the mold cavity.

25 . A molded article manufactured by the molding system of claim 22 .

26 . A method of a molding system having a hydraulic valve including: (i) a valve sleeve being configured to convey a pressurized hydraulic fluid, and (ii) a valve spool being movable relative to the valve sleeve, the method, comprising:

an operation of moving the valve spool from a valve-closed position to a valve-opened position, the valve spool is imparted with a running start before the valve spool permits flow of the pressurized hydraulic fluid from the valve sleeve.

27 . A molded article manufactured by the method of claim 26 .

28 . A valve controller performing a method of a molding system having a hydraulic valve including: (i) a valve sleeve being configured to convey a pressurized hydraulic fluid, and (ii) a valve spool being movable relative to the valve sleeve, the method, comprising:

an operation of moving the valve spool from a valve-closed position to a valve-opened position, the valve spool is imparted with a running start before the valve spool permits flow of the pressurized hydraulic fluid from the valve sleeve.

29 . A molded article manufactured by the valve controller of claim 28 .

30 . A hydraulic valve of a molding system, the hydraulic valve comprising:

a valve sleeve being configured to convey a pressurized hydraulic fluid; and

a valve spool being movable relative to the valve sleeve, once the valve spool is made to move from a valve-closed position to a valve-opened position, the valve spool is imparted with a running start before the valve spool permits flow of the pressurized hydraulic fluid from the valve sleeve.

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 Mar 14, 2007
From: SCHULTZ, GREGORY ALLAN, MR.
To: HUSKY INJECTION MOLDING SYSTEMS LTD.
Reel/Frame 019007/0170 →