IP Library › Granted Patent US 9,879,797
Granted Patent B2
US 9,879,797 · App. 14/683,809 · Granted Jan 30, 2018

Solenoid-actuated fluid control valve assembly

Inventors: Viraraghavan S. Kumar (Melbourne, FL); Alvaro Andres Reyes (Fort Lauderdale, FL); Sudhir S. Kulkarni (Rockledge, FL); Shailesh Pradhananga (Rockledge, FL)
Assignee: IQ VALVES, CO.
F16K31/0603F16K11/044F16K31/0606F16K31/0627Y10T137/8671Y10T137/86574Y10T137/86614
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 9,879,797
App. No.
14/683,809
Granted
Jan 30, 2018
Kind
B2
Abstract

A valve assembly includes a valve base having a tubular section with a longitudinal bore formed therein, a fluid inlet port and a common port with an internal passageway therebetween. A solenoid coil is adapted to generate a magnetic flux and includes a longitudinal axis and a bore coaxial therewith. The valve assembly further includes an orifice piece positioned within the longitudinal bore of the valve base. The orifice piece includes a central passageway with a first end and a second end. A plunger is movable within the longitudinal bore between a first de-actuated position and a second actuated position.

Claims (41)

1. A valve assembly comprising:

a unitary valve base including a body section and an upstanding tubular section extending therefrom with a longitudinal bore formed therein, said body section including a fluid inlet port and a common port with an internal passageway therebetween;

a solenoid coil housing, having a longitudinal axis and a bore coaxial therewith;

an orifice piece positioned within the longitudinal bore of the valve base, said orifice piece defining a central passageway and having a first end and a second end, wherein a channel is formed between an outer surface of the orifice piece and said longitudinal bore to allow fluid transfer from the central passageway at the first end of the orifice piece to the common port of the valve base;

a magnetic top piece positioned over a top open end of the tubular section;

a plunger having a first end, a second end, an outer surface and a fluid flow path formed between said first end and said second end, said plunger positioned partially within the longitudinal bore of the valve base and partially within the magnetic top piece, said plunger being movable within the longitudinal bore of the valve base and the magnetic top piece between a de-actuated position and an actuated position; and

a flux conductor for securing the valve assembly in an assembled configuration;

wherein said fluid flow path is a groove formed in the outer surface of the plunger and said magnetic top piece includes a top port formed therein and said first end of said plunger is adapted to abut said magnetic top piece thereby closing off the top port and preventing fluid from flowing through the top port, and wherein the magnetic top piece abuts a top open end of the tubular section.

2. The valve assembly according to claim 1 , further comprises a biasing member for biasing the plunger so it closes the top port when the valve is in a de-actuated state.

3. The valve assembly according to claim 1 , further comprises a biasing member for biasing the plunger so it contacts the first end of the orifice piece when the valve is in a de-actuated state.

4. The valve assembly according to claim 1 , wherein the magnetic top piece is cylindrically shaped with an inner surface, an outer surface, a top wall with said top port formed therein, a bottom rim and a disk-shaped rim portion extending from said outer surface, wherein the outer surface of the plunger is adjacent to the inner surface of the magnetic top piece and an inner surface of the upstanding tubular section of the unitary valve base with a radial air gap between said inner surface of the magnetic top piece and an outer surface of said plunger.

5. The valve assembly of claim 4 , wherein the base further includes an upwardly extending flange extending from the tubular section, said upwardly extending flange forming an annular pocket into which said bottom rim of the magnetic top piece is received, wherein said disk-shaped rim portion is adjacent to said upwardly extending flange.

6. The valve assembly according to claim 1 , wherein the solenoid coil housing surrounds said tubular section of the valve base.

7. The valve assembly according to claim 1 , wherein the flux conductor has a unitary C-shape construction with a top section, a bottom section, and a side section, wherein the bottom section is adapted to slide along the valve base to be secured within an opening in the valve base such that a portion of the tubular section of the valve base fits within an opening in the flux conductor.

8. The valve assembly of claim 7 , wherein the solenoid coil housing includes a raised section to be received within an opening in the top section of the flux conductor to further secure the valve assembly and restrict rotation of the solenoid coil housing.

9. A valve assembly comprising:

a unitary valve base including a body section and an upstanding tubular section extending therefrom with a longitudinal bore formed therein, said body section including a fluid inlet port and a common port with an internal passageway therebetween;

a solenoid coil housing, having a longitudinal axis and a bore coaxial therewith;

an orifice piece positioned within the longitudinal bore of the valve base, said orifice piece defining a central passageway and having a first end and a second end, wherein a channel is formed between an outer surface of the orifice piece and said longitudinal bore to allow fluid transfer from the central passageway at the first end of the orifice piece to the common port of the valve base;

a magnetic top piece abuts a top open end of the tubular section, said magnetic top piece including a top port formed therein;

a plunger having a first end, a second end, an outer surface and a fluid flow path formed between said first end and said second end, said fluid flow path being a groove formed in the outer surface of the plunger said plunger positioned partially within the longitudinal bore of the valve base and partially within the magnetic top piece, said plunger being movable within the longitudinal bore of the valve base and the magnetic top piece between a de-actuated position and an actuated position;

wherein said first end of said plunger is adapted to abut said magnetic top piece thereby closing off the top port and preventing fluid from flowing through the top port;

a flux conductor for securing the valve assembly in an assembled configuration; and

a biasing member for biasing the plunger so it contacts the first end of the orifice piece when the valve is in a de-actuated state.

10. The valve assembly according to claim 9 , wherein the magnetic top piece is cylindrically shaped with an inner surface, an outer surface, a top wall with said top port formed therein, a bottom rim and a disk-shaped rim portion extending from said outer surface, wherein the outer surface of the plunger is adjacent to the inner surface of the magnetic top piece and an inner surface of the upstanding tubular section of the unitary valve base with a radial air gap between said inner surface of the magnetic top piece and an outer surface of said plunger.

11. The valve assembly of claim 10 , wherein the base further includes an upwardly extending flange extending from the tubular section, said upwardly extending flange forming an annular pocket into which said bottom rim of the magnetic top piece is received, wherein said disk-shaped rim portion is adjacent to said upwardly extending flange.

12. The valve assembly according to claim 9 , wherein the solenoid coil housing surrounds said tubular section of the valve base.

13. The valve assembly according to claim 9 , wherein the flux conductor has a unitary C-shape construction with a top section, a bottom section, and a side section, wherein the bottom section is adapted to slide along the valve base to be secured within an opening in the valve base such that a portion of the tubular section of the valve base fits within an opening in the flux conductor.

14. The valve assembly of claim 13 , wherein the solenoid coil housing includes a raised section to be received within an opening in the top section of the flux conductor to further secure the valve assembly and restrict rotation of the solenoid coil housing.

15. A valve assembly comprising:

a unitary valve base including a body section and an upstanding tubular section extending therefrom with a longitudinal bore formed therein, said body section including a fluid inlet port and a common port with an internal passageway therebetween;

a solenoid coil housing, having a longitudinal axis and a bore coaxial therewith;

an orifice piece positioned within the longitudinal bore of the valve base, said orifice piece defining a central passageway and having a first end and a second end, wherein a channel is formed between an outer surface of the orifice piece and said longitudinal bore to allow fluid transfer from the central passageway at the first end of the orifice piece to the common port of the valve base;

a magnetic top piece positioned over a top open end of the tubular section, said magnetic top piece including a top port formed therein;

a plunger having a first end, a second end, an outer surface and a fluid flow path formed between said first end and said second end, said plunger positioned partially within the longitudinal bore of the valve base and partially within the magnetic top piece, said plunger being movable within the longitudinal bore of the valve base and the magnetic top piece between a de-actuated position and an actuated position;

wherein said first end of said plunger is adapted to abut said magnetic top piece thereby closing off the top port and preventing fluid from flowing through the top port;

a flux conductor for securing the valve assembly in an assembled configuration; and

a biasing member for biasing the plunger so it closes the top port when the valve is in a de-actuated state, wherein the magnetic top piece is cylindrically shaped with an inner surface, an outer surface, a top wall with said top port formed therein, a bottom rim and a disk-shaped rim portion extending from said outer surface, the outer surface of the plunger is adjacent to the inner surface of the magnetic top piece and an inner surface of the upstanding tubular section of the unitary valve base with a radial air gap between said inner surface of the magnetic top piece and an outer surface of said plunger.

16. The valve assembly of claim 15 , wherein the base further includes an upwardly extending flange extending from the tubular section, said upwardly extending flange forming an annular pocket into which said bottom rim of the magnetic top piece is received, wherein said disk-shaped rim portion is adjacent to said upwardly extending flange.

17. The valve assembly according to claim 15 , wherein the flux conductor has a unitary C-shape construction with a top section, a bottom section, and a side section, wherein the bottom section is adapted to slide along the valve base to be secured within an opening in the valve base such that a portion of the tubular section of the valve base fits within an opening in the flux conductor, wherein the flux conductor secures components of the valve assembly in an assembled configuration.

18. The valve assembly of claim 17 , wherein the solenoid coil housing includes a raised section to be received within an opening in top section of the flux conductor to further secure the valve assembly and restrict rotation of the solenoid coil housing.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 22, 2017
From: KUMAR, VIRARAGHAVAN S; REYES, ALVARO ANDRES; KULKARNI, SUDHIR S; PRADHANANGA, SHAILESH
To: IQ VALVES, CO.
Reel/Frame 041680/0623 →
Continuity (1)
Related Publication 20160298784A1 · Oct 13, 2016