IP Library Granted Patent US 7,513,272
Granted Patent B2
US 7,513,272 · App. 11/092,563 · Granted Apr 7, 2009

Solenoid valve

Assignee: JTEKT Corporation
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Quick Facts
Patent No.
US 7,513,272
App. No.
11/092,563
Granted
Apr 7, 2009
Kind
B2
Abstract

A solenoid valve comprises a solenoid portion 10 and a valve portion 20 . The solenoid portion 10 is constructed by a stator core 12 , an electromagnetic coil 14 and a plunger 15 . The valve portion 20 is constructed by a valve sleeve 21 and a spool 25 axially forming plural lands 26 a - 26 c in series. The plunger 15 is axially moved by electromagnetic attraction and drives the spool 25 . There are formed the same pressurized areas at the plunger 15 and the land of the spool 25 closest to the plunger 15 . Therefore, the volume in an intermediate space B between the plunger 15 and the spool 25 is constant and contaminants in the oil are not sucked into the intermediate space B.

Claims (29)

1. A solenoid valve comprising:

a solenoid portion comprising a stator core, an electromagnetic coil wound around said stator core, and a plunger axially moving in said stator core when said electromagnetic coil is energized;

a valve portion comprising a valve sleeve, a spool forming plural lands and axially moving in said valve sleeve, and a spring biasing said spool; and

wherein said solenoid portion and said valve portion are coaxially fixed in series such that said plunger and the spool are coaxially disposed in series with an intermediate space therebetween, whereby said spring biases said plunger via said spool, which spool can be moved by said plunger due to an energization of said electromagnetic coil, wherein the intermediate space is defined in part by facing portions of said plunger and one of the lands of said spool, and wherein said facing portions have equal diameters so that the volume in the intermediate space does not change during movement of the spool,

wherein said valve portion comprises a supply port, a control port and a drain port, and further comprises a feedback space formed between two of the lands of said spool, which lands have different diameters, and wherein said feedback space is arranged to receive a pressure in the control port,

wherein the one of the lands defining said intermediate space is separated from said feedback space by at least one additional land.

2. A solenoid valve according to claim 1 , wherein said spring biases said spool to a normally open position in which the supply port communicates with the control port.

3. A solenoid valve according to claim 1 , wherein:

said solenoid portion comprises a cuplike cover wrapping said stator core and said electromagnetic coil; and

a tip space is formed at an end of said plunger opposite said valve portion and connects to the outside through a labyrinth passage formed at said cover.

4. A solenoid valve according to claim 3 , wherein said spring biases said spool to a normally open position in which the supply port communicates with the control port.

5. A solenoid valve, comprising:

a solenoid portion comprising a stator core, an electromagnetic coil wound around said stator core, and a plunger axially moving in said stator core when said electromagnetic coil is energized;

a valve portion comprising a valve sleeve, a spool forming plural lands and axially moving in said valve sleeve, and a spring biasing said spool; and

wherein said solenoid portion and said valve portion are coaxially fixed in series such that said plunger and the spool are coaxially disposed in series with an intermediate space therebetween, whereby said spring biases said plunger via said spool, which spool can be moved by said plunger due to an energization of said electromagnetic coil, wherein the intermediate space is defined in part by facing portions of said plunger and one of the lands of said spool, and wherein said facing portions have equal diameters so that the volume in the intermediate space does not change during movement of the spool,

wherein said valve portion comprises a supply port, a control port and a drain port, and further comprises a feedback space formed between two of the lands of said spool, which lands have different diameters, and wherein said feedback space is arranged to receive a pressure in the control port,

wherein the one of the lands defining said intermediate space is separated from said feedback space,

wherein said spring biases said spool to a normally closed position in which the control port communicates with the drain port.

6. A solenoid valve comprising:

a solenoid portion comprising a stator core, an electromagnetic coil wound around said stator core, and a plunger axially moving in said stator core when said electromagnetic coil is energized;

a valve portion comprising a valve sleeve, a spool forming plural lands and axially moving in said valve sleeve, and a spring biasing said spool; and

wherein said solenoid portion and said valve portion are coaxially fixed in series such that said plunger and the spool are coaxially disposed in series with an intermediate space therebetween, whereby said spring biases said plunger via said spool, which spool can be moved by said plunger due to an energization of said electromagnetic coil, wherein the intermediate space is defined in part by facing portions of said plunger and one of the lands of said spool, and wherein said facing portions have equal diameters so that the volume in the intermediate space does not change during movement of the spool, wherein said solenoid portion comprises a cuplike cover wrapping said stator core and said electromagnetic coil, and a tip space is formed at an end of said plunger opposite said valve portion and connects to the outside through a labyrinth passage formed at said cover,

wherein a cap forming said labyrinth passage is attached to said cover.

7. A solenoid valve according to claim 6 , wherein said cap forms partial cylindrical portions arranged with angular phase differences.

8. A solenoid valve comprising:

a solenoid portion comprising a stator core, an electromagnetic coil wound around said stator core, and a plunger axially moving in said stator core when said electromagnetic coil is energized;

a valve portion comprising a valve sleeve, a spool forming plural lands and axially moving in said valve sleeve, and a spring biasing said spool; and

wherein said solenoid portion and said valve portion are coaxially fixed in series such that said plunger and the spool are coaxially disposed in series with an intermediate space therebetween, whereby said spring biases said plunger via said spool, which spool can be moved by said plunger due to an energization of said electromagnetic coil, wherein the intermediate space is defined in part by facing portions of said plunger and one of the lands of said spool, and wherein said facing portions have equal diameters so that the volume in the intermediate space does not change during movement of the spool, wherein said solenoid portion comprises a cuplike cover wrapping said stator core and said electromagnetic coil, and a tip space is formed at an end of said plunger opposite said valve portion and connects to the outside through a labyrinth passage formed at said cover,

wherein said spring biases said spool to a normally closed position in which the control port communicates with the drain port.

Assignments (2)
MERGER Recorded Mar 21, 2007
From: TOYODA KOKI KABUSHIKI KAISHA
To: JTEKT CORPORATION
Reel/Frame 019060/0838 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 29, 2005
From: SEGI, MASAYA; SUZUKI, MIKIO; SUZUKI, MASARU
To: TOYODA KOKI KABUSHIKI KAISHA
Reel/Frame 016436/0049 →
Priority Claims (1)
JP 2004-099094 · Mar 30, 2004 · national
Continuity (1)
Related Publication 20050217740A1 · Oct 6, 2005