SOLENOID HAVING SELECTIVE LATCH FOR SOLENOID-ACTUATED VALVE
20170370339 ยท 2017-12-28
Inventors
Cpc classification
F16K1/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L3/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L37/28
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B65D2563/108
PERFORMING OPERATIONS; TRANSPORTING
F16K31/0613
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M59/366
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F02M59/36
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L3/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A solenoid for a solenoid-actuated valve includes a coil, a flux tube, a pole piece disposed axially from the flux tube and encircled by the coil, a movable armature disposed in the flux tube and the pole piece, and a latch disposed between the flux tube and the pole piece to selectively latch the armature into at least one position.
Claims
1. A solenoid for a solenoid-actuated valve, said solenoid comprising: a coil; a flux tube and a pole piece disposed axially from said flux tube and encircled by said coil; a movable armature disposed in said flux tube and said pole piece; and a latch disposed between said flux tube and said pole piece to selectively latch said armature into at least one position.
2. A solenoid as set forth in claim 1 wherein said latch comprises a flexible spring finger for latching on said armature.
3. A solenoid as set forth in claim 2 wherein said latch includes an alignment tube to align said flux tube and said pole piece together and said flexible spring finger being incorporated into said alignment tube.
4. A solenoid for a solenoid-actuated valve, said solenoid comprising: a coil; a flux tube and a pole piece disposed axially from said flux tube and encircled by said coil; a movable armature disposed in said flux tube and said pole piece; a mechanical latch disposed between said flux tube and said pole piece to selectively latch said armature into at least one position; and a movable release slide disposed between said armature and said flux tube and cooperating with said latch to release said latch from said at least one position to a released position.
5. A solenoid as set forth in claim 4 wherein said latch includes an alignment tube having a flexible spring finger, said armature having a locking ring and a first shoulder to move said release slide into the released position and a second shoulder to push said release slide out of engagement with said spring finger.
6. A solenoid as set forth in claim 5 wherein said release slide has a detent to engage said spring finger.
7. A solenoid for a solenoid-actuated valve, said solenoid comprising: a coil; a flux tube encircled by said coil; a pole piece disposed axially from said flux tube and encircled by said coil; a movable armature disposed in said flux tube and said pole piece; a movable valve cooperating with said armature to control fluid flow; and a mechanical latch disposed between said flux tube and said pole piece to selectively latch said armature into at least one position.
8. A solenoid as set forth in claim 7 wherein said armature has a latch ring and said latch comprises a flexible spring finger for latching on said latch ring of said armature.
9. A solenoid as set forth in claim 8 wherein said latch includes an alignment tube to align said flux tube and said pole piece together and said flexible spring finger being incorporated into said alignment tube.
10. A solenoid for a solenoid-actuated valve, said solenoid comprising: a coil; a flux tube encircled by said coil; a pole piece disposed axially from said flux tube and encircled by said coil; a movable armature disposed in said flux tube and said pole piece; a movable valve cooperating with said armature to control fluid flow; a mechanical latch disposed between said flux tube and said pole piece to selectively latch said armature into at least one position; and a movable release slide disposed between said armature and said flux tube and cooperating with said latch to release said latch from said at least one position to a released position.
11. A solenoid as set forth in claim 10 wherein said latch includes an alignment tube having a flexible spring finger, said armature having a locking ring and a first shoulder to move said release slide into the released position and a second shoulder to push said release slide out of engagement with said spring finger.
12. A solenoid as set forth in claim 11 wherein said release slide has a detent to engage said spring finger.
13. A solenoid as set forth in claim 10 wherein said latch includes an alignment tube having a flexible spring finger, said valve having a locking ring for latching on said valve, a first shoulder on one of said valve and armature to move said release slide into the released position and a second shoulder on one of said valve and armature to push said release slide out of engagement with said spring finger.
14. A solenoid as set forth in claim 13 wherein said release slide has a detent to engage said spring finger.
15. A solenoid-actuated valve comprising: a solenoid; a valve body connected to and operatively associated with said solenoid, said valve body having at least one fluid inlet port and at least one fluid outlet port for fluid flow; a valve axially and slidingly disposed within said valve body; and said solenoid comprising a coil, a flux tube, a pole piece disposed axially from said flux tube and encircled by said coil, a movable armature disposed in said flux tube and said pole piece, and a latch disposed between said flux tube and said pole piece to selectively latch said armature into at least one position.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
[0028] Referring now to the
[0029] In one embodiment illustrated in
[0030] As illustrated in
[0031] Referring to
[0032] The solenoid-actuated valve 30 also includes an electronically controlled solenoid or solenoid actuator, generally indicated at 54, for actuating the valve 34 to control hydraulic fluid pressure and flow between the ports 36 and the ports 48. The solenoid 54 includes a magnetic housing or frame referred to as a casing or can 56. The can 56 is typically fabricated from a soft magnetic material, such as low carbon steel. The solenoid 54 also includes a bobbin 58 mounted inside the can 56. The bobbin 58 is typically made from a non-magnetic material such as a plastic or other polymeric material. The bobbin 58 has a primary electromagnetic coil 60 wound thereon to create a magnetic field when energized. The coil 60 is fabricated with copper wire. The solenoid 54 further includes an electrical connector 62 for connecting with the electromagnetic coil 60 and to ground (not shown). The electrical connector 62 includes one or more electrical terminals (not shown) to allow for connection with a control source which controls current actuation of the coil 60. It should be appreciated that the terminal receives a digital control signal from a primary driver (not shown) such as the electronic controller (not shown).
[0033] The solenoid 54 also includes a pole piece 64 partially positioned within the bobbin 58 and encircled by the coil 60. The pole piece 64 is magnetically connected with the can 56. The solenoid 54 also includes a flux tube 66 partially positioned within the bobbin 58 and encircled by the coil 60. The flux tube 66 is generally cylindrical in shape with a generally circular cross-section. The flux tube 66 is axially aligned with the pole piece 64. The flux tube 66 is magnetically connected with the can 56. It should be appreciated that the solenoid 54 has a flux path, generally indicated at 68, comprised of the pole piece 64, flux tube 66, and the can 56.
[0034] The solenoid 54 further includes an armature 70 disposed in the flux tube 66 for generating axial actuation force. The armature 70 is generally cylindrical in shape and extends axially. The armature 70 may include an annular recess or clearance zone 72 extending axially and a reset shoulder 73 at one end axial thereof and another shoulder at the other axial end thereof. The armature 70 may include a latch ring 74 extending circumferentially and radially into the recess 72. The solenoid 54 also includes an air gap spacer 76 seated on the pole piece 64 and spaced axially from the armature 70. The air gap spacer 76 is a ring shaped member. It should be appreciated that the armature 70 slides within the flux tube 66 and contacts the valve 34 to move the valve 34 axially. It should also be appreciated that the recess 72, latch ring 74 and reset shoulder 73 may be provided on the valve 34 instead of the armature 70.
[0035] The solenoid 54 further includes an alignment tube 78 to set the axial spacing and centering of the pole piece 64 relative to the flux tube 66. The solenoid 54 also includes a latch, generally indicated at 79, to latch the armature 70 in one or more positions. In the present invention, the latch 79 includes the alignment tube 78 having one or more flexible latch fingers 80. As illustrated in
[0036] The solenoid 54 further includes a release slide or blocker 84 slideably disposed in the recess 72 of the armature 70. The release slide 84 extends axially. The release slide 84 has a detent 86 to engage and hold the latch finger 80 in an unlatched position. It should be appreciated that the flux tube 66 includes a clearance notch 88 for the latch finger 80 and a channel 90 to guide the release slide 84.
[0037] In operation, an electronic controller (not shown) is in electrical communication with the solenoid-actuated valve 30 to activate or energize the solenoid 54 to actuate the valve 34 or to deactivate or de-energize the solenoid 54 to de-actuate the valve 34 to actively control fluid flow to and from the solenoid-actuated valve 30.
[0038] Referring to
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[0042] Referring to
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[0044] The present invention has been described in an illustrative manner. It is to be understood that the terminology which has been used is intended to be in the nature of words of description rather than of limitation.
[0045] Many modifications and variations of the present invention are possible in light of the above teachings. Therefore, within the scope of the appended claims, the invention may be practiced other than as specifically described.