Electromagnetic valve
US-2015369387-A1 · Dec 24, 2015 · US
US8973894B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-8973894-B2 |
| Application number | US-201213535301-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 27, 2012 |
| Priority date | Jul 5, 2011 |
| Publication date | Mar 10, 2015 |
| Grant date | Mar 10, 2015 |
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Official abstract text for this publication.
A solenoid includes a plunger, a core, an electromagnetic coil, and a casing. A core receiving portion of the plunger is to receive a core projection while the electromagnetic coil is energized. A plunger receiving portion of the core is to receive a plunger projection while the electromagnetic coil is energized. The casing houses the plunger, the core, and the electromagnetic coil. At least one of an end portion of the plunger projection and an end portion of the core projection has an acute angle in a cross section along the axial direction. A distance between the end portion of the plunger projection and the end portion of the core projection is shortest among distances between the core and the plunger while the electromagnetic coil is not energized.
Opening claim text (preview).
What is claimed is: 1. A solenoid comprising: a plunger having a central axis in an axial direction and movable in the axial direction, the plunger being provided with a plunger projection and a core receiving portion, the plunger projection extending coaxially with the central axis and having a diameter smaller than a diameter of the plunger; a core provided to face the plunger in the axial direction and including a core projection and a plunger receiving portion having a center hole at a center of the core, the center hole having a bottom to face the end portion of the plunger projection; an electromagnetic coil configured to pull the plunger toward the core while the electromagnetic coil is energized, the core receiving portion of the plunger being to receive the core projection while the electromagnetic coil is energized, the plunger receiving portion of the core being to receive the plunger projection while the electromagnetic coil is energized; a casing housing the plunger, the core, and the electromagnetic coil; at least one of an end portion of the plunger projection and an end portion of the core projection having an acute angle in a cross section along the axial direction; and a distance between the end portion of the plunger projection and the end portion of the core projection being shortest among distances between the core and the plunger while the electromagnetic coil is not energized. 2. The solenoid according to claim 1 , wherein the plunger projection includes a plurality of end portions, and the core projection includes a plurality of end portions that correspond to the plurality of end portions of the plunger projection, respectively. 3. The solenoid according to claim 1 , wherein the plunger receiving portion includes a core hole extending in the axial direction, and wherein the plunger projection is provided in the core hole while the electromagnetic coil is energized. 4. The solenoid according to claim 3 , wherein the core receiving portion includes a recess provided on a radially outer side of the plunger projection, wherein the core projection is provided in the recess while the electromagnetic coil is energized. 5. The solenoid according to claim 3 , wherein the core hole includes an inner peripheral surface extending along the axial direction, wherein the core projection includes a core inclined surface inclined radially outward with respect to the axial direction, and wherein the acute angle is provided between the inner peripheral surface and the core inclined surface in the cross section. 6. The solenoid according to claim 5 , wherein the plunger projection includes an outer peripheral surface and a first inclined surface, wherein the outer peripheral surface extends along the axial direction, and faces the inner peripheral surface while the electromagnetic coil is energized, wherein the first inclined surface is inclined radially inward with respect to the axial direction, and wherein the acute angle is provided between the outer peripheral surface and the first inclined surface in the cross section. 7. The solenoid according to claim 6 , wherein the plunger projection includes a second inclined surface inclined radially outward with respect to the axial direction and provided on a radially outer side of the plunger projection, and wherein the core inclined surface faces the second inclined surface while the electromagnetic coil is energized. 8. The solenoid according to claim 7 , wherein an acute angle is provided between the outer peripheral surface and the second inclined surface in the cross section. 9. The solenoid according to claim 1 , wherein the plunger projection includes an outer peripheral surface and a plunger inclined surface, wherein the outer peripheral surface extends along the axial direction, wherein the plunger inclined surface is inclined radially inward with respect to the axial direction, and wherein the acute angle is provided between the outer peripheral surface and the plunger inclined surface in the cross section. 10. The solenoid according to claim 1 , wherein the core receiving portion includes a plunger hole extending in the axial direction, wherein the plunger receiving portion includes a recess provided on a radially outer side of the core projection, wherein the core projection is provided in the plunger hole while the electromagnetic coil is energized, and wherein the plunger projection is provided in the recess while the electromagnetic coil is energized. 11. A solenoid valve comprising: the solenoid according to claim 1 ; a valve box including a flow channel through which pressure fluid flows; a valve seat provided on the valve box; a valve disc contactable with and movable away from the valve seat in conjunction with a movement of the plunger in the solenoid; and an urging member to urge the valve disc in a valve opening direction.
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