Claims
- 1. An electromagnetic valve, comprising:
a plunger; a first stator containing and supporting said plunger to allow it to reciprocate thereinside; a second stator magnetically attracting said plunger in a reciprocating direction of said plunger; and a coil electrically energized to generate a magnetic force within said second stator for attracting said plunger, wherein
said plunger includes a moving core made of magnetic material and a cylindrical cup-shaped nonmagnetic member, and said cylindrical cup-shaped nonmagnetic member is attached to said moving core to cover an end surface of said moving core in a reciprocating direction thereof, and to cover an outside wall of said moving core, which faces said first stator.
- 2. An electromagnetic valve according to claim 1, wherein said cylindrical cup-shaped nonmagnetic member covers an end surface of said moving core, which faces said second stator.
- 3. An electromagnetic valve according to claim 1, wherein a plating is coated on an inner wall of said first stator, which faces said moving core, for reducing a slide resistance between said cylindrical cup-shaped nonmagnetic member and the inner wall of said first stator.
- 4. An electromagnetic valve, comprising:
a plunger; a first stator containing and supporting said plunger to allow it to reciprocate thereinside; a second stator magnetically attracting said plunger in a reciprocating direction of said plunger; and a coil electrically energized to generate a magnetic force within said second stator for attracting said plunger, wherein
said plunger includes a moving core made of magnetic material and a nonmagnetic cylindrical film, and said nonmagnetic cylindrical film is attached to said moving core to cover an outside wall of said moving core, which faces said first stator.
- 5. An electromagnetic valve according to claim 4, wherein said nonmagnetic cylindrical film has an axial gap, and is elastically attached to said moving core.
- 6. An electromagnetic valve, comprising:
a plunger; a first stator containing and supporting said plunger to allow it to reciprocate thereinside; a second stator magnetically attracting said plunger in a reciprocating direction of said plunger; a coil electrically energized to generate a magnetic force within said second stator for attracting said plunger; and a nonmagnetic cylindrical film attached to an inner wall of said first stator, which faces said plunger.
- 7. An electromagnetic valve, according to claim 6, wherein said nonmagnetic cylindrical film has an axial gap, and is elastically attached to the inner wall of said first stator.
- 8. An electromagnetic valve, comprising:
a moving core made of magnetic material; a first stator containing and supporting said moving core to allow it to reciprocate thereinside; a second stator magnetically attracting said moving core in a reciprocating direction of said moving core; a coil electrically energized to generate a magnetic force within said second stator for attracting said moving core; and a nonmagnetic member provided between one end surface of said moving core, which faces said second stator, and said second stator, and provided between an outside wall of said moving core and said first stator.
- 9. An electromagnetic valve according to claim 8, wherein
the other end surface of said moving core includes one of a projection and a concave, and a member facing the other end surface of said moving core includes the other one of a projection and a concave fitting to said one of the projection and the concave of the other end surface of said moving core.
- 10. An electromagnetic valve according to claim 8, further comprising:
a cylindrical housing including a plurality of fluid passages penetrating through a peripheral wall thereof; a valve member reciprocating with said moving core for switching communications among the plurality of fluid passages; and an urging means for urging said valve member in a direction opposite to the magnetic force attracting said moving core.
- 11. An electromagnetic valve, comprising:
a moving core made of magnetic material; a first stator containing and supporting said moving core to allow it to reciprocate thereinside; a second stator magnetically attracting said moving core in a reciprocating direction of said moving core; a coil electrically energized to generate a magnetic force within said second stator for attracting said moving core; and a nonmagnetic member covering an end surface of said moving core, which faces said second stator, and covering an outside wall of said moving core, which faces said first stator.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2000-37789 |
Feb 2000 |
JP |
|
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application is based on and incorporates herein by reference Japanese Patent Application No. 2000-37789 filed on Feb. 16, 2000.