Claims
- 1. An improved trip solenoid comprising:
- an open frame, having general parallel frame side members and an end,
- means in said end defining an opening adapted to receive an armature therethrough,
- a coil in said frame defining an annular armature cavity,
- an armature received in said frame opening for axial movement and having an inner end received within said coil cavity,
- a pole piece mounted in said frame and having a forward portion received in an end of said coil defining a working air gap with said armature and having a rearward portion received exteriorly of said coil and defining a pair of magnet receiving surfaces which are oriented in spaced relation to opposed inside surfaces formed on said frame side members,
- a pair of thickness oriented magnets, one each received in each of the spaces between said pole surfaces and the adjacent surfaces of said frame members and in contact therebetween for providing an initial holding force tending to retain said armature adjacent said pole piece, and
- closure plate means receiving in the end of said frame in magnetic contact with said frame members and in spaced relation to said pole piece forming a secondary flux path, through which a major portion of the flux of the coil may pass when energized.
- 2. The trip solenoid of claim 1 further comprising a non-magnetic shim positioned between said closure plate means and said pole piece defining the magnetic flux gap therebetween.
- 3. The trip solenoid of claim 1 further comprising means on said armature defining a stop member, a sleeve bearing received in said opening for receiving said armature, said stop member being engageable with said sleeve bearing in a forward position of said armature.
- 4. The trip solenoid of claim 1 in which said magnets are low-cost ceramic magnets.
- 5. The trip solenoid of claim 1 further comprising adjustable means in said closure plate means defining a variable air gap with said pole piece for varying the reluctance of said secondary flux path.
- 6. The solenoid of claim 5 in which said adjustable means comprises a plug threadedly received in said closure plate means and defining with said pole piece a variable air gap, said plug being accessible from a region exteriorly of the solenoid for adjustment, and means retaining said plug in said adjusted position.
- 7. An improved trip solenoid comprising:
- a generally U-shaped frame having spaced generally parallel flat frame side members,
- a coil in said frame defining an armature cavity,
- an armature mounted for axial movement on said frame and having an inner end received within said coil cavity,
- a pole mounted in said frame and having a portion received in an end of said coil defining a working air gap with said armature and having another portion received exteriorly of said coil and defining a pair of flat magnet receiving surfaces which are positioned in spaced relation to opposed flat inside surfaces of said frame members,
- a pair of rectangular thickness oriented ceramic magnets received in and filling the spaces between said flat pole surfaces and the adjacent inside flat surfaces of said frame members and in contact therebetween for providing an initial holding force tending to retain said armature adjacent said pole piece,
- a rectangular closure plate in magnetic contact with said frame members, and
- non-magnetic shim means between said plate and said pole maintaining said plate in spaced relation to said pole forming a secondary flux path through which a major portion of the flux of the coil may pass when energized.
- 8. The improved trip solenoid of claim 4 further comprising:
- a gap adjusting screw formed of magnetic material,
- means in said closure plate defining a threaded aperture receiving said screw therein with the face of said screw in spaced relation to said pole, and
- means in said non-magnetic shim defining an opening in alignment with said screw whereby rotation of said screw in said plate varies an air gap defined between the end of said screw and said pole.
- 9. An improved trip solenoid comprising a frame having spaced frame side members,
- an electric coil in said frame defining an armature cavity,
- an armature mounted for axial movement on said frame and having an inner end received within said cavity,
- a pole mounted in said frame having a portion received within said coil and defining with said armature a working air gap,
- said pole having another portion exteriorly of said coil and defining a pair of magnet-receiving surfaces positioned in spaced relation to the frame side members,
- a pair of thickness oriented magnets received within each of the spaces between said pole surfaces and the adjacent surfaces of said frame members and in contact therebetween providing an initial holding force tending to retain said armature adjacent said pole piece,
- a closure plate in magnetic contact with said frame members and spaced from said pole piece, and
- means in said closure plate defining an adjustable plug movable toward and away from said pole piece for varying the magnetic coupling through a secondary flux path including said end plate, said magnets, and said pole piece, whereby the release point of said trip solenoid may be adjusted.
- 10. The solenoid of claim 9 in which said plug is threadedly received in said closure plate with a forward portion thereof in spaced relation to said pole piece defining a secondary air gap which is adjustable with rotation of said plug.
RELATED APPLICATION
This application is a continuation-in-part of application Ser. No. 259,769 filed May 1, 1981 now abandoned.
US Referenced Citations (7)
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
259769 |
May 1981 |
|