FILTER ASSEMBLY FOR SOLENOID-ACTUATED VALVE
20190091611 ยท 2019-03-28
Inventors
Cpc classification
B01D2201/4084
PERFORMING OPERATIONS; TRANSPORTING
F16K27/048
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K31/0613
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01D29/112
PERFORMING OPERATIONS; TRANSPORTING
F16K27/041
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K3/26
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16K3/26
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A filter assembly for a solenoid-actuated valve includes a filter band adapted to be disposed about a valve body of the solenoid-actuated valve. The filter band has a first end and a second end. The filter assembly also includes a locking mechanism to lock the first end and the second end together. The locking mechanism includes one of the first end and the second end having a slot extending therein and at least one aperture extending in communication with the slot and another one of the first end and the second end having at least one post to pass through the at least one aperture such that the first end and the second end lock together in a closed position.
Claims
1. A filter assembly for a solenoid-actuated valve, said filter assembly comprising: a filter band adapted to be disposed about a valve body of the solenoid-actuated valve, said filter band having a first end and a second end; and a locking mechanism to lock said first end and said second end together, said locking mechanism comprising one of said first end and said second end having a slot extending therein and at least one aperture extending in communication with said slot and another one of said first end and said second end having at least one post to pass through said at least one aperture such that said first end and said second end lock together in a closed position.
2. A filter assembly as set forth in claim 1 including at least one projection extending from said filter band to restrict opening movement in the valve body of the solenoid-actuated valve.
3. A filter assembly as set forth in claim 1 wherein said slot extends circumferentially.
4. A filter assembly as set forth in claim 1 wherein said at least one aperture extends radially therethrough.
5. A filter assembly as set forth in claim 1 wherein said at least one post is generally cylindrical in shape.
6. A filter assembly as set forth in claim 1 wherein said filter band is generally arcuate in shape.
7. A filter assembly as set forth in claim 6 wherein said filter band is formed by a pair of filter portions and a hinge interconnecting said filter portions.
8. A filter assembly as set forth in claim 7 wherein each of said filter portions includes at least one filter aperture.
9. A filter assembly as set forth in claim 8 including a filter disposed in said at least one filter aperture.
10. A filter assembly as set forth in claim 9 wherein said filter comprises a filter material.
11. A filter assembly as set forth in claim 1 wherein said filter band is made of a polymer based material.
12. A filter assembly as set forth in claim 11 wherein said filter band is formed by injection molding.
13. A filter assembly for a solenoid-actuated valve, said filter assembly comprising: a filter band having a generally arcuate shape and a pair of filter portions hingedly connected together and adapted to be disposed about a valve body of the solenoid-actuated valve, each of said filter portions including at least one filter aperture and a filter disposed in said at least one filter aperture, said filter band having a first end on one of said filter portions and a second end on another of said filter portions; a locking mechanism to lock said first end and said second end together, said locking mechanism comprising one of said first end and said second end having a slot extending circumferentially therein and at least one aperture extending radially therethrough and in communication with said slot and another one of said first end and said second end having at least one cylindrical post to pass through said at least one aperture such that said first end and said second end lock together in a closed position; and at least one projection on said filter band to restrict opening movement in the valve body of the solenoid-actuated valve.
14. A solenoid-actuated valve comprising: a solenoid; a valve body connected to and operatively associated with said solenoid, said valve body having a valve bore extending axially and a plurality of fluid ports in fluid communication with said valve bore; a valve member axially and slidingly disposed within said valve bore; and a filter assembly comprising a filter band disposed about said valve body, said filter band having a first end and a second end, and a locking mechanism to lock said first end and said second end together, said locking mechanism comprising one of said first end and said second end having a slot extending therein and at least one aperture extending in communication with said slot and another one of said first end and said second end having at least one post to pass through said at least one aperture such that said first end and said second end lock together in a closed position.
15. A solenoid-actuated valve as set forth in claim 14 wherein said filter assembly includes at least one projection extending from said filter band to restrict opening movement in said valve body.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0009]
[0010]
[0011]
[0012]
[0013]
DETAILED DESCRIPTION OF THE INVENTION
[0014] Referring now to the figures, where like numerals are used to designate like structure unless otherwise indicated, one embodiment of a solenoid-actuated valve 16, according to the present invention, is shown in connection with a transmission (not shown) such as an automatic transmission of a vehicle (not shown). The solenoid-actuated valve 16 includes a valve body 20 having a valve bore 22. The valve bore 22 has a biasing end 24 and an actuating end 26. The valve body 20 also includes multiple fluid ports with at least one inlet port 28 and at least one outlet port 30 adapted to provide fluid communication with a source of pressurized hydraulic fluid (not shown) and a return to the source of pressurized hydraulic fluid such as a pump (not shown).
[0015] The solenoid-actuated valve 16 also includes a valve member 32 or a spool valve (i.e., hydraulic control valve) slideably disposed within the valve bore 22 of the valve body 20. The valve member 32 has a plurality of valve elements 34. The valve elements 34 are adapted to control the flow of pressurized hydraulic fluid between the ports 28,30 of the valve body 20. The valve member 32 further includes a biasing end 40 and an actuating end 42. It should be appreciated that the valve member 32 is integral, unitary, and one-piece.
[0016] The solenoid-actuated valve 16 further includes a biasing return spring 44 disposed in the valve bore 22 between the biasing end 40 of the valve member 42 and the biasing end 24 of the valve bore 22. The solenoid valve 16 includes an end member 45 disposed in the biasing end 24 of the valve bore 22. It should be appreciated that the end member 45 is fixed to the valve body 20 and the valve member 32 moves axially relative to the valve body 20.
[0017] The solenoid-actuated valve 16 also includes an electronically controlled solenoid, generally indicated at 46, for actuating the valve member 32 to control hydraulic fluid pressure between the inlet port 28 and the outlet port 30. The solenoid 46 includes an overmolded component such as a bobbin 48. The solenoid 46 also includes a can or housing 50 enclosing the bobbin 48. The bobbin 48 has a primary electromagnetic coil 52 wound thereon to create a magnetic field when energized. The solenoid 46 also includes a terminal (not shown) for connecting with the electromagnetic coil 52 and to ground (not shown). The coil 52 is made of copper wire. It should be appreciated that the terminal receives a continuous variable, digital control signal from a primary driver (not shown) such as an electronic controller (not shown).
[0018] Accordingly, the electromagnetic coil 52 is independently controlled by respective continuous variable, digital control signals from an electronic controller (not shown). The electronic controller is connected to a pair of contacts (not shown) of the terminal that is attached to the housing 50 of the solenoid 46. When engine conditions require clutching of the automatic transmission, the electronic controller inputs a control signal to the solenoid 46 via the contacts and the terminal. The electronic controller automatically controls actuation during automatic shifts. It should be appreciated that the electronic controller could also be used for the vehicle stopped on hills or the like. It should also be appreciated that the electronic controller can function to sense the occurrence of a manual shift and send a signal to the solenoid 46 for actuating the solenoid-actuated valve 16.
[0019] The solenoid 46 further includes an internal diameter or channel 56 extending through a longitudinal axis of the bobbin 48. The actuating end 26 of the valve body 20 is disposed in the channel 56. The solenoid 46 also includes a flux tube 58 co-axially disposed within the channel 56. The flux tube 58 is generally cylindrical in shape with a generally circular cross-section. The flux tube 58 may include an end 60 extending radially outward from one end thereof. The flux tube 58 has an aperture 62 extending axially therethrough. The solenoid 46 also includes a pole piece 64. The pole piece 64 is generally cylindrical in shape with a generally circular cross-section. The pole piece 64 may be integral with the flux tube 58. The pole piece 64 has an aperture 68 extending axially therethrough. The solenoid 46 further includes an armature 78 disposed in the aperture 62 of the flux tube 58 and an actuator rod 80 coupled to the armature 78 that extends through the aperture 68 in the pole piece 64. It should be appreciated that the armature 78 slides within the aperture 62 of the flux tube 58 and the actuator rod 80 slides co-axially with the pole piece 64.
[0020] Referring to
[0021] The filter assembly 82 also includes at least one filter aperture 94 extending radially through and circumferentially along the filter portions 90. In one embodiment, a plurality of, for example two, filter apertures 94 extend through each of the filter portions 90. In one embodiment, the filter apertures 94 are generally rectangular in shape, but may be any suitable shape. The filter assembly 82 includes at least one filter 96 disposed in at least one filter aperture 94. In one embodiment, a plurality of filters 96 are disposed in the filter apertures 94. In one embodiment, one filter 96 is disposed in one filter aperture 94. The filter 96 is made of a filter material. In one embodiment, the filter material is a mesh. The filter material may be secured to the filter band 84 by a suitable mechanism such as an adhesive or by molding of the material for the filter band 84.
[0022] The filter assembly 82 further includes a locking mechanism, generally indicated at 98, to lock the first end 86 and the second end 88 of the filter band 84 together. In one embodiment, the locking mechanism 98 includes one of the first end 86 and the second end 88 having a slot 100 extending therein and at least one aperture 102 extending in communication with the slot 100 and another one of the first end 86 and the second end 88 having at least one post 104 to pass through the at least one aperture 102 to lock the first end 86 and the second end 88 together in a closed position. In the embodiment illustrated, the first end 86 has at least one post 104 and the second end 88 has a slot 100 extending therein and at least one aperture 102 extending in communication with the slot 100. The slot 100 extends circumferentially inwardly and axially into the second end 88. The aperture 102 is generally circular in shape, but may be any suitable shape. The first end 86 has a radial thickness less than a radial thickness of the second end 88 such that the first end 86 may be disposed in the slot 100. The post 104 is generally cylindrical in shape with a circular cross-sectional shape, but may be any suitable shape. It should be appreciated that a plurality of apertures 102 and a plurality of posts 104 may be provided with one post 104 being disposed in one aperture 102.
[0023] Referring to
[0024] In operation, the filter assembly 82 is installed by opening the locking mechanism 98 and moving the filter portions 90 such that the first end 86 and the second end 88 move away from each other in an open position as illustrated in
[0025] 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.
[0026] 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.