Claims
- 1. In a fluid filter comprising a housing that is open at one end, an end plate connected to said housing and closing said open end, said end plate having at least one inlet opening and an outlet opening therein, an annular filter media disposed in said housing, said filter media having an end cap at each end, and a valve member for controlling flow of fluid through the inlet opening, the improvement comprising the end cap remote from the end plate having at least one opening in the central portion thereof and a spring cooperating with said end cap remote from the end plate and closing said opening to fluid flow, the end cap contacting the spring, and temperature sensitive means for holding the end cap and the spring in contact until a predetermined temperature of the fluid is attained, the temperature sensitive means being responsive to the temperature within the housing for enabling the end cap and the spring to separate and thereafter permitting opening of the said opening in response to pressure differential across the end cap.
- 2. A fluid filter as in claim 1, wherein the end cap remote from the end plate has a plurality of openings in the central portion spaced radially outwardly from the central axis of the end cap and the spring controls the flow of fluid through said openings.
- 3. A fluid filter as in claim 1, wherein the valve member comprises an anti-drain back valve disposed between the end cap adjacent the end plate and the end plate, said spring being constructed and arranged to engage the interior of the housing so as to load the filter media and the end cap adjacent to the end plate to help retain the anti-drain back valve in place.
- 4. A fluid filter as in claim 1, wherein the temperature sensitive means comprises a hot melt adhesive disposed between the end cap and the spring.
- 5. A fluid filter as in claim 2, wherein the central portion of the end cap remote from the end plate is capable of being flexed from a first position against the spring to a second position away from the spring.
- 6. A fluid filter as in claim 5, wherein the spring valve has a central opening therein, the central portion of the end cap remote from the end plate closing the central opening when in the first position and opening the central opening when flexed to the second position, whereby, the spring is normally in the first position closing flow of fluid and when the pressure within the housing increases and the differential pressure across the end cap exceeds a predetermined value, the central portion of the end cap remote from the end plate is flexed to the second position to permit flow of fluid.
- 7. An oil filter comprising a housing that is open at one end, an end plate connected to said housing and closing said open end, said end plate having at least one inlet opening and an outlet opening therein, an anti-drain back valve for precluding return flow of oil through the inlet opening, an annular filter media disposed in said housing, said filter media having an end cap at each end, the end cap remote from the end plate having at least one opening spaced radially outwardly from the central axis thereof and a spring valve cooperating with said end cap remote from the end plate for closing said opening to fluid flow, whereby, in normal operation, when the pressure within the housing increases and the pressure differential across the end cap exceeds a predetermined value, the said opening will be opened to permit fluid flow therethrough and temperature responsive means between the end cap and the spring valve for holding the end cap and spring valve so as to preclude flow through said opening in the end cap, said temperature responsive means being released upon attainment of a predetermined temperature of the oil in the housing to permit operation of the end cap and spring valve in response to the pressure differential across the end cap.
- 8. An oil filter as in claim 7, wherein the end cap remote from the end plate has a plurality of openings in the central portion spaced radially outwardly from the central axis of the end cap and the spring cooperates with the end cap to control the flow of fluid through said openings.
- 9. An oil filter as in claim 8, wherein the anti-drain back valve is disposed between the end cap adjacent the end plate and the end plate, said spring being constructed and arranged to engage the interior of the housing so as to load the filter media and the end cap adjacent to the end plate to help retain the anti-drain back valve in place.
- 10. An oil filter as in claim 8, wherein the central portion of the end cap remote from the end plate is capable of being flexed from a first position against the spring to a second position away from the spring.
- 11. An oil filter as in claim 10, wherein the spring has a central opening therein, the central portion of the end cap remote from the end plate closing the central opening when the first position and opening the central opening when flexed to the second position, whereby, the spring is normally in the first position closing flow of oil and oil entering the housing through the inlet opening in the end plate passes through the filter media to be cleaned and when the filter media becomes clogged, the pressure within the housing increases and when the pressure differential across the end cap exceeds a predetermined value, the central portion of the end cap remote from the end plate is flexed to the second position to permit oil to bypass the filter media and flow from the inlet opening in the end plate, through the central opening in the spring and the openings in the end cap remote from the end plate and out the outlet opening.
- 12. An oil filter as in claim 10, wherein the spring and the end plate remote from the end plate are constructed and arranged to operationally interengage and provide a relatively flat profile.
- 13. An oil filter as in claim 7, including seal means between the end cap remote from the end plate and the spring to prevent oil from passing directly to the opening in the end cap remote from the end plate and bypassing the opening in the spring valve.
- 14. An oil filter as in claim 7, wherein the temperature responsive means comprises an adhesive material.
- 15. An oil filter comprising a housing that is open at one end, an end plate connected to said housing and closing said open end, said end plate having at least one inlet opening and an outlet opening therein, an anti-drain back valve for precluding return flow of oil through the inlet opening, an annular filter media disposed in said housing, said filter media having a first member at one end and an end cap at the other end, the first member having at least one opening spaced radially outwardly from the central axis thereof and valve means cooperating with said first member for closing said opening to fluid flow, and temperature responsive means between the first member and the valve means for holding the first member and valve means so as to preclude flow of oil through said opening in the first members, whereby, when the temperature of the oil reaches a predetermined temperature, the temperature responsive means will enable movement of the valve means with respect to the first member, and when the pressure within the housing increases and the pressure differential across the first member exceeds a predetermined value, the said at least one opening will be opened to permit fluid flow therethrough.
- 16. An oil filter as in claim 15, wherein the first member and the valve means are sealingly engaged to one another radially outwardly of the opening in the first member.
- 17. An oil filter as in claim 15, including seal means between the first member and the valve means to prevent oil from passing directly to the opening in the first member and bypassing the opening in the valve means.
- 18. An oil filter as in claim 15, wherein the temperature responsive means is an adhesive.
- 19. An oil filter as in claim 15, wherein the temperature responsive means is a hot melt adhesive.
RELATED APPLICATION
[0001] The present application is a continuation-in-part of pending patent application Ser. No. 09/820,267 filed Mar. 28, 2001 and entitled “End Cap Relief Mechanism For A Filter”.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09820267 |
Mar 2001 |
US |
Child |
10045573 |
Oct 2001 |
US |