Liquid Filter and Drain
20170095759 ยท 2017-04-06
Assignee
Inventors
Cpc classification
F16N2031/008
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01D35/153
PERFORMING OPERATIONS; TRANSPORTING
F02M37/48
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01D29/21
PERFORMING OPERATIONS; TRANSPORTING
F02M37/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01M11/0408
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01D35/16
PERFORMING OPERATIONS; TRANSPORTING
B01D35/005
PERFORMING OPERATIONS; TRANSPORTING
F02M37/34
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16N31/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01D2201/295
PERFORMING OPERATIONS; TRANSPORTING
International classification
B01D35/16
PERFORMING OPERATIONS; TRANSPORTING
F02M37/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01D35/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A filter unit includes a top plate, a bottom plate, and a filter medium. The top plate is disposed at a first end of the filter unit. The bottom plate is disposed at a second end of the filter unit. The bottom plate includes a threaded filter portion and a valve shaft. The threaded filter portion has external threads and the valve shaft extends from the threaded filter portion along an axis of elongation of the filter unit. The filter medium is disposed between the top plate and the bottom plate.
Claims
1. A filter unit comprising: a top plate disposed at a first end of the filter unit; a bottom plate disposed at a second end of the filter unit, the bottom plate including a threaded filter portion and a valve shaft, the threaded filter portion having external threads and the valve shaft extending from the threaded filter portion along an axis of elongation of the filter unit; and a filter medium disposed between the top plate and the bottom plate.
2. The filter unit according to claim 1, further comprising: a valve shaft seal disposed annularly about the valve shaft and configured to form a seal with an inside surface of a valve stem.
3. The filter unit according to claim 1, further comprising: a fluid outlet to convey a fluid through the top plate and the fluid outlet being defined by an inside surface; a plurality of stepped spokes extending outwardly from a perimeter of the top plate; and a ring coupler configured to couple the filter unit to a housing, the ring coupler including a plurality of notches disposed about a perimeter of the ring coupler and configured to mate with the plurality of stepped spokes.
4. The filter unit according to claim 3, further comprising: a plurality of fluid inlets disposed about the top plate and defined by the plurality of stepped spokes, an outside perimeter surface of the top plate, and an inside surface of the ring coupler.
5. The filter unit according to claim 3, further comprising: a gasket secured about the perimeter of the ring coupler.
6. The filter unit according to claim 3, further comprising: an outlet seal disposed annularly about an inside surface of the fluid outlet and configured to form a seal about an outside surface of a connection port from a filter base.
7. A drain valve assembly comprising: a bottom plate having: a threaded filter portion with a set of external threads; a valve shaft extending from the threaded filter portion; and a valve shaft seal disposed annularly about at a distal end of the valve shaft; and a valve stem having: a threaded stem portion disposed at a first end of the valve stem, the threaded stem portion including a set of internal threads configured to mate with the threaded filter portion; an axial passage extending along a central axis of the valve stem; a valve stem inlet extending from an outside surface of the valve stem to the axial passage; a valve stem outlet disposed at a second end of the valve stem; and wherein the valve shaft seal is configured to slide within the axial passage, the drain valve assembly defining a closed configuration when the valve shaft seal is disposed between the valve stem inlet and the valve stem outlet, the drain valve assembly defining an open configuration when the valve stem inlet is disposed between the valve shaft seal and the valve stem outlet.
8. The drain valve assembly according to claim 7, further comprising: a knob coupled to the valve stem and configured to transmit torque to the valve stem to turn the valve stem.
9. The drain valve assembly according to claim 7, further comprising: a body having an outside surface configured to move telescopically within a housing bore of a filter housing assembly.
10. The drain valve assembly according to claim 9, further comprising: a valve stem seal disposed about the valve stem and configured to form a seal between the body and the housing bore.
11. The drain valve assembly according to claim 7, wherein the valve stem inlet includes a plurality of valve stem inlets.
12. A housing assembly configured to filter a fluid, the filter housing assembly comprising: a filter unit including: a top plate disposed at a first end of the filter unit, the top plate including a fluid outlet and a plurality of stepped spokes extending outwardly from a perimeter of the top plate; a bottom plate disposed at a second end of the filter unit, the bottom plate including: a threaded filter portion with a set of external threads; a valve shaft extending from the threaded filter portion along an axis of elongation of the filter unit; and a valve shaft seal disposed annularly about at a distal end of the valve shaft; and a filter medium disposed between the top plate and the bottom plate; and a drain valve assembly including: a valve stem having: a threaded stem portion disposed at a first end of the valve stem, the threaded stem portion including a set of internal threads configured to mate with the threaded filter portion; an axial passage extending along a central axis of the valve stem; a valve stem inlet extending from an outside surface of the valve stem to the axial passage; a valve stem outlet disposed at a second end of the valve stem; and wherein the valve shaft seal is configured to slide within the axial passage, the drain valve assembly defining a closed configuration when the valve shaft seal is disposed between the valve stem inlet and the valve stem outlet, the drain valve assembly defining an open configuration when the valve stem inlet is disposed between the valve shaft seal and the valve stem outlet.
13. The housing assembly according to claim 12, further comprising: a ring coupler configured to couple the filter unit to a housing, the ring coupler including a plurality of notches disposed about a perimeter of the ring coupler and configured to mate with the plurality of stepped spokes.
14. The housing assembly according to claim 13, further comprising: a plurality of fluid inlets disposed about the top plate and defined by the plurality of stepped spokes, an outside perimeter surface of the top plate, and an inside surface of the ring coupler.
15. The housing assembly according to claim 13, further comprising: a gasket secured about the perimeter of the ring coupler.
16. The housing assembly according to claim 12, further comprising: an outlet seal disposed annularly about an inside surface of the fluid outlet and configured to form a seal about an outside surface of a connection port from a filter base.
17. The housing assembly according to claim 12, further comprising: a valve shaft seal disposed annularly about the valve shaft and configured to form a seal with an inside surface of the valve stem.
18. The housing assembly according to claim 12, further comprising: a knob coupled to the valve stem and configured to transmit torque to the valve stem to turn the valve stem.
19. The housing assembly according to claim 12, further comprising: a body having an outside surface configured to telescope within a housing bore of a filter housing assembly.
20. The housing assembly according to claim 19, further comprising: a valve stem seal disposed about the valve stem and configured to form a seal between the body and the housing bore.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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[0022]
[0023] The drawings presented are intended solely for the purpose of illustration and therefore, are neither desired nor intended to limit the subject matter of the disclosure to any or all of the exact details of construction shown, except insofar as they may be deemed essential to the claims.
DETAILED DESCRIPTION
[0024]
[0025] In a particular example, the power source 18 includes an engine configured to combust a fuel such as diesel and the fuel is filtered at a filter housing assembly 20. As fuel passes through the filter housing assembly 20, contaminants such as particulates, debris, water, and the like are filtered out and retained in a filter medium (shown in
[0026]
[0027] The filter housing assembly 20 includes a housing 60, a fuel inlet 62, a fuel outlet 64, a base coupler 66 and the drain valve assembly 22. In general, the housing 60 may include any suitable material such as, for example, metals, plastics, elastomers, and the like. In a particular example, the housing 60 is primarily sheet metal formed into a cylindrical shell and incorporating elastomeric seals. In another particular example, the housing 60 is a cast metal shell to which machined surfaces are subsequently milled and/or elastomeric seals are later added.
[0028] The fuel inlet 62 is in fluid communication with the base inlet 32 and disposed annularly about the perimeter of the top plate 46 (shown particularly in
[0029] The drain valve assembly 22 is disposed at a lower portion of the housing 60 to drain the fluid separated from the fuel out of the housing 60. The drain valve assembly 22 is disposed in a housing bore 90. The housing bore 90 is defined by a cylindrical wall 92 passing through the housing 60. The drain valve assembly 22 includes a valve stem 100 and a lower seal 102. The cylindrical wall 92 is sufficiently smooth and long enough to slidingly seal with the lower seal 102 disposed on a valve stem 100 of the drain valve assembly over the travel of the valve stem 100 from the closed configuration to an open position. The lower seal 102 includes any suitable type of seal such as, for example, a friction fit, O-ring seal, or the like. In a particular example, the lower seal 102 includes an annular groove 104 disposed about the valve stem 100 and sized to accept an O-ring 106. The O-ring 106 may include any suitable elastomeric or deformable material.
[0030] The valve stem 100 is generally sized to mate with the housing bore 90 at a relatively close tolerance while allowing rotation and/or a sliding motion of the valve stem 100 within the housing bore 90. The valve stem 100 has a first end 108, a second end 110 and a body 112. The first end 108 is disposed within the housing 60 and includes a threaded stem portion 114 configured to mate with a corresponding threaded filter portion 116. The threaded stem portion 114 includes internal threads that are disposed within a portion of an axial passage 120. The axial passage 120 extends through the body 112 from the first end 108 to the second end 110.
[0031] The drain valve assembly 22 is shown in the closed configuration in
[0032]
[0033]
[0034] In order to move the valve stem 100 from the closed configuration shown in
[0035]
[0036] Also shown in
[0037]
[0038] As shown in
INDUSTRIAL APPLICABILITY
[0039] The present disclosure may be applicable to any machine including a fluid filter. Aspects of the disclosed filter housing assembly may promote ease of use, reduced manufacturing costs, reduced waste in the manufacturing process, operational flexibility, and performance of fluid filter housing assemblies in general and fuel systems in particular. As described herein, it is an advantage of aspects of the filter housing assembly 20 that the top plate 46 is a separate piece from the ring coupler 86. For example, the gasket 84 is over-molded on the ring coupler 86. This process entails first forming the ring coupler 86 and then placing the ring coupler 86 into a second mold in which the gasket 84 is molded and integrated onto the ring coupler 86. It is more likely that an over-molded component will be rejected during quality control because of the additional steps in the manufacturing process. Also, over-molded components are more difficult to recycle due to the two different materials. By making the ring coupler 86 separate from the top plate 46, if the ring coupler 86 is rejected, only a relatively low-mass component is rejected and so, material cost can be saved.
[0040] It is another advantage of some aspects of the disclosure, that the valve stem 100 may be formed as a single piece. In this manner, the number of components in the filter housing assembly 20 may be reduced. In addition, Applicant discovered that the O-ring 106 shown in
[0041] It will be appreciated that the foregoing description provides examples of the disclosed system and technique. However, it is contemplated that other implementations of the disclosure may differ in detail from the foregoing examples. All references to the disclosure or examples thereof are intended to reference the particular example being discussed at that point and are not intended to imply any limitation as to the scope of the disclosure more generally. All language of distinction and disparagement with respect to certain features is intended to indicate a lack of preference for those features, but not to exclude such from the scope of the disclosure entirely unless otherwise indicated.
[0042] Recitation of ranges of values herein are merely intended to serve as a shorthand method of referring individually to each separate value falling within the range, unless otherwise indicated herein, and each separate value is incorporated into the specification as if it were individually recited herein. All methods described herein can be performed in any suitable order unless otherwise indicated herein or otherwise clearly contradicted by context.
[0043] Throughout the disclosure, like reference numbers refer to similar elements herein, unless otherwise specified.