Selectively controllable filtration system of a transmission and method thereof
US-2017089456-A1 · Mar 30, 2017 · US
US9410609B1 · US · B1
| Field | Value |
|---|---|
| Publication number | US-9410609-B1 |
| Application number | US-201514868750-A |
| Country | US |
| Kind code | B1 |
| Filing date | Sep 29, 2015 |
| Priority date | Sep 29, 2015 |
| Publication date | Aug 9, 2016 |
| Grant date | Aug 9, 2016 |
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Official abstract text for this publication.
An apparatus for reducing contaminants in lubrication for a transfer case. The apparatus utilizes the tendencies of a transfer case to splash and otherwise project internal sealed lubricant in numerous directions within the case, along with gravitational forces acting on the lubricant, to passively filter and otherwise remove particulate contaminates from the lubrication. The apparatus for containing lubricated mechanical components comprising a housing and a vessel. The vessel has an open top. The vessel is located proximate an inside surface of the housing. A filter is secured to the vessel. Lubrication contained within the housing flows along an inside surface of the housing into the vessel through the open top, and further flows out of the vessel through the filter.
Opening claim text (preview).
The invention claimed is: 1. An apparatus for containing lubricated mechanical components comprising: a housing having an inside surface, an outside surface and an interior; a vessel having an open top and an outlet opening, the vessel located proximate the inside surface of the housing, the open top providing communication between an interior of the vessel and the interior of the housing; a filter secured to the vessel, the filter providing communication between the interior of the vessel and the interior of the housing; a predetermined amount of lubrication fluid disposed within the interior of the housing; and a static oil level defined by the predetermined amount of lubrication fluid in an initial condition state, wherein the vessel is located on the inside surface of the housing such that the outlet opening of the vessel is positioned above the static oil level, lubrication fluid flows along the inside surface of the housing into the vessel through the open top, lubrication flows through the filter, and lubrication fluid further flows out of the vessel into the interior of the housing by the force of gravity through the outlet opening. 2. The apparatus of claim 1 , further comprising: the vessel including a bottom; and a magnet disposed in the interior of the vessel, the magnet located proximate the bottom of the vessel. 3. The apparatus of claim 1 , further comprising: the vessel including a bottom; and the filter covers the outlet opening and is spaced apart from the bottom of the vessel, wherein debris in the lubrication fluid settles to the bottom of the vessel, and the debris is maintained in the bottom of the vessel. 4. The apparatus of claim 1 , further comprising: a predetermined amount of lubrication fluid disposed within the interior of the housing; and the interior of the vessel having a volume, the volume of the interior of the vessel being less than the predetermined amount of lubrication fluid. 5. The apparatus of claim 1 , wherein the open top of the vessel includes a labyrinth passage. 6. The apparatus of claim 5 , wherein the labyrinth passage includes a first member and a second member, the first member extending from one side of the vessel, the second member extending from an opposite side of the vessel, the first member spaced apart vertically from the second member, and the first member and second member extending far enough to overlap a portion of each other. 7. The apparatus of claim 1 , wherein at least part of the vessel is formed by the housing. 8. An apparatus for containing lubricated mechanical components comprising: a housing having an inside surface, an outside surface and an interior; a vessel having an open top, the vessel located proximate the inside surface of the housing, the open top providing communication between an interior of the vessel and the interior of the housing; and a filter secured to the vessel, the filter providing communication between the interior of the vessel and the interior of the housing, wherein the vessel includes an outer edge, the housing includes a protruding portion that extends away from the inside surface of the housing, the protruding portion located above the vessel, the protruding portion terminating before the outer edge of the vessel, lubrication fluid flows along the inside surface of the housing into the vessel through the open top, and lubrication fluid further flows out of the vessel through the filter. 9. An apparatus for containing lubricated mechanical components comprising: a housing having an inside surface, an outside surface and an interior; a vessel having an open top, the vessel located proximate the inside surface of the housing, the open top providing communication between an interior of the vessel and the interior of the housing; and a filter secured to the vessel, the filter providing communication between the interior of the vessel and the interior of the housing, wherein the vessel includes a protuberance, the housing includes a cavity, the cavity is shaped to capture the protuberance, the protuberance of the vessel is disposed within the cavity of the housing, lubrication fluid flows along the inside surface of the housing into the vessel through the open top, and lubrication fluid further flows out of the vessel through the filter. 10. The apparatus of claim 9 , wherein the housing is formed by a first half and a second half, a first portion of the cavity is formed in the first half of the housing and a second portion of the cavity is formed in the second half of the housing, and the protuberance of the vessel is sandwiched between the first half of the housing and the second half of the housing. 11. The apparatus of claim 9 , wherein the housing includes a generally linear area and a curved area, and the vessel is located proximate the curved area. 12. A transfer case comprising: a housing, formed by a first half and a second half, having an inside surface, an outside surface and an interior; lubrication fluid disposed within the housing; a vessel having an open top, the vessel located proximate the inside surface of the housing, the open top providing communication between an interior of the vessel and the interior of the housing, the vessel including a bottom and an outer edge; a protuberance extending away from one side of the vessel toward the housing, the protuberance sandwiched between the first half of the housing and the second half of the housing; a filter secured to the vessel, the filter providing communication between the interior of the vessel and the interior of the housing; a magnet disposed in the interior of the vessel, the magnet located proximate the bottom of the vessel; and the housing further including a protruding portion that extends away from the inside surface of the housing, the protruding portion located above the vessel, and the protruding portion terminating before the outer edge of the vessel, wherein lubrication fluid flows along the inside surface of the housing into the vessel through the open top, and lubrication fluid further flows out of the vessel through the filter. 13. An apparatus for passively removing particulate matter from lubrication fluid contained within a housing, the apparatus comprising: a vessel having a first opening, a second opening, and a bottom, wherein the second opening is disposed above and spaced apart from the bottom; the first opening spaced apart from, and located above, the second opening; the first opening providing access to an interior of the vessel by way of a labyrinth passage; the second opening providing access to the interior of the vessel by way of a filter; and a magnet disposed within the interior of the vessel, wherein the lubrication fluid flows into the interior of the vessel through the first opening, and out of the second opening by the force of gravity, with particulate removed from the lubrication fluid by the filter such that the particulate settles to the bottom of the vessel and is maintained within the vessel by the magnet.
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