Diesel Exhaust Fluid reservoirs will become standard on diesel powered ground vehicles beginning in 2011 in the United States of America. These reservoirs generally hold aqueous urea solutions for use with pollution abatement systems. These reservoirs have will have multiple connections to other systems on the vehicles. Because of the multiple connections, multiple liquid tight seals are required for each connection. Ordinarily, these connections are attached by threaded fasteners and rely on these fasteners to form and maintain a liquid or vapor tight seal. Consequently, these connections suffer the disadvantage that if the fasteners loosen or are not properly torqued, an effective seal will not be maintained.
The present invention includes a mounting interface that does not depend on the compression of a fastening system to ensure a liquid tight seal. The present invention may further include a multi-function head that has multiple connectors such that multiple connections may be attached to the head and simultaneously attached via the head at the mounting interface. One embodiment includes a mounting interface adapted to receive the multi-function head formed in a Diesel Exhaust fluid (DEF) reservoir. However, the mounting interface can be used with other fluid reservoirs.
In one embodiment, the invention comprises the combination of a reservoir having an aperture therein; a head unit having an exterior shape complementary to the shape of the aperture, the head unit being positioned within the aperture; a seal ring about an outer periphery of the head unit, the seal ring engaging an interior circumferential surface of the aperture; and a head unit securement retainingly attaching the head unit to the reservoir.
In a further embodiment, the invention comprises the combination of a reservoir having an aperture therein, the aperture including a cylindrical wall extending into the reservoir, the reservoir having a recessed groove in an upper surface about the aperture, the recessed groove including a plurality of recesses thereon; a head unit having an exterior shape complementary to the shape of the aperture, the head unit being positioned within the aperture; the head unit having an inwardly extending rim corresponding to the cylindrical wall, the head unit including a lug, the head unit lug engaging one of recesses, the head unit having a seal ring about an outer periphery of the head unit downwardly extending rim, the seal ring engaging the cylindrical wall and the head unit downwardly extending rim; and a head unit securement retainingly attaching the head unit to the reservoir.
In a further embodiment, the invention includes a head unit comprising a head unit; a plurality of fluid connections extending from an upper side of the head unit to a lower side of the head unit; a temperature sensor attached to the lower side of the head unit; a level sensor attached to the head unit; a heater tube attached to the lower side of the head unit; two of the fluid connections extending into the interior of the heater tube, one of said two fluid connections extending to a lower end of the heater tube, the other of said two fluid connections terminating proximate the lower side of the head unit; a suction tube connected to a further one of the fluid connections, the suction tube extending outside of the heater tube; a further one of the fluid connections terminating proximate the lower side of the head unit outside of the heater tube.
A reservoir or tank according to the concepts of the present invention is generally indicated by the number 10 in the drawings. The terms tank and reservoir will be used interchangeably throughout the following description to refer to any container used to at least temporarily store liquid or vapor. In general, the tank 10 is used in a vehicle (not shown). In the example shown, the tank 10 is used to hold diesel emissions fluid (DEF) and is adapted for use with an emissions control system in a diesel vehicle. It will be appreciated that the tank 10 may used in other similar applications.
In the example shown in
Interface 11 may include a shelf portion generally indicated by the number 15 extending radially outward from wall 12. Shelf portion 15 may be recessed relative to the outer surface of tank 10 to form a rabbet 16. Rabbet 16 may receive a flange or fastening ring used in connection with an individual component or a multi-function head, described below, that fits into interface 11. A channel 19 may be formed about wall 12 and include a base portion 18 spaced inwardly from shelf portion 15. Fastener inserts 22 (
Interface 11 may be shaped to conform to a connector, such as a fluid, gas, or electrical connection, used with the tank 10. Alternatively, in accordance with another aspect of the present invention, interface 11 may be shaped to receive a multi-function head unit or head module, generally indicated by the number 30 in the drawings. Head unit 30 generally includes an inwardly extending rim 31 that is receivable within the opening defined by wall 12 of interface 11. Rim 31 may have any shape including the cylindrical shape shown. In general, rim 31 conforms to wall 12 to facilitate sealing engagement between rim 31 and wall 12, as described more completely below. A flange 32 may extend radially outward from an outer end 33 of rim 31 to engage tank 10 and prevent over insertion of head unit 30. Rim 32 may be sized to seat within rabbet 16 causing the outer surface 34 of rim 32 to lie flush with the surface of tank 10.
A seal 36 is located between rim 31 and wall 12 to form a seal between the head unit 30 and interface 11. In this way, the seal is maintained as long as the head unit 30 resides within the aperture formed by interface 11 and is thus not dependent on the use of fasteners to maintain a surface seal as is common in the art.
In the example shown, seal 36 is mounted on rim 31 and extends radially outward therefrom to sealingly engage wall 12. It will be appreciated that seal 36 may be provided on wall 12 and extend inward to engage rim 31 to the same effect. Seal 36 may be constructed of any suitable seal material including, for example, elastomeric materials. In the example shown, seal 36 is a rubber O-ring. Rim 31 may define a groove 36a to locate and retain the seal 36 in a desired position. In the example shown, seal 36 is located approximately half-way between flange 33 and the end 32a of rim 32. It will be appreciated that other seals may be used. As a further alternative, rim 31 or wall 12 may be coated with a suitable sealing material to effect a seal upon insertion of the head unit 30 within interface 11.
Once head unit 30 is installed in interface 11, a seal is created. In the example shown, the seal is liquid tight. It will be appreciated that a vapor or gas tight seal may also be created with this configuration. Since a seal is created upon insertion of head unit 30 within interface 11, the seal is not dependent upon adequately secured fasteners as is common in the art. As shown, a mounting ring 70 and fasteners 72 may be used to retain the head unit 30 relative to tank 10 if desired. However, the torque on the fasteners (if threaded fasteners are used) is not critical to the effectiveness of the seal. In the example shown, fasteners 72 may be driven through ring 70 and into fastener inserts 22.
Referring to
The fluid connectors 41 are used for DEF fluid supply to the vehicle and DEF fluid return to tank 10. Also, in one embodiment shown in the figures, coolant supply and coolant return connections are also provided to convey heated fluid from the vehicle radiator the DEF tank 10 and return this fluid to the vehicle radiator. In other embodiments, an electrical heater may be used in place of the fluid heater. The electrical connections 42 may include a temperature sensor and a fluid sensor. In one embodiment, a single electrical connector 42 is provided to connect the temperature and level sensors to a DEF control system. For example, as shown in
With respect to fluid connector(s) 41, in the example shown in
Referring now to
The DEF suction 64 is connected to a suction line 48, which has a suction strainer 60 at its lower end that extends to near the bottom of tank 10. The DEF return 61 extends just through the head unit 30 and returns DEF at the top of tank 10.
In accordance with another aspect of the invention, head unit 30 may be rotationally clocked to selected rotational positions to accommodate the location of tank 10 and orientation of connectors 40 for various vehicles. To that end, interface 11 may include at least one facet 82 adapted to engage a corresponding facet 80 on the head unit 30 to prevent relative rotation between interface 11 and head unit 30. It will be appreciated that multiple facets may be used to define multiple rotational positions in which head unit 30 may be seated within interface 11. For example, a polygonal interface 11 and correspondingly shaped head unit 30 (
The foregoing disclosure is illustrative of the present invention and is not to be construed as limiting thereof. Although one or more embodiments of the invention have been described, persons of ordinary skill in the art will readily appreciate that numerous modifications could be made without departing from the scope and spirit of the disclosed invention. As such, it should be understood that all such modifications are intended to be included within the scope of this invention. The written description and drawings illustrate the present invention and are not to be construed as limited to the specific embodiments disclosed.
This application claims priority from U.S. Provisional Patent application Ser. No. 61/354,953, filed on Jun. 15, 2010. The present invention relates generally to tanks and reservoirs used in vehicles. More specifically, the present application relates to a mounting interface for attaching fluid or electrical connections to such a tank or reservoir.
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/US2011/040432 | 6/15/2011 | WO | 00 | 10/15/2013 |
Number | Date | Country | |
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61354953 | Jun 2010 | US |