Interface O-ring seal for low permeation flange of a fuel supply unit

Information

  • Patent Application
  • 20080012240
  • Publication Number
    20080012240
  • Date Filed
    July 09, 2007
    16 years ago
  • Date Published
    January 17, 2008
    16 years ago
Abstract
A flange structure (10′) for a fuel supply unit of a vehicle includes at least one electrically conductive fuel port (16′) having first and second ends (22, 24) and features (25, 26) defining a channel (28) about a periphery thereof. An elastomer seal (30) is disposed in the channel. A plastic flange (20′) is overmolded on at least a portion of the fuel port between the first and second ends and on at least a portion of the elastomer seal, with the elastomer seal defining a barrier preventing fuel or fuel vapor from passing between the periphery of the fuel port and the overmolded flange.
Description

BRIEF DESCRIPTION OF THE DRAWINGS

The invention will be better understood from the following detailed description of the preferred embodiments thereof, taken in conjunction with the accompanying drawings, wherein like reference numerals refer to like parts, in which:



FIG. 1 is a view of conventional fuel supply unit of a vehicle.



FIG. 2 is a sectional view of a flange structure including a flange and a fuel port of provided in accordance with an embodiment of the invention.





DETAILED DESCRIPTION OF THE EXEMPLARY EMBODIMENT

With reference to FIG. 2, a portion of a flange structure is shown, generally indicated at 10′, in accordance with the principles of an embodiment of the invention. The flange structure 10′ can be similar to the flange structure 10 shown in FIG. 1, employed in a fuel supply unit of a vehicle. The flange structure 10 includes a fuel port 16′ and a flange 20′ overmolded on at least a portion of the fuel port 16′.


The fuel port 16′ is an electrically conductive, preferably of insert molded plastic having a first end 22 and a second end 24. As noted above, a portion of the periphery of the fuel port 16′, between the first and second ends, is overmolded with a non-conductive plastic flange 20′. The flange 20′ is constructed and arranged to be sealed to a wall of a fuel tank (not shown). Thus, the first end 22 is accessible at an outside portion of the flange 20′ and is constructed and arranged to be connected at the engine side of a vehicle and grounded. The second end 24 of the fuel port 16′ is associated with the inside portion of the flange 20′ and thus is to be exposed to fuel in a fuel tank (not shown). The second end 24 of the fuel port 16′ is constructed and arranged to be coupled with a fuel pump (not shown in FIG. 2) preferably of the type shown in FIG. 1.


Alternatively, the second end 24 can be grounded at the fuel pump. In the embodiment fuel moves in the direction of the arrows in FIG. 2, from the pump to the engine of a vehicle.


The fuel port 16′ includes supporting features 25 and 26 defining an annular channel 28 about the periphery thereof. In the embodiment, the feature 25 is generally L-shaped in section and extends annularly about the periphery of the fuel port 16′. The feature 26 is an annular rim spaced above the feature 25 and disposed about the periphery of the fuel port 16′. The features 25 and 26 defined the channel 28 for supporting an elastomer seal such as an O-ring 30 and also ensure that the O-ring 30 is located properly in the channel 28. The feature 26 is spaced above feature 25 a distance generally equal to or slightly greater than the diameter of the O-ring 30 and acts to capture the O-ring during an overmolding process as described below.


Since the end 24 of the fuel port 16′ is exposed to fuel, there is a chance of leakage or permeation of fuel or vapors between the periphery of the fuel port 16′ and the overmolded flange 20′. Thus, in accordance with the embodiment, prior to overmolding the flange 20′, the O-ring 30 is placed in the channel 28. Thereafter, the flange 20′ is overmolded such that at least a portion of the O-ring 30 is also overmolded with the plastic material of the flange 20′. This ensures that the O-ring 30 is captured to seal the interface between the conductive fuel port 16′ and the non-conductive flange 20′. Thus, the O-ring 30 acts as a leakage or permeation barrier and is of high-temperature resistant material so as to be overmolded. Although only one fuel port 16′ is shown, it can be appreciated that other similar ports, with associated O-rings 30, can be provided in the flange structure 10′.


Hence, by employing a conductive fuel port 16′, ESD can be achieved and by overmolding an O-ring 30 with the plastic flange 20′, a fuel leakage barrier is provided.


The foregoing preferred embodiments have been shown and described for the purposes of illustrating the structural and functional principles of the present invention, as well as illustrating the methods of employing the preferred embodiments and are subject to change without departing from such principles. Therefore, this invention includes all modifications encompassed within the spirit of the following claims.

Claims
  • 1. A flange structure for a fuel supply unit of a vehicle, the flange structure comprising: at least one electrically conductive fuel port having first and second ends and features defining a channel about a periphery thereof,an elastomer seal in the channel, anda plastic flange overmolded on at least a portion of the fuel port between the first and second ends and overmolded on at least a portion of the elastomer seal, with the elastomer seal defining a barrier preventing fuel or fuel vapor from passing between the periphery of the fuel port and the overmolded flange.
  • 2. The flange structure of claim 1, wherein the elastomer seal is an O-ring.
  • 3. The flange structure of claim 2, wherein the features include a first feature, generally L-shaped in section, that extends annularly about the periphery of the fuel port and a second feature defining an annular rim spaced from the first feature.
  • 4. The flange structure of claim 3, wherein the second feature is spaced from the first feature a distance generally equal to a diameter of the O-ring.
  • 5. The flange structure of claim 1, wherein the features include a first feature, generally L-shaped in section, that extends annularly about the periphery of the fuel port and a second feature defining an annular rim spaced from the first feature.
  • 6. The flange structure of claim 1, wherein the fuel port is composed of electrically conductive plastic.
  • 7. A flange structure for a fuel supply unit of a vehicle, the flange structure comprising: at least one electrically conductive fuel port having first and second ends and means for supporting a seal about a periphery of the fuel port,means for sealing carried by the means for supporting, anda plastic flange overmolded on at least a portion of the fuel port between the first and second ends and overmolded on at least a portion of the means for sealing, with the elastomer seal defining a barrier preventing fuel or fuel vapor from passing between the periphery of the fuel port and the overmolded flange.
  • 8. The flange structure of claim 7, wherein the means for sealing is an elastomer seal.
  • 9. The flange structure of claim 7, wherein the means for sealing is an O-ring.
  • 10. The flange structure of claim 9, wherein the means for supporting includes a first feature, generally L-shape in section, that extends annularly about the periphery of the fuel port and a second feature defining an annular rim spaced from the first feature, the first and second features defining a channel for receiving the O-ring.
  • 11. The flange structure of claim 10, wherein the second feature is spaced from the first feature a distance generally equal to a diameter of the O-ring.
  • 12. The flange structure of claim 7, wherein the means for supporting includes a first feature, generally L-shape in section, that extends annularly about the periphery of the fuel port and a second feature defining an annular rim spaced from the first feature, the first and second features defining a channel receiving the means for sealing.
  • 13. The flange structure of claim 7, wherein the fuel port is composed of electrically conductive plastic.
  • 14. A method of providing a flange structure for a fuel supply unit of a vehicle, the method including: providing at least one electrically conductive fuel port having first and second ends and features defining channel about a periphery thereof,placing an elastomer seal in the channel, andovermolding a plastic flange on at least a portion of the fuel port between the first and second ends and on at least a portion of the elastomer seal, with the elastomer seal defining a barrier preventing fuel or fuel vapor from passing between the periphery of the fuel port and the overmolded flange.
  • 16. The method of claim 14, wherein the placing step includes placing an O-ring as the elastomer seal in the channel.
  • 17. The method of claim 14, wherein providing step includes: providing the features to include a first feature, generally L-shape in section, that extends annularly about the periphery of the fuel port and a second feature defining an annular rim spaced from the first feature so as to generally capture the elastomer seal prior to the overmolding step.
  • 18. The method of claim 14, wherein the providing step includes insert molding the fuel port from electrically conductive plastic.
Parent Case Info

This application claims the benefit of the earlier filing date of U.S. Provisional Application No. 60/830,817, filed on Jul. 14, 2006, and claims the benefit thereof for priority purposes.

Provisional Applications (1)
Number Date Country
60830817 Jul 2006 US