This patent disclosure relates generally to a fuel fill adaptor assembly and, more particularly, to a fuel fill adaptor assembly for a vehicle body suitable for use with a variety of fuel tank arrangements.
A service body configured for use by a tradesman can be added to a vehicle to enhance its usefulness for safely storing equipment commonly used by the tradesman in carrying out his vocation. When mounting a service body to a vehicle, the installer provides means for allowing access to the fill port of the fuel tank of the vehicle. Different fuel tank configurations are in use in different commercially-available vehicles. As a result, the installer can be confronted with a variety of unique mounting arrangements for providing fuel fill access.
Typically, the hole in the service body for a fuel fill adaptor is cut in the field by the installer depending upon to what vehicle the service body is being mounted. A different fuel adaptor is used depending upon the particular make and model of the vehicle.
There is a continued need in the art to provide additional solutions to enhance the use and installation of service bodies with vehicles over a range of conditions. For example, there is a continued need for a fuel fill adaptor that can be used with a variety of fuel tank assembly configurations.
It will be appreciated that this background description has been provided to aid the reader, and is not to be taken as an indication that any of the indicated problems were themselves appreciated in the art. While the described principles can, in some aspects and embodiments, alleviate the problems inherent in other systems, it will be appreciated that the scope of the protected innovation is defined by the attached claims, and not by the ability of any disclosed feature to solve any specific problem noted herein.
The present disclosure, in one aspect, is directed to embodiments of a fuel fill adaptor assembly. In embodiments, a fuel fill adaptor assembly includes a fill housing, a cover assembly for selectively preventing access to an interior of the fill housing, and a mounting plate for mounting the fuel fill adaptor assembly to a terminal portion of a fuel tank assembly of a vehicle.
In one embodiment, a fill housing, a cover assembly, and a mounting plate. The fill housing defines a fill end, an interior cavity, and a tank end. The fill end includes a mounting flange defining a fill opening in communication with the interior cavity. The tank end defines a mounting opening in communication with the interior cavity. The cover assembly is for selectively preventing access to the interior cavity of the fill housing via the fill opening. The mounting plate is mounted to the fill housing adjacent the tank end in one of a plurality of mounting positions. The mounting plate is configured to be connectable to at least two types of a terminal portion of a fuel tank assembly having different mounting configurations.
In still another aspect, embodiments of a service body for a vehicle are disclosed. In embodiments, a service body includes an embodiment of a fuel fill adaptor assembly constructed according to principles of the present disclosure.
In one embodiment, a service body for a vehicle includes a service body panel and a fuel fill adaptor assembly. The service body panel has an interior surface and an exterior surface with a cutout extending therethrough.
The fuel fill adaptor assembly includes a fill housing, a cover assembly, and a mounting plate. The fill housing defines a fill end, an interior cavity, and a tank end. The fill end includes a mounting flange defining a fill opening in communication with the interior cavity. The tank end defines a mounting opening in communication with the interior cavity. The cover assembly is for selectively preventing access to the interior cavity of the fill housing via the fill opening. The mounting plate is mounted to the fill housing adjacent the tank end in one of a plurality of mounting positions. The mounting plate is configured to be connectable to at least two types of a terminal portion of a fuel tank assembly having different mounting configurations.
The cover assembly includes a frame and a fill door pivotally connected to the frame. The frame is attached to the mounting flange of the fill housing such that the service body panel is interposed between the frame and the mounting flange. The frame defines a central fill port therethrough. The central fill port is aligned with the cutout. The fill door is pivotally movable over a range of travel between a closed position in which the cutout and the fill port are occluded and access to the interior cavity of the fill housing via the fill opening is blocked and an open position in which the door is moved away from the fill port such that the interior cavity of the fill housing is accessible through the fill opening and the cutout.
Further and alternative aspects and features of the disclosed principles will be appreciated from the following detailed description and the accompanying drawings. As will be appreciated, the fuel fill adaptor assemblies and service bodies for vehicles disclosed herein are capable of being carried out in other and different embodiments, and capable of being modified in various respects. Accordingly, it is to be understood that both the foregoing general description and the following detailed description are exemplary and explanatory only and do not restrict the scope of the appended claims.
It should be understood that the drawings are not necessarily to scale and that the disclosed embodiments are illustrated diagrammatically and in partial views. In certain instances, details which are not necessary for an understanding of this disclosure or which render other details difficult to perceive may have been omitted. It should be understood that this disclosure is not limited to the particular embodiments illustrated herein.
Embodiments of a fuel fill adaptor assembly constructed in accordance with principles of the present disclosure can be used as a “universal” fuel fill adaptor assembly, i.e., configured to be used with at least two different fuel tank arrangements with different fuel fill lines in communication with the respective tanks. Embodiments of a fuel fill adaptor assembly constructed in accordance with principles of the present disclosure can be used to provide access to the fuel tank of a vehicle having an after-market service body mounted thereto.
In embodiments, the fuel fill adaptor assembly includes a fill housing, a cover assembly for selectively preventing access to an interior cavity of the fill housing via a fill opening of the fill housing, and a mounting plate for mounting the fuel fill adaptor assembly to a terminal portion of a fuel tank assembly of a vehicle. The mounting plate can be configured to be connectable to at least two different fill necks having different mounting configurations. The mounting plate can be configured to be mounted to the fill housing in one of a variety of different mounting positions to be suitable for use with at least two different vehicles.
Embodiments of a fuel fill adaptor assembly constructed in accordance with principles of the present disclosure include means for respectively mounting a plurality of different fill necks thereto. In embodiments, the means for respectively mounting a plurality of different fill necks thereto includes a mounting plate defining a plurality of mounting apertures therein. In embodiments, each one of the different fill necks can be mounted to the mounting plate via a subset of the mounting apertures defined therein. In embodiments, the fuel fill adaptor can be used with fill necks having different mounting structure.
Embodiments of a fuel fill adaptor assembly constructed in accordance with principles of the present disclosure include means for respectively mounting a fill neck thereto over a range of different orientations with respect to a fill end of a fill housing of the fuel fill adaptor assembly such that the fuel fill adaptor assembly can be used with a variety of different commercially-available vehicle chasses. In embodiments, the means for respectively mounting a fill neck thereto over a range of different orientations with respect to a fill end of a fill housing of the fuel fill adaptor assembly includes a mounting plate having a pair of detent posts extending therefrom and a fill housing defining first and second series of detents in spaced relationship to each other. The mounting plate can be mounted to the fill body such that the detent posts are respectively disposed in one of the first and second series of such that the mounting plate is incrementally adjustable relative to the fill end of the fill housing. In embodiments, the fuel fill adaptor can be used with fuel tank arrangements which different fill neck orientations with respect to the fill end of the fill housing.
Embodiments of a fuel fill adaptor assembly constructed in accordance with principles of the present disclosure can have a wide variety of different forms, as will be appreciated by one skilled in the art. For example, in embodiments, a fuel fill adaptor assembly constructed according to principles of the present disclosure can include a fill housing having different shapes and configurations to be suitable for use with different fuel tank arrangements.
Turning now to the Figures, there is shown in
The fill housing 41 defines a fill end 50, a tank end 51, and the interior cavity 44, which is configured to receive a gas pump nozzle therein. The fill end 50 includes a mounting flange 52 defining a fill opening 53 in communication with the interior cavity 44. The tank end 51 defines a mounting opening 54 in communication with the interior cavity 44. In the illustrated embodiment, the mounting opening 54 is configured to accommodate the mounting plate 45 therethrough.
The fill housing 41 includes a shroud portion 55 extending between the fill end 50 and the tank end 51. The shroud portion 55 extends from the mounting flange 52 of the fill end 50 to the tank end 51 and defines the interior cavity 44.
The cover assembly 43 and the mounting plate 45 are respectively connected to opposing ends 50, 51 of the fill housing 41. The cover assembly 43 is configured to selectively prevent access to the interior cavity 44 of the fill housing 41 via the fill opening 53.
The mounting plate 45 includes a pair of detent posts 61 projecting therefrom which are configured to facilitate mounting the mounting plate 45 in one of a plurality of different angular tilt positions with respect to the fill housing 41. In the illustrated embodiment, each of the detent posts 61 of the mounting plate 45 includes a disc 62 extending radially from the post 61 and configured to act as a stop against the sidewall 64 through which the post 61 extends to capture the mounting plate 45 laterally with respect to the sidewalls of the fill housing 41. The mounting plate 45 includes a plurality of mounting fingers 65 extending therefrom which are configured to secure the mounting plate 45 to the fill housing 41 via a cotter pin 68.
The mounting plate 45 is mountable to the fill housing 41 adjacent the tank end 51 in one of a plurality of mounting positions. The mounting plate 45 is configured to be connectable to at least two types of a terminal portion of a fuel tank assembly (e.g., a fill neck) having different mounting configurations. The mounting plate 45 is configured to be mounted to the fill housing 41 adjacent the tank end 51 in one of a plurality of different mounting positions to be suitable for use with at least two different vehicles.
The illustrated cover assembly 43 includes a frame 70, a fill door 71 pivotally connected to the frame 70, and a plurality of fasteners 72 for securing the frame to the fill housing 41. In the illustrated embodiment, the frame 70 is generally rectangular and defines a central fill port 74 therethrough. The fill door 71 is pivotally movable over a range of travel between a closed position (as shown in
Referring to
The mounting flange 52 of the fill end 50 defines a substantially planar mounting surface configured to be placed into abutment with a panel of a service body. In use, an installer can place the mounting flange 52 around a cutout in the panel of the service body such that the cutout of the service body is aligned with the fill opening of the fill housing. The mounting flange 52 includes a plurality of protrusions 79 projecting from the mounting flange 52 toward the tank end 51. In the illustrated embodiment, the mounting flange 52 includes four protrusions 79 with one at each corner. Each protrusion 79 is hollow and includes a female threaded surface 80 therein for engagingly receiving the fasteners 72 of the cover assembly 43 to secure the frame 70 of the cover assembly 43 to the fill housing 41 with the panel of the service body therebetween such that the fill port 74 of the frame 70, the cutout service body, and the fill opening 53 of the fill housing 41 are aligned to permit a suitable gas tank nozzle to extend therethrough.
The shroud portion 55 includes a top 81, the pair of sidewalls 64, and a bottom 82. The sidewalls 64 are in lateral spaced relationship to each other and extend between the top and bottom portions 81, 82. In the illustrated embodiment, the top portion 81 is generally a cylindrical segment and is curved, extending toward the bottom portion 82 in the direction from the fill end 50 toward the tank end 51. The bottom portion 82 is generally a cylindrical segment.
The sidewalls 64 respectively define a series of detents 84 in spaced relationship to each other. The series of detents 84 of the sidewalls 64 are aligned to form pairs of detents configured to cooperate together to secure the mounting plate 45 in one of a plurality of angular tilt positions relative to the fill end 50 (see, e.g.,
In embodiments, the shroud portion 55 can have a different configuration. For example, the shroud portion 55 can be further elongated to allow the fuel fill adaptor assembly to be suitable for use with other vehicles and/or fuel tank arrangements. In embodiments, one or more parts of the shroud 55 can have a different shape and/or size.
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In embodiments, the number and/or location of the detents defined in the fill housing can be varied. For example, referring to
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To assemble the fuel fill adaptor assembly 40 (see, e.g.,
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In the illustrated embodiment, the mounting plate defines a series of mounting apertures in the form of mounting holes 117 and mounting grooves 118 through the first and second mounting faces 111, 112 and disposed around the perimeter 114 of the fill neck aperture 115. The mounting holes 117 and mounting grooves 118 can be configured to permit the connection of a variety of different fill necks having different mounting structures and configurations. In use, a given fill neck can be aligned with two or more of the mounting apertures 117, 118 to permit the fill neck to be secured to the mounting plate 45 via suitable fasteners.
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In the illustrated embodiment, the first mounting face 111 of the mounting plate 45 and the sidewalls of the fill housing 41 include mounting tilt indicia 121 comprising a series of numbers (“21,” “30,” “42,”, and “57”) that an installer can use when securing the mounting plate to the fill housing to verify the mounting plate is in a desired angular relationship with respect to the fill end of the fill housing. In the illustrated embodiment, the mounting tilt indicia 121 on the first mounting face 111 of the mounting plate 45 corresponds to the tilt angles of the mounting plate 45 that are available when the first mounting face 111 of the mounting plate 45 is oriented toward the fill end 50. In the illustrated embodiment, the “57” mounting tilt indicia 121 can be used when mounting the mounting plate 45 to the fill housing 341 of
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The cover assembly 43 is configured such that it covers the cutout made in the panel 581 of the service body 575. The frame 70 is attached to the mounting flange of the fill housing such that the service body panel 581 is interposed between the frame 70 and the mounting flange. The fuel fill adaptor assembly 40 is connected to a fuel fill line 590 of a fuel tank 592 of the vehicle 580 such that a gas pump nozzle can dispense fuel therefrom and be fluidly conveyed to the fuel tank 592.
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In embodiments, the components of the fuel fill adaptor assembly can be made from any suitable material and made using any suitable technique. For example, in embodiments, components of the fuel fill adaptor assembly can be made from a suitable plastic using an injection molding process. In embodiments, components of the fuel fill adaptor assembly can be made from a suitable commercially-available plastic, such as those available from DuPont de Nemours, Inc. (“DuPont”) of Wilmington, Delaware, including Zytel® ST801 nylon resin, for example.
In embodiments, the fuel fill adaptor assembly can have any configuration suitable for the intended application(s) of the service body for which it is provided and for a predetermined set of different fuel tank connection structures. In embodiments, the fuel fill adaptor assembly can be made from a plurality of components that are assembled together to provide the functionality described herein.
All references, including publications, patent applications, and patents, cited herein are hereby incorporated by reference to the same extent as if each reference were individually and specifically indicated to be incorporated by reference and were set forth in its entirety herein.
The use of the terms “a” and “an” and “the” and similar referents in the context of describing the invention (especially in the context of the following claims) are to be construed to cover both the singular and the plural, unless otherwise indicated herein or clearly contradicted by context. The terms “comprising,” “having,” “including,” and “containing” are to be construed as open-ended terms (i.e., meaning “including, but not limited to,”) unless otherwise noted. 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. The use of any and all examples, or exemplary language (e.g., “such as”) provided herein, is intended merely to better illuminate the invention and does not pose a limitation on the scope of the invention unless otherwise claimed. No language in the specification should be construed as indicating any non-claimed element as essential to the practice of the invention.
Preferred embodiments of this invention are described herein, including the best mode known to the inventors for carrying out the invention. Variations of those preferred embodiments may become apparent to those of ordinary skill in the art upon reading the foregoing description. The inventors expect skilled artisans to employ such variations as appropriate, and the inventors intend for the invention to be practiced otherwise than as specifically described herein. Accordingly, this invention includes all modifications and equivalents of the subject matter recited in the claims appended hereto as permitted by applicable law. Moreover, any combination of the above-described elements in all possible variations thereof is encompassed by the invention unless otherwise indicated herein or otherwise clearly contradicted by context.
This patent application claims the benefit of priority to U.S. Provisional Pat. Application No. 63/317,532, filed Mar. 7, 2022, and entitled, “Fuel Fill Adaptor Assembly for Vehicle Body,” which is incorporated in its entirety herein by this reference.
Number | Date | Country | |
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63317532 | Mar 2022 | US |