The present invention relates to fuel systems for motor vehicles and, more specifically, the invention pertains to fuel pipe and housing assemblies and means of attaching such assemblies one to the other.
Fuel systems for motor vehicles are known to include a fuel tank and a filler tube through which fuel is dispensed into the tank. It is known to use a removable cap at the end of the filler tube to close the tube. A threaded fuel cap is the primary seal for the fuel system on most domestic vehicles. It also is known to use a movable damper and a rubber seal to close the fuel system either as the primary shutoff valve or as a secondary, supplemental shut-off structure. It also is known to use capless refueling systems wherein a screw-on cover is not required, and the act of inserting a filler nozzle opens the end of the tube for filling by moving a stopper that closes the tube.
The fuel pipe, primary and secondary shut-offs if supplied, capless refueling assemblies and/or screw-on caps (collectively referred to as ‘fuel pipe assemblies’) are connected at one end to the fuel tank and at an opposite end to a part of the vehicle body, which may include a housing having an access door or other structure at a location in the vehicle body where the filler system is accessed for providing fuel to the tank. The fuel pipe assemblies are known to be connected to the vehicle body or housing by a variety of means and procedures. Current known methods for connecting fuel pipe assemblies to vehicle structure are both cumbersome and time consuming. Different connection systems have been used for different types of fuel pipe assemblies, making installation and servicing more complicated with parts unique to specific assemblies. It is known also to provide a threaded connection between the fuel pipe assembly and housing, and to mount the fuel pipe assembly rigidly to the housing, which may include a rubber or foam component.
The variety of different means for connecting fuel pipe assemblies to housings complicates installation by increasing the number of different parts that must be stocked at assembly plants. Non-standardization of parts among different vehicle types increases the number of different parts that must be stocked and handled for servicing and repair. Tools are required in some such assemblies both for initial installation and for disassembly for servicing. Further, some rigid connections are difficult to connect during initial assembly, and even more difficult to disconnect sometime later if repairs are needed.
It is desirable to provide structure and procedures for connecting fuel pipe assemblies to fuel housings that fit in existing vehicle architecture and that will work with different types of fuel systems, either capped systems or uncapped systems. It is desirable to provide connecting structure that can be installed easily, without tools and with minimal force while also providing a strong, secure connection. Of course, the components and system must work well in a corrosive environment and when exposed to vehicle fuel. It is desirable for the system to be easily serviceable and tolerant of misalignment or variation during assembly.
The present invention provides connections between fuel pipe assemblies and fuel system housings that are easy to install and service, while being secure.
In one aspect thereof, the present invention provides a vehicle refueling system with a housing having a collar defining an abutment and a fuel pipe assembly having an end defining a channel. The end is received in the collar. A connector disposed in the channel of the fuel pipe assembly engages the abutment in the collar.
In another aspect thereof, the present invention provides a connector assembly for a vehicle refueling system having a fuel pipe assembly and a fuel housing. The connector assembly has a connector held by one of the fuel pipe assembly and fuel housing in a substantially fixed position. A portion of the connector extends toward the other of the fuel pipe assembly and the fuel housing, which defines an abutment that engages the connector.
In a still further aspect thereof, the present invention provides a method for connecting a vehicle fuel pipe assembly to a fuel housing. The method has steps of providing at least one connector secured in position relative to one of the fuel pipe assembly and the fuel housing; aligning the fuel pipe assembly and the fuel housing relative to each other; inserting a portion of one of the fuel pipe assembly and the fuel housing into the other of the fuel pipe assembly and the fuel housing; deflecting at least a portion of the connector while performing the step of inserting; and effecting a snap together engagement of the connector with the one of the fuel pipe assembly and the fuel housing to which the connector was not secured in position relative to as part of the step of providing.
An advantage of the present invention is providing structure for connecting fuel pipe assemblies to motor vehicle fuel system housings that can be snapped together or otherwise connected without the use of tools.
Another advantage of the present invention is providing structure for attaching fuel housings and fuel pipe assemblies of all types, including those having screw caps and those that are capless.
Yet another advantage of the present invention is providing an attachment system for fuel pipe assemblies that installs easily yet has high retention force.
Other features and advantages of the invention will become apparent to those skilled in the art upon review of the following detailed description, claims and drawings in which like numerals are used to designate like features.
Before the embodiments of the invention are explained in detail, it is to be understood that the invention is not limited in its application to the details of construction and the arrangements of the components set forth in the following description or illustrated in the drawings. The invention is capable of other embodiments and of being practiced or being carried out in various ways. Also, it is understood that the phraseology and terminology used herein are for the purpose of description and should not be regarded as limiting. The use herein of ‘including’, ‘comprising’ and variations thereof is meant to encompass the items listed thereafter and equivalents thereof, as well as additional items and equivalents thereof.
Referring now more specifically to the drawings and to
Connector 22 is a hoop-like structure having a substantially continuous band 28 with closely adjacent opposed ends 30, 32 and an outwardly angled skirt 34. Band 28 defines one or more inwardly angled tab 36, two tabs 36 being readily visible in
Fuel pipe assembly 24 includes an upper cup 40, a primary shut-off valve 42 and a fuel pipe 44 leading to and fluidly connected to a fuel tank (not shown). The present invention can be used advantageously with fuel pipe assemblies 24 of various types having various different primary shut-off assemblies 42. Fuel pipe assembly 24 further includes a circumferential flange 46 and outer lip 48 spaced from each other on an outer surface of upper cup 40. Accordingly, a trough or channel 50 is defined between flange 46 and lip 48. Flange 46 and outer lip 48 defining channel 50 there between can be part of a monolithic structure for upper cup 40 or can be provided as part of an adapter 52 (
Connector 22 is received in channel 50, between lip 48 and flange 46. A groove 54 (
Fuel housing 26 includes an access enclosure 60 and a collar 62 extending from enclosure 60. Collar 62 is of sufficient size to fit over lip 48. Collar 62 defines an abutment such as an annular rib 64 extending inwardly in collar 62. As illustrated in the cross-sectional view of the assembly shown in
The embodiment of the present invention just described is assembled by sliding connector 22 onto fuel pipe assembly 24. Specifically, skirt 30 slides over lip 48, with the hoop-like structure expanding as necessary by separating between ends 30, 32 so that band 28 slides over lip 48. Band 28 rebounds inwardly and settles into channel 50, with tabs 38 resting in groove 54. Thereafter, fuel housing 26 is connected by relative axial movement of collar 62 and upper cup 40, such that rib 64 is moved past lip 48 and channel 50. Teeth 38 are deflected inwardly as rib 64 slides past and abuts flange 46. As illustrated in the preferred embodiment of
Accordingly, connector 22 is held securely between fuel pipe assembly 24 and fuel housing 26 and connects fuel pipe assembly 24 to fuel housing 26 easily. The snap together connections between connector 22 and fuel pipe assembly 24 and between connector 22 and fuel housing 26 can be made with only minimal force required, and without tools. However, fuel pipe assembly 24 and fuel housing 26 cannot be detached easily one from the other because of the interdigitating structures between the components and the angular seating of tabs 38 in groove 54 and outwardly angled teeth 38 against rib 64.
During assembly of the embodiment shown in
To facilitate assembly and use with fuel pipe assemblies 72 of different types channel 76 and flange 78 can be defined in and adapter 90 engaging an end of an upper cup 92 of fuel pipe assembly 72. To facilitate disassembly when required, connector 70 is provided with indentations 94, 96 for receiving a tool to expand and remove connector 70.
Still other types of connectors can be used. For example, a connector 100 (
During assembly of the embodiment shown in
Still other connector structures can be used to secure a fuel pipe assembly to a fuel housing in a snap together assembly.
The present invention provides snap-together structures of various types whereby a fuel pipe assembly of any configuration can be connected to a vehicle housing of any design. Assembly is quick and easy, without the need for tools. However, once connected, the connection is secure, and unintended disconnect is restrained.
Variations and modifications of the foregoing are within the scope of the present invention. It is understood that the invention disclosed and defined herein extends to all alternative combinations of two or more of the individual features mentioned or evident from the text and/or drawings. All of these different combinations constitute various alternative aspects of the present invention. The embodiments described herein explain the best modes known for practicing the invention and will enable others skilled in the art to utilize the invention. The claims are to be construed to include alternative embodiments to the extent permitted by the prior art.
Various features of the invention are set forth in the following claims.
The present regular United States patent application claims the benefits of U.S. Provisional Application Ser. No. 60/652,880 filed on Feb. 15, 2005.
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/IB06/50468 | 2/13/2006 | WO | 00 | 7/30/2007 |
Number | Date | Country | |
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60652880 | Feb 2005 | US |