The present invention relates to fuel dispensing systems for dispensing fuel into a vehicle fuel tank. More particularly, the present invention relates to a dripless fuel dispensing nozzle for dispensing fuel into a vehicle fuel tank.
Various nozzles have been proposed for use in fuel dispensing systems to transfer fuel from a storage tank to a vehicle fuel tank. Environmental and/or safety concerns have dictated that nozzles of a fuel dispensing system be designed to prevent fuel from dripping from the spout of the nozzle after the nozzle is removed from the vehicle fuel tank and returned to the dispenser.
U.S. Pat. Nos. 5,377,729; 5,645,116; 5,603,364; 5,620,032; and, 6,520,222 disclose various nozzle structures designed to prevent fuel from dripping from the spout once it is removed from a fuel tank. These designs have numerous inherent disadvantages. For example, a number of these prior designs require complex valves to prevent fuel from dripping from the end of the spout of the nozzle. These valves increase the cost and time to manufacture the nozzle. Further, these prior designs all include a relatively large obstruction centrally located in the channel or passageway through which fuel travels through the nozzle and hence unnecessarily restrict the flow of fuel through the nozzle when a vehicle is being refueled.
An object of a preferred embodiment of the present invention is to provide a novel and unobvious nozzle that prevents excessive dripping from the end of the spout of the nozzle upon removal of the nozzle from a vehicle fuel tank after the refueling process has been completed.
Another object of a preferred embodiment of the present invention is to provide a nozzle that overcomes one or more disadvantages of previously known nozzles.
A further object of a preferred embodiment of the present invention is to provide a nozzle that can be readily and inexpensively manufactured.
Still a further object of a preferred embodiment of the present invention is to reduce the obstructions in the fuel channel or passageway present in prior designs to minimize the obstruction or restriction of the flow of fuel through the nozzle in the refueling process.
Yet still another object of a preferred embodiment of the present invention is to provide a dripless nozzle that does not rely upon a complex valve arrangement to prevent fuel dripping from the end of the spout of the nozzle.
Yet another object of a preferred embodiment of the present invention is to provide a structure that can be readily retrofitted to existing nozzles to prevent dripping from the end of the spout of the nozzle.
Yet still a further object of a preferred embodiment of the present invention is to provide a structure that allows fuel collected in one or more fuel collectors to drain back into the vehicle fuel tank after the flow of fuel has been discontinued but prior to removal of the nozzle from the vehicle fuel tank.
It must be understood that no one embodiment of the present invention need include all of the aforementioned objects of the present invention. Rather, a given embodiment may include one or none of the aforementioned objects. Accordingly, these objects are not to be used to limit the scope of the claims of the present invention.
In summary, one embodiment of the present invention is directed to a nozzle for dispensing fuel into a vehicle. The nozzle comprises a body portion and a spout extending from the body portion. The spout passes fuel from the body portion to a vehicle. The body portion includes a fuel flow control member for allowing or preventing fuel from passing through the body portion and the spout to the vehicle. The spout has a first portion and a second portion. The first portion of the spout is positioned adjacent the body portion while the second portion of the spout is removed from the body portion. The first portion of the spout has a cross-sectional area greater than the second portion of the spout. A first fuel collection member is provided for collecting fuel remaining in the body portion and the spout after the fuel control member shuts-off the flow of fuel through the body portion and the spout. The first fuel collection member extends into the first portion of the spout and the second portion of the spout.
Another embodiment of the present invention is directed to a nozzle for dispensing fuel into a vehicle. The nozzle includes a body portion and a spout extending from the body portion. The spout passes fuel from the body portion to a vehicle. The body portion includes a fuel flow control member for allowing or preventing fuel from passing through the body portion and the spout into the vehicle. The spout has first and second portions. The first portion of the spout is positioned adjacent the body portion and the second portion of the spout is removed from the body portion. A first fuel collection member is provided for collecting fuel remaining in the body portion and the spout after the fuel control member shuts-off the flow of fuel through the spout. At least a portion of the first fuel collection member extends into the first portion of the spout. A second fuel collection member is provided for collecting fuel remaining in the body portion and the spout after the fuel control member shuts-off the flow of fuel through the spout. The second fuel collection member is located in the second portion of the spout.
A further embodiment of the present invention is directed to a nozzle for dispensing fuel into a vehicle. The nozzle includes a body portion and a spout extending from the body portion. The spout passes fuel from the body portion into a vehicle. The body portion includes a fuel flow control member for allowing or preventing fuel from passing through the body portion and the spout into the vehicle. The spout has first and second portions. The first portion is positioned adjacent the body portion and the second portion is removed from the body portion. The spout has a primary fuel collection area for collecting fuel remaining in the body portion and the spout after the fuel control member shuts-off the flow of fuel through the spout. The spout further includes a secondary fuel collection area for collecting fuel remaining in the body portion and the spout after the fuel control member shuts-off the flow of fuel through the spout.
Still a further embodiment of the present invention is directed to a nozzle for dispensing fuel into a vehicle. The nozzle comprises a body portion and a spout extending from the body portion. The spout passes fuel from the body portion to a vehicle. The body portion includes a fuel flow control member for allowing or preventing fuel from passing through the body portion and the spout into the vehicle. The spout has first and second portions. The first portion of the spout is positioned adjacent the body portion and the second portion of the spout is removed from the body portion. A first fuel collection member is provided for collecting fuel remaining in the body portion and the spout after the fuel control member shuts-off the flow of fuel through the spout. The first fuel collection member is press-fit into the spout.
Yet still a further embodiment of the present invention is directed to a nozzle for dispensing fuel into a vehicle. The nozzle comprises a body portion and a spout extending from the body portion. The spout passes fuel from the body portion to a vehicle. The body portion includes a fuel flow control member for allowing or preventing fuel from passing through the body portion and the spout into the vehicle. The spout has first and second portions. The first portion of the spout is positioned adjacent the body portion and the second portion of the spout is removed from the body portion. A first fuel collection member is provided for collecting fuel remaining in the body portion and the spout after the fuel control member shuts-off the flow of fuel through the spout. The first fuel collection member is fixed relative to the spout such that the first fuel collection member does not move relative to the spout.
Another preferred embodiment of the present invention is directed to a nozzle for dispensing fuel into a vehicle. The nozzle includes a body portion and a spout extending from the body portion. The spout passes fuel from the body portion to a vehicle. The body portion includes a fuel flow control member for allowing or preventing fuel from passing through the body portion and the spout to the vehicle. The spout has an end that is adapted to be inserted into a fuel tank of a vehicle. The end has a lower portion that is closest to the ground when the spout is inserted into the fuel tank of the vehicle. The end further has an upper portion that is further from the ground than the lower portion when the spout is inserted into the fuel tank of the vehicle. A fuel collector collects fuel remaining in the body portion and the spout after the fuel flow control member shuts-off the flow of fuel through the body portion and the spout. The fuel collector has an inclined surface extending between the upper portion of the end of said spout and the lower portion of the end of said spout to allow fuel collected in the fuel collector when the vehicle is being refueled to drain into the fuel tank after the flow control member prevents fuel from passing through the body portion and the spout but prior to removal of the spout from the fuel tank of the vehicle.
A further preferred embodiment of the present invention is directed to a nozzle for dispensing fuel into a vehicle. The nozzle includes a body portion and a spout extending from the body portion. The spout passes fuel from the body portion to a vehicle. The body portion includes a fuel flow control member for allowing or preventing fuel from passing through the body portion and the spout to the vehicle. The spout has an end that is adapted to be inserted into a fuel tank of a vehicle. The end has a lower portion that is closest to the ground when the spout is inserted into the fuel tank of the vehicle. The end further has an upper portion that is further from the ground than the lower portion when the spout is inserted into the fuel tank of the vehicle. A fuel collector collects fuel remaining in the body portion and the spout after the fuel flow control member shuts-off the flow of fuel through the body portion and the spout. The fuel collector has an inner tubular member and an outer tubular member.
Yet a further preferred embodiment of the present invention is directed to a nozzle for dispensing fuel into a vehicle. The nozzle includes a body portion and a spout extending from the body portion. The spout passes fuel from the body portion to a vehicle. The body portion includes a fuel flow control member for allowing or preventing fuel from passing through the body portion and the spout to the vehicle. The spout has an end that is adapted to be inserted into a fuel tank of a vehicle. The end has a lower portion that is closest to the ground when the spout is inserted into the fuel tank of the vehicle. The end further has an upper portion that is further from the ground than the lower portion when the spout is inserted into the fuel tank of the vehicle. A fuel collector has a fuel collection space for collecting fuel remaining in the body portion and the spout after the fuel flow control member shuts-off the flow of fuel through the body portion and the spout. The size of the first collection space varies across the diameter of the spout. The fuel collector is fixed relative to the spout such that the fuel collector does not move relative to the spout.
Still a further preferred embodiment of the present invention is directed to a nozzle for dispensing fuel into a vehicle. The nozzle includes a body portion and a spout extending from the body portion. The spout passes fuel from the body portion to a vehicle. The body portion includes a fuel flow control member for allowing or preventing fuel from passing through the body portion and the spout to the vehicle. The spout has an end that is adapted to be inserted into a fuel tank of a vehicle. A fuel collector collects fuel remaining in the body portion and the spout after the fuel flow control member shuts-off the flow of fuel through the body portion and the spout. The fuel collector is configured to allow fuel collected in the fuel collector when the vehicle is being refueled to drain into the fuel tank of the vehicle after the flow control member prevents fuel from passes through the body portion and the spout but prior to removal of the spout from the fuel tank of the vehicle. The fuel collector has a hollow passageway for permitting fuel to pass through the fuel collector while the vehicle is being refueled. The hollow passageway and the fuel collector have a common central axis.
Yet still another preferred embodiment of the present invention is directed to a nozzle for dispensing fuel into a vehicle. The nozzle includes a body portion and a spout extending from the body portion. The spout passes fuel from the body portion to a vehicle. The body portion includes a fuel flow control member for allowing or preventing fuel from passing through the body portion and the spout to the vehicle. The spout has an end portion that is adapted to be inserted into a fuel tank of a vehicle. The end portion of the spout has a first wall section and a second wall section. The first wall section has a thickness less than the second wall section such that a horizontally extending surface of the second wall section extends inwardly from the first wall section. A fuel collector collects fuel remaining in the body portion and the spout after the fuel flow control member shuts-off the flow of fuel through the body portion and the spout. At least a portion of said fuel collector abuts the first wall section and the horizontally extending surface of the second wall section.
The most preferred forms of the invention will now be described with reference to
Referring to
Referring to
When an individual grabs and raises handle 2 of the trigger mechanism E, the main valve F opens in a well known manner allowing fuel to pass through the body portion B of the nozzle A in the direction of the restrictor plug H. As seen in
Spout C shown in
Referring to
By spacing the outer wall of segment 18 of the first collector 14 from the inner wall of spout C, an annular collection area 22 is created for collecting residual fuel in the nozzle A after the flow of fuel is discontinued. Fuel is shown in collection area 22 in
Referring to
Referring to
Referring to
Spout J shown in
End K has a lower portion 46 that is closest to the ground when the spout J is inserted in to the fuel tank of a vehicle. End K has an upper portion 48 that is further from the ground than the lower portion 46 when the spout J is inserted in to the fuel tank of a vehicle. Referring to
A fuel collector 58 is disposed in spout J adjacent recessed portion 56. Preferably, fuel collector 58 is press fit into recessed portion 56. As such, fuel collector 58 is fixed relative to spout J. While press fitting is the preferred manner of attachment, fuel collector 58 may be attached to the corresponding section of spout J in any suitable manner. It should also be noted that fuel collector 58 can be formed as one piece with spout J. It should be further noted that fuel collector 58 can be used in a spout having a substantially uniform wall thickness, i.e., no recessed end portion. Fuel collector 58 can be the sole fuel collector in spout J. Alternatively, fuel collector 58 can be one of two or more fuel collectors in spout J.
Preferably, fuel collector 58 and end K of spout J are concentric. Referring to
When spout J is removed from the vehicle and oriented in the position illustrated in
As is readily evident from
While this invention has been described as having a preferred design, it is understood that the preferred design can be further modified or adapted following in general the principles of the invention and including but not limited to such departures from the present invention as come within the known or customary practice in the art to which the invention pertains. The claims are not limited to the preferred embodiment and have been written to preclude such a narrow construction using the principles of claim differentiation.
The subject patent application is a continuation-in-part and claims priority under 35 USC §120 from U.S. patent application Ser. No. 11/798,509 filed on May 15, 2007, now U.S. Pat. No. 7,735,529, which in turn is a continuation of U.S. patent application Ser. No. 11/328,188 filed on Jan. 10, 2006, now U.S. Pat. No. 7,216,680, which in turn is a continuation of U.S. patent application Ser. No. 10/882,639 filed on Jul. 2, 2004, now U.S. Pat. No. 6,983,772. The entire contents of U.S. patent application Ser. Nos. 11/798,509; 11/328,188; and 10/882,639 are hereby incorporated by reference.
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Number | Date | Country | |
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20090050233 A1 | Feb 2009 | US |
Number | Date | Country | |
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Parent | 11328188 | Jan 2006 | US |
Child | 11798509 | US | |
Parent | 10882639 | Jul 2004 | US |
Child | 11328188 | US |
Number | Date | Country | |
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Parent | 11798509 | May 2007 | US |
Child | 12219794 | US |