IP Library Granted Patent US 12,428,287
Granted Patent B1
US 12,428,287 · App. 19/213,958 · Granted Sep 30, 2025

Gasoline dispenser valve system

Inventor: Lester James Vanden Berg (Comstock Park, MI)
B67D7/005B67D7/36
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Quick Facts
Patent No.
US 12,428,287
App. No.
19/213,958
Granted
Sep 30, 2025
Kind
B1
Abstract

A spigot and valve system for a gasoline can includes a nozzle, an air return conduit within the nozzle, and a spigot housing containing a valve system. The valve system includes an air return shaft slidable within the spigot housing, a gas valve diaphragm secured to the air return shaft, a gas outlet spring, and an actuation lever. An inner air return shaft is positioned within and slidable with respect to the air return shaft. The system also includes a carriage slidably engaged with the inner air return shaft, an air return diaphragm attached to the carriage, and an air return spring between the air return shaft and carriage. The system operates in three positions to control gas flow and air return, ensuring safe and controlled dispensing of gasoline.

Claims (19)

1. A spigot and valve system for a portable gas can, comprising:

a nozzle having a gas opening;

a spigot housing connected to the nozzle;

an air return shaft slidably disposed within the spigot housing;

a gas valve diaphragm secured to the air return shaft and positioned to selectively seal the gas opening;

a gas outlet spring biasing the gas valve diaphragm towards a closed position;

an inner air return shaft slidably disposed within the air return shaft;

an air return diaphragm positioned to selectively seal an open end of the inner air return shaft; and

an air return spring biasing the inner air return shaft towards a closed position,

wherein the gas outlet spring is configured to compress before the air return spring when an actuation force is applied to the air return shaft.

2. The spigot and valve system of claim 1 , further comprising an actuation lever connected to the air return shaft and extending through the spigot housing.

3. The spigot and valve system of claim 2 , wherein the actuation lever is configured to slide the air return shaft when depressed.

4. The spigot and valve system of claim 1 , wherein the nozzle is curved.

5. The spigot and valve system of claim 1 , further comprising a flexible air return conduit extending from the inner air return shaft to a distal end of the nozzle.

6. The spigot and valve system of claim 5 , wherein the flexible air return conduit is formed from a material selected from the group consisting of polyethylene, polypropylene, fluoropolymers, polyvinylidene fluoride, polyamide, and thermoplastic elastomers.

7. The spigot and valve system of claim 1 , further comprising a carriage slidably engaged with the inner air return shaft, wherein the air return diaphragm is secured to the carriage.

8. The spigot and valve system of claim 7 , wherein the carriage includes a carriage stop position that limits forward movement of the carriage.

9. The spigot and valve system of claim 8 , wherein the air return spring is positioned between the air return shaft and the carriage.

10. The spigot and valve system of claim 9 , wherein the inner air return shaft includes a curved portion proximate to the open end.

Continuity (1)
Division 18955917 · Nov 21, 2024
References Cited (7)
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