A portable drinking device capable of fitting over a typical pressurized beverage can to direct the flow of fluid from the can to a recipient's mouth. The portable drinking device may be positioned over the open top of the can and the can and portable drinking device are slightly tilted sideways. After the can has been punctured on its side, the entire assembly is positioned so that the portable drinking device directs a rapid and steady stream of fluid from the punctured can through the tube of the portable drinking device into a recipient's mouth.
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0. 18. A method of using a drinking device adapted to facilitate consumption of a beverage contained in a pressurized beverage can extending from a top end to a bottom end, said method comprising:
providing a cap extending from a first open end to a second open end, the first open end is smaller in diameter than the second open end;
providing a tube extending from a first opening to a second opening, the second opening is extended from the first open end of the cap;
opening the pressurized beverage can;
reversibly and retentively attaching the second open end of the cap to the top end of the beverage can; and
using a piercing element to puncture the pressurized beverage can.
0. 9. A drinking device adapted to facilitate consumption of a beverage contained in a pressurized beverage can that extends from a top end to a bottom end, said drinking device comprising:
a cap extending from a first open end to a second open end;
a tube extending from a first opening to a second opening, the second opening of the tube extend from the first open end of the cap; and
a piercing element;
wherein the second open end of the cap being configured to reversibly and retentively attach to the top end of the beverage can, and wherein the second open end of the cap includes a lip that is configured to forms a temporary seal around the beverage can when attached to the top end of the beverage can.
1. A portable drinking device for use with a pressurized beverage can comprising:
an elongated flexible tube having first and second open ends of about the same diameter;
a rounded funnel-like cap having first and second open ends with the first end being smaller in diameter than the second end;
the first end of the cap being configured to receive the second end of the tube so that the cap and tube can be affixed together;
the second end of the cap being configured to receive a pressurized beverage can;
a piercing element operatively attached to the cap and tube structure when the tube and cap are affixed together;
wherein after the pressurized beverage can is opened, the tube, cap and piercing element can be placed upon the open end of the can with the entire assembly first slightly tilted to allow the piercing element to puncture the side of the can and then positioned close to a user's mouth so that after further tilting, the beverage from the can flows through the cap and tube into the user's mouth.
2. The portable drinking device of
3. The portable drinking device of
4. The portable drinking device of
5. The portable drinking device of
6. The portable drinking device of
7. The portable drinking device of
8. The portable drinking device of
0. 10. The drinking device of claim 9 wherein the tube and the cap form a unitary assembly.
0. 11. The drinking device of claim 10 wherein the tube and the cap are attached to each other with adhesive.
0. 12. The drinking device of claim 9 wherein the piercing element is attached to the tube or the cap.
0. 13. The drinking device of claim 12 wherein the piercing element is removably attached to the tube or the cap.
0. 14. The drinking device of claim 9 wherein the first opening of the tube is smaller in diameter than the second open end of the cap.
0. 15. The drinking device of claim 9 wherein the tube and the cap are formed of different methods.
0. 16. The drinking device of claim 9 wherein the tube and the cap are each fabricated from flexible materials selected from a group consisting of polypropylene, polyurethane, polyvinyl chloride, silicone and nylon.
0. 17. The drinking device of claim 9 wherein the tube is fabricated from a flexible material.
0. 19. The method of claim 18 wherein the second open end of the cap includes a lip that is configured to forms a temporary seal around the beverage can when attached to the top end of the beverage can.
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This application is a continuation of U.S. application Ser. No. 15/695,554 filed on Sep. 5, 2017 which is incorporated herein by reference in its entirety.
Not Applicable.
The present invention relates generally to a portable drinking device that allows a user to quickly consume a beverage which is usually contained in a pressurized can and the method for using the same.
“Shotgunning” is a well-known method of quickly consuming a beverage from a pressurized can by punching a hole in the side of the can. In that method, the pressurized can is usually held in a horizontal direction and tilted slightly. A small hole is punched in the side of the can close to the bottom ideally puncturing the can in the air pocket which results from the slight tilt of the can. The hole can be made with any sharp object such as a key, bottle opener, pen, knife, or the like. After the hole is punched, the user then places his or her mouth over the hole while rotating the can to an upright position. The user then pulls the tab on the can and the pressurized liquid quickly drains through the hole into the user's mouth.
U.S. Patent Pub. No. 2009/0120968 A1 discloses a device having multiple purposes, including serving as a fast pour beverage tap. That tubular device contains a piercing end at one end and a mouthpiece on the other. The piercing end is designed to puncture a pressurized can or bottle and remain in the can or bottle. After puncturing, the mouthpiece end is inserted into a user's mouth and the tab on the can is pulled causing a high speed gravity release of liquid. The tubular device may also be used as a smoking apparatus.
U.S. Pat. No. 7,784,361 discloses a more sophisticated device described as an electronic fluid dispensing apparatus having a tube with a funnel connected at one end and a differential pressure sensor at the other. An additional tube is attached to the first tube in the vicinity of the sensor. When a fluid is poured into the funnel, it passes through the tube and, by way of the sensor, the flow of fluid through the additional tube is controlled.
Consumption of beverages by such methods and using such devices has been prevalent primarily among college students and young adults as an alternative method of consuming beverages quickly and, in several instances, as part of a drinking game. Traditional shotgunning methods and known devices usually result in the aeration of the beverage causing more foam and bubbles than is desired. In addition, a certain amount of spillage still occurs after the tab on the can is pulled because the pressure at which the fluid flows out of the can through the location of the puncture is very rapid.
The present invention provides a simple and portable drinking device which addresses the problems associated with known methods and devices and reduces the amount of aeration and spillage which occurs with known devices.
The present invention provides a simple and portable drinking device that is capable of fitting over a typical pressurized beverage can to direct the flow of fluid from the can to a recipient's mouth. Once the pressurized can is opened, the portable drinking device may be positioned over the open top of the can and the entire assembly may be slightly tilted sideways. After the can is punctured on its side, the entire assembly may be positioned so that the portable drinking device directs a rapid and steady stream of fluid from the punctured can through the tube of the portable drinking device into a recipient's mouth. This portable drinking device allows a known quantity of fluid to flow freely while eliminating a substantial amount of aeration and the foam by-product often associated with prior devices.
The portable drinking device of the present invention is depicted in
As shown in
As shown in
Since the beverage contained in the pressurized can is usually carbonated, as a result of the rapid flow from the pressurized can through the portable drinking device, minimal aeration and foam by-product from the carbonated beverage occurs.
Preferred embodiments of this invention are described herein including the best mode known to the inventors for carrying out the invention. Variations of or modifications to the preferred embodiments may become apparent to those of ordinary skill in the art upon reading the foregoing descriptions. It is intended that the following claims be interpreted to embrace all such variations and modifications.
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