IP Library › Granted Patent US 8,967,435
Granted Patent B2
US 8,967,435 · App. 13/643,458 · Granted Mar 3, 2015

Push-button dispenser with compressed-gas capsule for beverage bottles

Inventors: Samuel O. Nyambi (Marietta, GA); Fritz Seelhofer (Lindau, CH)
Assignee: The Coca-Cola Company
B65D83/20B67D1/0418
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Quick Facts
Patent No.
US 8,967,435
App. No.
13/643,458
Granted
Mar 3, 2015
Kind
B2
Abstract

The push-button dispenser with compressed-gas capsule ( 7 ) for bottles ( 2 ) consists of a head which can be screwed onto the bottle ( 2 ) and have a lateral pouring channel ( 4 ), a push-button ( 15 ) on its upper side and downwardly projecting suction tube ( 11 ). The latter is intended to extend as far as the base of the bottle ( 2 ) which is to be fitted with the dispenser, and it opens out at the top into a valve device in the head. This valve device has a regulating means ( 39 ) which can be moved axially in relation to the bottle ( 2 ) and is biased in the closing direction by a spring ( 17 ), and can be opened by manual pressure being applied to the push-button ( 15 ) from above. This reduces pressure in the interior of the suction tube ( 11 ) to ambient pressure, as a result of which liquid is expelled from the bottle ( 2 ), by way of the internal pressure prevailing in the bottle ( 2 ), out of the lower mouth opening of the suction tube ( 11 ) via the pouring channel ( 4 ). As a special feature, the dispenser is configured as a single-piece housing ( 14 ) with inner housing ( 37 ), which contains all the other elements of the dispenser, or bears the same externally.

Claims (39)

1. A push-button dispenser for a bottle, comprising:

a head adapted to be screwed onto the bottle, the head comprising:

a lateral discharge channel;

a push-button on an upper side of the head; and

a downwardly projecting suction tube, which extends as far as a bottom of the bottle, wherein a top end of the suction tube opens out into a valve device in the head, and

wherein the valve device comprises:

a regulating means configured to move axially in relation to the bottle, wherein the regulating means is biased in a closing direction by a spring, wherein the regulating means is configured to be opened by manual pressure being applied to the push-button, such that upon opening, a pressure in an interior of the suction tube reduces to an ambient pressure, as a result of which liquid is expelled from the bottle, by way of an internal pressure prevailing in the bottle, and wherein the liquid is expelled out of an opening at the top end of the suction tube via the lateral discharge channel, and

 wherein the regulating means comprises a plumb-like sealing cone with a sword-like prolongation on top, wherein the plumb-like sealing cone rests against a sealing ring, and the sword-like prolongation is pulled upward at its upper end from the push-button by virtue of a compression spring; and

a single-piece housing, wherein a side of the single-piece housing comprises:

an open accommodating cylinder with a steel piercing tube installed concentrically therein and directed outwards for the purpose of accommodating a compressed-gas capsule,

wherein the compressed-gas capsule can be pushed into the open accommodating cylinder until it reaches the tip of the steel piercing tube and is retained in this position by static friction, and

wherein the compressed-gas capsule can be pushed further axially in the open accommodating cylinder by screwing on an associated threaded cap, so that the steel piercing tube, which is cut obliquely in front, pierces a lead-sealed piercing closure with a sealing action.

2. The push-button dispenser of claim 1 , wherein the open accommodating cylinder for the compressed-gas capsule is oriented downward on an inner housing subtending a maximum angle of 35° to a screw-on axis.

3. The push-button dispenser of claim 1 , further comprises:

four separate one-piece parts visible from the outside, the four separate one-piece parts comprising:

the single-piece housing;

a top piece arranged thereon with the lateral discharge channel;

the push-button arranged in the top piece; and

the threaded cap associated with the single-piece housing for the open accommodating cylinder of the compressed-gas capsule situated inside it.

4. The push-button dispenser of claim 1 ,

wherein a top piece with the push-button and the lateral discharge channel is configured such that the push-button is situated and mounted obliquely to the screw-on axis of the push-button dispenser, yet it can be pressed in the direction of the screw-on axis of the push-button dispenser, and

wherein an upper boundary surface of the top piece and the push-button is aligned laterally at its lowest point tangentially in a top portion of the lateral discharge channel, which then curves downward and defines a plane by its mouth opening that subtends an angle of around 35° with the screw-on axis.

5. The push-button dispenser of claim 1 ,

wherein a valve housing with a valve is installed in the single-piece housing for pressure control in the bottle, the valve housing comprising:

a valve ball with a pressure regulating spring,

wherein the valve prevents an arrival of compressed gas from the compressed-gas capsule when the valve ball is loaded by the pressure regulating spring, and

wherein the pressure regulating spring represents nominal pressure in the bottle, such that when pressure drops below a value of the nominal pressure, the pressure regulating spring relieves the valve ball, such that a delivery of compressed gas from the compressed-gas capsule is opened up.

6. The push-button dispenser of claim 1 , wherein an excess pressure safety cap with an encircling predetermined breaking site of 0.1 mm thickness is arranged inside a valve housing, which breaks when the internal pressure in the bottle is more than 4 bar, such that gas escapes from a relief borehole in an inner housing and the push-button dispenser is intentionally made unusable thereafter.

7. The push-button dispenser of claim 1 ,

wherein the top end of the suction tube is placed tightly in a clamping fixture, in which a flow channel of the suction tube is fitted and then passes into a conically widening segment,

wherein the flow channel forms an accommodating sleeve at the top, in which an insert sleeve injection molded by the 2-component technique is placed, with the sealing ring injected molded on the inside, through which the regulating means extends, and

wherein when manual pressure is applied from above to the push-button the regulating means with the plumb-like sealing cone can be moved downward from the sealing ring so that the liquid expelled by the suction tube flows all around the plumb-like sealing cone and then along the sword-like prolongation and across the discharge channel to the outside.

8. The push-button dispenser of claim 1 , wherein a top piece has a socket that is tapered at the side so that it can be grasped from above between an index finger and a middle finger of one hand and thereby the bottle outfitted with the push-button dispenser can be carried by two fingers.

9. The push-button dispenser of claim 1 , further comprises:

a guarantee lid that can be clicked onto a top piece from above,

wherein the guarantee lid forms a cover cap for the mouth of the lateral discharge channel, and at its opposite side the guarantee lid has a guarantee tab projecting downward across material bridges with predetermined breaking sites, which can be forced onto the top piece during assembly of the guarantee lid and can be removed by breaking its predetermined breaking sites associated with the guarantee lid.

10. The push-button dispenser of claim 1 , further comprising:

a mouthpiece with a density between 2.8 and 3.2 g/ml placed on a mouth opening at a bottom end of the suction tube, such that when a bottle outfitted with the push-button dispenser is lying on its side the mouth opening of the suction tube comes to lie at the lowest point of the interior of the bottle by the weight of the mouthpiece.

11. The push-button dispenser of claim 10 , wherein the mouthpiece comprises a thermoplastic polybutylene terephthalate PBT combined with powdered rock.

Priority Claims (1)
CH 0626/10 · Apr 28, 2010 · national
Continuity (1)
Related Publication 20130134190A1 · May 30, 2013