Bib spout with evacuation channels

Dispensing – Nozzles – spouts and pouring devices – Reinforced or with container-connected brace

Reexamination Certificate

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Details

C222S092000, C222S105000, C222S566000, C383S906000

Reexamination Certificate

active

06179173

ABSTRACT:

TECHNICAL FIELD
The present invention relates to a bag for a bag-in-box (“BIB”) type package, and more particularly relates to a spout with evacuation channels formed therein for use in a BIB package.
BACKGROUND OF THE INVENTION
BIB packages are well known for containing and dispensing liquids such as syrup for post-mix soft drink dispensers. Such known packages include an outer protective and supporting box and an inner collapsible bag containing the syrup. The box is generally made of corrugated cardboard and the bag is generally made of a flexible plastic. The plastic bag has a spout for feeding the syrup to the post-mix beverage dispenser via a hose and a pump. A plastic dip strip or dip tube is often included within the bag to assist in withdrawing the syrup. The dip strip prevents the bag from collapsing upon itself while the syrup is being withdrawn and provides a fluid passageway to the spout from the far reaches of the bag.
An example of a bag-in-box bag with a ribbed dip strip therein is shown in U.S. Pat. No. 5,749,493 to Boone, et al., owned by The Coca-Cola Company, the assignee of the present invention. This reference describes, among other things, a ribbed dip strip sealed between the upper and lower bag walls at the top and bottom ends. The ribbed dip strip largely prevents the bag from collapsing upon itself and also provides the fluid passageway to the spout. The positioning of the dip strip apart from the spout also permits high speed filling. U.S. Pat. No. 5,749,493 is incorporated herein by reference. Similarly, the pending applications referenced above also describe, among other things, various types of bags for bag-in-box type packages using a ribbed dip strip and various methods for their use and manufacture.
In addition to the use of a dip strip to provide a fluid passageway to the spout, other known references use a raised spout to ensure access to and through the spout. For example, commonly-owned U.S. Pat. No. 4,998,990 to Richter, et al., shows a spout with a series of fins or vertical ribs positioned within the aperture that are used with one or more open channels to provide a fluid passageway. These fins or ribs are used to provide a certain amount of clearance between the spout and either the dip strip or the lower bag wall. This clearance allows the bag to be evacuated even as the upper and lower bag walls are collapsing upon themselves as the bag is being emptied. The raised spout design, however, adds extra bulk and materials to the bag as a whole. U.S. Pat. No. 4,998,990 is incorporated herein by reference.
What is needed, therefore, is a spout design that provides an adequate fluid passageway without the use of the extra material and the extra height associated with the raised spout or similar designs. The passageway should be operable while the bag is collapsing and otherwise and should communicate with the dip strip. Further, there is a need for a spout design that provides a plurality of fluid passageways to the aperture of the spout regardless of the orientation or position of the bag. Such a spout must provide the plurality of fluid passageways with a minimum of material and cost.
SUMMARY OF THE INVENTION
The present invention provides a spout for a wall of a flexible pouch. The spout includes a substantially hollow tube and a flange surrounding the tube. The flange includes a plurality of channels so as to provide a plurality of fluid passageways in communication with the substantially hollow tube.
Specific embodiments include attaching the flange to the wall of the flexible pouch along the first side of the flange and positioning the plurality of channels along the second side of the flange. The flange itself is positioned at the bottom end of said tube. Each of the plurality of channels extends radially from the outer diameter to the inner diameter of the flange and is spaced equidistantly thereon. The channels are formed within the flange. If the flange has a thickness of about 0.060 inches, the channels may have a depth of about 0.030 inches. Approximately thirty (30) channels may be used. The flange is generally made from a thermoplastic material.
A bag for a bag-in-box package may have a first and a second bag wall with a dip strip positioned therebetween. The spout is positioned on the first bag wall. The spout includes a radially extending flange and a plurality of channels so as to provide a plurality of fluid passageways. The dip strip includes a plurality of ribs thereon with the channels of the flange facing the ribs so as to cooperate in forming the fluid passageways.
It is thus an object of the present invention to provide an improved bag for a bag-in-box package.
It is another object of the present invention to provide an improved spout for a bag-in-box package.
It is yet another object of the present invention to provide a spout with evacuation channels formed therein for use in a bag-in-box package.
It is a further object of the present invention to provide a spout for a bag in a bag-in-box package that cooperates with a ribbed dip strip to provide a plurality of fluid passageways.
It is a still further object of the present invention to provide a spout for a bag in a bag-in-box package with superior evacuation capability.


REFERENCES:
patent: 2008564 (1935-07-01), Schumacher
patent: 3690524 (1972-09-01), Haberhauer
patent: 4601410 (1986-07-01), Bond
patent: 4893731 (1990-01-01), Richter
patent: 4913316 (1990-04-01), Richter
patent: 4998990 (1991-03-01), Richter et al.
patent: 5147071 (1992-09-01), Rutter et al.
patent: 5566851 (1996-10-01), Sasaki et al.
patent: 5743435 (1998-04-01), Tomic
patent: 5749493 (1998-05-01), Boone et al.
patent: WO 85/04383 (1985-10-01), None
patent: WO 86/00868 (1986-02-01), None
Marks' Standard Handbook for Mechanical Engineers, Baumeister et al., pp. 8-182 to 8-186, 1978.

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