Baby bottle assembly
10864144 ยท 2020-12-15
Inventors
Cpc classification
International classification
Abstract
A baby bottle assembly for bottom venting includes a bottle having a top closure member adapted for releasable engagement with a top portion of the bottle, and a bottom closure member adapted for releasable engagement with a base portion of the bottle. The bottom closure member has a base panel with a raised portion having an air passage therethrough and a top sealing surface. A diaphragm is positionable between the bottom closure member and the base portion. The diaphragm has a disc, at least one moveable sealing element for sealingly engaging the top sealing surface, and an air passage extending under the at least one moveable sealing element into the liquid chamber. The diaphragm is moveable between a sealed position and an unsealed position. The moveable sealing element when in the sealed position prevents liquid contained within a liquid chamber of the bottle from entering the air passage. When in the unsealed position, the diaphragm allows bottom venting of the bottle.
Claims
1. A baby bottle assembly comprising a bottle defining a liquid chamber for holding a quantity of liquid having an open bottom portion, an open top portion, and a sidewall extending between the open bottom and the open top portions; wherein the sidewall has a top portion, a base portion, and middle portion extending between the top and base portions; a top closure member adapted for releasable engagement with the top portion of the bottle for closing the open top of the bottle; a bottom closure member adapted for releasable engagement with the base portion of the bottle for closing the open bottom of the bottle; wherein the bottom closure member has a raised portion, a top center annular sealing surface encircling the raised portion, a top sealing surface and at least one center air passage through the raised portion; a diaphragm positionable between the bottom closure member and the base portion of the bottle; wherein the diaphragm has a sealed position when there is positive pressure in the liquid chamber and an unsealed position when there is a negative pressure in the liquid chamber; wherein the diaphragm has a disc portion that is liquid impenetrable; wherein positioned on the disc portion and above the raised portion is a moveable sealing surface; wherein the on the bottom of the disc portion is a diaphragm annular sealing surface that sealingly engages with the center annular sealing surface; wherein, in the sealed position, the at least one moveable sealing element seals the top sealing surface, thereby sealing the central air passage; wherein in the sealed position, the diaphragm air passageway and the central air passageway are sealed from the liquid chamber by the moveable sealing element; wherein in the sealed position, no liquid from the liquid chamber leaks from the bottom closure; and wherein in the unsealed position, the diaphragm air passageway proximate the moveable sealing element opens, and allows air to enter the liquid chamber.
2. The baby bottle assembly of claim 1, wherein the disc portion is essentially flat.
3. The baby bottle assembly of claim 2, wherein the diaphragm has an annular rim.
4. The baby bottle assembly of claim 3, wherein the diaphragm has a raised portion opening sized to nest with the bottom closure raised portion.
5. The baby bottle assembly of claim 4, wherein the moveable sealing element is essentially flat and has at least two attachment points.
6. The baby bottle assembly of claim 5, wherein in the unsealed position, the moveable sealing element bows in toward the liquid chamber.
7. The baby bottle assembly of claim 6, wherein the moveable sealing element has a circular perimeter, and with attachment points being on opposite sides of the perimeter.
8. The baby bottle assembly of claim 7, wherein portion of the circular perimeter without attachment points is unattached and moveable.
9. A baby bottle assembly comprising a bottle defining a liquid chamber for holding a quantity of liquid having an open bottom portion, an open top portion, and a sidewall extending between the open bottom and the open top portions; wherein the sidewall has a top portion, a base portion, and middle portion extending between the top and base portions; a top closure member adapted for releasable engagement with the top portion of the bottle for closing the open top of the bottle; a bottom closure member adapted for releasable engagement with the base portion of the bottle for closing the open bottom of the bottle; wherein the bottom closure member has a raised portion, a top center annular sealing surface encircling the raised portion, a top sealing surface and at least one center air passage through the raised portion; a diaphragm positionable between the bottom closure member and the base portion of the bottle; wherein the diaphragm has a sealed position when there is positive pressure in the liquid chamber and an unsealed position when there is a negative pressure in the liquid chamber; wherein the diaphragm has a disc portion that is liquid impenetrable; wherein positioned on the disc portion and above the raised portion is a moveable sealing surface; wherein the moveable sealing element is flat with a circular perimeter; wherein the moveable sealing element has attachment points to the disc portion on opposite sides of the circular perimeter; wherein portion of the circular perimeter without attachment points is unattached and moveable; wherein the on the bottom of the disc portion is a diaphragm annular sealing surface that sealingly engages with the center annular sealing surface; wherein, in the sealed position, the at least one moveable sealing element seals the top sealing surface, thereby sealing the central air passage; wherein in the sealed position, the diaphragm air passageway and the central air passageway are sealed from the liquid chamber by the moveable sealing element; wherein in the sealed position, no liquid from the liquid chamber leaks from the bottom closure; and wherein in the unsealed position, the diaphragm air passageway proximate the moveable sealing element opens, and allows air to enter the liquid chamber.
10. The baby bottle assembly of claim 9, wherein the bottom closure member, the raised portion, the top sealing surface, the center annular sealing surface, and the central air passage, are all axially aligned.
11. The baby bottle assembly of claim 9, wherein the raised portion opening, the central air passage, the diaphragm annular sealing surface, the bottom closure annular sealing surface, and the moveable sealing element are all axially aligned.
12. The baby bottle assembly of claim 9, wherein the moveable sealing element is liquid impermeable.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The present invention will become more fully understood from the detailed description and the accompanying drawings, wherein:
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(9) The following description of the preferred embodiment(s) is merely exemplary in nature and is in no way intended to limit the invention, its application, or uses.
(10) A prior art bottle assembly is shown in
(11) The present invention is a bottle assembly having a bottom vent. As shown in
(12) As shown in
(13) As shown in
(14) A diaphragm 30 is positionable between the bottom closure member and the base portion of the bottle. As shown in
(15) The moveable sealing element 32 does flex and is made of a liquid impermeable flexible food grade polymeric substance. The moveable sealing element 32 is essentially flat and positioned over the raised portion when assembled in the bottle assembly. It is large enough to cover and seal the central air passage when in the sealed position. The moveable sealing element seals against the top sealing surface 29, and is attached to the disc portion 31 of the diaphragm by at least two diaphragm attachment points 40. In a preferred embodiment, the moveable sealing element 32 is flat with a circular perimeter, and with attachment points 40 being on opposite sides of the perimeter. The remaining portion of the circular perimeter is unattached and moveable. The raised portion opening of the diaphragm is an opening sized to engage with the raised portion 26 of the bottom closure, and is shaped so that the raised portion nests within the raised portion opening. The diaphragm air passage 36 is created when the bottle assembly is in the unsealed position and the moveable sealing element raises from the top sealing surface 29 and raised portion opening 33 creating the air passage. Typically, the diaphragm air passage 36 is created as the negative pressure in the liquid chamber causes the moveable seating element to bow inward toward the liquid chamber. The bowed element allows the Air to flow through the central air passage 27 through the diaphragm air passage 36 into the liquid chamber 10.
(16) As shown in
(17) In a preferred embodiment, the raised portion is axially aligned with all of the following: the raised portion opening, the central air passage, the diaphragm annular sealing surface, the bottom closure annular sealing surface, and the moveable sealing element.
(18) As shown in
(19) As shown in
(20) When liquid is held in the liquid chamber creating a positive pressure, the diaphragm is exposed to the liquid, but has no air passages open that can become plugged with milk or formula. The diaphragm is designed to move to a sealed position wherein the at least one sealing element is sealingly engaged with top sealing surface of the raised portion of the bottom closure member, thereby sealing the central air passage. No liquid leaks out of the bottom closure member from the liquid chamber when it is in the sealed position. When the pressure is negative, the diaphragm can move to an unsealed position wherein the moveable sealing element is at least partially disengaged from the raised portion of the bottom closure member to allow air to pass through the air passage under the diaphragm and into the liquid chamber of the bottle.
(21) The embodiments were chosen and described to best explain the principles of the invention and its practical application to persons who are skilled in the art. As various modifications could be made to the exemplary embodiments, as described above with reference to the corresponding illustrations, without departing from the scope of the invention, it is intended that all matter contained in the foregoing description and shown in the accompanying drawings shall be interpreted as illustrative rather than limiting. Thus, the breadth and scope of the present invention should not be limited by any of the above-described exemplary embodiments, but should be defined only in accordance with the following claims appended hereto and their equivalents.