Additive delivery systems and containers
09795242 · 2017-10-24
Assignee
Inventors
- Garrett S. Waggoner (Sarasota, FL, US)
- Andrew Gay (Mill Creek, WA, US)
- Christopher Jasperse (Pittsburch, KS, US)
Cpc classification
International classification
Abstract
A compact filtering and additive delivery system which is readily adaptable to a portable container, such as a sports bottle, and receives a modular additive container for the metered delivery of additive, such as flavor concentrate, to a stream of base liquid as the base liquid is drawn or dispensed from the container. The modular additive container configuration on the delivery system allows a consumer/user to experience different additives, such as different flavors or supplement compositions, for a given supply of base liquid, such as water, stored in the container. The system may be readily used with off-the-shelf containers, such as disposable water bottles. An additive container configuration provides modular additive delivery system as described herein.
Claims
1. An additive delivery system comprising: an upper cap portion; a lower cap portion cooperating with the upper cap portion to define an additive module containing space; an additive module removably secured to the upper cap portion, the additive module having a central interior annular wall, wherein the additive module further comprises a retaining groove and the upper cap portion includes a retaining lip cooperating with the retaining groove to removably secure the additive module to the upper cap portion; a delivery tube for permitting flow of a base liquid through the additive module containing space, the delivery tube extending within the central interior annular wall of the additive module, and including at least one metering port to permit flow from the additive module containing space to an interior of the delivery tube; whereby flow of the base liquid in the delivery tube draws additive from the additive module through the at least one metering port for mixing therewith as the base liquid flows within the delivery tube.
2. The additive delivery system of claim 1, further comprising a filtration assembly configured to filter the base liquid prior to flow into the additive module containing space, the filter assembly, the delivery tube and the additive module containing space being configured to provide for flow of the base liquid from the container through the module containing space.
3. The additive delivery system of claim 1, wherein the delivery tube is provided with at least one mixing projection to facilitate turbulent flow and mixing within the delivery tube of the base liquid and the additive.
4. The additive delivery system of claim 1, further comprising a piercing projection disposed within the additive module containing space for piercing a frangible membrane on the additive module.
5. The additive delivery system of claim 1, wherein the upper cap portion further includes a spout and an annular additive module receiving annular wall extending generally opposite the spout, the annular wall including the retaining lip for engaging the retaining groove on the addictive module to thereby secure the additive module to the upper cap portion.
6. The additive delivery system of claim 1, further comprising an additive module enclosure assembly for enclosing a lower portion of the additive module, the lower cap portion further including a downward extending annular wall having a retaining groove therein, the additive module enclosure assembly including an upper extending annular wall having a retaining lip formed therein to engage the retaining groove and thereby forming a lower additive module receiving space.
7. The additive delivery system of claim 6, wherein the the delivery tube extends through the additive enclosure assembly and the at least one metering port permits flow from the lower additive module receiving space to the interior of the delivery tube.
8. The additive delivery system of claim 7, further comprising at least one mixing projection disposed within the delivery tube.
9. The additive delivery system of claim 1, further comprising a silicone seal disposed within the upper cap portion, the silicone seal including a conical sealing surface for engaging a corresponding surface the additive module.
10. The additive delivery system of claim 1, further comprising a filtration assembly configured to filter the base liquid prior to flow into the module containing space, the filter assembly, the delivery tube and the module containing space being configured to provide for flow of the base liquid from the container through the module containing space, and further comprising a check valve for preventing backflow of the base liquid into the filtration assembly.
11. The additive delivery system of claim 10, wherein the filtration assembly includes a filter housing and a filter housing top adapted for snap fit connection to enclose a filtration element therewithin.
12. An additive delivery system comprising: an upper cap portion having a spout, a threaded female portion extending generally opposite the spout, and an annular additive module enclosing wall extending generally opposite the spout; a lower cap portion having a threaded male portion for engaging the upper cap portion threaded female portion and an additive enclosure assembly retaining wall extending generally opposite the threaded male portion; an additive enclosure assembly including an annular wall cooperating with the additive enclosure assembly retaining wall to form a lower additive module receiving space; the additive enclosure assembly further including a delivery tube extending therethrough and having at least one metering port for permitting flow from the lower additive module receiving space to an interior of the delivery tube, the additive enclosure assembly further including at least one piercing projection extending into the lower additive module receiving space for piercing a frangible membrane on an additive module; the delivery tube including at least one mixing projection extending within the interior of the delivery tube; whereby flow of a base liquid in the delivery tube draws additive through the at least one metering port for mixing therewith as the base liquid flows within the delivery tube.
13. An additive delivery system for mixing an additive with a base fluid as the base fluid is dispensed from a container, the system comprising: an additive module for containing a supply of additive; an upper cap portion having an annular wall for releasably engaging the additive module, wherein the additive module is releasably engaged to the upper cap portion with a snap fitting, the upper cap portion including a spout for permitting flow of fluid from the additive delivery system; a lower cap portion cooperating with the upper cap portion to secure the additive module to the upper cap portion; a first flow path defined in the lower cap portion for permitting flow of a base liquid through the lower cap portion, through the additive module and through the spout; a second flow path defined in the lower cap portion for permitting flow of additive from the additive module to the first flow path and including a metering port to meter the flow of additive into the first flow path; whereby flow of the base liquid in the first flow path draws additive through the at least one metering port for mixing therewith as the base liquid flows within the first flow path.
14. The additive delivery system of claim 13, further comprising a filtration assembly configured to filter the base liquid prior to flow into a module containing space and further comprising a check valve for preventing backflow of the base liquid into the filtration assembly, wherein the filtration assembly includes a filter housing and a filter housing top adapted for snap fit connection to enclose a filtration element therewithin.
15. The additive delivery system of claim 13, wherein the first flow path is defined at least in part by a delivery tube extending concentrically with the upper cap portion and through the additive module.
16. The additive delivery system of claim 13, wherein the first flow path is defined at least in part by a delivery tube extending concentrically with the upper cap portion and through the additive module, and where in the second flow path is defined at least in part by the metering port in the delivery tube.
17. The additive delivery system of claim 13, wherein the additive module is cylindrical in shape and includes an inner annular wall.
18. The additive delivery system of claim 13, wherein the additive module includes a conical sealing surface.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The above and other attendant advantages and features of the invention will be apparent from the following detailed description together with the accompanying drawings, in which like reference numerals represent like elements throughout. It will be understood that the description and embodiments are intended as illustrative examples and are not intended to be limiting to the scope of invention, which is set forth in the claims appended hereto.
(2)
(3)
(4)
(5)
(6)
(7)
DETAILED DESCRIPTION
(8) Referring to
(9) Referring additionally to
(10) Lower cap assembly 140 may include a lower cap 141 having a container engaging female threaded portion 143 and an outer surface with gripping recesses formed therein. A lower additive module enclosure 150 cooperates with the lower cap 141 and upper cap assembly 120 to house and enclose additive module 200, as will be described below. Lower cap assembly 140 may include a filter assembly 17, which houses a filter for filtering the base liquid. A delivery tube 155 extends to the bottom of the base liquid container and provides for the travel of base liquid through the filter assembly 170, lower cap assembly 140, additive module 200 and, ultimately, to spout 121, as will be described in more detail below.
(11) Referring additionally to the cross-sectional exploded view in
(12) According to an aspect of the invention, for safety and sanitary purposes, the additive module 200 may be provided with a transparent safety enclosure cap, which may engage the cap threads 125, and enclosed the additive module 200. In this configuration, the spout 121, spout closure 122 and safety enclosure cap (and thus the additive module, snap fit within the cap) may be sealed within a frangible thermoplastic membrane for consumer safety and product freshness. The transparent safety cap allows consumers to view the details/branding of the additive module before purchase, for example.
(13) Lower cap 141 may also be provided with an annular wall 144 for engaging and fitting within a correspondingly-shaped upper annular wall 151 on the lower additive module enclosure assembly 150. Annular wall 144 may be provided with a retaining groove 145 for receiving a cooperating retaining lip 154 formed on the interior of upper annular wall 151 of the lower additive module enclosure assembly 150. A lower annular wall 152 and bottom wall 153 define a space for receiving a lower portion of the additive module 200. One or more additive module membrane piercing projections 180 may extend upward from the bottom wall 153 to pierce a frangible membrane 212.
(14) Tube 155 extends upward through the lower module enclosure assembly 150 to permit flow of the base liquid. One or more metering ports 157 may be formed in the tube 155 near the bottom wall 153 to permit flow of additive concentrate from the interior of lower additive module enclosure 150 to the interior of tube 155 by venturi effect as the base liquid is drawn through tube 155. One or more mixing projections 156 may extend within the interior of tube 156 to induce turbulent flow and thereby mix the additive concentrate with the base fluid.
(15) Filter assembly 170 may include a filter housing 172, which is snapped in place on a corresponding filter housing top 174 using a lip and groove retainer. A one-way check or flapper valve 176 formed of silicone rubber may be provided at the inlet of tube 155 from the interior of filter housing 172 to prevent backflow of the base fluid into the filter housing 172. An active carbon filter element (not shown in
(16) Referring additionally to
(17)
(18) Tube 155 extends upward within the inner tube formed by inner wall 206 of additive module 200. The conical sealing surface 208 is engaged by a correspondingly shaped silicone seal 130 secured within the upper cap assembly 120. In this position, the frangible membrane 212 of additive module 200 would be pierced or ruptured by piercing projections 180 (
(19) Referring additionally to
(20) As will be recognized, the flow of fluid through the system may be facilitated by suction provided by the consumer or by the squeezing of the container, which may be made of a suitably flexible material, or by both. As will also be recognized, flow from the base liquid container, through the filter assembly, delivery tube and additive module is substantially in a single, linear direction, without diversion, thereby providing for efficient flow of base liquid and mixed additive/base-liquid composition from the container and providing a configuration that is particularly adaptable to a sports bottle or other compact, portable, handheld container.
(21) As will also be recognized, the additive delivery system may be used with standard, disposable water or beverage bottles through suitable adaptation of the fastening implements on the lower cap assembly.
(22) As will also be recognized, suitable thermoplastic polymers may be used to form the various aforementioned elements, including polyethylene terepthalate (PET), polycarbonate, high-density polyethylene (HDPE) and others.
(23) It should be understood that implementation of other variations and modifications of the invention in its various aspects may be readily apparent to those of ordinary skill in the art, and that the invention is not limited by the specific embodiments described herein. It is therefore contemplated to cover, by the present invention any and all modifications, variations or equivalents that fall within the spirit and scope of the claims that follow.