Bottle Adapted To Thermally Condition And/Or Filter Consumable Beverages, Kit For Use With Consumable Beverages, And A Method For Customizing Bottles
A bottle adapted to thermally condition and/or filter consumable beverages may include a filter detachably connected to a straw which is detachably connected to the bottle lid. A thermal energy storage member or thermal energy storage elements may be located over the straw between the filter and the lid. Also disclosed are a kit for use with consumable beverages and a method for customizing bottles for use with a consumable beverage.
The present invention is generally directed to bottles and, more specifically, to bottles that may be used to filter and/or cool consumable beverages.
Typical sports bottles and the like allow for convenient carrying of beverages for later consumption. However, some beverages become less palatable after extended periods of time due to change in temperature of the beverage therein. Even when temperature changes are not a concern, it is often desired to fill or refill a bottle when away from home. This can be problematic depending on potential impurities in the beverage being added to the bottle.
It may be advantageous to provide a bottle adapted to thermally condition and/or filter consumable beverages that is easy to use; that facilitates transport; and/or that facilitates easy refilling of the beverage from a variety of beverage sources.
SUMMARYBriefly speaking, one embodiment of the present invention is directed to a bottle adapted to thermally condition and filter consumable beverages including a container configured to hold a consumable beverage. The container defines a mouth and a cavity configured to hold the consumable beverage. A lid is detachably secured to the bottle to cover the mouth. The lid defines a lid fluid passageway. A drinking spout is located on the lid and is configured to facilitate consumption of the consumable beverage from the container. The lid fluid passageway is configured to guide consumable beverage through the lid to the drinking spout. A filter is located in the cavity. A thermal energy storage member is disposed in the cavity and is located between the filter and the lid. The thermal energy storage member defines a bore therethrough. The bore is configured to receive a straw therein. The straw has first and second straw ends. The first straw end is configured to detachably engage the filter and the second straw end is configured to detachably engage the lid to create a straw fluid passageway between the filter and the lid fluid passageway. When the straw is engaged with the filter and the lid and the thermal energy storage member is located over the straw, the bottle is adapted to thermally condition and filter the consumable beverage and the bottle is adapted to allow consumption of the consumable beverage from the cavity, through the filter, through the straw fluid passageway, through the lid fluid passageway, and through the drinking spout.
In another aspect, one embodiment of the present invention is directed to a bottle adapted to thermally condition and filter consumable beverages including a container configured to hold a consumable beverage. The container defines a mouth and a cavity configured to hold the consumable beverage. A lid is detachably secured to the container to cover the mouth. The lid defines a lid fluid passageway. A drinking spout is located on the lid and is configured to facilitate consumption of the consumable beverage from the container. The lid fluid passageway is configured to guide consumable beverage through the lid to the drinking spout. A filter is located in the cavity. A thermal energy storage member is disposed in the cavity and is located between the filter and the lid. The thermal energy storage member defines a bore therethrough. The bore is adapted to form a thermal energy storage member fluid passageway. The thermal energy storage member has first and second thermal energy storage member ends. The second thermal energy storage member end is detachably engageable with the filter. The first thermal energy storage member end is detachably engageable with the lid so that the thermal energy storage member fluid passageway forms a conduit between the filter and the lid fluid passageway. When the thermal energy storage member is engaged with the filter and the lid, the bottle is adapted to thermally condition and filter the consumable beverage and the bottle is adapted to allow consumption of the consumable beverage from the cavity, through the filter, through the thermal energy storage member fluid passageway, through the lid fluid passageway, and through the drinking spout.
In another aspect, one embodiment of the present invention is directed a bottle adapted to thermally condition and filter consumable beverages. A container is configured to hold a consumable beverage. The container defines a mouth and a cavity that is configured to hold the consumable beverage and has a cavity base. A lid is detachably secured to the bottle to cover the mouth. The lid defines a lid fluid passageway. A drinking spout is located on the lid and configured to facilitate consumption of the consumable beverage from the container. The lid fluid passageway is configured to guide consumable beverage through the lid to the drinking spout. A filter is located in the cavity proximate to the cavity base. A thermal energy storage member is disposed in the cavity and is located between the filter and the lid. The thermal energy storage member is engaged with the lid and with the filter. A straw is located in the cavity and is spaced from the thermal energy storage member. The straw has first and second straw ends. The first straw end is engaged with the filter and the second straw end is engaged with the lid to create a straw fluid passageway between the filter and the lid fluid passageway. When the straw is engaged with the filter and the lid and the thermal energy storage member is engaged with the filter and the lid, the bottle is adapted to thermally condition and filter the consumable beverage and the bottle is adapted to allow consumption of the consumable beverage from the cavity, through the filter, through the straw fluid passageway, through the lid fluid passageway, and through the drinking spout.
In another aspect, one embodiment of the present invention is directed to a bottle adapted to thermally condition and filter consumable beverages including a container configured to hold a consumable beverage. The container defines a mouth and a cavity configured to hold the consumable beverage and has a cavity base. A lid is detachably secured to the bottle to cover the mouth. The lid defines a lid fluid passageway. A drinking spout is located on the lid and is configured to facilitate consumption of the consumable beverage from the container. The lid fluid passageway is configured to guide consumable beverage through the lid to the drinking spout. A filter is located in the cavity proximate to the lid. The filter includes a filter cartridge and a filter housing. The filter cartridge is engaged with the lid and the filter housing is engaged with the filter cartridge. A thermal energy storage member is located in the cavity and is disposed on the filter cartridge. The bottle is adapted to thermally condition and filter the consumable beverage and the bottle is adapted to allow consumption of the consumable beverage from the cavity, through the filter, through the lid fluid passageway, and through the drinking spout.
In another aspect, one embodiment of the present invention is directed to a method of providing a customizable bottle adapted to thermally condition and filter water. The method includes the steps of: providing a container configured to hold a consumable beverage, the container defining a mouth and a cavity configured to hold the consumable beverage; providing a lid detachably secured to the bottle to cover the mouth, the lid defining a lid fluid passageway, the comprising a drinking spout thereon and configured to facilitate consumption of the consumable beverage from the container, the lid fluid passageway being configured to guide consumable beverage through the lid to the drinking spout; positioning a filter in the cavity; locating a thermal energy storage member in the cavity and between the filter and the lid, the thermal energy storage member defining a bore therethrough, the bore being configured to receive a straw therein, wherein the thermal energy storage member comprises a plurality of thermal energy storage elements that are assembled in a side-by-side manner to extend between one side of the filter and the lid, the thermal energy storage elements being adjustable in at least one of angular orientation relative to the straw and in side-by-side positioning relative to each other; and inserting a straw through the bore of the thermal energy storage member and securing the straw to the filter and the lid, wherein when the straw is engaged with the filter and the lid and the thermal energy storage member is located over the straw, the bottle is adapted to thermally condition and filter the consumable beverage.
In another aspect, one embodiment of the present invention is directed to a kit for use with consumable beverages. The kit includes a container configured to hold a consumable beverage. The container defines a mouth and a cavity configured to hold the consumable beverage. A lid is detachably secured to the bottle to cover the mouth. The lid defines a lid fluid passageway. A drinking spout is located on the lid and is configured to facilitate consumption of the consumable beverage from the container. The lid fluid passageway is configured to guide consumable beverage through the lid to the drinking spout. A filter is adapted to be located in the cavity. A thermal energy storage member is disposed in the cavity and is located between the filter and the lid. The thermal energy storage member defines a bore therethrough. The bore is configured to receive a straw therein. The straw has first and second straw ends. The first straw end is configured to detachably engage the filter and the second straw end is configured to detachably engage the lid to create a straw fluid passageway between the filter and the lid fluid passageway. When the straw is engaged with the filter and the lid and the thermal energy storage member is located over the straw, the bottle is adapted to thermally condition and filter the consumable beverage and the bottle is adapted to allow consumption of the consumable beverage from the cavity, through the filter, through the straw fluid passageway, through the lid fluid passageway, and through the drinking spout. A second thermal energy storage member is configured to substitute for the filter if additional cooling is desired and filtering of the consumable beverage is not desired.
The foregoing summary, as well as the following detailed description of the preferred embodiments of the present invention will be better understood when read in conjunction with the appended drawings. For purposes of illustrating the invention, there are shown in the drawings, embodiments which are presently preferred. It is understood, however, that the invention is not limited to the precise arrangements and instrumentalities shown. In the drawings:
Certain terminology is used in the following description for convenience only and is not limiting. The words “right,” “left,” “upper,” and “lower” designate directions in the drawings to which reference is made. The words “inwardly” and “outwardly” refer to directions toward and away from, respectively, the geometric center of the system for use with a consumable beverage and designated parts thereof. The terminology includes the words above specifically mentioned, derivatives thereof, and words of similar import. Additionally, the words “a” and “one” are defined as including one or more of the referenced item unless specifically stated otherwise.
Referring to
While the drawings show twist lock connections, those of ordinary skill in the art will appreciate from this disclosure that any other known suitable connection mechanism, such as a fastener, friction fit, snap fit, or the like can be used with any of the connections in the bottle 10 without departing from the scope of the present invention. Alternatively, the thermal energy storage member 46 and the lid 26 and/or the filter 70 can be a single integral component. Additionally, the bottle 10 can be used with one of multiple interchangeable thermal energy storage members 46 (or combination thermal energy storage members), to avoid delays caused by waiting for a single thermal energy storage member 46 to re-freeze or re-heat prior to continued use of the bottle 10.
The bottle 10 and its component parts are preferably formed from a sturdy, non-reactive, durable material, such as a suitable polymer. However, those of ordinary skill in the art will appreciate from this disclosure that the bottle 10 and its various components can be formed from any materials suitable for use with beverages. The thermal energy storage member 46 preferably contains a gelatinous material 48 that is formed of re-freezable material and/or re-heatable material, such as the non-toxic materials used in gel packs and the like.
Referring to
The container 12 preferably has at least one thread 16 positioned generally around a substantial portion of a perimeter of the container 12 proximate to the mouth 14 for engaging a lid 16. Alternatively, the container 12 can engage the lid 16 via a snap fit or any other suitable connection without departing from the scope of the present invention.
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The lid 26 may include a handle 28 that extends generally obliquely away from the bottle relative to the base of the bottle 10. The handle 28 preferably has a generally upside down U-shape. The handle 28 may be hollow to reduce weight and simplify carrying. The lower/inner surface of the lid 26 may include a downwardly depending tube portion 40. It is preferred that laterally extending projections 42 are located on the tube portion 40 for use in forming a twist lock connection. It is preferred that the tube portion 40 include a mating surface 44 that is generally annular and configured for abutting engagement with the thermal energy storage member 46
As best shown in
Referring to
The filter 70 has first and second filter ends 84A, 84B. The first filter end can be located on the one side 82 of the filter 70 that engages the straw 62 and/or the thermal energy storage member 46. The second filter end 84B may be located proximate a base 24 of the cavity 22, such that liquid 98 drawn through the filter 70 defines a filter path that is generally axially aligned with the longitudinal axis 55 of the thermal energy storage member 46. The one side 82 of the filter 70 preferably includes a tube portion 80 and projections 78 to use as part of a twist lock connection.
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While a preferred configuration of the thermal energy storage member 46 has been described above, those of ordinary skill in the art will appreciate from this disclosure that any configuration can be used without departing from the scope of the present invention. Similarly, any suitable connection means between the lid 26, filter 70, and/or straw 62 and the thermal energy storage member 46 can be used without departing from the scope of the present invention. As mentioned above, the lid 26 can also be made as a single integral piece with the thermal energy storage member 46 without departing from the scope of the present invention.
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A straw 62 can be located in the cavity 22 and spaced from the thermal energy storage member 46. The straw 62 has first and second straw ends 66A, 66B. The first straw end 66A can be being engaged with the filter 70 and the second straw end 66B can be engaged with the lid 26 to create a straw fluid passageway 68 between the filter 70 and the lid fluid passageway 34. It is preferred that the straw 62 and the thermal energy storage member 46 are generally parallel and both connect to one side of the filter 70. The filter 70 preferably has the first filter end 84A located on the one side 84 of the filter 70 and the second filter end 84B located proximate a base 26 of the cavity 22, such that liquid/consumable beverage 98 drawn through the filter 70 is removed from the cavity 22 proximate the cavity base 26. The filter 70 may include a straw connector 90 and a thermal energy storage member connector 92 that are formed by a snap fit connection or the like. When the straw is engaged with the filter 70 and the lid 26 and the thermal energy storage member 46 is engaged with the filter 70 and the lid 26, the bottle 10 is adapted to thermally condition and filter the consumable beverage 98 and the bottle 10 is adapted to allow consumption of the consumable beverage 98 from the cavity 22, through the filter 70, through the straw fluid passageway 68, through the lid fluid passageway 34, and through the drinking spout 30.
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The present invention is also directed to a kit that includes any combination of components shown in
A preferred embodiment of customizing a bottle according to the present invention is described below. Those of ordinary skill in the art will appreciate from this disclosure that generally similar steps and generally similar structural components of the bottle 10 described below should: generally have similar structure, general include similar alternate constructions, and generally operate in a similar manner as that described above, unless stated otherwise. The steps of the method of the present invention can be performed in any order, interchanged with other steps, or omitted, without departing from the scope of the present invention.
One preferred method of the present invention is directed to providing a customizable bottle 10 adapted to thermally condition and filter water. The method includes providing a container 10 configured to hold a consumable beverage 98. A lid is provided that can be detachably secured to the bottle to cover the mouth. A filter is positioned in the cavity. A thermal energy storage member is located in the cavity between the filter and the lid. The thermal energy storage member 46 comprises a plurality of thermal energy storage elements 58 that are assembled in a side-by-side manner to extend between one side 84 of the filter 70 and the lid 26. The thermal energy storage elements 58 can be adjusted in at least one of angular orientation relative to the straw and in side-by-side positioning relative to each other to customize the look of the bottle 10. The elements 58 preferably each bear at least one of a color, an indicia, an image, and a textured surface to allow for a customized look to be created for the bottle depending on the positioning of the thermal energy storage elements 58.
It is recognized by those skilled in the art, that changes may be made to the above described embodiment of the invention without departing from the broad inventive concept thereof. For example, any of the connections between components described above can be interchanged with any one of a twist-lock connection, a friction fit, a snap fit, a ball and detent, an interlock, a magnetic connection, a threaded connection, or any other suitable connection without departing from the scope of the present invention. It is understood, therefore, that this invention is not limited to the particular embodiment disclosed, but is intended to cover to all modifications which are within the spirit and scope of the invention as defined by the appended claims and the drawings.
Claims
1. A bottle adapted to thermally condition and filter consumable beverages, comprising:
- a container configured to hold a consumable beverage, the container defining a mouth and a cavity configured to hold the consumable beverage;
- a lid detachably secured to the bottle to cover the mouth, the lid defining a lid fluid passageway;
- a drinking spout located on the lid and configured to facilitate consumption of the consumable beverage from the container, the lid fluid passageway being configured to guide consumable beverage through the lid to the drinking spout;
- a filter located in the cavity;
- a thermal energy storage member disposed in the cavity and located between the filter and the lid, the thermal energy storage member defining a bore therethrough, the bore being configured to receive a straw therein;
- the straw having first and second straw ends, the first straw end being configured to detachably engage the filter and the second straw end being configured to detachably engage the lid to create a straw fluid passageway between the filter and the lid fluid passageway;
- wherein when the straw is engaged with the filter and the lid and the thermal energy storage member is located over the straw, the bottle is adapted to thermally condition and filter the consumable beverage and the bottle is adapted to allow consumption of the consumable beverage from the cavity, through the filter, through the straw fluid passageway, through the lid fluid passageway, and through the drinking spout.
2. The bottle of claim 1, further comprising the thermal energy storage member having a longitudinal axis, the bore being generally aligned along the longitudinal axis.
3. The bottle of claim 2, further comprising the thermal energy storage member being generally conically shaped with first and second thermal energy storage member ends, the second thermal energy storage member end being larger than the first end and being configured to generally approximate an area of one side of the filter, the first thermal energy storage member end being located adjacent the lid and the second thermal energy storage end being located adjacent the one side of the filter.
4. The bottle of claim 3, wherein the straw is detachably engaged to the filter via a first twist lock connection and wherein the straw is detachably engaged to the lid via a second twist lock connection.
5. The bottle of claim 4, wherein the filter comprises first and second filter ends, the first filter end being located on the one side of the filter, the second filter end being located proximate a base of the cavity, such that liquid drawn through the filter defines a filter path that is generally axially aligned with the longitudinal axis of the thermal energy storage member.
6. The bottle of claim 2, wherein the thermal energy storage member comprises a plurality of thermal energy storage elements that are assembled in a side-by-side manner to extend between one side of the filter and the lid, the thermal energy storage elements being adjustable in at least one of angular orientation relative to the straw and in side-by-side positioning relative to each other.
7. A bottle adapted to thermally condition and filter consumable beverages, comprising:
- a container configured to hold a consumable beverage, the container defining a mouth and a cavity configured to hold the consumable beverage;
- a lid detachably secured to the container to cover the mouth, the lid defining a lid fluid passageway;
- a drinking spout located on the lid and configured to facilitate consumption of the consumable beverage from the container, the lid fluid passageway being configured to guide consumable beverage through the lid to the drinking spout;
- a filter located in the cavity;
- a thermal energy storage member disposed in the cavity and located between the filter and the lid, the thermal energy storage member defining a bore therethrough, the bore being adapted to form a thermal energy storage member fluid passageway; the thermal energy storage member having first and second thermal energy storage member ends, the second thermal energy storage member end being detachably engageable with the filter, the first thermal energy storage member end being detachably engageable with the lid so that the thermal energy storage member fluid passageway forms a conduit between the filter and the lid fluid passageway;
- wherein when the thermal energy storage member is engaged with the filter and the lid, the bottle is adapted to thermally condition and filter the consumable beverage and the bottle is adapted to allow consumption of the consumable beverage from the cavity, through the filter, through the thermal energy storage member fluid passageway, through the lid fluid passageway, and through the drinking spout.
8. The bottle of claim 7, further comprising the thermal energy storage member having a longitudinal axis, the bore being generally aligned along the longitudinal axis.
9. The bottle of claim 8, further comprising the thermal energy storage member being generally conically shaped with first and second thermal energy storage member ends, the second end being larger than the first end and being configured to generally approximate an area of one side of the filter, the first thermal energy storage member end being located adjacent the lid and the second thermal energy storage end being located adjacent the one side of the filter.
10. The bottle of claim 9, wherein the thermal energy storage member is detachably engaged to the filter via a first twist lock connection and wherein the thermal energy storage member is detachably engaged to the lid via a second twist lock connection.
11. The bottle of claim 10, wherein the filter comprises first and second filter ends, the first filter end being located on the one side of the filter, the second filter end being located proximate a base of the cavity, such that liquid drawn through the filter defines a filter path that is generally axially aligned with the longitudinal axis of the thermal energy storage member.
12. A bottle adapted to thermally condition and filter consumable beverages, comprising:
- a container configured to hold a consumable beverage, the container defining a mouth and a cavity configured to hold the consumable beverage and having a cavity base;
- a lid detachably secured to the bottle to cover the mouth, the lid defining a lid fluid passageway;
- a drinking spout located on the lid and configured to facilitate consumption of the consumable beverage from the container, the lid fluid passageway being configured to guide consumable beverage through the lid to the drinking spout;
- a filter located in the cavity proximate to the cavity base;
- a thermal energy storage member disposed in the cavity and located between the filter and the lid, the thermal energy storage member being engaged with the lid and with the filter;
- a straw located in the cavity and spaced from the thermal energy storage member, the straw having first and second straw ends, the first straw end being engaged with the filter and the second straw end being engaged with the lid to create a straw fluid passageway between the filter and the lid fluid passageway;
- wherein when the straw is engaged with the filter and the lid and the thermal energy storage member is engaged with the filter and the lid, the bottle is adapted to thermally condition and filter the consumable beverage and the bottle is adapted to allow consumption of the consumable beverage from the cavity, through the filter, through the straw fluid passageway, through the lid fluid passageway, and through the drinking spout.
13. The bottle of claim 12, wherein the straw and the thermal energy storage member are generally parallel and both connect to one side of the filter, the filter further comprising first and second filter ends, the first filter end being located on the one side of the filter, the second filter end being located proximate a base of the cavity, such that liquid drawn through the filter is removed from the cavity proximate the cavity base.
14. A bottle adapted to thermally condition and filter consumable beverages, comprising:
- a container configured to hold a consumable beverage, the container defining a mouth and a cavity configured to hold the consumable beverage and having a cavity base;
- a lid detachably secured to the bottle to cover the mouth, the lid defining a lid fluid passageway;
- a drinking spout located on the lid and configured to facilitate consumption of the consumable beverage from the container, the lid fluid passageway being configured to guide consumable beverage through the lid to the drinking spout;
- a filter located in the cavity proximate to the lid, the filter comprising a filter cartridge and a filter housing, the filter cartridge being engaged with the lid and the filter housing being engaged with the filter cartridge;
- a thermal energy storage member located in the cavity and disposed on the filter housing;
- wherein the bottle is adapted to thermally condition and filter the consumable beverage and the bottle is adapted to allow consumption of the consumable beverage from the cavity, through the filter, through the lid fluid passageway, and through the drinking spout.
15. The bottle of claim 14, wherein the filter cartridge is an axial flow filter having first and second cartridge ends and a cartridge sidewall, the first cartridge end being located proximate the lid fluid passageway and the second cartridge end being located proximate the thermal energy storage member, the filter being configured such that consumable beverage enters the housing proximate the lid, flows generally along the cartridge sidewall, into the second cartridge end, out the first cartridge end, and into the lid fluid passageway.
16. The bottle of claim 14, wherein the filter cartridge is a radial flow filter having first and second cartridge ends and a cartridge sidewall, the first cartridge end being located proximate the lid fluid passageway and the second cartridge end being located proximate the thermal energy storage member, the filter being configured such that consumable beverage enters the housing proximate the lid, flows into the filter cartridge generally through the cartridge sidewall, out the first cartridge end, and into the lid fluid passageway.
17. A method of providing a customizable bottle adapted to thermally condition and filter water, comprising the steps of:
- providing a container configured to hold a consumable beverage, the container defining a mouth and a cavity configured to hold the consumable beverage;
- providing a lid detachably secured to the bottle to cover the mouth, the lid defining a lid fluid passageway, the comprising a drinking spout thereon and configured to facilitate consumption of the consumable beverage from the container, the lid fluid passageway being configured to guide consumable beverage through the lid to the drinking spout;
- positioning a filter in the cavity;
- locating a thermal energy storage member in the cavity and between the filter and the lid, the thermal energy storage member defining a bore therethrough, the bore being configured to receive a straw therein, wherein the thermal energy storage member comprises a plurality of thermal energy storage elements that are assembled in a side-by-side manner to extend between one side of the filter and the lid, the thermal energy storage elements being adjustable in at least one of angular orientation relative to the straw and in side-by-side positioning relative to each other; and
- inserting a straw through the bore of the thermal energy storage member and securing the straw to the filter and the lid, wherein when the straw is engaged with the filter and the lid and the thermal energy storage member is located over the straw, the bottle is adapted to thermally condition and filter the consumable beverage.
18. The method of claim 18, wherein the step of locating a thermal energy storage member further comprises the plurality of thermal energy storage elements each bearing at least one of a color, an indicia, an image, and a textured surface to allow for a customized look to be created for the bottle depending on the positioning of the thermal energy storage elements on the straw.
19. A kit for use with consumable beverages, comprising:
- a container configured to hold a consumable beverage, the container defining a mouth and a cavity configured to hold the consumable beverage;
- a lid detachably secured to the bottle to cover the mouth, the lid defining a lid fluid passageway;
- a drinking spout located on the lid and configured to facilitate consumption of the consumable beverage from the container, the lid fluid passageway being configured to guide consumable beverage through the lid to the drinking spout;
- a filter adapted to be located in the cavity;
- a thermal energy storage member disposed in the cavity and located between the filter and the lid, the thermal energy storage member defining a bore therethrough, the bore being configured to receive a straw therein;
- the straw having first and second straw ends, the first straw end being configured to detachably engage the filter and the second straw end being configured to detachably engage the lid to create a straw fluid passageway between the filter and the lid fluid passageway, wherein when the straw is engaged with the filter and the lid and the thermal energy storage member is located over the straw, the bottle is adapted to thermally condition and filter the consumable beverage and the bottle is adapted to allow consumption of the consumable beverage from the cavity, through the filter, through the straw fluid passageway, through the lid fluid passageway, and through the drinking spout; and
- a second thermal energy storage member configured to substitute for the filter if additional cooling is desired and filtering of the consumable beverage is not desired.
20. The kit of claim 19, wherein the second thermal energy storage member has an exterior shape generally the same as an exterior shape of the filter to allow the bottle to have substantially the same aesthetic appearance regardless of whether the filter or the second thermal energy storage member is being used.
21. The kit of claim 21, wherein the thermal energy storage member comprises a plurality of thermal energy storage elements that are assembled in a side-by-side manner to extend between one side of the filter and the lid, the thermal energy storage elements being adjustable in at least one of angular orientation relative to the straw and in side-by-side positioning relative to each other.
Type: Application
Filed: Feb 5, 2009
Publication Date: Aug 5, 2010
Inventors: Donna Roth (Plymouth, MA), Henry Roth (Plymouth, MA)
Application Number: 12/366,621