Protective bottle enclosure

Information

  • Patent Grant
  • 11623790
  • Patent Number
    11,623,790
  • Date Filed
    Thursday, November 19, 2020
    3 years ago
  • Date Issued
    Tuesday, April 11, 2023
    a year ago
  • Inventors
    • Campbell; Matthew T. (Phoenix, AZ, US)
  • Original Assignees
  • Examiners
    • Fristoe, Jr.; John K
    • Volz; Elizabeth J
    Agents
    • Quarles & Brady LLP
Abstract
A bottle enclosure for holding a longneck bottle having a top, neck, shoulder, and main body. The bottle enclosure can include an upper portion configured to fit around the neck, shoulder, and main body of the longneck bottle, a cap removably coupled to an upper end of the upper portion and configured to fit over the top of the longneck bottle, and a base portion removably coupled to a bottom end of the upper portion. An elastomeric component can be arranged on an interior surface of one or both of the upper portion or the base portion.
Description
BACKGROUND
1. Field of the Disclosure

The present disclosure relates generally to food and beverages, and more particularly to containers for holding beverages and beverage bottles.


2. Description of the Background of the Disclosure

Many people like to drink beverages while on the go. Beverages are often carried by people for different reasons and to different places, such as to the beach, to the office, in the car, on a boat, at the golf course, at the shopping mall, and other similar places. Once opened, however, a bottle can spill contents, wasting the beverage and creating a mess. Further, for some beverages, once the bottle is opened, the beverage contained therein will lose its freshness or effervescence as gases in the beverage leave the beverage and escape the bottle. Some bottles have caps or lids designed to be re-applied to an open bottle top so as to close the bottle and prevent spills. However, many bottles, such as glass bottles, do not have caps or lids that can be re-applied. Instead, the beverages in these bottles must generally consumed in one sitting, or the drinker must drink some of the beverage immediately after opening and then the rest at a later time, sacrificing the freshness or effervescence when finishing the beverage. Further, most beverages, if consumed over a period of time, will gradually equalize with the ambient temperature of the environment, which can be undesirable if the beverage was meant to be consumed very hot or very cold. An improved device for carrying a beverage is needed.


SUMMARY

According to one aspect, a three piece bottle enclosure for holding a longneck bottle having a top, neck, shoulder, and main body is provided. The three piece bottle enclosure can include an upper portion configured to fit around the neck, shoulder, and main body of the longneck bottle, a cap removably coupled to an upper end of the upper portion and configured to fit over the top of the longneck bottle, and a base portion removably coupled to a bottom end of the upper portion. According to some aspects, an elastomeric component can be arranged on an interior surface of one or both of the upper portion or the base portion.


According to another aspect, a protective enclosure for removably enclosing a beverage container within the protective enclosure is provided. The protective enclosure can include a body portion including a first sidewall extending between a top opening and a bottom opening and a base portion removably coupled to the body portion. The base portion can include a second sidewall extending from a bottom wall and terminating at a base opening. The body portion and the base portion can together define an internal cavity configured to receive the beverage container. The protective enclosure can be configured to secure the beverage container such that removal of the beverage container is prevented when the protective enclosure is in an assembled configuration.


According to another aspect, a method of protecting an open bottle within a protective enclosure is provided. The open bottle can include a top, neck, shoulder, and main body. The protective enclosure can include a body portion, a base portion removably coupled to the body portion, and a cap removably coupled to the body portion. The body portion can including an open interior extending between a top opening and a bottom opening. The method of protecting the open bottle within the protective enclosure can include inserting the open bottle into the bottom opening such that the open bottle is received within the open interior of the body portion, coupling the base portion to the body portion to cover the bottom opening, and coupling the cap to the body portion to cover the top opening thereby completely surrounding and enclosing the open bottle.





BRIEF DESCRIPTION OF THE DRAWINGS


FIG. 1 is a front perspective view of a protective bottle enclosure constructed and arranged in accordance with the principle of the disclosure, including a container having an upper portion, a base applied to the upper portion, and a cap applied to the upper portion;



FIG. 2 is an exploded front perspective view of the protective bottle enclosure of FIG. 1;



FIG. 3 is a section view of the protective bottle enclosure of FIG. 1 taken along the line 3-3 in FIG. 1; and



FIGS. 4A-4C are section views of three embodiments of caps taken along similar lines as FIG. 3.





DETAILED DESCRIPTION

Reference is now made to the drawings. FIG. 1 illustrates a protective bottle enclosure 10 constructed and arranged according to the principle of the disclosure. FIG. 2 illustrates the same enclosure 10 in an exploded view. The enclosure 10 is useful for containing, concealing, and insulating a bottle applied to the enclosure in such a way that a beverage from the bottle can be consumed while the bottle is protected within the enclosure 10. The enclosure 10 includes a container 11 and a cap 12 removably applied to the container 11. The container 11 is preferably constructed from a material or materials having material characteristics of strength and rigidity, such as metal or plastic. The container 11 is preferably a two-piece unit having a main upper portion 13 and a base 14 removably applied to the upper portion 13. The upper portion 13 and base 14 cooperate to define a generally cylindrical interior 15 (indicated in FIG. 2) which receives the beverage bottle that the enclosure 10 protects. The upper portion 13 and base 14 are preferably extruded or rolled from thin-walled aluminum or the like.


The upper portion 13 is formed from a continuous thin sidewall 20 having opposed inner and outer surfaces 21 and 22 which are parallel to each other and set just slightly apart, defining a very thin thickness of the sidewall 20. The upper portion 13 of the container 11 defines a majority of the container 11 and has a body 23 extending from a bottom 24 to a shoulder 25 of the container 11. The shoulder 25 is an annular narrowing of the container 11 which tapers from the body 23 to a neck 30 of the container 11. The neck 30 extends upward to a finish 31 which terminates in an annular lip 32. The body 23 of the upper portion has a constant diameter D from just above the bottom 24 to the just below the shoulder 25. The neck has a diameter E which is less than the diameter D of the body 23, since the shoulder 25 between the body 23 and the neck 30 tapers in diameter between the two. The lip 32 flares outward slightly from the diameter E of the neck 30.


The base 14 is removable from the upper portion 13 so that a bottle may be introduced into the interior 15 and carried therein. Still referring to FIGS. 1 and 2, the base 14 has a flat bottom 34 and an upstanding, annular sidewall 35 extending upward from the bottom 34 and terminating in an open top 36. To releasably couple the base 14 to the upper portion 13, a fastening assembly is carried between the upper portion 13 and the base 14. At the bottom 24 of the body 23, the upper portion 13 of the container 11 has a reduced diameter and is formed with external threads 40. Complemental internal threads are carried on the sidewall 35 of the base 14. Though not visible in FIGS. 1 and 2, the internal threads are visible in FIG. 3 and are identified there with the reference number 41. The two sets of threads 40 and 41 threadably engage the base 14 to the upper portion 13 of the container 11 and allow the base 14 to be quickly and easily removed from the upper portion 13. By aligning the threads 40 and 41 and rotating the base 14 with respect to the upper portion 13 in a clockwise direction, the base 14 is secured to the upper portion 13. Conversely, by rotating the base 14 in a counter-clockwise direction with respect to the upper portion 13 and retracting the base 14 away from the upper portion 13, the base 14 is removed from the upper portion 13, and the bottom 24 of the upper portion 13 is open, defining an entrance available to apply a bottle there through into the interior 15 of the container 11. One having ordinary skill in the art will readily appreciate that the relative direction of the threads 40 and 41 may be reversed so that the direction of rotation of the base 14 with respect to the upper portion 13 would be correspondingly reversed to apply and remove the base 14 from the upper portion 13. One having ordinary skill in the art will also appreciate that another suitable fastening mechanism may be used to removably engage the base 14 to the upper portion 13.


Turning briefly to FIG. 3, a bottle 100 has been applied to the interior 15 of the container 11. The bottle 100 is shown in ghost form, or in broken line, in FIG. 3, which is a section view taken along the line 3-3 in FIG. 1. The container 11 has rotational symmetry about a vertical axis extending through the interior 15 along a geometric center of the container 11. The bottle 100 is applied to the enclosure 10, and has a body 101, a bottom 102, a shoulder 103, and a long neck 104 terminating in an open mouth 105 at a top 106 of the bottle 100. The mouth 105 of the bottle 100 has an internal diameter M. The bottle 100 has been, and is preferably, inserted into the enclosure 10 with the mouth 105 open so that the cap 12 seals the mouth 105 when the cap 12 is fully applied and seated to the container 11.


Referring now back to FIG. 2 primarily, the cap 12 is removably applied to the container 11 to seal the container 11. The neck 30 of the upper portion 13 of the container 11 carries threads 42 which are formed integrally in the neck 30 and extend both inwardly and outwardly. The threads 42 allow the cap 12 to be threadably engaged to the container 11 to secure and release the cap 12 on the container. Three cap embodiments are shown in FIGS. 4A-4C and are identified as the caps 12, 12′, and 12″, respectively. Discussion of the cap 12 in FIG. 4A will be made first, and then, turning to FIGS. 4B and 4C, the discussion will be of the caps 12′ and 12″ and the various structural elements and features which are different from the cap 12. Discussion of structural elements and features which are identical in the caps 12, 12′, and 12″ will not be repeated in the description of the caps 12′ and 12″.



FIG. 4A illustrates an enlarged section view of the cap 12 taken along the line 3-3 in FIG. 1. The cap 12 consists of a knob 50 formed with a tab or extension 51 providing a contact surface to be gripped and rotated, and a collar 52 depending from the knob 50 opposite the extension 51. The collar 52 is a thin cylindrical sleeve which extends downward from the knob 50 and carries external threads 53. The threads 53 extend radially outward from the collar 52. The threads 53 of the cap 12 threadably engage with the internal threads 42 formed in the neck 30 of the upper portion 13, so that the cap 12 is applied and engaged to the upper portion 13 by aligning the threads 53 and 42 and rotating the cap 12 clockwise relative to the upper portion 13, and the cap 12 is retracted and disengaged from the upper portion 13 by rotating the cap 12 counterclockwise relative to the upper portion 13. One having ordinary skill in the art will understand that the relative direction of the threads 42 and 53 may be reversed and that the direction of rotation of the cap 12 relative to the upper portion 13 would be correspondingly reversed to apply and remove the cap 12. The cap has a cuff 54 disposed between the extension 51 and the collar 52 extending radially outward from an underside 58 of the extension 51 and defining a lower portion of the extension 51. The cuff 54 is a cylindrical sidewall having an inner surface 55 cooperating with the collar 52 to bound an internal, generally cylindrical volume 56 with an opening 57 located opposite the extension 51.


Still referring to FIG. 4A, the cap 12A has a sealing structure to seal the mouth 105 of the bottle 100 while housed in the container 11. The cap 12 has a stopper 60 with a body 61 which is an inverted truncated conical frustum that tapers in diameter away from the cap 12. The body 61 has a top 62 and an opposed bottom 63 with a diameter G, and the diameter G at the bottom 63 is smaller than the diameter at the top 62 of the body 61. The top 62 of the body 61 is applied to the underside 58 of the knob 50. The body 61 is constructed from a material or combination of materials having material characteristics of resiliency, elasticity, and shape memory, such as rubber, so that the body 61 of the stopper 60 can be compressed radially under pressure and return to its original shape when the compression is removed. The body 61 of the stopper 60 extends within the cylindrical volume 56 as far as the cuff 54, and an annular volume 64 in communication with the cylindrical volume 56 is defined between the body 61 of the stopper 60 and the inner surface 55 of the cuff 54 which encircles the stopper 60 within the cap 12. An annular flange 65 is formed on the body 61 of the stopper 60. The flange 65 is a ring formed monolithically and integrally to the body 61, and the flange extends continuously around the body 61 parallel to the top 62 and bottom of the stopper 60. The body 61 has a diameter F just under the flange 65, and the flange 65 has a diameter H, which is larger than the diameter F and the diameter G of the bottom 63 of the body 61 of the stopper 60. The diameter H of the flange 65 is greater than the diameter M of the mouth 105 of the bottle 100, and the diameter M of the mouth 105 is larger than the diameter G of the bottom 63 of the stopper 60 but just smaller than the diameter F of the stopper 60. The flange 65 is constructed from a material having a rigid material characteristics, such as plastic. The flange 65 is formed on the body 61 at a generally intermediate location with respect to the top 62 and bottom 63.


Turning now to FIG. 4B, the cap 12′ is shown. As explained above, the cap 12′ shares various structural elements and features in common with the cap 12, and as such, those structural elements and features will not be described here. Those structural elements and features are identified in the discussion of the cap 12′ with the same reference characters as above, and the discussion below is directed toward the differences of cap 12′. The cap 12′ has a knob 50, extension 51, collar 52, threads 53, cuff 54, inner surface 55, cylindrical volume 56, opening 57, and underside 58, but the cap 12′ presents an alternate stopper 70.


The stopper 70 has a body 71 which is an inverted truncated conical frustum that tapers in diameter away from the cap 12′. The body 71 has a top 72 and an opposed bottom 73 with respective diameters F′ and G′, and the diameter G′ at the bottom 73 is smaller than the diameter F′ at the top 72 of the body 71. The top 72 of the body 71 is applied to the underside 58 of the knob 50. The body 71 is constructed from a material or combination of materials having material characteristics of resiliency, elasticity, and shape memory, such as rubber, so that the body 71 of the stopper 70 can constrict and be compressed radially under pressure and return to its original shape when the compression is removed. The body 71 of the stopper 70 extends within the cylindrical volume 56 as far as the cuff 54, and the annular volume 64 in communication with the cylindrical volume 56 is defined between the body 71 of the stopper 70 and the inner surface 55 of the cuff 54 which encircles the stopper 70 within the cap 12. The diameter M of the mouth 105 of the bottle 100 is larger than the diameter G′ of the bottom 73 of the stopper 70 but is smaller than the diameter F′ of the top 62 of the bottle 100. In this way, when the cap 12′ is applied to and seated on the container 11, the mouth 105 encircles and constricts the stopper 60 between the top 62 and bottom 63.


Turning now to FIG. 4C, the cap 12″ is shown. Again, as explained above, the cap 12″ shares various structural elements and features in common with the cap 12, and as such, those structural elements and features will not be described here. Those structural elements and features are identified in the discussion of the cap 12″ with the same reference characters as above, and the discussion below is directed toward the differences of cap 12″. The cap 12″ has a knob 50, extension 51, collar 52, threads 53, cuff 54, inner surface 55, cylindrical volume 56, opening 57, and underside 58, but the cap 12′ presents an alternate stopper 80.


The stopper 80 of the cap 12″ is a pad 81 carried on the underside 58 of the knob 50. The pad 81 includes an upper surface 82, an opposed lower surface 83, and a compressible middle layer 84 between the upper and lower surfaces 82 and 83. The upper surface 82 is permanently applied, such as with an adhesive, to the underside 58 of the knob 50 and extends across the underside 58 encircled by the inner surface 55 of the cuff 54. The pad 81 has a diameter I, which is greater than the diameter M of the mouth 105 of the bottle 100. The pad 81 is constructed from a material or combination of materials having compressible, elastic, resilient, and durable material characteristics, such as elastomeric rubber and the like.


The caps 12, 12′, and 12″ each seal the open bottle 100 and the container 11 when used as part of the enclosure 10. The bottle 100 is held within the enclosure 10 by the cap and by elastomeric padding or forms within the container 11. The elastomeric forms are applied to the upper portion 13 and the base 14 to provide insulation to the bottle 100, to provide impact protection to the bottle 100, and to hold the bottle 100 securely, both while the bottle 100 is enclosed by the enclosure 10 and while the bottle is tipped and being drunk from. With reference back to FIG. 3, the upper portion 13 has an upper form 90 with an outer surface 91 applied, such as with an adhesive, to the inner surface 21 of the container 11 and an inner surface 92 extending into the interior 15 of the enclosure 10. The upper form 90 has a generally cylindrical shape extending from the bottom 24 of the upper portion 13 to the shoulder 25. The upper form 90 is constructed from a material or combination of materials having material characteristics of compressibility, durability, resiliency, and shape memory, and which is a good insulator. The base 14 has a base pad 93 with an upper surface 94 and an opposed lower surface 95 applied, such as with an adhesive, to the bottom 34 of the base 14. The base form 93 is disc shaped and extends along the bottom 34 of the base 14. The sidewall of the base 14 is uncovered in the interior 15. Like the upper form 90, the base form 93 is constructed from a material or combination of materials having the material characteristics of compressibility, durability, resiliency, and shape memory, and which is a good insulator. The upper and base forms 90 and 93 securely position and hold the bottle 100 in place within the container and provide insulation to keep the beverage in the bottle 100 hot or cold.


In operation, the enclosure 10 is useful for protecting, insulating, and concealing the bottle 100 within the enclosure 10. To apply the bottle 100 to the enclosure 10, the base 14 is decoupled from the upper portion 13 by rotating the base 14 relative to the upper portion 13 while retracting the base 14 and then withdrawing the base 14 from the upper portion 13, exposing the open bottom 24 of the upper portion 13 and the interior 15 ready to receive the bottle 100. The bottle 100 is held, such as by hand, and inserted into the interior 15 with the mouth 105 of the bottle 100 introduced first into the interior 15. The bottle 100 is applied to and inserted into the interior 15 until the mouth 105 of the bottle 100 is disposed just below the lip 32 on the finish 31 of the upper portion 13. As the bottle 100 is applied into the interior 15, the bottle 100 radially compresses the upper form 90 against the sidewall 20 of the upper portion 13. As shown in FIG. 3, above the shoulder 103 of the bottle 100, the upper form 90 is uncompressed and has a normal thickness, while along the body 101 of the bottle 100, the upper form 90 is compressed and has a reduced thickness. The bottle 100 is thus held in a friction fit arrangement by the upper form 90 which limits vertical movement in and out of the upper portion 13.


Once the bottle 100 is placed into the upper portion 13, the base 14 is coupled to the upper portion 13. The base 14 is aligned with the upper portion 13 and moved toward and over the bottom 24 of the upper portion 13 while rotating the base 14 with respect to the upper portion 13 so as to threadably engage the base 14 onto the upper portion 13. The base 14 is rotated completely until the base 14 is firmly seated on the upper portion 13 and the top 36 of the base 14 is against the bottom 24 of the upper portion 13, sealing the base 14 on the upper portion 13 and forming the container 11. If, before coupling the base 14 to the upper portion 13, the bottle 100 had not been fully applied to the upper portion 13, then when the base 14 is seated to the upper portion 13, the base 14 will advance the bottle 100 further into the upper portion 13 to a preferred location in the interior 15. If the bottle 100 had been applied too far into the interior 15, then application of the cap 12 to the upper portion 13 will re-position the bottle 100 in the opposite direction. Any of the caps 12, 12′, and 12″ may be applied and seated on the upper portion 13. Seating any of the caps 12, 12′, and 12″ on the container 12 forms seals between the bottle 100 and the cap 12 and between the container 11 and the cap 12. Application of each will now be discussed.



FIG. 3 and FIG. 4A show the cap 12 fully seated on the upper portion 13 in a seated position of the cap 12, sealing the open mouth 105 of the bottle 100, To apply the cap 12 to the container 11 with the bottle 100 held in the container 11, the cap 12 is free of the container 11 and is aligned with the neck 30 and finish 31 of the container 11 in a free condition of the cap 12. The threads 53 on the cap 12 are directed downwardly toward the threads 42 on the neck 30 of the container 11. The cap 12 is then rotated onto the neck 30, threadably engaging the threads 53 on the cap 12 with the threads 42 formed in the neck 30 of the container 11 to move the cap 12 into an applied condition on the container 11. As the cap 12 is threaded onto the container 11, the cap 12 is applied to the container 11, and the bottom 63 of the stopper 60 moves into the mouth 105 of the bottle 100. The bottom 63 of the stopper 60 has a diameter G which is less than the diameter M of the mouth 105, so that the mouth 105 begins to receive the stopper 60. As the cap 12 is further threaded onto the container 11, the stopper 60 advances further into bottle 100, filling a greater portion of the diameter M of the mouth 105. In this applied condition of the cap 12, the cap 12 only yet forms a fluid-permeable seal with the container 11. As the cap 12 is still further threaded onto the container 11, however, the stopper 60 fills the entire mouth 105 of the bottle 100, and begins to be compressed and constricted radially by the mouth 105. The cap 12 continues to be advanced until the top 106 of the bottle 100 encounters the flange 65 on the stopper 60, at which point the cuff 54 of the cap 12 fully seats against the lip 32 of the upper portion 13 of the container 11. The diameter F of the body 61 of the stopper 60 just below the flange 65 is just greater than the diameter M of the mouth 105, and the diameter H of the flange 65 is greater than the diameter M of the mouth 105, so that the mouth 105 is received against an inward shoulder 99 formed by the body 61 of the stopper 60 and the flange 65, defining a seated condition of the cap 12. In this seated condition, the stopper 60 forms a fluid-impervious seal 96 with the mouth 105 of the bottle 100, so that the beverage in the bottle 100 cannot leave the bottle 100 and enter the interior 15. Further, the cuff 54 of the cap 12 fully seated against the lip 32 of the container and forms a fluid-impervious seal 97 with the container 11. This seal 97 prevents any moisture in the interior 15 from exiting the interior 15 and also prevents any fluids outside of the enclosure 10 from entering the interior 15. The seal 96 is considered an inner seal, and the seal 97 is considered an outer seal spaced apart from the inner seal, so that the enclosure 10 has a unique double-seal construction which is formed when the cap 12 is in the seated condition on the container 11.


Alternately, the bottle 100 and container 11 can be sealed by the cap 12′. FIG. 4B shows the cap 12′ fully seated on and sealing the open mouth 105 of the bottle 100. FIG. 4B does not show the container 11, as one having ordinary skill in the art will understand how the cap 12′ seats on the container 11, given the above description of the cap 12 and the container 11, and given the below description. To apply the cap 12′ to the container 11 with the bottle 100 held in the container 11, the cap 12′ is free of the container 11 and is aligned with the neck 30 and finish 31 of the container 11 in a free condition of the cap 12′. The threads 53 on the cap 12′ are directed downwardly toward the threads 42 on the neck 30 of the container 11. The cap 12′ is then rotated onto the neck 30, threadably engaging the threads 53 on the cap 12′ with the threads 42 formed in the neck 30 of the container 11 to move the cap 12′ into an applied condition on the container 11. As the cap 12′ is threaded onto the container 11, the cap 12′ is applied to the container 11, and the bottom 73 of the stopper 70 moves into the mouth 105 of the bottle 100.


The bottom 73 of the stopper 70 has a diameter G′ which is less than the diameter M of the mouth 105, so that the mouth 105 begins to receive the stopper 70. As the cap 12′ is further threaded onto the container 11, the stopper 70 advances further into bottle 100, filling a greater portion of the diameter M of the mouth 105. In this applied condition of the cap 12′, the cap 12′ only yet forms a fluid-permeable seal with the container 11. As the cap 12′ is still further threaded onto the container 11, however, the stopper 70 fills the entire mouth 105 of the bottle 100, and begins to be compressed and constricted radially by the mouth 105. The cap 12′ continues to be advanced until the top 106 of the bottle 100 binds on the body 71 of the stopper 70, at which point the cuff 54 of the cap 12′ also fully seats against the lip 32 of the upper portion 13 of the container 11. The diameter of the body 71 of the stopper 70 encircled by the mouth 105 is just less than the diameter M of the mouth 105, defining a seated condition of the cap 12 on the container 11. In this seated condition, the stopper 70 forms a fluid-impervious seal 95′ with the mouth 105 of the bottle 100, so that the beverage in the bottle 100 cannot leave the bottle 100 and enter the interior 15. This seal 96 is considered an inner seal. Further, the cuff 54 of the cap 12′ fully seated against the lip 32 of the container and forms a fluid-impervious seal with the container 11. This seal is considered an outer seal, and it prevents any moisture in the interior 15 from exiting the interior 15 and also prevents any fluids outside of the enclosure 10 from entering the interior 15. The enclosure 10 has this unique double-seal construction which is formed when the cap 12′ is in the seated condition on the container 11.


Alternately, the bottle 100 and container 11 can be sealed by the cap 12″. FIG. 4C shows the cap 12″ fully seated on and sealing the open mouth 105 of the bottle 100. FIG. 4C does not show the container 11, as one having ordinary skill in the art will understand how the cap 12″ seats on the container 11, given the above description of the cap 12 and the container 11, and given the below description. To apply the cap 12′ to the container 11 with the bottle 100 held in the container 11, the cap 12′ is free of the container 11 and is aligned with the neck 30 and finish 31 of the container 11 in a free condition of the cap 12″. The threads 53 on the cap 12″ are directed downwardly toward the threads 42 on the neck 30 of the container 11. The cap 12″ is then rotated onto the neck 30, threadably engaging the threads 53 on the cap 12″ with the threads 42 formed in the neck 30 of the container 11 to move the cap 12″ into an applied condition on the container 11. As the cap 12″ is threaded onto the container 11, the cap 12″ is applied to the container 11, the mouth 105 of the bottle 100 contacts the lower surface 83 of the pad 81 of the stopper 80. As the cap 12″ is still further threaded onto the container 11, the mouth 105 of the bottle 100 advances into the pad 81, deflecting the lower surface 83 and compressing the middle layer 84 toward the upper surface 82. The pad 81 continues to be compressed by the mouth 105 until the cap 12″ is fully threaded onto the container 11, seating the cuff 54 of the cap 12″ against the lip 32 of the container 11 in a seated condition of the cap 12″. In the seated condition of the cap 12″, a fluid-impervious seal 96″ is formed between the pad 81 and the mouth 105 of the bottle 100, which seal 96″ is considered an inner seal preventing the loss of the beverage contained in the bottle 100 into the interior 15 of the enclosure 10. Further, in the seated condition of the cap 12″, the cuff 54 of the cap 12″ forms a fluid-impervious seal with the container 11. This seal is considered an outer seal, and it prevents any moisture in the interior 15 from exiting the interior 15 and also prevents any fluids outside of the enclosure 10 from entering the interior 15. The enclosure 10 has this unique double-seal construction which is formed when the cap 12″ is in the seated condition on the container 11.


Once the enclosure 10 is sealed with the cap 12, 12′, or 12″ (discussion herein with respect to the cap 12), the bottle 100 can be carried, tilted, or tipped without spilling the beverage within the bottle 100 inside the enclosure 10. The cap 12 can be removed to allow a person to drink from the bottle 100, simply by unthreading the cap 12 from the container 11 and moving the cap 12 into the free condition thereof, exposing the mouth 105 of the bottle 100 which is spaced above the lip 32 of the upper portion 13 of the container 11 by a distance T. The mouth 105 is also spaced apart from the lip 32 of the upper portion 13 of the container 11 by an annular gap 98 encircling the mouth 105. This annular volume 64 is a gap between the mouth 105 of the bottle 100 and the lip 32 of the enclosure 10 which allows a person to place his or her lips on the bottle itself. This can prevent spilling of the beverage into the interior 15 or simply out of the bottle 100 altogether, because a seal is formed between the mouth 105 of the bottle 100 and the person's lips. Alternatively, the person may place his or her lips around the lip 32 of the enclosure 10 and drink from the bottle 100.


The present disclosure is described above with reference to several embodiments, among them a preferred embodiment. However, those skill having ordinary skill in the art will appreciate that changes and modifications may be made in the described embodiments without departing from the nature and scope of the present disclosure. Various further changes and modifications to the embodiment herein chosen for purposes of illustration will readily occur to one having ordinary skill in the art. To the extent that such modifications and variations do not depart from the principle of the disclosure, they are intended to be included within the scope thereof.

Claims
  • 1. A three piece bottle enclosure for holding a longneck bottle having a top, neck, shoulder, and main body, the three piece bottle enclosure consisting of: an upper portion configured to fit around the neck, shoulder, and main body of the longneck bottle;a cap removably coupled to an upper end of the upper portion and configured to fit over the top of the longneck bottle, the cap including an underside and a cap wall together defining a cap cavity; anda base portion removably coupled to a bottom end of the upper portion,wherein the underside of the cap includes: a stopper body extending into the cap cavity that is configured to be received inside an open mouth of the longneck bottle; anda ring extending radially outward from the stopper body and configured to form a seal with the open mouth of the longneck bottle.
  • 2. The three piece bottle enclosure of claim 1, wherein the upper portion, the cap, and the base portion are configured to completely surround and enclose the longneck bottle when the three piece bottle enclosure is in an assembled configuration.
  • 3. The three piece bottle enclosure of claim 1, wherein an inner surface of the cap wall defines a first diameter and the stopper body defines a second diameter that is smaller than the first diameter.
  • 4. The three piece bottle enclosure of claim 1, wherein the upper portion defines: a neck section configured to fit around the neck of the longneck bottle and including an upper opening,a shoulder section configured to fit over the shoulder of the longneck bottle,a first threading for connecting the cap to the upper end of the upper portion, anda lower section configured to fit around the main body of the longneck bottle, wherein the lower section defines: a second threading for connecting the base portion to the bottom end of the upper portion, anda lower opening opposite the upper opening.
  • 5. The three piece bottle enclosure of claim 4, wherein the shoulder section defines a wall that tapers outwardly in diameter between the neck section and the lower section.
  • 6. The three piece bottle enclosure of claim 4, wherein the upper opening is narrower in diameter than the lower opening.
  • 7. The three piece bottle enclosure of claim 4, wherein the base portion defines: a sidewall extending from a bottom wall, the base portion being configured to close the lower opening of the upper portion, anda third threading to threadably engage the second threading of the upper portion.
  • 8. The three piece bottle enclosure of claim 7, wherein the upper portion and the base portion define an internal cavity configured to receive the longneck bottle, the internal cavity extending between the upper opening and the bottom wall when the three piece bottle enclosure is in an assembled configuration.
  • 9. The three piece bottle enclosure of claim 4, wherein the cap includes: a fourth threading along the cap wall to threadably engage the first threading of the upper portion,wherein the ring of the cap is constructed from a compressible material and is configured to engage the top of the longneck bottle.
  • 10. A protective enclosure for removably enclosing a beverage container within the protective enclosure, the protective enclosure comprising: a body portion including a first sidewall extending between a top opening and a bottom opening;a base portion removably coupled to the body portion and including a second sidewall extending from a bottom wall and terminating at a base opening; anda cap configured to be removably coupled to the body portion at the top opening and including a top wall and a third sidewall extending from the top wall,wherein the body portion and the base portion together define an internal cavity configured to receive the beverage container,wherein the protective enclosure is configured to secure the beverage container such that removal of the beverage container is prevented when the protective enclosure is in an assembled configuration,wherein the top wall of the cap includes a stopper extending therefrom and configured to be inserted into a mouth opening formed on a top side of the beverage container, andwherein the cap is configured to be axially inserted into the top opening of the body portion until a ring flange extending radially outward from the stopper engages with the mouth opening of the beverage container to be disposed within the internal cavity.
  • 11. The protective enclosure of claim 10, wherein the first sidewall and the second sidewall define circular cross sections.
  • 12. The protective enclosure of claim 10, wherein the body portion includes an elastomeric component on an interior surface of the first sidewall.
  • 13. The protective enclosure of claim 10, wherein the base portion includes an elastomeric component on an interior surface of the bottom wall.
  • 14. The protective enclosure of claim 10, wherein the base portion and the body portion are threadably engaged with each other when the protective enclosure is in the assembled configuration.
  • 15. The protective enclosure of claim 10, wherein the first sidewall is defined by a body section, a shoulder section, and a neck section, wherein the shoulder section narrows in diameter moving toward the neck section, the neck section terminates at the top opening, and the shoulder section is disposed between the neck section and the body section.
  • 16. The protective enclosure of claim 10, wherein the ring flange is constructed from a compressible material and is configured to seal the mouth opening of the beverage container to be received within the internal cavity.
  • 17. The protective enclosure of claim 16, wherein a combination of the body portion, the base portion, and the cap is configured to completely surround and enclose the beverage container.
  • 18. A method of protecting an open bottle within a protective enclosure, the open bottle having a top, neck, shoulder, and main body, the protective enclosure including a body portion, a base portion removably coupled to the body portion, and a cap removably coupled to the body portion, the body portion including an open interior extending between a top opening and a bottom opening, the cap including a top wall, the method comprising: inserting the open bottle into the bottom opening such that the open bottle is received within the open interior of the body portion;coupling the base portion to the body portion to cover the bottom opening;inserting the cap into the top opening of the body portion to insert a stopper extending from the top wall of the cap into a mouth of the open bottle until a ring flange extending radially outward from the stopper engages with the mouth of the open bottle; andcoupling the cap to the body portion to cover the top opening thereby completely surrounding and enclosing the open bottle.
  • 19. The method of claim 18, wherein when the open bottle is inserted into the body portion, an elastomeric component at least partially lining the open interior is in engagement with the main body of the open bottle.
CROSS-REFERENCE TO RELATED APPLICATIONS

This application is a continuation of U.S. application Ser. No. 16/384,172, filed on Apr. 15, 2019, and entitled “Protective Bottle Enclosure,” which is a continuation of U.S. application Ser. No. 16/154,550, filed on Oct. 8, 2018, entitled “Protective Bottle Enclosure,” and issued as U.S. Pat. No. 10,464,712 on Nov. 5, 2019, which is a continuation of U.S. application Ser. No. 15/584,013, filed on May 1, 2017, entitled “Protective Bottle Enclosure,” and issued as U.S. Pat. No. 10,118,735 on Nov. 6, 2018, which is a continuation of U.S. application Ser. No. 15/362,540, filed on Nov. 28, 2016, entitled “Protective Bottle Enclosure,” and issued as U.S. Pat. No. 9,637,270 on May 2, 2017, which is a continuation of U.S. application Ser. No. 14/153,688, filed on Jan. 13, 2014, entitled “Protective Bottle Enclosure,” and issued as U.S. Pat. No. 9,505,527 on Nov. 29, 2016, which claims priority to U.S. Provisional Application Ser. No. 61/752,404, filed on Jan. 14, 2013, and entitled “Protective Bottle Enclosure”, all of which are hereby incorporated herein by reference in their entirety and are to be considered a part of this specification.

US Referenced Citations (213)
Number Name Date Kind
441228 Cherbonnier Nov 1890 A
460918 Kraetz Oct 1891 A
1351496 Spooner Aug 1920 A
2163568 Schlumbohm Jun 1939 A
2889065 Lawlor Jun 1959 A
2963187 Bramming Dec 1960 A
3120319 Buddrus Feb 1964 A
3229840 Filleul Jan 1966 A
3241209 Taylor Mar 1966 A
3308980 Taylor Mar 1967 A
3335891 Bailey Aug 1967 A
4444324 Grenell Apr 1984 A
4510769 McClellan, Jr. Apr 1985 A
D279346 Ruxton Jun 1985 S
4690300 Woods Sep 1987 A
4768664 Zimmermann Sep 1988 A
4811858 Augur Mar 1989 A
4823974 Crasser Apr 1989 A
D321628 Kobayashi et al. Nov 1991 S
5186350 McBride Feb 1993 A
5213215 Prevot May 1993 A
5261554 Forbes Nov 1993 A
5417327 Saumure May 1995 A
5635232 Wallace Jun 1997 A
5695090 Burdick Dec 1997 A
5745626 Duck et al. Apr 1998 A
5904267 Thompson May 1999 A
D410548 Chomik Jun 1999 S
5975337 Hadley Nov 1999 A
5992677 Ebine Nov 1999 A
6427863 Nichols Aug 2002 B1
6467644 Yeh Oct 2002 B1
6604649 Campi Aug 2003 B1
D495208 Putnam Aug 2004 S
6793076 Luo et al. Sep 2004 B1
D512874 Poulson et al. Dec 2005 S
D543791 Goto et al. Jun 2007 S
D547610 Edelstein et al. Jul 2007 S
D553914 Wahl Oct 2007 S
D573390 Ablo Jul 2008 S
D586186 Bhavnani Feb 2009 S
D604561 Chisholm Nov 2009 S
D614918 Chisholm May 2010 S
D615823 Gilbert May 2010 S
D616743 Cresswell et al. Jun 2010 S
D619418 Nezu et al. Jul 2010 S
D621220 Lown et al. Aug 2010 S
D624362 Wahl Sep 2010 S
D626416 Cresswell et al. Nov 2010 S
D627227 Andis Nov 2010 S
D627601 Eyal Nov 2010 S
D628486 Lane Dec 2010 S
D632522 Wahl et al. Feb 2011 S
D632524 Rosbach et al. Feb 2011 S
D633338 Rosbach et al. Mar 2011 S
D635457 Lane Apr 2011 S
D640494 Frederiksen Jun 2011 S
D648984 Gullickson et al. Nov 2011 S
D651853 Eyal Jan 2012 S
D652255 Carland Jan 2012 S
D652682 Eyal Jan 2012 S
D653081 George Jan 2012 S
D655581 Kotani Mar 2012 S
D656025 Carreno Mar 2012 S
D657196 Beyers, III Apr 2012 S
D658450 Ying May 2012 S
D658944 Gilbert et al. May 2012 S
D660081 Gilbert May 2012 S
D661945 Eyal Jun 2012 S
D662767 Hotell et al. Jul 2012 S
D664809 Eyal Aug 2012 S
D670525 Fallon et al. Nov 2012 S
D672609 Aziz et al. Dec 2012 S
D675882 Crockett Feb 2013 S
D676708 Lane Feb 2013 S
D687677 Sturgess Aug 2013 S
D689332 Krasner Sep 2013 S
D691420 McIntire Oct 2013 S
D691849 Cetera et al. Oct 2013 S
D693170 Rosbach Nov 2013 S
D695069 Lane Dec 2013 S
D695138 Ball Dec 2013 S
D696118 Lindstrom Dec 2013 S
D696900 George et al. Jan 2014 S
D696945 Newman Jan 2014 S
D699516 Kim et al. Feb 2014 S
D700802 Miller Mar 2014 S
D700808 Eyal Mar 2014 S
D702086 Thurlow Apr 2014 S
D702092 Mettler et al. Apr 2014 S
D702506 Mettler et al. Apr 2014 S
D705063 Weiss May 2014 S
D706032 Roth et al. Jun 2014 S
D710155 Tatsukawa Aug 2014 S
D716653 Balembois Nov 2014 S
D724385 Hurley et al. Mar 2015 S
D725968 George Apr 2015 S
D726476 Ercanbrack Apr 2015 S
D727171 Marina et al. Apr 2015 S
D727671 Gamelli Apr 2015 S
D729019 Kilduff et al. May 2015 S
D736563 George Aug 2015 S
D737144 Hughes et al. Aug 2015 S
D738692 Kilduff et al. Sep 2015 S
D740609 Ayres Oct 2015 S
D741655 Whelan et al. Oct 2015 S
D743741 Itzhaki Nov 2015 S
D758132 Breit Jun 2016 S
D758800 Hayslett et al. Jun 2016 S
D761624 McLean et al. Jul 2016 S
D771357 Brewer Nov 2016 S
D772014 Ayres Nov 2016 S
9505527 Campbell Nov 2016 B1
D774837 Seiders et al. Dec 2016 S
D779273 Lee et al. Feb 2017 S
D779323 Masrour Feb 2017 S
D779881 Lee et al. Feb 2017 S
D780530 Seiders et al. Mar 2017 S
D780531 Seiders et al. Mar 2017 S
D780532 Seiders et al. Mar 2017 S
D780533 Seiders et al. Mar 2017 S
D781662 Seiders et al. Mar 2017 S
D782881 Seiders et al. Apr 2017 S
D783367 Seiders et al. Apr 2017 S
D783368 Seiders et al. Apr 2017 S
D784775 Seiders et al. Apr 2017 S
D785412 Petre May 2017 S
D786012 Hein et al. May 2017 S
D786617 Breit May 2017 S
D787886 Cerasani May 2017 S
D787893 Seiders et al. May 2017 S
D787894 Seiders et al. May 2017 S
9637270 Campbell May 2017 B2
D788544 Seiders et al. Jun 2017 S
D789796 McSweeney et al. Jun 2017 S
D790285 Seiders et al. Jun 2017 S
D791550 Marret Jul 2017 S
D794397 Seiders et al. Aug 2017 S
D795019 Seiders et al. Aug 2017 S
D795020 Seiders et al. Aug 2017 S
D796261 Khalifa et al. Sep 2017 S
D799898 Yao Oct 2017 S
D799900 Santos et al. Oct 2017 S
D799906 Seiders et al. Oct 2017 S
D799907 Seiders et al. Oct 2017 S
D799908 Seiders et al. Oct 2017 S
D800502 Weernink Oct 2017 S
D803064 Marina et al. Nov 2017 S
D803632 Seiders et al. Nov 2017 S
D804906 Diener et al. Dec 2017 S
D805852 Seiders et al. Dec 2017 S
D806477 Wray et al. Jan 2018 S
D807125 Seiders et al. Jan 2018 S
D808220 Bums et al. Jan 2018 S
D809344 Guthrie Feb 2018 S
D809920 Maple Feb 2018 S
D811817 Harrington, III et al. Mar 2018 S
D811818 Wu Mar 2018 S
D813613 Wall Mar 2018 S
D814241 Nickley et al. Apr 2018 S
D814865 Breit Apr 2018 S
D816411 Stover May 2018 S
D817713 Lin May 2018 S
D817714 Breit May 2018 S
D818775 Woodruff May 2018 S
D819403 Li et al. Jun 2018 S
D820650 Seiders et al. Jun 2018 S
D821138 Silsby et al. Jun 2018 S
D823068 Seiders et al. Jul 2018 S
D823069 Seiders et al. Jul 2018 S
D824218 Seiders et al. Jul 2018 S
D828094 Jackson et al. Sep 2018 S
D828095 Jackson et al. Sep 2018 S
D829056 Wall Sep 2018 S
D829058 Seiders et al. Sep 2018 S
D829101 Spivey et al. Sep 2018 S
D830773 Jacobsen Oct 2018 S
D830774 Jacobsen Oct 2018 S
D830784 Moore et al. Oct 2018 S
D831436 Seiders et al. Oct 2018 S
D834373 Spivey et al. Nov 2018 S
10118735 Campbell Nov 2018 B2
D837597 Silsby Jan 2019 S
10384832 Johnson Aug 2019 B2
D883042 Blickman et al. May 2020 S
10865013 Campbell Dec 2020 B2
D922829 Campbell et al. Jun 2021 S
D931687 Volkoff et al. Sep 2021 S
20040045972 Stokes Mar 2004 A1
20040124192 Teller Jul 2004 A1
20050224442 White Oct 2005 A1
20050269322 Betras et al. Dec 2005 A1
20070051687 Olson Mar 2007 A1
20070119517 Grace May 2007 A1
20070125785 Robinson et al. Jun 2007 A1
20070175906 Caladrino Aug 2007 A1
20070221693 Moore Sep 2007 A1
20090056369 Fink et al. Mar 2009 A1
20090266737 Cole Oct 2009 A1
20100005828 Fedell Jan 2010 A1
20100084362 Letchinger et al. Apr 2010 A1
20100288723 Mayer Nov 2010 A1
20110011823 Moore Jan 2011 A1
20110114588 Nowzari May 2011 A1
20110204048 Carino et al. Aug 2011 A1
20120145591 Ceder Jun 2012 A1
20120199548 Kitto Aug 2012 A1
20130153591 Grimes et al. Jun 2013 A1
20130206717 Lane Aug 2013 A1
20140238949 Patel Aug 2014 A1
20150021346 Cappuccio Jan 2015 A1
20180194518 Li et al. Jul 2018 A1
20180194537 Chan Jul 2018 A1
Foreign Referenced Citations (8)
Number Date Country
1126215 Feb 1993 DE
102004025620 Feb 2006 DE
1452455 Sep 2004 EP
1054716 Feb 1954 FR
2008030773 Feb 2008 JP
2010000510 Jan 2010 KR
460607 Sep 2013 TW
2008063750 May 2008 WO
Non-Patent Literature Citations (6)
Entry
Back2tap, [online], Reusable Bottles posted on Jan. 6, 2011, retrieved on Jan. 28, 2019. Retrieved from, <URL: http://www.back2tap.com/tag/stainless-steel-water-bottles/>, 3 pages.
Benefits of Stainless Steel Water Bottles, [online], posted on Mar. 1, 2012, retrieved on Jan. 28, 2019. Retrieved from, <URL: https:// b2bbusinessnews. wordpress.com/2012/03/01/benefits-of-stainless-steel-water-bottles/>, 3 pages.
Brewtis the BottleKeeper, [online], posted on Dec. 26, 2013, retrieved on Jan. 28, 2019. Retrieved from, <URL: http:// www.dudeiwantthat.com/gear/food-drink/brewtis-the-bottlekeeper.asp>, 22 pages.
EarthLust Stainless Steel Water Bottle, [online], product reviewed on Oct. 17, 2008, retrieved on Jan. 28, 2019. Retrieved from, <URL: https://www.amazon.com/dp/BOO1DYOCOW7tag =new-best-seller-20>, 4 pages.
Neiko 71010 Stainless Steel Sports Water Bottle, [online], published on Nov. 3, 2009, retrieved on Jan. 28, 2019. Retrieved from, <URL: https://www.amazon.com/Eco-Friendly-Mouth-Stainless-Steel-Bottle/dp/B002VDA2AC/ref=sr_1_107?s=sporting-goods&ie=UTF8& qid=1396116064&s%E2%80%A6>, 8 pages.
Wawabots Personalized Photo Water Bottles, [online], published on Nov. 30, 2011, retrieved on Jan. 28, 2019. Retrieved from, <URL: https://inhabitat.com/inhabitats/product-review-wawabots-personalized-photo-water-bottles/>, 7 pages.
Related Publications (1)
Number Date Country
20210070499 A1 Mar 2021 US
Provisional Applications (1)
Number Date Country
61752404 Jan 2013 US
Continuations (5)
Number Date Country
Parent 16384172 Apr 2019 US
Child 16952609 US
Parent 16154550 Oct 2018 US
Child 16384172 US
Parent 15584013 May 2017 US
Child 16154550 US
Parent 15362540 Nov 2016 US
Child 15584013 US
Parent 14153688 Jan 2014 US
Child 15362540 US