Cooling apparatus for cooling a liquid in a container
09581375 · 2017-02-28
Assignee
Inventors
Cpc classification
F28F1/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25D3/107
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28F1/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28D1/0213
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25D31/002
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A liquid container designed to include an autonomous selective cooling device and cooling device applicable to the liquid container. The cooling device includes a heat exchanger comprising a first body with a cavity, a second body inside the cavity, a fluid passage formed between an outer surface of the second body and the surface of the cavity, and some means for causing a cooling fluid to flow while expanding along fluid passage up to an exhaust duct of the second body. A container comprises a cavity for a liquid, a first filling opening provided with a first closing element and a second opening with a first coupling element where a second coupling element is coupled to the second coupling element being formed at an extension of a second closure cap and connected to the heat exchanger, in such a way that the closure cap closes the second opening of the container and the heat exchanger is housed in the cavity of the container and in contact with the liquid contained in it.
Claims
1. An assembly comprising: a cooling apparatus comprising an elongate heat exchanger having an exterior surface, the cooling apparatus having an inlet duct and an outlet duct located in a closure cap disposed at an end thereof, the inlet and outlet ducts being in fluid communication with a cooling medium flow passage located within the elongate heat exchanger, the closure cap comprising a first coupling element; and an elongate hand-held liquid container having a cavity for housing a liquid, the cavity having an open end and configured to receive at least a portion of the elongate heat exchanger, the elongate hand-held container comprising a second coupling element that is engageable with the first coupling element to facilitate a coupling of the cooling apparatus with the elongate hand-held container to form a liquid-tight seal at the open end of the cavity, the first and second coupling elements facilitating both an attachment and a removal of the cooling apparatus from the elongate hand-held container.
2. The assembly according to claim 1, wherein the first coupling element is a female coupling element and the second coupling element is a male coupling element.
3. The assembly according to claim 1, wherein the first coupling element comprises a first set of threads located internal to the closure cap and the second coupling element comprises a second set of threads located on an external surface of the elongate hand-held liquid container.
4. The assembly according to claim 1, wherein the inlet duct of the closure cap comprises a coupling element configured for receiving and releasably retaining an end of a pressurized cooling medium cartridge.
5. The assembly according to claim 4, wherein the inlet duct further comprises a piercing element configured for piercing a closure at the end of the pressurized cooling medium cartridge.
6. The assembly according to claim 4, wherein the outlet duct of the closure cap exhaust to the atmosphere.
7. The assembly according to claim 1, wherein the cooling medium flow passage is defined at least in part by an elongate elastically deformable material arranged in an interior of the elongate heat exchanger, the elongate elastically deformable material extending along at least a portion of a longitudinal length of the elongate heat exchanger.
8. An assembly comprising: a cooling apparatus comprising a first elongate body having an internal surface and an external surface; a second elongate body at least partially disposed in the first elongate body so that a gap exists between an external surface of the second elongate body and the internal surface of the first elongate body; an elongate elastically deformable material arranged in the gap in a state of radial compression between the internal surface of the first elongate body and the external surface of the second elongate body, the elongate elastically deformable material being arranged in the gap to form with one or both of the internal surface of the first elongate body and the external surface of the second elongate body a fluid passage spanning at least a portion of a longitudinal development of the gap, the fluid passage configured to receive and accommodate an expansion of a cooling medium; each of the first and second elongate bodies having a first end and an opposite second end, the cooling apparatus having a cooling medium inlet duct in fluid communication with a first end of the fluid passage and a cooling medium outlet duct in fluid communication with a second end of the fluid passage, the cooling medium inlet and outlet ducts being located at or adjacent the first ends of the first and second elongate bodies; each of the first ends of the first and second elongate bodies being coupled to a closure cap, each of the cooling medium inlet and outlet ducts residing in the closure cap; and an elongate hand-held liquid container having a first end, a second open end and a cavity disposed between the first end and second open end for housing a liquid, the first end configured for receiving or emptying a liquid from the container, the second open end and cavity configured for receiving the cooling apparatus; the elongate hand-held container comprising a first coupling element and the closure cap comprising a second coupling element, the first and second coupling elements engagable with one another to facilitate a coupling of the cooling apparatus to the elongate hand-held container and to form a liquid-tight seal at the second end of the elongate hand-held container, the first and second coupling elements being disengageable to facilitate a removal of the cooling apparatus from the elongate hand-held container.
9. The assembly according to claim 8, wherein the first coupling element is a female coupling element and the second coupling element is a male coupling element.
10. The assembly according to claim 8, wherein the first coupling element comprises a first set of threads located internal to the closure cap and the second coupling element comprises a second set of threads located on an external surface of the elongate hand-held liquid container.
11. The assembly according to claim 8, wherein the inlet duct of the closure cap comprises a coupling element configured for receiving and releasably retaining an end of a pressurized cooling medium cartridge.
12. The assembly according to claim 11, wherein the inlet duct further comprises a piercing element configured for piercing a closure at the end of the pressurized cooling medium cartridge.
13. The assembly according to claim 11, wherein the outlet duct of the closure cap exhaust to the atmosphere.
14. A kit comprising: a cooling apparatus comprising an elongate heat exchanger having an exterior surface, the cooling apparatus having an inlet duct and an outlet duct located in a first closure cap attached to an end thereof, the inlet and outlet ducts being in fluid communication with a cooling medium flow passage located within the elongate heat exchanger, the first closure cap comprising a first coupling element; an elongate hand-held liquid container having a cavity for housing a liquid, the cavity having an open end and being configured with the cavity to receive at least a portion of the elongate heat exchanger, the elongate hand-held container comprising a second coupling element that is engageable with the first coupling element to facilitate a coupling of the cooling apparatus with the elongate hand-held container to form a liquid-tight seal at the open end of the cavity, the first and second coupling elements being disengageable to facilitate a removal of the cooling apparatus from the elongate hand-held container; and a second closure cap comprising a third coupling element that is engageable with the second coupling element of the elongate hand-held container to form a liquid-tight seal at the open end of the cavity, the second and third coupling elements being disengageable to facilitate a removal of the second closure cap from the elongate hand-held container, the second closure cap being devoid of any structure that extends appreciably into the interior of the cavity upon an attachment of the second closure plate with the elongate hand-held liquid container.
15. The kit according to claim 14, wherein each of the first and third coupling elements is a female coupling element and the second coupling element is a male coupling element.
16. The kit according to claim 14, wherein each of the first and third coupling elements comprises a first set of threads located internal to the first and second closure caps, respectively, and the second coupling element comprises a second set of threads located on an external surface of the elongate hand-held liquid container.
17. The kit according to claim 14, wherein the inlet duct of the closure cap comprises a coupling element configured for receiving and releasably retaining an end of a pressurized cooling medium cartridge.
18. The kit according to claim 17, wherein the inlet duct further comprises a piercing element configured for piercing a closure at the end of the pressurized cooling medium cartridge.
19. The kit according to claim 17, wherein the outlet duct of the closure cap exhaust to the atmosphere.
20. The kit according to claim 14, wherein the cooling medium flow passage is defined at least in part by an elongate elastically deformable material arranged in an interior of the elongate heat exchanger, the elongate elastically deformable material extending along at least a portion of a longitudinal length of the elongate heat exchanger.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The above and other features and advantages will be more fully understood in the light of the following detailed description of some exemplary embodiments with reference to the annexed drawings, wherein:
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DETAILED DESCRIPTION OF SOME EXEMPLARY EMBODIMENTS
(13) Firstly referring to
(14) Heat exchanger 15 is shaped in such a way as to be at least in part housed in the inside of a container 10, 40 with the outer surface of the first body 20 in contact with a liquid contained in said container.
(15) The operation of the cooling device is based on the provision of a fluid passage 25 between an outer surface of the second body 22 and a surface of said cavity 21 and some means for causing a cooling to fluid to flow at a user's will while expanding along said fluid passage 25 up to an exhaust duct 19 of the internal body 22.
(16) According to the present invention it has been provided that said fluid passage 25 is at least in part delimited by an elastically deformable surface defined on a wall of one of said first and second bodies 20, 22 and subjected to compression in the interspace between the two bodies 20, 22.
(17) In an exemplary embodiment of the proposal of this invention it has been provided that the aforecited fluid passage 25 is a helical passage or a passage following another labyrinthine course and spanning at least part of the longitudinal development of cavity 21 having an annular cross-section, as can be seen in
(18) The fluid circulation means comprise a connection for connecting a cooling fluid source to an inlet duct 17 in communication with fluid passage 25.
(19) In an operative situation the internal body 22 is housed inside cavity 21 of external body 20. Cavity 21 of external body 20 has a closed end and an open end through which the internal body 22 is introduced. Internal body 22 has an end attached to a closure cap 13 being shaped in such a way as to be connected to the external body 20 thus closing said open end of cavity 21.
(20) In the embodiment shown in
(21) In the exemplary embodiments being shown in
(22) As can be seen in the aforementioned FIGS., on the wall being provided for attaching the elastomeric cord 50 half round grooves or channellings are defined wherein the aforecited cord 50 is seated.
(23) The aforementioned grooving having a helical or another labyrinthine course can extend along the whole length of the outer wall of body 22, or else it can only exist in one or more lengths of said surface.
(24) In an alternative embodiment of the invention being shown in
(25) An inlet duct 17 and an exhaust duct 19 are formed in closure cap 13. Said inlet duct is in communication with an end of fluid passage 25 adjacent to the open end of cavity 21 of external body 20, whereas said exhaust duct 19 is in communication with said central channel 23 of internal body 22, said central channel being in its turn in communication with an opposite end of fluid passage 25 adjacent to the closed end of cavity 21 of external body 20. The exhaust duct 19 could be provided in the bottom or side portion of cap 13.
(26) Inlet duct 17 is associated to a connection for connecting a cooling fluid source, such as for example a pressurised gas reservoir or cartridge 16 (
(27) Once having pierced the closure of cartridge 16 the whole cooling fluid being contained in this latter is discharged to the inside of fluid passage 25 and expelled to the atmosphere through exhaust duct 19, whereupon cartridge 16 is discarded. In an alternative embodiment (not shown) the volume of gas being expanded to the inside of fluid passage 25 is controlled by means of a valve associated either to the reservoir or cartridge 16 or to the inlet duct 17, this allowing to carry out multiple cooling fluid discharges with the contents of each reservoir or cartridge 16.
(28) As shown in
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(30) It will be appreciated that the different alternatives for the construction of the fluid passage 25 are independent from the shape of the outer fins of external body 20 and from the configuration of the internal body 22 and the closure cap 13, and so they can be freely combined.
(31) In
(32) Once cut to measure, a length of tubular profile 38 obtained by extrusion has two open ends and one of them would be closed by a cover in order to thus provide the outer body 20.
(33) In any of the different embodiments the external body 20 is preferably made of a material with a high heat-transfer coefficient, such as a metallic material, and more preferably a light metal alloy being compatible with foodstuffs, such as an aluminium alloy, this latter besides allowing to obtain the external body 20 by extrusion. The internal body 22 is preferably made of a material with a low heat-transfer coefficient, such as for example a plastics material.
(34) In relation to
(35) The aforementioned container 10 comprises a cavity 10a (see
(36) Closure cap 13 has a radial extension at whose perimeter a second coupling element 13a (
(37) When as shown in
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(39) Said alternative cap is provided to be used instead of cap 13 of the heat exchanger 15 of the cooling device in order to close the second opening 12 of container 10 when not using the cooling device. With the alternative cap 14 container 10 can thus be used as a conventional, transportable liquid container whenever the transported liquids do no need to be cooled.
(40) The portable beverage container of the present invention including said selective cooling device finds application for example as a beverage can, container or canteen for hiking and bike bottle, among others.
(41) The invention could be implemented by means of an auxiliary container, with a coupling member for the device, such as portion 12a of
(42) Modifications, variations and combinations as based on the exemplary embodiments having been shown and described above will occur to a person ordinarily skilled in the art without departing from the scope of the present invention as defined in the appended claims.