Vacuum cooler
11319137 ยท 2022-05-03
Assignee
Inventors
Cpc classification
B65D81/3818
PERFORMING OPERATIONS; TRANSPORTING
B65D81/30
PERFORMING OPERATIONS; TRANSPORTING
B65D81/3813
PERFORMING OPERATIONS; TRANSPORTING
International classification
A45C13/02
HUMAN NECESSITIES
Abstract
A cooler capable of achieving a sufficient temperature gradient between an inside of the cooler and an outside of the cooler such that at least a partial vacuum forms within the cooler may include an enclosure defined by at least one wall and a lid. The lid may form a relatively airtight seal with a wall of the cooler when in a closed position. A vacuum release assembly may be disposed in one of the walls or lid of the cooler, the assembly being capable of reducing a pressure differential between the enclosure and the outside of the cooler.
Claims
1. A cooler, comprising: a body comprising a plurality of side walls and a bottom wall that surround an interior region that provides a product storage area, wherein each of the plurality of side walls and the bottom wall include an interior wall and an exterior wall, the interior wall having an interior surface that faces the interior region, and the exterior wall having an exterior surface that faces an outer environment exterior to the cooler, wherein the interior wall and the exterior wall of the plurality of side walls and the bottom wall are separated by a space between the interior wall and the exterior wall, and wherein the interior wall and the exterior wall of the plurality of side walls meet and form a top rim of the body; a lid comprising a top wall, wherein the top wall includes an inner wall and an outer wall, the inner wall having an inner surface that faces the interior region when the lid is in a closed position, and the outer wall having an outer surface that faces the outer environment, the inner wall of the lid providing a seal with the top rim of the body and enclosing the product storage area when the lid is in the closed position, and the lid at least partially exposing the interior region of the body when the lid is in an open position, wherein the lid and the body are insulated, wherein the cooler is capable of maintaining a temperature differential between an inside of the cooler and an outside of the cooler and capable of maintaining a pressure differential between the inside of the cooler and the outside of the cooler, and wherein the cooler is a transportable cooler capable of transporting products contained within the product storage area; and a pressure release assembly attached to at least one of the plurality of side walls of the body, the pressure release assembly being capable of bi-directional air flow and of neutralizing the pressure differential between the inside of the cooler and the outside of the cooler, wherein the pressure release assembly comprises: a pressure release button, an outside air exhaust or intake channel through which outside air may enter the cooler, a plunger including a shaft, the plunger coupled to the pressure release button to selectively move with respect to an opening at one end of the outside air exhaust or intake channel to allow air from the outside of the cooler to enter the inside of the cooler through the opening, wherein the pressure release assembly is disposed in a recessed portion of the exterior wall of the at least one of the plurality of side walls, wherein the pressure release assembly is disposed in the recessed portion such that the pressure release assembly does not protrude beyond an outer-most portion of the exterior wall of the at least one of the plurality of side walls.
2. The cooler of claim 1, comprising at least one handle disposed on a portion of the lid to provide a structure of the lid to be gripped when manually opening or closing the lid with respect to the body.
3. The cooler of claim 1, wherein one or both of the body and the lid comprises a reinforcement member disposed in the space between the interior wall and the exterior wall, the reinforcement member configured to provide resistance to deformation or rupture of the body from a result of a load generated on the cooler.
4. The cooler of claim 1, wherein the lid and the body are insulated by a thermally insulative material disposed between the interior wall and the exterior wall of the plurality of side walls and the bottom wall of the body and between the inner wall and the outer wall of the top wall of the lid.
5. The cooler of claim 4, wherein the thermally insulative material includes a radiation reflecting material to reflect radiative infrared energy that causes conductive or convective heat transfer.
6. The cooler of claim 1, wherein the seal is configured to rest on a protrusion of the top rim of the body when the lid is in the closed position.
7. The cooler of claim 1, wherein the seal is capable of forming an airtight seal when the lid is in the closed position.
8. The cooler of claim 1, wherein the pressure release button is operable to cause the plunger to move within the outside air exhaust or intake channel when the pressure release assembly is activated to cause the opening to be unblocked and neutralize the pressure differential.
9. The cooler of claim 1, wherein the plunger is configured to provide an air stop at the opening within the pressure release assembly.
10. The cooler of claim 1, wherein the pressure release button is configured to mechanically move when a force is applied to the pressure release button.
11. The cooler of claim 1, wherein the pressure release assembly is attached to the exterior wall of the at least one of the plurality of side walls of the body.
12. The cooler of claim 1, wherein the pressure release assembly comprises a housing, wherein the housing includes a first opening and a second opening positioned between the outside air exhaust or intake channel, the first opening leading to the outside of the cooler, and the second opening leading to the inside of the cooler.
13. The cooler of claim 12, wherein the housing of the pressure release assembly is attached to the exterior wall of the at least one of the plurality of side walls of the body, where the at least one of the plurality of side walls includes a hole that aligns with the second opening.
14. The cooler of claim 1, wherein a first portion of the pressure release button is exposed outward from the pressure release assembly to face the outer environment and a second portion of the pressure release button is exposed inward within the pressure release assembly coupling to the shaft of the plunger.
15. The cooler of claim 1, wherein the pressure release assembly is configured to apply a spring force from the pressure release button to the shaft when the pressure release button is manually engaged to neutralize the pressure differential.
16. The cooler of claim 1, wherein the air from the outside of the cooler is able to enter into the outside air exhaust or intake channel through at least one side opening on a side of the outside air exhaust or intake channel.
17. A transportable cooler, comprising: a body comprising a plurality of side walls and a bottom wall that surround an interior region that provides a product storage area, wherein each of the plurality of side walls and the bottom wall include an interior wall and an exterior wall, the interior wall having an interior surface that faces the interior region, and the exterior wall having an exterior surface that faces an outer environment exterior to the transportable cooler, wherein the interior wall and the exterior wall of the plurality of side walls and the bottom wall are separated by a space between the interior wall and the exterior wall, and wherein the interior wall and the exterior wall of the plurality of side walls meet and form a top rim of the body; a lid comprising a top wall, wherein the top wall includes an inner wall and an outer wall, the inner wall having an inner surface that faces the interior region when the lid is in a closed position, and the outer wall having an outer surface that faces the outer environment, the inner wall of the lid providing a seal with the top rim of the body and enclosing the product storage area when the lid is in the closed position, and the lid at least partially exposing the interior region of the body when the lid is in an open position, wherein the lid and the body are insulated, wherein the transportable cooler is capable of maintaining a temperature differential between an inside of the transportable cooler and an outside of the transportable cooler and capable of maintaining a pressure differential between the inside of the transportable cooler and the outside of the transportable cooler that supports the seal when the lid is in the closed position; and a pressure release assembly attached to the exterior wall of at least one of the plurality of side walls of the body, the pressure release assembly being capable of bi-directional air flow and of neutralizing the pressure differential between the inside of the transportable cooler and the outside of the transportable cooler, wherein the pressure release assembly comprises: a pressure release button, an outside air exhaust or intake channel through which outside air may enter the transportable cooler, a plunger including a shaft, the plunger coupled to the pressure release button to selectively move with respect to an opening at one end of the outside air exhaust or intake channel to allow air from the outside of the transportable cooler to enter the inside of the transportable cooler through the opening, wherein the pressure release assembly is disposed in a recessed portion of the exterior wall of the at least one of the plurality of side walls such that the pressure release assembly does not protrude beyond an outer-most portion of the exterior wall of the at least one of the plurality of side walls.
18. The transportable cooler of claim 17, wherein the seal is configured to rest on a protrusion of the top rim of the body when the lid is in the closed position.
19. A cooler, comprising: a body comprising a plurality of side walls and a bottom wall that surround an interior region that provides a product storage area, wherein each of the plurality of side walls and the bottom wall include an interior wall and an exterior wall, the interior wall having an interior surface that faces the interior region, and the exterior wall having an exterior surface that faces an outer environment exterior to the cooler, wherein the interior wall and the exterior wall of the plurality of side walls and the bottom wall are separated by a space between the interior wall and the exterior wall, and wherein the interior wall and the exterior wall of the plurality of side walls meet and form a top rim of the body; a lid comprising a top wall, wherein the top wall includes an inner wall and an outer wall, the inner wall having an inner surface that faces the interior region when the lid is in a closed position, and the outer wall having an outer surface that faces the outer environment, the inner wall of the lid providing a seal with the top rim of the body and enclosing the product storage area when the lid is in the closed position, and the lid at least partially exposing the interior region of the body when the lid is in an open position, wherein the lid and the body are insulated, wherein the cooler is capable of maintaining a temperature differential between an inside of the cooler and an outside of the cooler and capable of maintaining a pressure differential between the inside of the cooler and the outside of the cooler, and wherein the cooler is a transportable cooler capable of transporting products contained within the product storage area; and a pressure release assembly attached to at least one of the plurality of side walls of the body, the pressure release assembly being capable of bi-directional air flow and of neutralizing the pressure differential between the inside of the cooler and the outside of the cooler, wherein the pressure release assembly comprises: a pressure release button, an outside air exhaust or intake channel through which outside air may enter the cooler, a plunger including a shaft, the plunger coupled to the pressure release button to selectively move with respect to an opening at one end of the outside air exhaust or intake channel to allow air from the outside of the cooler to enter the inside of the cooler through the opening, wherein the pressure release assembly is disposed in the exterior wall of the at least one of the plurality of side walls such that the pressure release assembly does not protrude beyond an outer-most portion of the exterior wall of the at least one of the plurality of side walls.
20. The cooler of claim 19, comprising at least one handle disposed on a portion of the lid to provide a structure of the lid to be gripped when manually opening or closing the lid with respect to the body.
21. The cooler of claim 19, wherein one or both of the body and the lid comprises a reinforcement member disposed in the space between the interior wall and the exterior wall, the reinforcement member configured to provide resistance to deformation or rupture of the body from a result of a load generated on the cooler.
22. The cooler of claim 19, wherein the lid and the body are insulated by a thermally insulative material disposed between the interior wall and the exterior wall of the plurality of side walls and the bottom wall of the body and between the inner wall and the outer wall of the top wall of the lid.
23. The cooler of claim 19, wherein the seal is configured to rest on a protrusion of the top rim of the body when the lid is in the closed position.
24. The cooler of claim 19, wherein the seal is capable of forming an airtight seal when the lid is in the closed position.
25. The cooler of claim 19, wherein the pressure release button is operable to cause the plunger to move within the outside air exhaust or intake channel when the pressure release assembly is activated to cause the opening to be unblocked and neutralize the pressure differential.
26. The cooler of claim 19, wherein the plunger is configured to provide an air stop at the opening within the pressure release assembly.
27. The cooler of claim 19, wherein the pressure release button is configured to mechanically move when a force is applied to the pressure release button.
28. The cooler of claim 19, wherein the pressure release assembly is attached to the exterior wall of the at least one of the plurality of side walls of the body.
29. The cooler of claim 19, wherein the pressure release assembly comprises a housing, wherein the housing includes a first opening and a second opening positioned between the outside air exhaust or intake channel, the first opening leading to the outside of the cooler, and the second opening leading to the inside of the cooler.
30. The cooler of claim 29, wherein the housing of the pressure release assembly is attached to the exterior wall of the at least one of the plurality of side walls of the body, where the at least one of the plurality of side walls includes a hole that aligns with the second opening.
Description
DRAWING FIGURES
(1) The invention will be best understood, together with additional advantages and objectives thereof, from the following descriptions, read with reference to the drawings in which:
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DRAWING REFERENCE NUMERALS
(10) 10 cooler lid assembly 12 cooler lid gripping handles 14 cooler assembly 16 vacuum pump handle 18 vacuum release button 20 radiation reflecting material 22 cooler assembly handle 24 perforated interior shell wall 26 perforating holes 28 perforated cooler lid shell wall 30 seal 32 vacuum pump assembly 34 vacuum pump exhaust 36 vacuum pump intake 38 spring 40 plunger 42 outside air exhaust 44 outside air intake 46 plunger shaft 48 vacuum release assembly 50 exterior shell 52 perforated reinforcement member 54 product storage area 56 vacuum space 58 non perforated shell wall
DESCRIPTION OF INVENTION
(11) Various embodiments of the invention are described by reference to the drawings in which like numerals are employed to designate like parts. Various items of equipment that could be additionally employed to enhance functionality and performance such as fittings, mountings, sensors (e.g. temperature gages), etc., have been omitted to simplify the description. However, such conventional equipment and its applications are known to those of skill in the art, and such equipment can be employed as desired. Moreover, although the invention is described below in the context of the transport and storage of products that are sensitive to heat transfer and degradation due to oxygen present atmosphere, those skilled in the art will recognize that the invention has applicability to the transport and/or storage of many different refrigerated or frozen products or items, e.g. medical supplies, biological material, chemicals, and the like.
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(13) Referring to
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(18) When the user depressurizes the cooler assemblies 14 and 10 the resulting suction force generated by the pressure differential between the outside environment and the vacuum space 56 will cause the cooler lid assembly 10 to be forcibly sealed to its point of contact with the seal 30, thus creating a locking force that will be maintained until the user re-pressurizes the assemblies 14 and 10.