SUSTAINABLE INSULATED SHIPPER PACK ASSEMBLY
A sustainable insulated shipper pack assembly to transport temperature sensitive and perishable items such as food, pharmaceuticals, and medical specimens within a consistent temperature range for an extended period of time. The assembly is made of entirely recyclable materials to enable curbside recycling, such materials included for example cellulose, cardboard, corrugated cardboard, and paper-based insulation, and materials preferably made from postconsumer paper, and other environmentally friendly materials The insulated shipper pack assembly comprises an outer container, an intermediate sleeve, an inner tray, bottom insulation pad, side insulation pads, and a lid with a top insulation pad. The components of the shipper pack assembly are configured to form a close fit with one another to eliminate or significantly reduce the possibility of exposed gaps between components and between the insulation materials to minimize or eliminate temperature loss from gaps or edge loss from the contents being transported or stored.
This application claims the benefit of U.S. Provisional Patent Application No. 63/462,902, filed Apr. 28, 2023; and U.S. Provisional Patent Application No. 63/429,945, filed Dec. 2, 2022, all of which are incorporated in their entirety by reference herein.
BACKGROUNDTemperature sensitive storage and shipping (commonly referred to as cold chain shipping) utilizes insulated packaging and containers to store and transport temperature sensitive items such as food, pharmaceuticals, and medical specimens. Traditionally, such cold chain containers have been constructed entirely or partially from foam based materials, such as expanded polystyrene (EPS) and/or polyurethane, wherein the foam based materials generally provide insulation during transportation. Most foam based materials and/or products are not curbside recyclable, at least not in the mainstream recycling readily accessible to consumers. Foam based materials and/or products usually are bulky and require a great deal of space to be shipped, which generally increases shipping costs.
Other containers that are configured to transport temperature sensitive items may include a combination of materials, such as foam based materials and/or paperboard. Most containers of this nature are not recycled, because the materials generally must be separated from one another to be recycled in the mainstream. Moreover, these containers generally are not reused. Containers that are not recycled and not reused may end up in landfills, negatively impacting the environment. Additionally, some insulated containers use materials as insulation that is very dense and carries significant weight penalties when shipped, which may increase the cost to ship the container.
Temperature control performance of containers that are at least in part recyclable is not optimal, rendering such containers unusable in circumstances where temperature control is critical and maintenance of a defined temperature range is required. Significant temperature loss and inconsistent changes in temperature ranges result from inherencies in the materials used and in the construction of such products, including loose tolerances of component assemblies and gaps between insulation materials. Such products are not able to store or transport sensitive items within a consistent temperature range for an extended period of time.
There exists a need for a sustainable insulated shipper pack assembly container that overcomes these drawbacks. Specifically, the temperature shipping market has a long-felt desire for a fully curbside recyclable alternative to expanded polystyrene coolers and polyurethane shippers that maintain critical temperature control and that do not carry a weight or cost penalty.
SUMMARYThe present invention is directed generally to a sustainable shipper pack assembly that is insulated to transport temperature sensitive and perishable items such as food, pharmaceuticals, and medical specimens within a consistent temperature range for an extended period of time. The sustainable insulated shipper pack assembly is preferably made of entirely recyclable materials to enable curbside recycling. The materials of the containers are not required to be separated from one another to be recycled in the mainstream. Materials used include, for example cellulose, cardboard, corrugated cardboard, and paper-based insulation, with at least a portion of the materials preferably being made from postconsumer paper, and other environmentally friendly materials such as for example, starch, hemp, cotton, and the like.
The sustainable insulated shipper pack assembly of the present invention in one embodiment comprises an outer container, an intermediate sleeve, an inner tray, bottom insulation pad, side insulation pads, and a lid with a top insulation pad. The components of the shipper pack assembly are configured to form a close fit with one another to eliminate or significantly reduce the possibility of exposed gaps between components and between the insulation materials to minimize or eliminate temperature loss from gaps or edge loss from the contents being transported or stored.
In an embodiment, the sustainable insulated shipper pack assembly comprises an outer container having a top, a bottom, and sides, the outer container having a plurality of bottom panels foldable to form the bottom of the outer container, a plurality of side panels forming the sides and surrounding an interior of the outer container, the interior being accessible from the top of the outer container, and a plurality of top panels foldable to close the top of the outer container; a bottom insulation pad, the size and shape of the bottom insulation pad corresponding to the size and shape of the bottom of interior of the outer container; an intermediate sleeve sized and configured to be inserted within the interior of the outer container, the intermediate sleeve having an interior space defined by internal facing sides of the intermediate sleeve; a side insulation pad sized and configured to be inserted into the interior space and along the internal facing sides of the intermediate sleeve; an inner tray having a bottom and sides surrounding a content receiving cavity, the inner tray being sized and configured to be inserted into the interior space of the inner space, the side insulation pad being positioned between the intermediate sleeve and the inner tray; a lid having an interior area; and a top insulation pad contained within the interior area of the lid.
In an embodiment of the insulated shipper pack assembly, the side insulation pad has a generally rectangular shape with free ends.
In an embodiment of the insulated shipper pack assembly, the side insulation pad has a thickness of approximately 0.5 in. to 1.5 in., a length of approximately 37 in. to 74¾ in., and a width of approximately 16⅜ in.
In an embodiment of the insulated shipper pack assembly, the bottom insulation pad fits against the interior facing surfaces of the sides and into the corners of the interior of the outer container to minimize air gaps between the bottom insulation pad and the sides and ensures a tight seal against gaps or edge loss to minimize or eliminate temperature loss from within the insulated shipper pack assembly.
In an embodiment of the insulated shipper pack assembly, the close tolerance of the side insulation pad between the sides of the outer container and the intermediate sleeve functions to minimize any unwanted temperature gain or loss for the contents of the insulated shipper pack assembly.
In an embodiment of the insulated shipper pack assembly, the bottom insulation pad is a rectangle and corresponds to the shape of the interior of the intermediate sleeve.
In an embodiment of the insulated shipper pack assembly, the bottom insulation pad, the side insulation pad, and the top insulation pad are made of a recyclable material.
In an embodiment of the insulated shipper pack assembly, the insulation material is a two-piece pre-consumer paper insulation adhered between two paper layers best suited for applications where temperature control is critical during transportation and can be discarded in curbside recycle bins.
In an embodiment of the insulated shipper pack assembly, the insulation material includes at least one of cellulose, cotton/denim jute, starch, hemp, and PET recycled plastic.
In an embodiment of the insulated shipper pack assembly, the inner tray is made of a recyclable corrugated cardboard or other recyclable materials.
In an embodiment of the insulated shipper pack assembly, the inner tray is formed of a plurality of bottom panels forming the bottom of the inner tray, a plurality of top panels including a plurality of scored sections that allow the top panels to be bent or folded along the score line to be positioned over and to cover a portion of the side insulation pad.
In an embodiment of the insulated shipper pack assembly, the inner tray is inserted into the intermediate sleeve with the side insulation pad installed therebetween, the intermediate sleeve fits tightly against interior facing surfaces of the sides of the outer container and into the interior of the outer container to minimize air gaps between the intermediate sleeve and the sides of the outer container.
In an embodiment of the insulated shipper pack assembly, the inner tray fits tightly against the interior facing surfaces of the side insulation pad to snugly hold the side insulation pad between the intermediate sleeve and the inner tray.
In an embodiment of the insulated shipper pack assembly, there is a close tolerance between the inner tray, insulation pad, and the intermediate sleeve, and a close tolerance between the intermediate sleeve and the outer container function to minimize any unwanted temperature gain or loss for the contents of the insulated shipper pack assembly.
In an embodiment of the insulated shipper pack assembly, the insertion of the inner tray into the intermediate sleeve creates a double-walled structure with the side insulation pad therebetween to further enhance the insulating capability to maintain a desired temperature range within the interior of the outer container.
In an embodiment of the insulated shipper pack assembly, the lid is a rectangular box having a top, bottom, sides, and ends surrounding the interior area, the lid have a flap to cover the ends of the lid.
In an embodiment of the insulated shipper pack assembly, the top insulation pad has a thickness of approximately 0.5 in. to 1.5 in., a length of approximately 20¼ in., and a width of approximately 19⅜ in.
In an embodiment of the insulated shipper pack assembly, the top insulation pad is placed inside the lid, the lid is securely placed on top of the inner container and inserted inside the outer container, the lid closes a top content-receiving cavity of the inner tray and functions as an insulated cover for the top of the outer container.
In an embodiment of the insulated shipper pack assembly, the lid containing the top insulation pad is fitted against the interior facing surfaces of the sides and into the corners of the interior of the outer container to minimize air gaps between the lid and sides of the outer container and to minimize any unwanted temperature gain or loss for the contents of the insulated shipper pack assembly.
In an embodiment of the insulated shipper pack assembly, the top panels of the outer container are folded to close the top of the outer container.
These as well as still further features, objects and benefits of the invention will now become clear upon a review of the following detailed description of illustrative embodiments, taken in conjunction with the accompanying drawings.
The accompanying drawings, which are included to provide further understanding of the present invention disclosed in the present disclosure and are incorporated in and constitute a part of this specification, illustrate aspects of the present invention and together with the description serve to explain the principles of the present invention. In the drawings:
The detailed description set forth below is intended as a description of various configurations of the present invention and is not intended to represent the only configurations in which the present invention may be practiced. It will be apparent, however, to those of ordinary skill in the art that the present invention is not limited to the specific details set forth herein and may be practiced without these specific details.
As shown in
As shown in
Bottom insulation pad 702, side insulation pad 400, and top insulation pad 700 (described below) are preferably made of a recyclable material such as for example, but not limited to, the insulation material available from MP Global Products, LLC in Norfolk, NE, commercially known as Cellulose curbside recyclable and repulpable insert (See
As shown in
This close tolerance between the inner tray 500, insulation pad 400, and intermediate sleeve 330, and close tolerance between intermediate sleeve 300 and outer container 200, functions to minimize any unwanted temperature gain or loss for the contents of the insulated shipper pack assembly 100. The insertion of inner tray 500 into intermediate sleeve 300 creates a “double-walled” structure with insulation 400 there between and further enhancing the insulating capability to maintain a desired temperature range within interior 510 for an extended period of time.
As shown in
After top insulation pad 700 is placed inside lid 600, lid 600 is securely placed on top of inner container 500 and inserted inside outer container 200. Lid 600 closes the top content-receiving cavity 508 of inner tray 500 and functions as an insulated cover for the top of outer container 200. Once inserted, lid 600 containing top insulation pad 700 fits tightly against the interior facing surfaces of side panels 204a-d and into the corners of interior 210 to minimize the presence of any air gaps between lid 600 and side panels 204a-d. This close tolerance between lid 600 and outer container 200 and the placement of top insulation pad 700 over inner container 500 to close content-receiving cavity 510 functions to minimize any unwanted temperature gain or loss for the contents of the insulated shipper pack assembly 100.
Referring to
It is appreciated that certain features of the invention, which are, for clarity, described in the context of separate embodiments, may also be provided in combination in a single embodiment. Conversely, various features of the invention, which are, for brevity, described in the context of a single embodiment, may also be provided separately or in any suitable sub combination.
Although the invention has been described in conjunction with specific embodiments thereof, it is evident that many alternatives, modifications and variations will be apparent to those skilled in the art. Accordingly, it is intended to embrace all such alternatives, modifications and variations that fall within the broad scope of the disclosure.
Other embodiments of the invention will be apparent to those skilled in the art from consideration of the specification and practice of the invention disclosed herein.
Claims
1. A sustainable insulated shipper pack assembly, the assembly comprising:
- an outer container having a top, a bottom, and sides, the outer container having a plurality of bottom panels foldable to form the bottom of the outer container, a plurality of side panels forming the sides and surrounding an interior of the outer container, the interior being accessible from the top of the outer container, and a plurality of top panels foldable to close the top of the outer container;
- a bottom insulation pad, the size and shape of the bottom insulation pad corresponding to the size and shape of the bottom of interior of the outer container;
- an intermediate sleeve sized and configured to be inserted within the interior of the outer container, the intermediate sleeve having an interior space defined by internal facing sides of the intermediate sleeve;
- a side insulation pad sized and configured to be inserted into the interior space and along the internal facing sides of the intermediate sleeve;
- an inner tray having a bottom and sides surrounding a content receiving cavity, the inner tray being sized and configured to be inserted into the interior space of the inner space, the side insulation pad being positioned between the intermediate sleeve and the inner tray;
- a lid having an interior area; and
- a top insulation pad contained within the interior area of the lid.
2. The insulated shipper pack assembly of claim 1, wherein the side insulation pad has a generally rectangular shape with free ends.
3. The insulated shipper pack assembly of claim 1, wherein the side insulation pad has a thickness of approximately 0.5 in. to 1.5 in., a length of approximately 37 in. to 74¾ in., and a width of approximately 16⅜ in.
4. The insulated shipper pack assembly of claim 1, wherein the bottom insulation pad fits against the interior facing surfaces of the sides and into the corners of the interior of the outer container to minimize air gaps between the bottom insulation pad and the sides and ensures a tight seal against gaps or edge loss to minimize or eliminate temperature loss from within the insulated shipper pack assembly.
5. The insulated shipper pack assembly of claim 1, wherein the close tolerance of the side insulation pad between the sides of the outer container and the intermediate sleeve functions to minimize any unwanted temperature gain or loss for the contents of the insulated shipper pack assembly.
6. The insulated shipper pack assembly of claim 1, wherein the bottom insulation pad is a rectangle and corresponds to the shape of the interior of the intermediate sleeve.
7. The insulated shipper pack assembly of claim 1, wherein the bottom insulation pad, the side insulation pad, and the top insulation pad are made of a recyclable material.
8. The insulated shipper pack assembly of claim 7, wherein the insulation material is a two-piece pre-consumer paper insulation adhered between two paper layers best suited for applications where temperature control is critical during transportation and can be discarded in curbside recycle bins.
9. The insulated shipper pack assembly of claim 7, wherein the insulation material includes at least one of cellulose, cotton/denim jute, starch, hemp, and PET recycled plastic.
10. The insulated shipper pack assembly of claim 1, wherein the inner tray is made of a recyclable corrugated cardboard or other recyclable materials.
11. The insulated shipper pack assembly of claim 1, wherein the inner tray is formed of a plurality of bottom panels forming the bottom of the inner tray, a plurality of top panels including a plurality of scored sections that allow the top panels to be bent or folded along the score line to be positioned over and to cover a portion of the side insulation pad.
12. The insulated shipper pack assembly of claim 10, wherein the inner tray is inserted into the intermediate sleeve with the side insulation pad installed therebetween, the intermediate sleeve fits tightly against interior facing surfaces of the sides of the outer container and into the interior of the outer container to minimize air gaps between the intermediate sleeve and the sides of the outer container.
13. The insulated shipper pack assembly of claim 12, wherein the inner tray fits tightly against the interior facing surfaces of the side insulation pad to snugly hold the side insulation pad between the intermediate sleeve and the inner tray.
14. The insulated shipper pack assembly of claim 12, wherein a close tolerance between the inner tray, insulation pad, and the intermediate sleeve, and a close tolerance between the intermediate sleeve and the outer container function to minimize any unwanted temperature gain or loss for the contents of the insulated shipper pack assembly.
15. The insulated shipper pack assembly of claim 12, wherein the insertion of the inner tray into the intermediate sleeve creates a double-walled structure with the side insulation pad therebetween to further enhance the insulating capability to maintain a desired temperature range within the interior of the outer container.
16. The insulated shipper pack assembly of claim 1, wherein the lid is a rectangular box having a top, bottom, sides, and ends surrounding the interior area, the lid have a flap to cover the ends of the lid.
17. The insulated shipper pack assembly of claim 1, wherein the top insulation pad has a thickness of approximately 0.5 in. to 1.5 in., a length of approximately 20¼ in., and a width of approximately 19⅜ in.
18. The insulated shipper pack assembly of claim 1, wherein the top insulation pad is placed inside the lid, the lid is securely placed on top of the inner container and inserted inside the outer container, the lid closes a top content-receiving cavity of the inner tray and functions as an insulated cover for the top of the outer container.
19. The insulated shipper pack assembly of claim 1, wherein the lid containing the top insulation pad is fitted against the interior facing surfaces of the sides and into the corners of the interior of the outer container to minimize air gaps between the lid and sides of the outer container and to minimize any unwanted temperature gain or loss for the contents of the insulated shipper pack assembly.
20. The insulated shipper pack assembly of claim 1, wherein the top panels of the outer container are folded to close the top of the outer container.
Type: Application
Filed: Dec 4, 2023
Publication Date: Oct 31, 2024
Inventors: Jesus Munoz (San Marcos, CA), Michael Thomas (San Marcos, CA), Justin Collins (San Marcos, CA), Brian Reynolds (San Marcos, CA)
Application Number: 18/528,709