US2016075498A1PendingUtilityA1

Modular cuboidal passive temperature controlled shipping container

Assignee: PELICAN BIOTHERMAL LLCPriority: Feb 20, 2009Filed: May 15, 2015Published: Mar 17, 2016
Est. expiryFeb 20, 2029(~2.6 yrs left)· nominal 20-yr term from priority
B65D 81/3813B31D 5/0086B65D 81/3825F28F 2270/00F25D 2201/14Y10T29/49826F25D 2331/804F25D 3/08F25D 23/063F28D 2020/0065F25D 2323/061F28D 20/02F25D 2303/0831Y02E60/14
46
PatentIndex Score
0
Cited by
0
References
0
Claims

Abstract

A kit comprising a plurality of separate and distinct identically sized phase change material-containing panels shaped as a frustum of a right pyramid, a method of assembling a thermal insulating enclosure from such panels and the resultant assembled thermal insulting enclosure.

Claims

exact text as granted — not AI-modified
I claim: 
     
         1 . A thermal control kit comprising:
 (a) an outer shell;   (b) a plurality of thermal insulating panels; and   (c) a plurality of phase change material-containing panels;   (d) wherein (i) the outer shell defines a volume, (ii) each thermal insulating panel is shaped as a rectangular cuboid, (ii) the plurality of thermal insulating panels are configured and arranged to form an insulated enclosure within the volume of the outer shell with the plurality of thermal insulating panels abutting each other at first interfaces, (iii) each phase change material-containing panel is shaped as a frustum of a right pyramid, (iv) the plurality of phase change material-containing panels are configured and arranged to form an interior payload retention chamber within the insulated enclosure with the plurality of phase change material-containing panels physically interfacing with each other at second interfaces; and (v) the first and second interfaces forming a tortuous path for heat transfer between the outer shell and the interior payload retention chamber.   
     
     
         2 . The thermal control kit of  claim 1 , comprising at least four separate and distinct identically sized phase change material-containing panels. 
     
     
         3 . The thermal control kit of  claim 1  wherein the kit includes at least six separate and distinct identically sized phase change material-containing panels having a square base. 
     
     
         4 . The thermal control kit of  claim 1  wherein each phase change material-containing panel has a bottom surface, a top surface and side surfaces, and wherein the side surfaces join the bottom surface at a 45° angle. 
     
     
         5 . The thermal control kit of  claim 1  wherein the plurality of thermal insulation panels are at least four separately formed vacuum insulated panels. 
     
     
         6 . A thermal control shipping container, comprising:
 (a) an outer shell;   (b) a plurality of phase change material-containing panels arranged within the outer shell; and   (c) a plurality of thermal insulating panels arranged within the outer shell, between the outer shell and the plurality of phase change material-containing panels;   (d) wherein (i) each thermal insulating panel is shaped as a rectangular cuboid, (ii) the plurality of thermal insulating panels abutting each other at first interfaces, (iii) each phase change material-containing panel is shaped as a frustum of a right pyramid, (iv) the plurality of phase change material-containing panels physically interfacing with each other at second interfaces to form a thermal enclosure having an interior chamber for receiving an article to be shipped, and (v) the first and second interfaces forming a tortuous path for heat transfer between the outer shell and the interior chamber.   
     
     
         7 . The thermal control shipping container of  claim 6  wherein the plurality of phase change material-containing panels abut each other at the second interfaces, and paired first and second interfaces occur proximate and extend alongside each corner of the thermal enclosure with the plane defined by each first interface extending at an oblique angle relative to the plane defined by the paired second interface. 
     
     
         8 . The thermal control shipping container of  claim 6  wherein (i) the outer shell defines corners, (ii) the plurality of phase change material-containing panels abut each other at the second interfaces, (iii) a pair of first and second interfaces occurs proximate and extends alongside each corner of the outer shell, (iv) the plane defined by each first interface is offset from the associated corner, and (v) the plane defined by each second interface encompasses the associated corner. 
     
     
         9 . The thermal control shipping container of  claim 6  wherein each thermal insulating panel is a planar panel, and superimposed upon a phase change material-containing panel whereby an internal-facing major surface of each thermal insulating panel abuts an external-facing major surface of each phase change material-containing panel. 
     
     
         10 . The thermal control shipping container of  claim 6  wherein each phase-change material-containing panel has a bottom surface, a top surface and side surfaces, and wherein the side surfaces join the bottom surface at a 45° angle. 
     
     
         11 . The thermal control shipping container of  claim 6  wherein the thermal insulation panels are vacuum insulated panels. 
     
     
         12 . A thermal control shipping container comprising:
 (a) an outer shell;   (b) a plurality of phase change material-containing panels arranged within the outer shell; and   (c) a plurality of thermal insulating panels arranged within the outer shell, between the outer shell and the plurality of phase change material-containing panels;   (d) each phase change material-containing panel having a primary surface facing a respective one of the thermal insulating panels, each phase change material-containing panel having a plurality of beveled edge surfaces, the plurality of phase change material-containing panels being arranged with the beveled edge surfaces of each phase change material-containing panel engaging the beveled edge surfaces of an adjacent phase change material-containing panel at an interface, to form an enclosure having an interior chamber for receiving an article to be shipped, where each beveled edge surface interface extends along a plane that is at an oblique angled relative to the primary surfaces of the adjacent phase change material-containing panels that engage at the interface; and   (e) each thermal insulating panel having a primary surface facing a respective one of the phase change material-containing panels, each phase change material-containing panel having a plurality of engagement surfaces, the plurality of thermal insulating panels being arranged adjacent each other within the outer shell, with the engagement surfaces of each thermal insulating panel engaging an adjacent thermal insulating panel at an interface, the interface of engagement surfaces of the adjacent thermal insulating panels extending along a plane that is perpendicular to the primary surface of at least one of the adjacent thermal insulating panels that engage at the interface.   
     
     
         13 . A method of assembling a thermal control enclosure, comprising the steps of:
 (a) obtaining a thermal control kit in accordance with  claim 1 ;   (b) thermally conditioning the plurality of phase change material-containing panels;   (c) placing the thermal insulating panels within the outer shell with each thermal insulating panel abutting at least two other thermal insulating panels at first interfaces to define a thermal controlled interior volume defining a top, a bottom and at least four sides; and   (d) placing the thermally conditioned phase-change material-containing panels within the thermal controlled interior volume with each panel abutting at least two other panels at second interfaces to define a thermal controlled interior payload retention chamber defining a top, a bottom and at least four sides;   (e) whereby the first and second interfaces form a tortuous path for heat transfer between the outer shell and the interior payload retention chamber.

Join the waitlist — get patent alerts

Track US2016075498A1 — get alerts on status changes and closely related new filings.

We store only your email — no account needed. See our privacy policy.