CORRUGATED ACCORDION SHAPED INSERT FOR SHIPPING CONTAINER
20200198832 ยท 2020-06-25
Inventors
Cpc classification
International classification
Abstract
A corrugated insert for supporting products within a shipping container is disclosed, which includes a plurality of panels foldably connected to one another in such a manner so as to form an accordion configuration that includes an upper panel, a lower panel and a plurality of medial panels, each medial panel having a matrix of apertures formed therein, wherein the matrix of apertures formed in each medial panel is aligned with the matrix of apertures formed in an adjacent medial panel when the medial panels are in the accordion configuration to receive and support a plurality of products within the shipping container.
Claims
1. An insert for supporting products within a shipping container, comprising: a plurality of panels foldably connected to one another in such a manner so as to form an accordion configuration that includes an upper panel, a lower panel and a plurality of medial panels, each medial panel having a matrix of apertures formed therein, wherein the matrix of apertures formed in each medial panel is aligned with the matrix of apertures formed in an adjacent medial panel when the medial panels are in the accordion configuration to receive and support a plurality of products within the shipping container.
2. An insert as recited in claim 1, wherein the insert is constructed from a corrugated cardboard material.
3. An insert as recited in claim 1, wherein the insert is constructed from a plurality of panels each having a rectangular configuration.
4. An insert as recited in claim 1, wherein the plurality of medial panels includes first, second and third medial panels.
5. An insert as recited in claim 1, wherein the matrix of apertures formed in each of the medial panels include circular apertures.
6. An insert as recited in claim 5, wherein the matrix of apertures formed in each of the medial panels include circular apertures of equal diameter.
7. An insert as recited in claim 6, wherein the matrix of circular apertures formed in each of the medial panels is a three by four rectangular matrix consisting of twelve circular apertures of equal diameter.
8. An insert for supporting products within a shipping container, comprising: a plurality of panels foldably connected to one another in such a manner so as to form an accordion configuration that includes an upper panel, a lower panel and a plurality of medial panels, each medial panel having a matrix of circular apertures of equal diameter formed therein, wherein the matrix of circular apertures formed in each medial panel is aligned with the matrix of circular apertures formed in an adjacent medial panel when the medial panels are in the accordion configuration to receive and support a plurality of products each having a continuous outer diameter within the shipping container.
9. An insert as recited in claim 8, wherein the insert is constructed from a corrugated cardboard material.
10. An insert as recited in claim 8, wherein the insert is constructed from a plurality of panels each having a rectangular configuration.
11. An insert as recited in claim 8, wherein the plurality of medial panels includes first, second and third medial panels.
12. An insert as recited in claim 8, wherein the matrix of circular apertures formed in each of the medial panels is a three by four rectangular matrix consisting of twelve circular apertures of equal diameter.
13. A corrugated cardboard insert for supporting products within a shipping container, comprising: a plurality of rectangular panels foldably connected to one another in such a manner so as to form an accordion configuration that includes an upper panel, a lower panel and a plurality of medial panels, each medial panel having a rectangular matrix of twelve circular apertures of equal diameter formed therein, wherein the rectangular matrix of twelve circular apertures formed in each medial panel is aligned with the rectangular matrix of twelve circular apertures formed in an adjacent medial panel when the medial panels are in the accordion configuration so as to receive and support twelve beverage containers within the shipping container.
14. A corrugated cardboard insert as recited in claim 13, wherein the plurality of medial panels includes first, second and third medial panels.
15. A corrugated cardboard insert as recited in claim 13, wherein the rectangular matrix of twelve circular apertures formed in each of the medial panels is a three by four rectangular matrix.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0015] So that those skilled in the art will readily understand how to make and use the accordion shaped insert of the subject invention without undue experimentation, preferred embodiments thereof will be described in detail herein below with reference to the figures wherein:
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0025] Referring now to the drawings, wherein like reference numerals identify similar structural elements of the subject invention, there is illustrated in
[0026] The die cut blank 10 includes a plurality of rectangular panels which are foldably connected to one another along longitudinally extending edges. More particularly, the rectangular panels of the die cut blank 10 include an upper panel 12, a lower panel 14 and three successive medial panels 16, 18 and 20.
[0027] The upper panel 12 of blank 10 is foldably connected to the first medial panel 16 along a horizontal perforated crease 22, the first medial panel 16 is foldably connected to the second medial panel 18 along a horizontal perforated crease 24, the second medial panel 18 is foldably connected to the third medial panel 20 along a perforated crease 26, and the third medial panel 20 is foldably connected to the lower panel 14 along a horizontal perforated crease line 28.
[0028] Preferably, the die cut blank 10 is formed from a sheet of corrugated cardboard material having corrugations that run perpendicular to the horizontal creases or edges of the panels, and each panel is of equal width and length. Those skilled in the art will readily appreciate that the corrugations could run parallel to the horizontal creases or edges of the panels, and the size of the panels can vary depending upon the number and size of the products that are supported within the shipping container.
[0029] With continuing reference to
[0030] In a preferred embodiment of the subject invention, wherein the blank 10 is designed to form an insert to accommodate products that have a tapered outer diameter, the diameter D.sub.1 of the longitudinally spaced apart apertures 30a, 30b and 30c in the first medial panel 16 of blank 10 is greater than the diameter D.sub.2 of the longitudinally spaced apart apertures 32a, 32b and 32c in the second medial panel 18 of blank 10, and the diameter D.sub.2 of the longitudinally spaced apart apertures 32a, 32b and 32c in the second medial panel 18 is greater than the diameter D.sub.3 of the longitudinally spaced apart apertures 34a, 34b and 34c in the third medial panel 20 of blank 10. Thus, D.sub.1>D.sub.2>D.sub.3.
[0031] Those skilled in the art will readily appreciate that the sets of longitudinally spaced apart apertures in each of the three medial panels 16, 18 and 20 of blank 10 could be of equal diameter so as to accommodate products that have a constant outer diameter, instead of a tapered outer diameter.
[0032] A semi-circular engagement notch 36 is formed in an upper longitudinal edge 38 of the upper panel 14 of blank 10 to enable a purchaser to lifting the upper panel 14 and access the products thereunder. Those skilled in the art will readily appreciate that the engagement notch 36 is an optional feature.
[0033] Referring
[0034] Thereupon, the insert 40 assumes its accordion shaped configuration, which is further illustrated for clarity in
[0035] Once the accordion shaped insert 40 is filled with the products 42, 44 and 46, it can be top loaded into the interior space of a shipping carton 50, as best seen in
[0036] Referring now to
[0037] The die cut blank 100 has a plurality of foldably connected rectangular panels including an upper panel 112, a lower panel 114 and three successive medial panels 116, 118 and 120. Each medial panel 116, 118 and 120 of the blank 100 has a matrix of circular apertures of equal diameter formed therein. More particularly, the first medial panel 116 of blank 100 includes a three by four matrix of twelve equally sized spaced apart circular apertures 130, the second medial panel 118 of blank 100 includes a three by four matrix of twelve equally sized spaced apart circular apertures 132, and the third medial panel 120 of blank 100 includes a three by four matrix of twelve equally sized spaced apart circular apertures 134. It is envisioned that the matrix of twelve equally sized spaced apart circular apertures in each medial panel could also be arranged in a four by three rectangular.
[0038] Regardless of the matrix configuration that is employed, the diameter D.sub.1 of the apertures 130 in the first medial panel 116 of blank 100 are equal to the diameter D.sub.2 of the apertures 132 in the second medial panel 118 of blank 100, and are also equal to the diameter D.sub.3 of the apertures 134 in the third medial panel 120 of blank 100. Thus, in this embodiment of the subject invention D.sub.1=D.sub.2=D.sub.3.
[0039] Referring now
[0040] Those skilled in the art should readily appreciate that the medial panels of the blank 100 could be provided with fewer (e.g., six equally sixed circular apertures) or greater than twelve equally sized circular apertures, and the circular apertures can be arranged in different matrix configurations. For example, each of the medial panels of the blank 100 could have eight equally sized circular apertures arranged in a hexagonal matrix configuration.
[0041] While the subject disclosure has been shown and described with reference to preferred embodiments, those skilled in the art will readily appreciate that changes or modifications may be made thereto without departing from the spirit or scope of the subject disclosure.