The present disclosure relates to packaging, and more particularly to opening boxes for flattening.
Packaging products, e.g., for shipping, utilizes a considerable amount of boxes. After use, it is often desirable to flatten the used box for recycling or for palletization for reuse. Breaking down boxes for flattening can be a large volume proposition, but can be a challenge for automation as the box must be opened and the flaps must be arranged properly before the box can be flattened.
The conventional techniques have been considered satisfactory for their intended purpose. However, there is an ever present need for improved systems and methods for box opening and flattening. This disclosure provides a solution for this need.
A box includes a plurality of side panels formed around an interior space. A pair of opposed outer flaps is foldably connected to two of the respective side panels, wherein the outer flaps are secured in a closed position to enclose one side of the box. A pair of opposed inner flaps are included, wherein the outer flaps overlie the inner flaps. A first one of the side panels of the box includes a pair of guide holes each configured to receive a respective opening guide for opening the outer flaps.
Each guide hole can be partly defined in the first one of the side panels and can be partly defined in a first one of the inner flaps that is foldably connected to the first one of the side panels. The inner flaps can be biased by shape memory to open upon opening of the outer flaps. A respective fold line can connect each respective inner flap to a respective one of the side panels, wherein the shape memory is within the respective fold line to bias the inner flaps to open. Adhesive tape can secure the outer flaps in the closed position. The box can be configured so the side panels can collapse in parallelogram motion with the outer and inner flaps open. The inner flaps can each include an inner edge, wherein the inner edges conform to one another along a path that includes at least one change in direction.
A blank for a box includes a plurality of side panels connected along fold lines for forming the side panels around an interior space. A pair of opposed outer flaps are foldably connected to two of the respective side panels. The outer flaps are configured to be secured in a closed position to enclose one side of the box. A pair of opposed inner flaps are foldably connected to two of the respective side panels. The outer flaps are configured overlie the inner flaps. A first one of the side panels of the box includes a pair of guide holes each configured to receive a respective opening guide for opening the outer flaps.
Each guide hole can be partly defined in the first one of the side panels and can be partly defined in a first one of the inner flaps that is foldably connected to the first one of the side panels. The inner flaps can be biased by shape memory to open upon opening of the outer flaps. A respective fold line can connect each respective inner flap to a respective one of the side panels, wherein the shape memory is within the respective fold line to bias the inner flaps to open.
The side panels, inner flaps, and outer flaps can be configured so in a box formed from the blank the side panels can collapse in parallelogram motion with the outer and inner flaps open. The inner flaps can each include an inner edge, wherein the inner edges are configured to conform to one another along a path that includes at least one change in direction.
A method of processing boxes includes shuttling a box in a first direction wherein outer flaps of the box overlie inner flaps of the box. The method includes engaging a set of opening guides with the outer flaps through a pair of guide holes in a side end panel of the box to drive the outer flaps open. Collapsing the side panels in parallelogram motion with the outer and inner flaps open to flatten the box.
The method can include opening the inner flaps using shape memory. Opening the inner flaps using shape memory can include using shape memory within a respective fold line connecting each respective inner flap to the box, wherein the shape memory biases the inner flaps to open. The method can include cutting to separate the outer flaps from one another prior to engaging the opening guides, wherein cutting includes cutting adhesive tape along a cut line parallel to the first direction to release the outer flaps from one another.
The opening guides can be in a retracted position for cutting to separate the outer flaps, and the method can include extending the opening guides after cutting, engaging a respective guide hole in an end of the box with a respective one of the opening guides, and retracting the opening guides to the retracted position to drive the outer flaps open. At least one linear actuator mounted to the opening guides can move the opening guides from the retracted position to the extended position and vice versa.
These and other features of the systems and methods of the subject disclosure will become more readily apparent to those skilled in the art from the following detailed description of the preferred embodiments taken in conjunction with the drawings.
So that those skilled in the art to which the subject disclosure appertains will readily understand how to make and use the devices and methods of the subject disclosure without undue experimentation, preferred embodiments thereof will be described in detail herein below with reference to certain figures, wherein:
Reference will now be made to the drawings wherein like reference numerals identify similar structural features or aspects of the subject disclosure. For purposes of explanation and illustration, and not limitation, a partial view of an exemplary embodiment of a blank for box in accordance with the disclosure is shown in
The blank 100 for a box 101 (the box 101 is shown in
With reference to
With reference to
With reference now to
Thereafter, the shape memory in the fold lines 132, 134 (labeled in
The methods and systems of the present disclosure, as described above and shown in the drawings, provide for processing boxes with superior properties including opening and flattening the boxes with improved facility over traditional techniques. While the apparatus and methods of the subject disclosure have been shown and described with reference to preferred embodiments, those skilled in the art will readily appreciate that changes and/or modifications may be made thereto without departing from the scope of the subject disclosure.
Filing Document | Filing Date | Country | Kind |
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PCT/US2019/042502 | 7/19/2019 | WO | 00 |
Number | Date | Country | |
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62713654 | Aug 2018 | US |