The present invention relates generally to a modular packaging container system. In particular, the present invention relates to a modular packaging container system that is biodegradable and can be held in one hand or is self-supported when placed on a surface.
The cosmetics and skincare industry has an enormous impact on the environment. Packaging is the number one contributor to plastic production in the world and the number one offender for plastic waste pollution. As of 2015 packaging accounted for over 150 million tons of plastic every year of which 11 million tons leak into the ocean. Although there has been minimal scrutiny and oversight and therefore little hard data on the environmental impact of cosmetics packaging, it is estimated that the beauty industry creates 120 billion units of packaging every year. The reliance on heavy use of plastics and petroleum-based chemicals can not only take thousands of years to degrade in landfills, but harmful toxins can also leech into the soils and waterways, potentially impacting environments far away from localized disposal sites. While advancements in “clean” cosmetics have been useful at helping to begin mitigating negative effects on human health at a use case level, cosmetics packaging remains one of the largest contributors to global environmental pollution and ecological degradation.
Many existing paper based cosmetic packages utilize a simple book style containment that is familiar, easily produced, and provides the user easy access to the cosmetic product. Book style packaging efficiently stores components and protects and isolates them from their surroundings, especially important for makeup (such as eye shadows, foundations, and lip cosmetics) as the user may travel with the packaging or use it in a variety of environments. Book style packaging in its popular form also allows the user to hold the packaging in one hand while accessing and using the interior components with the other hand. While book style functional design has been utilized for hundreds of years, it has significant ergonomic deficiencies, for example, it requires complex and unsteady physical manipulation within the hand to allow simple access to all areas of the internal components. Solutions to this challenge include purposefully making the packaging (a) oversized to eliminate grabbing and damaging internal components with finger and thumb or (b) to be placed on a stand or fixture, table or similar to improve functionality of use.
A need therefore exists for a container system having a comparatively positive impact on the environment while providing consumers with enhanced functionality, reusability, flexibility, aesthetics, and design features. It would be beneficial for the container system to be modular and have multi-functional usage built into its design to solve existing ergonomic issues. It would also be beneficial for the container system to have a built-in stand, easel or fixture, and further to be at least partially biodegradable. It would be further beneficial if a portion of the container system was durable and reusable with other portions that could be used and discarded as needed.
In one aspect of the invention, a modular packaging container system comprises a cover comprising a hinge portion connected between a top portion and a base portion along first and second fold lines, respectively, the base portion further comprising a support portion connected to an easel portion by a third fold line. The support portion comprises first and second magnets embedded therein, each adapted to detachably attach at least one receptacle tray to the support portion, wherein the first magnet is disposed between the second magnet and an edge of the support portion opposite the third fold line.
In another aspect of the invention, a modular packaging container system comprises a cover comprising a hinge portion connected between a top portion and a base portion along first and second fold lines, respectively, the base portion further comprising a support portion connected to an easel portion by a third fold line. The support portion comprises first and second magnets embedded therein, each adapted to detachably attach at least one receptacle tray to the support portion, wherein the first magnet is disposed between the second magnet and an edge of the support portion opposite the third fold line. A first surface of the top portion further comprises an easel docking groove oriented parallel to the third fold line. In a first configuration the hinge portion, the top portion, and the base portion are all arranged within a common plane, and in a second configuration the top portion is folded along the first fold line in a first direction away from the common plane and the third fold line is disposed away from the common plane in the first direction while the hinge portion remains in the same position as in the first configuration.
In a further aspect of the invention, a modular packaging container system comprises a cover comprising a hinge portion connected between a top portion and a base portion along first and second fold lines, respectively, the base portion further comprising a support portion connected to an easel portion by a third fold line. The modular packaging container system further comprises at least one receptacle tray, wherein the support portion comprises first and second magnets embedded therein, each adapted to detachably attach the at least one receptacle tray to the support portion, wherein the first magnet is disposed between the second magnet and an edge of the support portion opposite the third fold line. A first surface of the top portion further comprises an easel docking groove oriented parallel to the third fold line. In a first configuration the hinge portion, the top portion, and the base portion are all arranged within a common plane, and in a second configuration the top portion is folded along the first fold line in a first direction away from the common plane and the third fold line is disposed away from the common plane in the first direction while the hinge portion remains in the same position as in the first configuration.
Additional aspects and advantages of the present disclosure will become readily apparent to those skilled in this art from the following detailed description, wherein only illustrative embodiments of the present disclosure are shown and described.
Other aspects and advantages of the present invention will become apparent upon consideration of the following detailed description, wherein similar structures have similar reference numerals.
The following detailed embodiments presented herein are for illustrative purposes. That is, these detailed embodiments are intended to be exemplary of the present invention for the purposes of providing and aiding a person skilled in the pertinent art to readily understand how to make and use of the present invention. In the descriptions that follow identical reference numerals used to describe components of different disclosed embodiments refer to identical components that may be part of the different disclosed embodiments.
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In an embodiment the at least one receptacle tray 300 further comprises two more magnets 380, 390 embedded therein, wherein the magnet 380 is disposed between the magnet 330 and the magnet 360, and the magnet 390 is disposed between the magnet 360 and the magnet 380. In an embodiment the magnet 380 is spaced by a distance D4 from the magnet 330, and the magnet 390 is spaced by a distance D5 from the magnet 360, and in an embodiment the distances D4 and D5 match the distance D6 between the first magnet 240 and the second magnet 250 of the support portion 170 (see
Although illustrated as dashed lines in
Referring to
In an embodiment as further described hereinbelow, the at least one receptacle tray 300 is adapted to detachably attach to the cover 110 via magnetic attraction between one or more of the magnets 320, 330, 350, 360, 380, and 390 embedded in the board portion 410 as described above and one or more of the magnets 240, 250, 270, and 280 embedded in the cover. In an embodiment the magnets 320, 330, 350, 360, 380, and 390 embedded in the board portion 410 as described above are adapted to allow for magnetic attachment of consumable material or items or small containers, for example individual pans, containing consumable material or items to the recesses 310. In an embodiment, for example, makeup pans manufactured from tin or other magnetic materials can be detachably attached within the recesses 310 via the force of magnetic attachment between one or more of the magnets 320, 330, 350, 360, 380, and 390 and the makeup pans.
Referring to the left side of
In an embodiment, on the right in
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The length and width of the cover 110 can have a variety of aspect ratios as desired for functions or aesthetics. In an embodiment as illustrated in
As is visible in many of the FIGS., for example referring to
In an embodiment at least a portion of the cover 110 or at least a portion of the at least one receptacle tray 300 is made from a biodegradable material selected from the group consisting of a biodegradable pulp, a biodegradable paper, a layer of biodegradable plastic film disposed over any of biodegradable pulp, biodegradable paper, or other substrate, tin, aluminum, biodegradable plastic, and combinations thereof. In an embodiment the at least one receptacle tray 300 comprises a first receptacle tray 300 that is disposable, and the cover 110 is reusable being adapted for use with at least a second receptacle tray 300 after being used with the first receptacle tray 300.
In an embodiment the cover 110 is manufactured as an inexpensive biodegradable throwaway; however, in another embodiment the cover 110 is manufactured as a high-end keepsake folio type piece that is reused/repurposed. In an embodiment the at least one receptacle tray 300 is adapted to contain consumable items, for example without limitation, makeup, and can be discarded after use, where replacement/refills trays 300 can be purchased separately and inserted into the previously purchased cover 110 minimizing waste and cost to the consumer.
A modular packaging container system as presented herein provides a convenient cover for supporting at least one receptacle tray that can have a myriad of recess configurations for holding consumer materials therein. The system conveniently supports the receptacle tray in multiple orientations and configurations for ease of access by a consumer. The modular packaging container system can be manufactured in industry for use by consumers.
Numerous modifications to the present invention will be apparent to those skilled in the art in view of the foregoing description. It is not desired to limit the invention to the exact construction and operation shown and described, and accordingly, all suitable modifications and equivalents may be resorted to, falling within the scope of the invention. Accordingly, this description is to be construed as illustrative only of the principles of the invention and is presented for the purpose of enabling those skilled in the art to make and use the invention and to teach the best mode of carrying out same. The exclusive rights to all modifications which come within the scope of the appended claims are reserved. All patents, patent publications and applications, and other references cited herein are incorporated by reference herein in their entirety.
This application claims the benefit of priority to U.S. Provisional Patent Application No. 63/274,590 filed on Nov. 1, 2021, and incorporated in its entirety by reference herein.
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Zagg, disclosed in a YouTube video from DAMR: https://www.youtube.com/watch?v=7sD9ljoZ2FE available since Jan. 3, 2021, and YouTube video from ZAGGTV YouTube channel: https://www.youtube.com/watch?v=9HcB2DxC6S4 available since Oct. 21, 2020, 2. (Year: 2020). |
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Number | Date | Country | |
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20230137961 A1 | May 2023 | US |
Number | Date | Country | |
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63274590 | Nov 2021 | US |