Packaging of materials is utilized in a variety of industries. Despite the progress made in packaging technology, there is a need in the art for improved methods and systems related to packaging of products.
Embodiments of the present invention relate to packaging technology. More particularly, embodiments of the present invention provide a thermal bag including a plurality of layers, each of the layers including a metalized film. The invention is not limited to this particular structure but can include other packaging designs as well.
According to an embodiment of the present invention, a thermal material is provided. The thermal material includes a first layer comprising a first side and a second metalized side opposing the first side and a second layer comprising a first side and a second metalized side opposing the first side. The second layer is laminated to the first layer to form a plurality of laminated layers. The thermal materials also includes a seal formed at a peripheral edge of the plurality of laminated layers.
According to another embodiment of the present invention, a thermal material is provided. The thermal materials includes a first sheet of plastic having a metalized side and a non-metalized side, a first edge area and a second edge area. The thermal material also includes a second sheet of plastic having a metalized side and a non-metalized side, a first edge area and a second edge area. The second sheet is disposed adjacent to the first sheet such that the non-metalized side of the first sheet is adjacent to the metalized side of the second sheet and the first edge area of the first sheet is fastened to the first edge area of the second sheet and the second edge area of the first sheet is fastened to the second edge area of the second sheet.
According to yet an embodiment of the present invention, a thermal material is provided. The thermal material includes a first layer comprising a first side and a second polyethelene foam side opposing the first side and a second layer comprising a first side and a second polyethelene foam side opposing the first side. The second layer is laminated to the first layer to form a plurality of laminated layers. The thermal material further includes a seal formed at a peripheral edge of the plurality of laminated layers.
Embodiments of the present invention provide a bag comprised of multiple layers of one-sided metalized film that are sealed together to form one unit. The bag provides thermal insulation protection for perishable products and/or temperature sensitive products.
Exemplary manufacturing details are illustrated in
According to one embodiment of the present invention, the one-sided metalized film can be fabricated using one of several metals, including aluminum, gold, copper, or other suitable metals and metal alloys. The metalized film can be formed as a continuous surface or in a patterned format in order to create different performance parameters.
The films can be coextruded and can be made out HDPE, LDPE, Nylon, Surlyn, or other plastics. Each film is the metalized on one side via evaporation, sputtering, lamination, or the like.
Conversion of rolls stock of metalized film can be done by heat seal or lamination methods.
Referring once again to
According to embodiments of the present invention, a number of layers of the metalized film are laminated to form a resulting structure, which can be formed into the shape of a bag. As an example, two or more layers, for example, 3, 4, 5, 6, 7, 8, 9, 10, or more layers can be used to provide the desired thermal insulation. Once formed, the bag can be inserted into a container or box to provide thermal insulation for goods located inside the bag. The bag could be inserted in another insulating box, container, bag, or the like, to provide supplementary insulation.
All layers are sealed, laminated on the sides to become a single unit bag with a wide opening on top to allow user to insert products. The metalized side is facing outward in some embodiments. According to embodiments, the one-sided metalized films are oriented in the same direction, with adjacent metal layers separated by the substrate on which the metalized layer is formed.
In some embodiments, the metalized film discussed above is replaced with a polyethelene foam provided on one side of a film, for example, a plastic film and then multiple layers of the film/polyethelene film are laminated to form the insulating structures described herein. Thus, the description related to film/metal layers is applicable to the embodiments including a polyethelene foam in place of the metalized film. In other embodiments, a combination of a metalized film and a polyethelene foam is used to form each of the layers. In an alternative embodiment, a structure including one or more layers of film/metalized film and one or more layers of film/polyethelene film is provided. One of ordinary skill in the art will appreciate many alternatives and variations.
Benefits provided by embodiments of the present invention include enhanced thermal performance in comparison with other packaging techniques. Embodiments of the present invention provide flexible, thermally insulating containers not available using conventional techniques.
It is also understood that the examples and embodiments described herein are for illustrative purposes only and that various modifications or changes in light thereof will be suggested to persons skilled in the art and are to be included within the spirit and purview of this application and scope of the appended claims.
The present application claims priority to U.S. Provisional Patent Application No. 61/326,599, filed on Apr. 21, 2010, the disclosure of which is hereby incorporated by reference in its entirety for all purposes.
Number | Date | Country | |
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61326599 | Apr 2010 | US |