The present invention relates to the field of composite laminated structures or laminates, and in particular to a laminate having one or more layers each of an environmentally degradable film and a substrate adhered together.
Laminates or laminar structures find use in various industries, including the packaging, envelope, tag and label, forms, commercial publication, and digital print industries. Heretofore, no laminate has been able to satisfy the needs of the markets related to these various industries with regard to an environmentally-friendly laminate while preserving the desired attributes in areas such as strength, barrier and machinability.
Therefore, there is a need for an improved laminate having at least one layer of an environmentally degradable film made from an annually-renewable, readily-available resource such as corn.
Briefly, according to the invention, a laminate includes at least one layer of an environmentally degradable film, preferably comprising a polylactide (“PLA”) polymer made from an annually-renewable, readily-available resource such as vegetable matter, for example, corn. A second layer comprises a substrate such as, for example, paper, woven or non-woven fabrics or metallic foils. The environmentally degradable film and the substrate are adhered to one another using, for example, polymeric extrudates or various types of adhesives such as water-based, hot melt, solvent-based or solvent-less adhesives. The choice of adherent depends on type of substrate to be laminated to the environmentally degradable film and the desired properties of the resultant composite laminated structure (i.e., “film laminate”).
Film laminates of the present invention find use, for example, in the packaging, envelope, tag and label, forms, commercial publication, and digital print industries. Traditional converting equipment may be used to convert the film laminate of the present invention into rolls, folio sheets and cut size formats as required.
The laminate of the present invention has the advantage that the film layer included within the laminate is made from an environmentally degradable, annually-renewable and readily-available material such as corn. Similar products made not in accordance with the present invention would typically have a film layer made from a petroleum-based polymer which is of finite supply and is not renewable, and which is not readily environmentally degradable.
These and other objects, features and advantages of the present invention will become more apparent in light of the following detailed description of preferred embodiments thereof, as illustrated in the accompanying drawings.
Referring to
The adherent layer 16 may comprise an environmentally degradable adhesive such as PLA. Other possible adhesives methods for forming the film laminate 10 of the present invention may include polymer extrusion lamination and other conventional adhesive systems and processes (adhesives such as water-based, solvent-based, hot-melt, solvent-less, etc). The adherent material selected can enhance certain properties of the laminate including but not limited to stiffness, gas permeation barrier, elasticity, toughness, or moisture resistance.
If the substrate 14 comprises paper adhered to the PLA film layer 12 utilizing an environmentally degradable adhesive, the resultant laminate 10 is fully environmentally degradable under compost conditions. That is, the film laminate 10 is fully compostable. Further, if the adherent layer 16 comprises an adhesive made from renewable resources and the substrate layer 14 comprises paper, the laminate 10 is then fully renewable.
The PLA film layer 12 or the substrate 14 may be enhanced through coating of one or both surfaces so that the gas permeability of the laminate 10 is reduced. The coating may comprise liquid applications of polymer or nano-particle dispersions and metallic or silicone oxide deposition. Further, the substrate 14 formed of paper and/or the PLA film layer 12 may be treated to impart moisture resistance and to enhance the durability of the laminate 10. The treatment may be in the form of saturation or surface coating with, e.g., wax, acrylic latex or similar substances.
Referring to
As an alternative to the embodiment of
The laminates 10, 20 of
In either of the laminates 10, 20 described above and illustrated herein, different types of cellulose based papers may be used to provide specific performance, print and converting requirements for the packaging, envelope, tag and label, forms, commercial publication, and digital printing industries.
In the embodiments described above where an outer surface of the laminate comprises PLA film, and whereas PLA polymer has a low melt temperature, the laminate can be fused to itself or to another material using heat and pressure, known as heatsealed. This feature allows for the formation and closure of packages without the use of any additional adhesives or sealants. This feature of the invention allows for the benefits of the laminate to be transferred to the finished products.
Although the present invention has been shown and described with respect to several preferred embodiments thereof, various changes, omissions and additions to the form and detail thereof, may be made therein, without departing from the spirit and scope of the invention.
This application claims priority to U.S. Provisional Patent Application No. 60/888,392 filed Feb. 6, 2007, which is hereby incorporated by reference.
Number | Date | Country | |
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60888392 | Feb 2007 | US |