It is often advantageous to create constructions with multiple layers of sheets or attachments. A common method for attachment of layers together is the use of adhesives, such as pressure sensitive adhesives (PSAs). PSAs, in particular, usually require some type of release coating on the side opposite the adhesive in order to allow parts to be stackable. Another option of providing parts is to have the adhesive of each part covered with a protective release liner.
The release coatings are typically formulated to prevent items from adhering to them. As a result, attaching materials to the release coating treated side of a stackable part becomes extremely difficult.
There are three possible ways to attach an item to a non-release coated. substrate, such as a plastic film. The object can be bonded to the film using an adhesive. The adhesive can be any suitable adhesive, such as a PSA, contact adhesive, heat sealable adhesive, hot applied adhesive, liquid applied adhesive, etc. Fusing the object to the plastic film/foam may also be considered if both materials are capable of being joined by ultrasonic welding, heat staking or thermal welding. Mechanical fasteners are another option, but pose the risk of penetrating the plastic film creating a point of intrusion for air, dust or water. The first two methods are severely limited if release coatings are present.
Release coatings may be based on silicone chemistry, or to a much lesser degree, non-silicones. They are typically supplied in rolls, but could also be provided in sheet form. Roll or web manufacturing is very advantageous in the economics of production of release coating. Release coatings are usually applied across the entire web width and dried/cured at very high speeds. When a roll pattern coating is required, it is usually limited to patterns running in the web machine direction. Because uncoated areas are usually in stripes or rows, they restrict the areas where attachments can be made.
Thus, there is a need to provide a means for attaching stackable materials while overcoming the above-mentioned difficulties and others.
The present invention relates to multiple component barriers. More particularly, it relates to an assembly of sheets having adhesives and release coatings on opposite sides which have substantially the same pattern.
In accordance with one aspect of the invention, a stackable sheet includes a first side; a second side opposite the first side; a release coating applied to the first side; an adhesive applied to the second side; wherein the release coating is applied in a first pattern onto the first side, and the adhesive is applied to the second side in a second pattern substantially the same as the first pattern.
In accordance with another aspect of the invention, a plurality of stackable sheets includes a first sheet having an adhesive layer on a surface thereof; a second sheet having a release coating layer on a surface thereof; wherein the adhesive and the release coating are applied in substantially the same pattern, wherein the first sheet is positioned onto the second sheet thus aligning the adhesive layer with the release coating layer.
In accordance with still another aspect of the invention, an assembly of sheets has a first sheet, a second sheet, an adhesive layer formed on one of the sheets adjacent an opening of the sheet, and a fastening component extending through the opening of the sheet and penetrating the adhesive layer and connecting the first sheet to the second sheet.
Still other aspects of the invention will become apparent upon a reading of the following detailed description.
Further aspects of the invention will become apparent by reference to the detailed description when considered in conjunction with the Figures, wherein like reference numbers indicate like elements through the several views, and wherein:
The present invention relates to multiple component barriers. More particularly, it relates to an assembly of sheets having adhesives and release coatings on opposite sides which have substantially the same pattern. To overcome the problem of release coating being located on an area of the sheet where the coating would interfere with the placing of attachments, the release coating is preferably printed in precise complex patterns that match adhesive placement of stackable parts. The typical method would be a pattern gravure roll application, though other pattern application techniques such as screen printing or stenciling may also be employed without departing from the scope of the invention.
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The release coating may also have a compatible dye, pigment or colorant incorporated into the release coating to provide a visual reference for the user during stacking. This would allow positive placement of the adhesive on top of the pattern release coated areas. Where items may be images of a left and right side, one color could be used to identify one side while a different color could be used to identify parts for the opposite side or pattern.
The adhesive used can be a pressure-sensitive adhesive (PSA), however, it would be equally advantageous when used with other forms of adhesive or thermal fusing techniques.
Another embodiment of the invention is shown in
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Another approach for a mechanical fastener is to employ a soft, compressible material within the fastener to act as a gasket or seal. This preformed seal would be an integral part of the fastener at the time of manufacture. However, due to the cost and complexity of this approach, an on-site applied adhesive/gasket material may offer significant advantage in time and cost reduction.
The exemplary embodiment has been described with reference to the preferred embodiments. Obviously, modifications and alterations will occur to others upon reading and understanding the preceding detailed description. It is intended that the exemplary embodiment be construed as including all such modifications and alterations insofar as they come within the scope of the appended claims or the equivalents thereof.
This application claims priority from Provisional Application No. 60/796,233, filed on Apr. 28, 2006, which is hereby incorporated by reference.
| Number | Date | Country | |
|---|---|---|---|
| 60796233 | Apr 2006 | US |