Package comprising a sealed contact area including a nonwoven having a bonded surface with an embossed impression pattern
This invention relates to a package for providing an enclosed interior environment capable of being sterilized and a gas permeable fibrous nonwoven sheet structure useful in such structure, wherein the nonwoven sheet structure has at least one surface having a pre-sealed, embossed impression pattern; and a particle barrier penetration of below 10%, a Gurley Hill Porosity of 40 seconds or less, and a moisture vapor transport rate of 3500 g/m 2 /day or greater.
1. A package for providing an enclosed interior environment capable of being sterilized, the package consisting of a gas permeable fibrous nonwoven sheet consisting of polyethylene plexifilaments, polymeric tie layer, and package substrate,
the nonwoven sheet having a first surface and a second surface;
the enclosed interior environment being formed by sealing an area of contact between the first surface of the nonwoven sheet and the package substrate, the sealed area of contact being formed by the polymeric tie layer,
wherein the first surface of the nonwoven sheet is pre-bonded with an embossed impression pattern at least within the sealed area of contact, and
wherein the second surface of the nonwoven sheet is free of any embossed pattern, and
wherein the sealed area of contact being formed by the polymeric tie layer and the first surface pre-bonded with an embossed impression pattern passes the dye penetration test per ASTM F1929-12, and
wherein the first surface pre-bonded with an embossed impression pattern, when compared to a non-embossed surface, provides a reduction in visible fiber tears of at least 25 percent after the sealed area of contact is opened by peeling the sheet from the polymeric tie layer.
2. The package of claim 1 wherein the polymeric tie layer is integral with the package substrate.
3. The package of claim 1 wherein the polymeric tie layer and package substrate are combined in a film.
4. A fibrous nonwoven sheet suitable for use in a sterile package made by sealing the nonwoven sheet to a package substrate via a polymer tie layer, wherein the sterile package is later opened by peeling the sheet from the polymeric tie layer,
the sheet being gas permeable and having a first surface and a second surface and consisting of polyethylene plexifilaments;
the first surface being bonded with an embossed impression pattern and the second surface being capable of accepting printing,
wherein the second surface of the nonwoven sheet is free of any embossed pattern;
the sheet having a particle barrier penetration of below 10%, a Gurley Hill Porosity of 40 seconds or less, and a moisture vapor transport rate of 3500 g/m 2 /day
or greater,
wherein when a sealed area of contact is formed between the first surface pre-bonded with an embossed impression pattern and the polymeric tie layer of the package substrate, the sealed area of contact passes the dye penetration test per ASTM F1929-12, and
wherein the first surface pre-bonded with an embossed impression pattern, when compared to a non-embossed surface, provides a reduction in visible fiber tears of at least 25 percent after the sealed area of contact is opened by peeling the sheet from the polymeric tie layer.
5. The fibrous nonwoven sheet of claim 4 having a Gurley Hill Porosity of 10 seconds or less.
6. The fibrous nonwoven sheet of claim 4 having a moisture vapor transport rate of 7500 g/m 2 /day or greater.
7. The fibrous nonwoven sheet of claim 6 having a moisture vapor transport rate of 9000 g/m 2 /day or greater.
8. The package of claim 1 wherein the fibrous nonwoven sheet having at least one surface prebonded with an embossed impression pattern, when compared to a non-embossed structure, provides an improved seal strength as measured by both average mean load and average peak load.
9. The fibrous nonwoven sheet of claim 4 wherein the at least one surface prebonded with an embossed impression pattern, when compared to a non-embossed structure, provides an improved seal strength as measured by both average mean load and average peak load.