Absorbent device using an apertured nonwoven as an acquisition distribution layer
View Patent ↗An absorbent article having a topsheet, an intermediate layer, an absorbent core, and a backsheet, wherein the intermediate layer is formed of an apertured nonwoven. The intermediate layer may include stiffening means such as apertured film or an additional nonwoven layer.
1. An absorbent article with a body facing side, the absorbent article comprising:
a topsheet on the body facing side;
a backsheet opposite the body facing side;
an absorbent core between the backsheet and the topsheet; and
a composite intermediate layer between the absorbent core and the topsheet, said composite intermediate layer comprising:
a first nonwoven web of fibers; and
an underlayer between the first nonwoven web and the absorbent core, said underlayer having small scale openings with a hydraulic radius;
the first nonwoven web of fibers comprising a plurality of three dimensional conical large scale apertures extending through both the nonwoven web and the underlayer, said large scale apertures having a hydraulic radius that is substantially greater than the hydraulic radius of the small scale openings of the underlayer, and said large scale apertures not extending through the topsheet.
2. The absorbent article of claim 1 , wherein the underlayer comprises a resilient formed film having a male side and a female side opposite the male side.
3. The absorbent article of claim 2 wherein the male side of the formed film faces the nonwoven web.
4. The absorbent article of claim 1 wherein said large scale apertures are generally conical in shape, tapering from a larger opening to a smaller opening, the larger opening being between the smaller opening and the topsheet.
5. The absorbent article of claim 4 wherein said large scale apertures have generally unconsolidated fibers near the larger opening and generally consolidated fibers near the smaller opening.
6. The absorbent article of claim 4 wherein fibers of said nonwoven web are bonded to the underlayer at said smaller opening by melted portions of said underlayer.
7. The absorbent article of claim 1 wherein the small scale openings in the underlayer have a mesh count between about 50/cm 2 and about 100/cm 2 .
8. The absorbent article of claim 1 wherein the large scale apertures have a mesh count between about 6/cm 2 and about 11/cm 2 .
9. The absorbent article of claim 8 wherein the small scale openings in the underlayer have a mesh count between about 10 and about 20 times greater than the mesh count of the large scale apertures.
10. The absorbent article of claim 1 wherein the underlayer comprises stiffening means.
11. The absorbent article of claim 1 , wherein the underlayer comprises a resilient three-dimensional apertured formed film and a mesh count of the large scale openings is less than a mesh count of the small scale openings.