Method of making an absorbent structure having three-dimensional topography
A method of making an absorbent structure having a three-dimensional topography includes placing at least a portion of the absorbent structure between opposed mold surfaces. At least one of the mold surfaces has a three-dimensional topography. The three-dimensional topography of the mold surface is imparted onto the absorbent structure so that the absorbent structure has a three-dimensional topography corresponding to the three-dimensional topography of the mold surface.
1. A method of making an absorbent structure having a three-dimensional topography comprises:
placing at least a portion of the absorbent structure between opposed mold surfaces, at least one of the mold surfaces having a three-dimensional topography; and
imparting the three-dimensional topography of the mold surface onto the absorbent structure so that the absorbent structure has a three-dimensional topography corresponding to the three-dimensional topography of the mold surface, the absorbent structure having the three-dimensional topography imparted thereon having a projected area as determined by a Topography Analysis Method, an upper surface of the absorbent structure having a vertical area as determined by the Topography Analysis Method in the range of about 0.1 cm 2 to about 0.5 cm 2 per 1.0 cm 2 projected area of the absorbent structure.
2. The method of claim 1 wherein imparting the three-dimensional topography of the mold surface onto the absorbent structure comprises compressing the absorbent structure between the mold surfaces.
3. The method of claim 1 wherein imparting the three-dimensional topography of the mold surface onto the absorbent structure comprises passing the absorbent structure between a nip defined by two opposed rolls.
4. The method of claim 1 wherein each of the mold surfaces has a three-dimensional topography to impart a three-dimensional topography on both upper and lower surfaces of the absorbent structure.
5. The method of claim 1 wherein the opposed mold surfaces comprise a first mold surface having a plurality of bumps and a second mold surface having a plurality of depressions, each of the depressions in the second mold surface being suitably sized and shaped to receive a respective one of the bumps of the first mold surface.
6. The method of claim 1 further comprising forming the absorbent structure from absorbent fibers and a binder material using an airlaying technique.
7. The method of claim 6 wherein the binder material is heat activatable binder material.
8. The method of claim 7 further comprising heating the absorbent structure to a temperature sufficient to activate the heat activatable binder material.
9. A method of making an absorbent structure having a three-dimensional topography comprises:
passing the absorbent structure through a nip defined by opposed rolls, at least one of the rolls having a mold surface with a three-dimensional topography; and
imparting the three-dimensional topography of the mold surface onto the absorbent structure so that the absorbent structure has a three-dimensional topography corresponding to the three-dimensional topography of the mold surface, the absorbent structure having the three-dimensional topography imparted thereon having a projected area as determined by a Topography Analysis Method, an upper surface of the absorbent structure having a vertical area as determined by the Topography Analysis Method in the range of about 0.1 cm 2 to about 0.5 cm 2 per 1.0 cm 2 projected area of the absorbent structure.
10. The method of claim 9 wherein one of the opposed rolls comprise a first mold surface having a plurality of bumps and the other roll comprises a second mold surface having a plurality of depressions, each of the depressions in the second mold surface being suitably sized and shaped to receive a respective one of the bumps of the first mold surface.
11. The method of claim 10 wherein the plurality of depressions comprises a plurality of circular depressions and the plurality of bumps comprises a plurality of cross-shaped bumps.
12. The method of claim 9 wherein each of the rolls has a mold surface with a three-dimensional topography to impart a three-dimensional topography on both upper and lower surfaces of the absorbent structure.
13. The method of claim 9 further comprising forming the absorbent structure from absorbent fibers and a binder material using an airlaying technique.
14. The method of claim 13 wherein the binder material is heat activatable binder material.
15. The method of claim 14 further comprising heating the absorbent structure to a temperature sufficient to activate the heat activatable binder material.