Methods to modify the fibrous landing layer of a foam based fastener and products made from the same
View Patent ↗Methods to modify an engaging surface of a fibrous landing layer of a mechanical fastener are generally disclosed, along with products made from the same. For instance, the engaging surface of the landing layer can be mechanically modified to increase the fuzziness of the layer, which allows more fibers to engage the other surface of the mechanical fastener. For example, the improved engaging surface of the landing layer can increase the shear resistance of a mechanical fastener comprising a foam layer and a landing layer.
1. A method of increasing a perimeter/edge-length ratio of a landing layer of a mechanical fastener, comprising:
providing a mechanical fastener comprising a foam layer and a landing layer, wherein the landing layer comprises a fibrous web defining an engaging surface, wherein said engaging surface of the fibrous web landing layer has an original perimeter/edge-length ratio; and
mechanically modifying the engaging surface of the landing layer such that the engaging surface has an improved perimeter/edge-length ratio that is at least about 50% higher than the original perimeter/edge-length ratio.
2. A method as in claim 1 , wherein the improved perimeter/edge-length ratio is at least about 75% higher than the original perimeter/edge-length ratio.
3. A method as in claim 1 , wherein the improved perimeter/edge-length ratio is at least about 100% greater than the original perimeter/edge-length ratio.
4. A method as in claim 1 , wherein the landing layer comprises a nonwoven fibrous web.
5. A method as in claim 4 , wherein the landing layer comprises a spunbond web.
6. A method as in claim 4 , wherein the landing layer comprises a bonded carded web.
7. A method as in claim 4 , wherein the landing layer comprises a meltblown web.
8. A method as in claim 1 , wherein the perimeter/edge-length ratio of the engaging surface is increased by a process selected from the group consisting of brushing, napping, necking in the cross-machine direction, stretching in the machine direction, needle punching, hydroentangling, dragging over an edge, and dragging over an ultrasonic horn.