CA2187300C

Resilient fluid transporting network for use in absorbent articles

Abstract

The present invention provides a resilient fluid transporting network suitable for use in absorbent articles. The fluid transport network includes a plurality of bicomponent capillary channel fibers capable of intra-fiber fluid transport. The fibers have a base portion and at least two walls extending from the base portion to form an external capillary channel. The walls and the base portion are made of a first polymeric material which has a first melting point temperature. The distal ends of the capillary channel walls are made of a second polymeric material which has a second melting point temperature lower than the first melting point temperature. When heat is applied to the bicomponent fibers at a temperature below the first melting point temperature and above the second melting point temperature the bicomponent fibers bond together at their distal ends to form an interconnected network of capillary channel fibers capable of inter-fiber fluid transfer between the capillary channels of the bonded capillary channel fibers.

CA2187300C, drawing sheet 1
Sheet 1 of 3

Term

Term ended

Expired 28 April 2015, 11.4 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

23 claims: 3 independent, 20 dependent

  1. 1
    THE EMBODIMENTS OF THE INVENTION IN WHICH AN EXCLUSIVE PROPERTY OR PRIVILEGE IS CLAIMED ARE DEFINED AS FOLLOWS :1. A resilient fluid transporting network comprised of a plurality of bicomponent capillary channel fibers capable of intra-fiber fluid transport, said fibers having a base portion and at least two capillary channel walls extending from said base portion forming an open capillary channel, said capillary channel walls having a 3 base end and a distal end, said capillary channel walls and said base portion being comprised of a first polymeric material having a first melting point temperature, said distal ends of said capillary channel walls being comprised of a second polymeric material having a second melting point temperature lower than that of said first melting point temperature such that when heat is applied 10 to said fibers at a temperature below said first melting point temperature and above said second melting point temperature said fibers bond together at their distal ends to form an interconnected network of capillary channel fibers capable of inter-fiber fluid transfer between the capillary channels of the bonded capillary channel fibers.
  2. 12
    An absorbent article comprising:(a) a fluid pervious topsheet;(b) a fluid impervious backsheet joined to said topsheet;(c) an absorbent core positioned between said topsheet and said backsheet;and (d) a fluid transporting network positioned between said topsheet and said absorbent core, said fluid transporting network including a plurality of bicomponent capillary channel fibers capable of intra-fiber fluid transport, said fibers having a base portion and at least two capillary channel walls extending from said base portion forming an open capillary channel, said capillary channel walls having a base end and a distal end, said capillary channel walls and said base portion being comprised of a first polymeric material having a first melting point temperature, said distal ends of said capillary channel walls being comprised of a second polymeric material having a second melting point temperature lower than that of said first melting point temperature such that when heat is applied to said fibers at a temperature below said first melting point temperature and above said second melting point temperature said fibers bond together at their distal ends to form an interconnected network of capillary channel fibers capable of inter-fiber fluid transfer between the capillary channels of the bonded capillary channel fibers.
  3. 18
    An absorbent article comprising:(a) a fluid pervious topsheet, said topsheet including a plurality of bieomponent capillary channel fibers capable of intra-fiber fluid transport, said fibers having a base portion and at least two capillary 5 channel walls extending from said base portion forming an open capillary channel, said capillary channel walls having a base end and a distal end, said capillary channel walls and said base portion being comprised of a first polymeric material having a first melting point temperature, said distal ends of said capillary channel walls being 10 comprised of a second polymeric material having a second melting point temperature lower than that of said first melting point temperature such that when heat is applied to said fibers at a temperature below said first melting point temperature and above said second melting point temperature said fibers bond together at their distal ends to form an 15 interconnected network of capillary channel fibers capable of inter-fiber fluid transfer between the capillary channels of the bonded capillary channel fibers;(b) a fluid impervious backsheet joined to said topsheet;and (c) an absorbent core positioned between said topsheet and said backsheet.