IPC분류정보
국가/구분 |
United States(US) Patent
등록
|
국제특허분류(IPC7판) |
|
출원번호 |
US-0674225
(2000-10-27)
|
우선권정보 |
US-98/08515 (1998-04-28) |
국제출원번호 |
PCT/IB99/00751
(1999-04-23)
|
국제공개번호 |
WO99/55265
(1999-11-04)
|
발명자
/ 주소 |
- Arndt, Silke
- Ehrnsperger, Bruno Johannes
- Schmidt, Mattias
- Lavon, Gary Dean
- Neumann, Frank
- Link, Andrea Lieselotte
|
출원인 / 주소 |
- The Procter & Gamble Company
|
대리인 / 주소 |
Milbrada, Edward J.Hughett, Eileen L.Patel, Ken K.
|
인용정보 |
피인용 횟수 :
30 인용 특허 :
27 |
초록
▼
An absorbent article having an ultimate fluid storage region and a fluid distribution region, positioned between the ultimate storage region and the garment oriented surface of the article, in fluid communication with the ultimate fluid storage region, the ultimate fluid storage region includes a ma
An absorbent article having an ultimate fluid storage region and a fluid distribution region, positioned between the ultimate storage region and the garment oriented surface of the article, in fluid communication with the ultimate fluid storage region, the ultimate fluid storage region includes a material which has: (1) a Capillary Sorption Desorption Capacity at 100 cm (CSDC 100) of at least 10 g/g; (2) a Capillary Sorption Desorption Capacity at 0 cm (CSDC 0) higher than the CSDC 100; (3) a Loosely Bound Liquid Capacity (LBLC); and (4) a Capillary Sorption Desorption Release Height when 50% of the LBLC are released (CSDRH 50) less than 60 cm. Further, the liquid distribution layer material has a Capillary Sorption Absorption Height at 30% of its maximum capacity (CSAH 30) of at least 35 cm. Disuibution material can be foam materials, particularly those derived from high internal phase water-in-oil emulsions.
대표청구항
▼
An absorbent article having an ultimate fluid storage region and a fluid distribution region, positioned between the ultimate storage region and the garment oriented surface of the article, in fluid communication with the ultimate fluid storage region, the ultimate fluid storage region includes a ma
An absorbent article having an ultimate fluid storage region and a fluid distribution region, positioned between the ultimate storage region and the garment oriented surface of the article, in fluid communication with the ultimate fluid storage region, the ultimate fluid storage region includes a material which has: (1) a Capillary Sorption Desorption Capacity at 100 cm (CSDC 100) of at least 10 g/g; (2) a Capillary Sorption Desorption Capacity at 0 cm (CSDC 0) higher than the CSDC 100; (3) a Loosely Bound Liquid Capacity (LBLC); and (4) a Capillary Sorption Desorption Release Height when 50% of the LBLC are released (CSDRH 50) less than 60 cm. Further, the liquid distribution layer material has a Capillary Sorption Absorption Height at 30% of its maximum capacity (CSAH 30) of at least 35 cm. Disuibution material can be foam materials, particularly those derived from high internal phase water-in-oil emulsions. rial of claim 15 having 5 layers and a basis weight between 200 and 667 gsm. 18. The layered material of claim 15 having 7 layers and a basis weight between 280 and 934 gsm. 19. The layered material of claim 16 having 5 layers and a basis weight between 200 and 667 gsm. 20. The layered material of claim 16 having 7 layers and a basis weight between 280 and 934 gsm. , Storm et al., 008/137; US-4172887, 19791000, Vanlerberghe et al., 424/070; US-4321157, 19820300, Harris et al., 252/174.25; US-4664839, 19870500, Rieck, 252/175; US-4737306, 19880400, Wichelhaus et al., 252/095; US-4816553, 19890300, Baur et al., 528/245; US-5008032, 19910400, Diessel et al., 252/174.24; US-5356607, 19941000, Just, 423/334; US-5399792, 19950300, Demmering, 568/864; US-5580941, 19961200, Krause et al., 527/300; US-5672781, 19970900, Koehler et al., 568/885; US-5705169, 19980100, Stein et al., 424/401; US-5730960, 19980300, Stein et al., 424/059; US-5830956, 19981100, Stockhausen et al., 526/318.2; US-5945091, 19990800, Habeck et al., 424/059; US-6133219, 20001000, Copete Vidal et al., 510/374; US-6193960, 20010200, Metzger et al., 424/059; US-6229056, 20010500, Ansmann et al., 568/884
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