Abstract:
Disclosed is an absorbent article having a distribution member comprising non-biopersistent inorganic vitreous microfibers. The microfibers have an average effective diameter between about 0.1 micron and about 6 microns; are in a fibrous assembly having a basis weight between about 40 g/m 2 and about 350 g/m 2 ; and have a density between about 0.04 g/m 3 and about 0.25 g/m 3 . In preferred embodiments the fibrous assembly can vertically wick a 0.9% saline solution to a height of 5 cm in less than about 5 minutes.
Abstract translation:本发明公开了一种吸收性物品,其具有包含非生物一般性无机玻璃质微纤维的分配构件。 微纤维具有约0.1微米至约6微米的平均有效直径; 在基重在约40g / m 2〜约350g / m 2之间的纤维集合体中; 并且具有约0.04g / m 3至约0.25g / m 3的密度。 在优选的实施方案中,纤维组件可以在小于约5分钟内垂直地吸收0.9%盐水溶液至5cm的高度。
Abstract:
Described are absorbent members useful in the containment of body liquids such as urine. These absorbent members comprise at least one osmotic absorbent (preferably a hydrogel-forming absorbent polymer) and a high surface area material, and have a high capillary suction capacity. For purposes of the present disclosure, capillary suction capacity is measured in terms of the member's ability to uptake liquid at high capillary heights, which are generally encountered when the member is positioned in an absorbent article. In particular, capillary suction capacity is measured in terms of a member's capillary sorption absorbent capacity, which is measured in accordance with the Capillary Sorption method described in the Test Methods section.
Abstract:
The present invention is an absorbent structure to be used in absorbent articles, having at least a first region for acquisition/distribution of fluid and a second region for storage of fluid. The first region can contain materials which have a relatively high capillary desorption pressure, as the materials in the second region exhibit a sufficiently high capillary absorption pressure so as to still efficiently drain the first region. The first region material has a Capillary Sorption Desorption Height (CSDH 90) of more than 40 cm and the second region material satisfies at least one of following requirements: (a) an absorption capacity of at least 15 g/g at 35 cm in the capsorption test; (b) an absorption capacity of at least 15 g/g at 0 cm in the capsorption test and an absorption efficiency of at least 55 % at 40 cm; (c) a Capillary Sorption Absorption Height at 50 % of its capacity at 0 cm absorption height (CSAH 50) of at least 35 cm in the capsorption test.
Abstract:
An absorbent article having a main body portion, a pair of flaps joined to the main body portion, and a unitary release material joined to a portion of each of the flaps such that the unitary release material superposes the flap adhesive when the flap is folded along a fold line.
Abstract:
An absorbent article having a distribution member comprising non-biopersistent inorganic vitreous microfibers. The microfibers have an average effective diameter between about 0.1 micron and about 6 microns and are arranged in a fibrous assembly having a basis weight between about 40 g/m 2 and about 350 g/m 2 and a density between about 0.04 g/m 3 and about 0.25 g/m 3 . In preferred embodiments, the fibrous assembly can vertically wick a 0.9% saline solution to a height of 5 cm in less than about 5 minutes.
Abstract translation:一种吸收性物品,其具有包含非生物一致性的无机玻璃质微纤维的分配构件。 微纤维具有约0.1微米至约6微米的平均有效直径,并且布置在基重在约40g / m 2至约350g / m 2之间的纤维组件中 并且密度在约0.04g / m 3和约0.25g / m 3之间。 在优选的实施方案中,在小于约5分钟的时间内,纤维组合件可以将0.9%盐水溶液垂直地吸收至5cm的高度。
Abstract:
An absorbent article having a main body portion (22) and a pair of flaps (24) joined to the main body portion. The main body portion comprises an absorbent assembly (46) and a pair of retaining members (78) joined to the absorbent assembly to form recessed areas (68) wherein the flaps may be tucked. Each retaining member comprises a unitary release material (57) joined thereto such that the unitary release material superposes and is releasably secured to the flap adhesive (56) when the flap is folded and tucked into the recessed area.
Abstract:
An absorbent article having a main body portion, a pair of flaps joined to the main body portion, and an adhesive patch joined to each flap. Each adhesive patch comprises a first half and a second half releasably secured to the first half. The fist half has adhesive zones and release zones, and the second half has adhesive zones and release zones which are removably securable to the release zones and adhesive zones of the first half.
Abstract:
An absorbent article having a main body portion (22), a pair of flaps (24) joined to the main body portion, and a unitary release material (57) joined to a portion of each of the flaps (24) such that the unitary release material superposes the flap adhesive (56) when the flap is folded along a fold line. Each of the flaps form an included angle of about 180 DEG to about 270 DEG relative to the perpendicular axis of the main body portion.
Abstract:
An absorbent article having a main body portion, a pair of flaps joined to the main body portion, and an adhesive patch joined to each flap. Each adhesive patch comprises a first half and a second half releasably secured to the first half. The first half comprises an adhesive and the second half comprises an adhesive which is releasably securable to the adhesive of the first half.