Abstract:
Aspects of the present disclosure involve fluid partitioning characteristics of removable and replaceable absorbent core components used with disposable absorbent articles. A replaceable core component can be constructed to have fluid partitioning characteristics that reduce the need to replace the chassis of the absorbent article as often as well as providing comfort to the wearer. The more fluid a replaceable core component absorbs and extracts from the chassis results in correspondingly less fluid that will remain in the chassis when the replaceable core component is removed and replaced. The ability of a replaceable core component to absorb and extract fluid from the chassis of an absorbent article may be evaluated by measuring the fluid partitioning values of the replaceable core component and absorbent article. Fluid partitioning values provide an indication of the percentage of a quantity of fluid discharged into the chassis that is absorbed by the replaceable core component.
Abstract:
A wipes product includes a wipes container filled with at least one wipe substrate. The wipes container is formed at least partially from a first polymer and the first polymer is synthetic and at least partially derived from a renewable resource via a first intermediate monomeric compound. The wipes container includes a lid and a base such that at least one of the lid and the base comprises a bio-based content of about 10% to about 100% using ASTM D6866-10, method B. Methods of forming a wipes product are also provided.
Abstract:
Aspects of the present disclosure involve fluid partitioning characteristics of removable and replaceable absorbent core components used with disposable absorbent articles. A replaceable core component can be constructed to have fluid partitioning characteristics that reduce the need to replace the chassis of the absorbent article as often as well as providing comfort to the wearer. The more fluid a replaceable core component absorbs and extracts from the chassis results in correspondingly less fluid that will remain in the chassis when the replaceable core component is removed and replaced. The ability of a replaceable core component to absorb and extract fluid from the chassis of an absorbent article may be evaluated by measuring the fluid partitioning values of the replaceable core component and absorbent article. Fluid partitioning values provide an indication of the percentage of a quantity of fluid discharged into the chassis that is absorbed by the replaceable core component.
Abstract:
An absorbent article is disclosed having a topsheet, a backsheet joined with the topsheet, an absorbent core disposed between the topsheet and the backsheet, and a synthetic superabsorbent polymer derived from a first renewable resource via at least one intermediate compound, wherein said superabsorbent polymer exhibits a defined Saline Flow Conductivity value and Absorption Against Pressure value. Alternately, an absorbent article is disclosed having a synthetic polyolefin derived from a first renewable resource via at least one intermediate compound. The synthetic polyolefin exhibits defined performance characteristics making the polyolefin particularly useful in certain components of the absorbent article. Methods for making the aforementioned absorbent articles are also disclosed.
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:
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:具有包含非生物持久性无机玻璃质微纤维的分配构件的吸收制品。 微纤维具有约0.1微米至约6微米的平均有效直径,并且排列成纤维组件,其具有约40g / m 2至约350g / m 2的定量 和约0.04g / m 3至约0.25g / m 3之间的密度。 在优选的实施方案中,纤维集合体可以在少于约5分钟的时间内将0.9%的盐溶液垂直芯吸至5cm的高度。
Abstract:
An absorbent article is disclosed having a topsheet, a backsheet joined with the topsheet, an absorbent core disposed between the topsheet and the backsheet, and a synthetic superabsorbent polymer derived from a first renewable resource via at least one intermediate compound, wherein said superabsorbent polymer exhibits a defined Saline Flow Conductivity value and Absorption Against Pressure value. Alternately, an absorbent article is disclosed having a synthetic polyolefin derived from a first renewable resource via at least one intermediate compound. The synthetic polyolefin exhibits defined performance characteristics making the polyolefin particularly useful in certain components of the absorbent article. Methods for making the aforementioned absorbent articles are also disclosed.
Abstract:
An absorbent article comprising at least one topsheet; a liquid impervious backsheet joined with the topsheet; an absorbent core interposed between the topsheet and backsheet; and a slow recovery elastomer. The slow recovery elastomer exhibits a normalized unload force at 37°C of greater than about 0.04N and at least about 20% post elongation strain at 22°C after 15 seconds of recovery.
Abstract:
An oral care device is disclosed including a body. The body is formed at least partially from a first polymer and the first polymer is synthetic and at least partially derived from a renewable resource via a first intermediate monomeric compound. The body includes one or more components such that at least one component of the body has a bio-based content of about 10% to about 100% using ASTM D6866-10, method B. Methods of forming oral care devices are also provided.
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。