Abstract:
A nonwoven web for an absorbent article, an absorbent article comprising the same as a core wrap, and a method for producing the absorbent article are provided. The nonwoven web comprises a first layer comprising filament fibers, a second layer comprising filaments fibers, a third layer comprising staple fibers disposed between the first and second layers, wherein a total basis weight of the first and second layers is not less than about 10gsm, wherein the third layer has a basis weight no greater than about 4gsm. The nonwoven web comprises pores wherein greater than about 80% of the pores has a pore size equal to or smaller than about 40μm, and less than about 10% of the pores has a pore size equal to or greater than about 45μm.
Abstract:
A method for assembling a comprises erecting an upright ballast mast with a back mast top slide that is movable along the ballast mast and constructing a back mast using the upright ballast mast. This comprises the steps of providing a back mast upper section, multiple back mast intermediate sections, and a back mast lower section. The method also comprises connecting a part of the back mast including at least the back mast upper section, and possibly further including one or more pre-connected intermediate sections, to the back mast top slide. The part of the back mast that has been connected to the back mast top slide is stepwise extended by attaching further back mast intermediate sections and the back mast lower section. During the extension of the back mast the back mast top slide is stepwise raised along the upright ballast mast.
Abstract:
A method and device for operating a fluid- insulated electrical apparatus (1) are disclosed. The insulation fluid (10) of the electrical apparatus (1) comprises at least two fluid components (A, B) which are a priori ingredients of the insulation fluid (10). The method comprises the step of carrying out at least one optical measurement and/or at least one gas chromatographic measurement on the insulation fluid (10). Using this measurement or these measurements or at least one additional measurement on the insulation fluid (10), a first concentration (c A ) of the first fluid component (A) and a second concentration (c B ) of the second fluid component (B) are derived. Then, using the first concentration (c A ) and the second concentration (c B ), and, advantageously, a dielectric breakdown strength of the insulation fluid (10), an operating state (O) of the electrical apparatus (1) is derived.
Abstract:
An adjustable, modular handicap-access-ramp system (10) enables transport of wheelchairs and temporarily or permanently physically handicapped individuals and no-step access thereof into and out of a structure. The system (10) comprises a plurality of core modules (12, 14, 18, 20) adapted to be combined with each other to configure a customized ramp. At least one combined locating and support pin (24) is adapted to connect to each other the core modules (12, 14, 18, 20) disposed adjacent to each other. At least one substantially infinitely adjustable column assembly (26) allows movement of predetermined core modules (12, 14, 18, 20) up or down and to a desired angle. At least one connector (28) allows attachment to each other of the adjacent core modules ( 12, 14, 18, 20) that require a change in grade with respect to each other.
Abstract:
An adjustable, modular handicap-access-ramp system (10) enables transport of wheelchairs and temporarily or permanently physically handicapped individuals and no-step access thereof into and out of a structure. The system (10) comprises a plurality of core modules (12, 14, 18, 20) adapted to be combined with each other to configure a customized ramp. At least one combined locating and support pin (24) is adapted to connect to each other the core modules (12, 14, 18, 20) disposed adjacent to each other. At least one substantially infinitely adjustable column assembly (26) allows movement of predetermined core modules (12, 14, 18, 20) up or down and to a desired angle. At least one connector (28) allows attachment to each other of the adjacent core modules ( 12, 14, 18, 20) that require a change in grade with respect to each other.
Abstract:
A lotion having an emollient and an immobilizing agent. The emollient is derived from a renewable resource and having a bio-based content of from about 10% to about 100% using ASTM D6866-10, method B and the immobilizing agent selected from the group consisting of C 14 -C 60 fatty alcohols, C 14 -C 60 fatty acids, C 14 -C 60 fatty alcohol ethoxylates having an average degree of ethoxylation ranging from about 2 to about 110, waxes and mixtures thereof. Absorbent articles comprising said lotions are also provided for herein.
Abstract:
A disposable absorbent article having a structured fibrous web, with thermally stable, hydrophilic fibers that are thermally bonded together using heat provides a base substrate that is thermally stable. The base substrate is textured via mechanical treatment to increase its thickness and optionally modified via over bonding to improve its mechanical and fluid handling properties. The structured fibrous web provides optimal fluid wicking and fluid acquisition capabilities and is directed toward fluid management applications. The structured fibrous web has a bio-based content of about 10% to about 100% using ASTM D6866-10, method B.
Abstract:
An insulated multiple glazing unit comprising at least two coated glass panes separated by at least one gap, wherein the at least two coated glass panes each comprise a low-emissivity and/or solar control coating on a first major surface of the pane and an anti-reflection coating on a second major surface of the pane, wherein two of the coated glass panes are outer panes arranged such that their low-emissivity and/or solar control coatings face each other and their anti-reflection coatings face away from each other, wherein each of said low-emissivity and/or solar control coatings is such that, if said coating coats a major surface of an otherwise uncoated clear glass pane, said pane exhibits a visible light reflectance, both when viewed normal to said coated major surface and normal to an opposing uncoated major surface, of less than 6%, and wherein the unit exhibits a visible light reflectance, when viewed normal to each of said anti- reflection coatings of the two outer panes, of less than 6%.
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:
A process for preparing a dispersion of encapsulated solid particles in a predominantly organic liquid vehicle, comprising the following steps: i)providing a dispersion comprising a particulate solid, a liquid medium and a polymeric dispersant having at least 3.0 mmoles of reactive groups per g of dispersant; ii)cross-linking the polymeric dispersant via at least some, but not all, of the reactive groups, said cross-linking being performed in the presence of the particulate solid and the liquid medium and resulting in the encapsulation of each solid particle with a cross-linked polymeric dispersant shell; iii) covalently bonding an end-capping agent to the polymeric dispersant via the reactive groups; said process being such that the final organic liquid vehicle comprises one or more organic liquids and optionally water, provided that water is present at no more than 30% by weight based on the dispersion.
Abstract translation:一种在主要有机液体载体中制备包封的固体颗粒的分散体的方法,包括以下步骤:i)提供包含颗粒状固体,液体介质和聚合物分散剂的分散体,其具有至少3.0mmol的反应性基团/ g 分散剂; ii)通过至少一些但不是全部的反应性基团交联聚合物分散剂,所述交联在颗粒状固体和液体介质的存在下进行,并导致每个固体颗粒的包封 交联聚合物分散剂壳; iii)通过反应性基团将封端剂共价键合到聚合物分散剂上; 所述方法使得最终有机液体载体包含一种或多种有机液体和任选的水,条件是基于分散体,水的含量不超过30重量%。