Abstract:
A multi-component synergistic absorbent composition includes at least one polysaccharide and at least one or more polysaccharide-based components or gelling proteins. This composition possesses synergistic effects in its capacity to absorb water, saline solutions and biological fluids, at normal pressure or under load, or to retain these fluids, or a combination of these properties.
Abstract:
A plastic film having an internal haze of at most 0.08 and a total haze of at least 0.41 is, when attached to a polarizer and incorporated in a display device as a retardation film therein, effective for bettering the contrast of the device, and has good film handling characteristics during transport.
Abstract:
Anti-tack additives for elastic fibers and methods of preparing the same are included. The elastic fibers include a substituted cellulose additive.
Abstract:
Disclosed is an optical film having a hard coat layer on a cellulose ester film, which contains an ester compound composed of a furanose structure or a pyranose structures and a sum of a number of the furanose structures or the pyranose structure is 1 to 12, provided that a part of hydroxy groups of the furanose structure or the pyranose structure has been esterified and a part of hydroxy groups of the furanose structure or the pyranose structure remains.
Abstract:
The present invention relates to a product comprising a preparation for mixture with a solvent to form a squirtable polymer solution for use in squirt devices. The preparation comprises a polymer thickening agent in combination with a mixing material. The thickening agent and mixing material are selected and formulated so that said product retains its homogeneity during storage of at least 1 week and that the mixing material is selected and formulated so that the preparation does not form lumps dissolved in a solvent. The invention further comprises methods to obtain suitable such preparation and a method of loading a squirt device with the product.
Abstract:
A thermally conductive material, a donor element including the material, a method of printing using the donor element, and a print assembly including the donor element are described, wherein the thermally conductive material includes at least two immiscible or incompatible organic polymers, or a block or graft copolymer, wherein the constituent homopolymer repeat units that form the copolymer are prepared from chemical species that would form mutually immiscible or incompatible polymers, and thermally conductive particles having a short axis of less than or equal to 0.2 microns.
Abstract:
A sprayable coating agent is disclosed in the form of granules with which the granules are compacted to form a pressed piece, subsequently ground up and optionally sieved, whereby the granules have the following particle-size distribution: 0%-40% by weight: 0-600 μm; 5%-55% by weight: 600-1250 μm; 5%-95% by weight: >1250 μm; or 15% by weight: 0-800 μm; 0%-85% by weight: 800-2000 μm; 0%-15% by weight: >2000 μm. Likewise disclosed are its production, further processing and use for internal and external applications.
Abstract:
A cellulose ester film is disclosed which comprises a polyhydric alcohol ester, which is an ester of one or more kinds of monocarboxylic acids with an aliphatic polyhydric alcohol, wherein the cellulose ester film has a water vapor transmission rate of from 20 to 260 g/m2·24 hours measured under conditions of 25° C. and 90% RH.
Abstract translation:公开了一种纤维素酯膜,其包含多元醇酯,其为一种或多种一元羧酸与脂肪族多元醇的酯,其中所述纤维素酯膜的水蒸气透过率为20〜260g / m 2 在25℃和90%RH的条件下测量.24小时。
Abstract:
The invention relates to methods of making carbohydrate and polyol esters suitable for use as plasticizers for polymer compositions. The invention also relates to plasticized polymer compositions comprising such carbohydrate and polyol esters. The invention also relates to articles prepared from such plasticized polymer compositions. The invention further relates to methods of using these compositions.
Abstract:
Aqueous dispersions of carboxylated cellulose esters are disclosed having a low organic solvent content. These dispersions can be prepared using a volatile hydrophilic organic solvent and a coupling organic solvent having a lower volatility, the volatile hydrophilic solvent being substantially stripped off during preparation to obtain a dispersion useful in a variety of coating compositions, providing satisfactory performance in metallic flake control, flow and leveling properties, and defect reduction.