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102results about How to "Reduced hydration rate" patented technology

Method of manufacturing expansile filamentous embolization devices

An embolization device for occluding a body cavity includes one or more elongated, expansible, hydrophilic embolizing elements non-releasably carried along the length of an elongated filamentous carrier that is preferably made of a very thin, highly flexible filament or microcoil of nickel / titanium alloy. At least one expansile embolizing element is non-releasably attached to the carrier. A first embodiment includes a plurality of embolizing elements fixed to the carrier at spaced-apart intervals along its length. In second, third and fourth embodiments, an elongate, continuous, coaxial embolizing element is non-releasably fixed to the exterior surface of the carrier, extending along a substantial portion of the length of the carrier proximally from a distal tip, and optionally includes a lumenal reservoir for delivery of therapeutic agents. Exemplary methods for making these devices include skewering and molding the embolizing elements. In any of the embodiments, the embolizing elements may be made of a hydrophilic, macro-porous, polymeric, hydrogel foam material. In the second, third and fourth embodiments, the elongate embolizing element is preferably made of a porous, environmentally-sensitive, expansile hydrogel, which can optionally be made biodegradable and / or bioresorbable, having a rate of expansion that changes in response to a change in an environmental parameter, such as the pH or temperature of the environment.
Owner:MICROVENTION INC

Method of manufacturing expansile filamentous embolization devices

An embolization device for occluding a body cavity includes one or more elongated, expansible, hydrophilic embolizing elements non-releasably carried along the length of an elongated filamentous carrier that is preferably made of a very thin, highly flexible filament or microcoil of nickel / titanium alloy. At least one expansile embolizing element is non-releasably attached to the carrier. A first embodiment includes a plurality of embolizing elements fixed to the carrier at spaced-apart intervals along its length. In second, third and fourth embodiments, an elongate, continuous, coaxial embolizing element is non-releasably fixed to the exterior surface of the carrier, extending along a substantial portion of the length of the carrier proximally from a distal tip, and optionally includes a lumenal reservoir for delivery of therapeutic agents. Exemplary methods for making these devices include skewering and molding the embolizing elements. In any of the embodiments, the embolizing elements may be made of a hydrophilic, macroporous, polymeric, hydrogel foam material. In the second, third and fourth embodiments, the elongate embolizing element is preferably made of a porous, environmentally-sensitive, expansile hydrogel, which can optionally be made biodegradable and / or bioresorbable, having a rate of expansion that changes in response to a change in an environmental parameter, such as the pH or temperature of the environment.
Owner:MICROVENTION INC

Seepage-scouring-resistant concrete and preparation method thereof

The invention discloses seepage-scouring-resistant concrete and a preparation method thereof. The seepage-scouring-resistant concrete comprises the following components: cement, water, fly ash, silicafume, a fine aggregate, a coarse aggregate, an additive, a preservative and ground mineral powder; wherein the coarse aggregate comprises granite and basalt at a mass ratio of 1: (1.5-1.8); the additive comprises an expanded fiber anti-cracking waterproof agent, an air entraining agent and a water reducing agent at a mass ratio of 1: (0.3-0.5): (0.5-0.7); the preservative is prepared from the following raw materials in parts by weight: 2 to 5 parts of isobutyltriethoxysilane, 1.2 to 1.6 parts of eleostearic acid, 0.8 to 1.6 parts of barium nitrate, 0.5 to 1 part of 2BaO*SiO2 and 3 to 7 partsof polyurethane resin. The seepage-scouring-resistant concrete has the advantages of seawater seepage erosion resistance, strong corrosion resistance and good durability.
Owner:山东中建西部建设有限公司

Additive transfer film suitable for cook-in end use

A multilayer film has a first layer and a second layer. The first layer comprises an additive, a binder, and a crosslinking agent. The additive is a flavor, fragrance, colorant, antimicrobial agent, antioxidant, chelating agent, and/or odor absorbent. The binder is a polysaccharide and/or a protein. The crosslinking agent comprises a compound with at least two carbonyl groups. The second layer comprises a non-water-soluble thermoplastic polymer comprising at least one member selected from the group consisting of polyolefin, polyamide, polyester, polyvinylidene chloride, polyvinyl chloride, and polystyrene. Each of the additive, binder, and crosslinking agent are present throughout a thickness of the first layer. Preferably, the first layer is coated onto the second layer, which is preferably a non-water-soluble thermoplastic polymer, e.g., polyolefin, polyamide, and/or polyester. The film is especially useful for cook-in applications, in which a food product (preferably comprising uncooked meat) is packaged in the film with the coated layer against the meat. The meat is then cooked and the additive transfers to the meat, and purge can be very low. The invention also pertains to a process for preparing a cooked food product, process for making a coated film, and articles formed from the film, such as bags and casings.
Owner:CRYOVAC INC

Preparation method of cross-linked viscosity-reducing polycarboxylate water reducer

ActiveCN109265052AStrong adsorption capacityImprove competitive adsorption capacityPhosphateWater reducer
The invention discloses a preparation method of a cross-linked viscosity-reducing polycarboxylate water reducer. The preparation method comprises the following steps: (1) preparing esterification monomers; (2) performing the copolymerization reaction; and (3) performing the neutralization reaction. According to the preparation method of the invention, allyl alcohol monomers are copolymerized withesterification monomers obtained by esterifying two or three carboxyl groups in little 2-butane phosphate-1,2,4-tricarboxylic acid, polyether macro momoners, 2-methyl allyl oxyethyl phosphorylcholineand unsaturated acid prepare the cross-linked viscosity-reducing polycarboxylate water reducer, and while phosphate, carboxylate radicals, quaternary ammonium salt and ester groups are introduced intoa polymer molecular structure, the polymer structure is slightly cross-linked. The cross-linked viscosity-reducing polycarboxylate water reducer prepared by the method has viscosity reducing performance, also has water reducing, slump loss resisting and mud resisting properties, and solves the problems of high viscosity, poor mixing property and fast loss due to high mud content in a concrete rawmaterial.
Owner:KZJ NEW MATERIALS GROUP CO LTD +1

High-temperature-resistant stone powder adsorption-resistant slump-retaining polycarboxylate superplasticizer and preparation method thereof

ActiveCN113461873AImprove water reducing performanceGood slump retention performanceSolid waste managementPhosphateEnvironmental geology
The invention discloses a high-temperature-resistant stone powder adsorption-resistant slump-retaining polycarboxylate superplasticizer and a preparation method thereof. The polycarboxylate superplasticizer is prepared from the following components in parts by weight: 320 to 360 parts of unsaturated polyether macromonomer, 20 to 30 parts of unsaturated monocarboxylic acid, 6 to 10 parts of maleimide alkyl acid, 5 to 8 parts of unsaturated phosphate, 2 to 5 parts of unsaturated amino acid monoester, 2.5 to 5.0 parts of oxidant, 0.5 to 1.0 part of reducing agent and 1 to 3 parts of chain transfer agent. The pH value of the water reducing agent is 5.0-7.0, and the solid content of the water reducing agent is 40%-42%. The polycarboxylic acid water reducing agent can effectively solve the problems of insufficient initial fluidity of concrete, too fast slump loss and poor workability of a concrete mixture caused by incapability of simultaneously meeting high temperature resistance and limestone powder adsorption resistance of the existing water reducing agent, and has great significance in widening the engineering application field of the water reducing agent.
Owner:SICHUAN TONGZHOU CHEM TECH

Indoor gypsum plaster and preparation method thereof

The invention discloses indoor gypsum plaster and a preparation method thereof. The gypsum plaster comprises, by weight, 40-50 parts of hemihydrate gypsum cementing material, 10-16 parts of diatom ooze, 5-8 parts of calcium powder, 40-60 parts of talcum powder, 0.05-0.10 part of methyl cellulose, 0.4-0.8 part of calcium sulfate, 1.5-3.5 parts of nano titanium dioxide particle, 2.5-6.5 parts of nano silicon dioxide particle, 0.05-0.06 part of retarder, 2.5-4.5 parts of dispersible latex powder, 1.5-2 parts of sodium hydrogen sulfate, 3-10 parts of graphene and 0.5-1.2 parts of auxiliary materials. The indoor gypsum plaster has the advantages that the performance such as the compressive strength, the fracture strength, the water retaining rate and the bonding strength of the gypsum plaster is increased by adding the graphene, the service life of the gypsum plaster is prolonged, and the use stability of the gypsum plaster is increased.
Owner:温州月煌科技有限公司

Method for preparing phosphate functional monomer by P2O5 dispersion method and application

The invention discloses a method for preparing a phosphate functional monomer by a P2O5 dispersion method and application. The invention relates to a method for synthesizing a phosphate functional monomer by feeding a polymerizable unsaturated organic compound dispersed P2O5, wherein a polymerizable unsaturated organic compound dispersing agent used in a synthesis process can participate in a subsequent polymerization reaction, thereby solving the problems of difficult separation and recovery of a low-boiling-point and toxic organic solvent adopted in a preparation process of an existing phosphate functional monomer and environmental pollution, and simultaneously simplifying the synthesis route of the phosphate functional monomer. The invention also discloses a method for preparing a high-performance polycarboxylate superplasticizer by taking a phosphate functional monomer solution with a polymerizable unsaturated organic compound as a solvent as a third monomer of a polycarboxylate superplasticizer, so that the problem of contradiction between dispersion capacity and slump retention capacity of an existing polycarboxylate superplasticizer is solved, and a method for preparing a high-performance polycarboxylate superplasticizer with high dispersion and slump retention capacity and strong cement adaptability is provided.
Owner:贵州中兴南友建材有限公司

Self-compacting C120 premixed dry concrete and preparation method thereof

The invention provides self-compacting C120 premixed dry concrete and a preparation method thereof, and belongs to the technical field of concrete materials. The self-compacting C120 premixed dry concrete is prepared from the following components in parts by weight: 480-550 parts of Portland cement, 40-55 parts of coarse aggregate, 70-80 parts of steel fiber, 470-550 parts of fine aggregate, 11-15parts of admixture and 145-190 parts of mineral admixture. According to the premixed dry material concrete prepared by the invention, the compressive strength is not lower than 120MPa, the breaking strength is not lower than 20MPa and the axial tensile strength is not lower than 8MPa after 28d, and after the premixed dry material concrete is transported to a construction site and is directly mixed with water, the self-compaction and vibration-free functions can be realized immediately after discharging, and the premixed dry material concrete has high strength and durability.
Owner:YICHUN UNIVERSITY

Viscosity-reducing type polycarboxylic acid water reducing agent preparation method

The invention discloses a viscosity-reducing type polycarboxylic acid water reducing agent preparation method, which comprises: (1) preparing an esterification monomer; (2) carrying out a copolymerization reaction; and (3) carrying out a neutralization reaction. According to the present invention, the viscosity-reducing type polycarboxylic acid water reducing agent is prepared by co-polymerizing 2-allyloxyethanol, a blend, VPEG, 2-methacryloyloxyethyl phosphorylcholine and an unsaturated acid, such that the phosphate radical, the carboxylate radical, the quaternary ammonium salt and the estergroup are introduced into the molecular structure of the polymer while the polymer structure is lightly cross-linked, wherein the product obtained by the esterification of the single carboxy in 2-phosphonobutane-1,2,4-tricarboxylicacid prepared by a 2-phosphonobutane-1,2,4-tricarboxylicacid esterification reaction, the product obtained by the esterification of the two carboxy in a small amount of2-phosphonobutane-1,2,4-tricarboxylicacid and the product obtained by the esterification of the three carboxy in a small amount of 2-phosphonobutane-1,2,4-tricarboxylicacid form the blend; and the prepared viscosity-reducing type polycarboxylic acid water reducing agent has advantages of viscosity reducing, water reducing, slump retaining and mud resistance, and can solve the problems of high viscosity, poor workability and rapid loss due to the high mud content in the current concrete raw materials.
Owner:KZJ NEW MATERIALS GROUP CO LTD +1
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