B29K2035/00

A METHOD OF ATTACHING AT LEAST TWO PIECES OF FABRIC AND A FOOTWEAR COMPRISING A MEMBRANE
20240049820 · 2024-02-15 ·

A method of attaching at least two pieces of fabric in a waterproof fabric product. The at least two pieces of fabric are attached at a seam. The seam subsequently is sealed by application of a sealing tape. The method includes attaching the at least two pieces of fabric to each other by a welding process to form a welded seam, and performing the sealing by applying the sealing tape to cover the welded seam at one side of the fabric. A waterproof fabric product that has been produced using the method of attaching at least two pieces of fabric. A footwear includes a membrane including at least two pieces of fabric that are attached at a seam.

A METHOD OF ATTACHING AT LEAST TWO PIECES OF FABRIC AND A FOOTWEAR COMPRISING A MEMBRANE
20240049820 · 2024-02-15 ·

A method of attaching at least two pieces of fabric in a waterproof fabric product. The at least two pieces of fabric are attached at a seam. The seam subsequently is sealed by application of a sealing tape. The method includes attaching the at least two pieces of fabric to each other by a welding process to form a welded seam, and performing the sealing by applying the sealing tape to cover the welded seam at one side of the fabric. A waterproof fabric product that has been produced using the method of attaching at least two pieces of fabric. A footwear includes a membrane including at least two pieces of fabric that are attached at a seam.

Surface-modification of printed objects

Three dimensional printed objects having surface coatings, such as a hydrophobic coating or metalized surface, 3D printed substrates having an outer surface that can be tuned by application of such a coating, and methods for the fabrication of such objects and substrates are described. A surface initiator is incorporated into the 3D substrate during layer-by-layer printing, and the surface coated by surface-initiated atom transfer radical polymerization (SI-ATRP).

Process for the continuous preparation of water-absorbent polymers

The invention relates generally to a process for the preparation of water-absorbent polymer particles, comprising the process steps including of drying the polymer gel particles wherein in process step (viii) the gel particles obtained in process step (vii) are charged onto the surface of the belt material of a belt dryer at a position L.sub.0 and are subsequently dried on their way through the belt dryer and wherein the belt material has been cooled before coming into contact with the gel particles. The invention also relates to water-absorbent polymer particles obtainable by such a process.

Three-Dimensional Printing Processes Using 1,1-Di-Activated Vinyl Compounds

A process for producing an article by three-dimensional printing includes applying a 1,1-di-activated vinyl compound-containing liquid binder over a predetermined area of a layer of solid particles. The liquid binder infiltrates gaps between the solid particles to form a first cross-sectional layer of an article, and the 1,1-di-activated vinyl compound reacts to solidify the liquid binder and bind the solid particles in the first cross-sectional layer of the article. Also provided is an article produced by the three-dimensional printing process, set forth herein.

THERMOSETTING COMPOSITION, METHOD FOR PRODUCING MOLDED ARTICLE USING THE SAME, AND CURED PRODUCT

A thermosetting composition comprising: (A) a di(meth)acrylate compound having a structural unit represented by the formula (A1), (B) a thermal polymerization initiator, and (E) an inorganic filler.

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MALEIMIDE-BASED COPOLYMER AND RESIN COMPOSITION
20240279372 · 2024-08-22 · ·

A maleimide-based copolymer containing: 40% to 65% by mass of an aromatic vinyl-based monomer unit; and 35% to 60% by mass of a maleimide-based monomer unit, in which a residual amount of an aromatic vinyl-based monomer is 200 to 2000 ppm by mass, and a residual amount of a maleimide-based monomer is 30 to 400 ppm by mass.

COMPOSITION FOR THE PREPARATION OF A NANOSTRUCTURED BIODEGRADABLE POLYMERIC MATERIAL, THE MATERIAL OBTAINED AND ITS APPLICATIONS

The composition comprises a mixture of: i) poly(L-, D-lactide) homopolymer and, optionally, poly(-caprolactone) homopolymer, and ii) poly(L-lactide) and poly(-caprolactone) diblock copolymer, where said copolymer has a molar mass of the L-lactide block of 20,000 g/mol to 200,000 g/mol and a molar mass of the -caprolactone block of 10,000 g/mol to 100,000 g/mol, with the molar ratio between the L-lactide block and the -caprolactone block of 2:1. The invention also refers to the nanostructured material obtained from this composition that is characterised by a nanostructure of two mutually self-assembled phases, one phase being formed by a polymeric matrix of poly(L-, D-lactide) units and the other phase by poly(-caprolactone) units self-assembled with the matrix and also its use for the manufacture of a plastic article in the form of a transparent film or thin sheet.

METHACRYLIC RESIN COMPOSITION FOR INJECTION MOLDING OR EXTRUSION MOLDING, RESIN MOLDED BODY, AND METHOD FOR PRODUCING SAME
20240308119 · 2024-09-19 · ·

A methacrylic resin composition for injection molding or extrusion molding comprising a component (A), a component (B), and a component (C) below, wherein a ratio denoted by [mass of component (C)]/[mass of component (B)] is 0.01 to 50, component (A): an acrylic resin having a mass average molecular weight of less than 200,000 component (B): at least one selected from a fatty acid, a fatty acid derivative, and a fatty alcohol component (C): a methacrylic polymer having a mass average molecular weight of 200,000 or more.

SOLIDIFICATION- AND EXTRUSION-MOLDED ARTICLE OF POLYGLYCOLIC ACID AND METHOD FOR MANUFACTURING SAME
20180222103 · 2018-08-09 · ·

Provided are: a polyglycolic acid (PGA) solidification- and extrusion-molded article that is formed from a resin material containing PGA, the PGA having a weight average molecular weight of 100,000 to 300,000 and a melt viscosity (temperature: 270 C.; shearing speed: 120 sec.sup.1) of 100 to 2,000 Pa.Math.s, and that has a tensile strength at a temperature of 150 C. of 20 to 200 MPa; a downhole tool or component thereof for drilling and completion of petroleum recovery formed by machining the solidification- and extrusion-molded article; an isolation plug provided with the component; an isolation plug mandrel; and a method for manufacturing the PGA solidification- and extrusion-molded article and a method for manufacturing the downhole tool or component thereof that comprise the steps of: supplying the resin material to an extruder (preferably from a fixed-quantity feeder); and after solidification- and extrusion-molding, pressurizing the solidification- and extrusion-molded article, and drawing the same while applying back pressure thereto in a direction of a forming die to suppress the expansion of the solidified and extruded matter.