D06M13/453

SIMULTANEOUSLY DYEING AND FLAME-RETARDANT FINISHING METHOD FOR POLYESTER BASED TEXTILE
20230101712 · 2023-03-30 · ·

Provided by the present invention is a method for simultaneously dyeing and flame-retardant finishing a polyester-based fiber product, which is excellent regarding dyeing reproducibility, the method including immersing and heating a polyester-based fiber product in a processing bath containing a specific yellow disperse dye and a phosphoramidate represented by Formula (V):

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FLAME RETARDANT AID, FLAME RETARDING AGENT COMPOSITION, AND METHOD FOR PRODUCING FLAME-RETARDANT FIBER FABRIC
20200332131 · 2020-10-22 ·

A flame retardant aid includes an amphoteric polymer compound having at least one of a specific cationic unit such as allylamine, and an anionic unit such as maleic acid, and a flame retarding agent composition including the flame retardant aid. A method of producing a flame-retardant fiber fabric includes treating a polyester fiber fabric using a flame retardant aid including a flame retardant component and the above amphoteric polymer compound, and drying the polyester fiber fabric.

Antimony free brominated flame retardant system for textiles
11898304 · 2024-02-13 · ·

The present invention teaches an antimony free brominated flame retardant composition, comprising a brominated flame retardant, an organic phosphorus-containing flame retardant which is an organic phosphate that is either an amorphous solid or a liquid, and a flame retardant which is a source of nitrogen and inorganic phosphorus, this source being amorphous compound. The invention further teaches textile coating formulations comprising these compositions, a process for applying them on textile fabrics, and the flame retarded fabrics coated by these compositions and formulations.

Antimony free brominated flame retardant system for textiles
11898304 · 2024-02-13 · ·

The present invention teaches an antimony free brominated flame retardant composition, comprising a brominated flame retardant, an organic phosphorus-containing flame retardant which is an organic phosphate that is either an amorphous solid or a liquid, and a flame retardant which is a source of nitrogen and inorganic phosphorus, this source being amorphous compound. The invention further teaches textile coating formulations comprising these compositions, a process for applying them on textile fabrics, and the flame retarded fabrics coated by these compositions and formulations.

FABRIC AND METHOD FOR MANUFACTURING THE SAME

Provided is a fabric that has excellent stain resistance and excellent flame retardancy and that is less likely to generate water spots and is less likely to cause pieces thereof to attach to each other, and a method of manufacturing the fabric. The fabric according to the present invention is a polyester fabric impregnated with a fluorinated water-and-oil repellent agent and includes a coating layer on one surface thereof, the coating layer containing a fluorinated water-and-oil repellent agent, an organic phosphorus flame retardant having a solubility in water at 20 C. of 4% or less, and an acrylic resin having a glass-transition temperature of 43 C. to 20 C.

FABRIC AND METHOD FOR MANUFACTURING THE SAME

Provided is a fabric that has excellent stain resistance and excellent flame retardancy and that is less likely to generate water spots and is less likely to cause pieces thereof to attach to each other, and a method of manufacturing the fabric. The fabric according to the present invention is a polyester fabric impregnated with a fluorinated water-and-oil repellent agent and includes a coating layer on one surface thereof, the coating layer containing a fluorinated water-and-oil repellent agent, an organic phosphorus flame retardant having a solubility in water at 20 C. of 4% or less, and an acrylic resin having a glass-transition temperature of 43 C. to 20 C.

Synthetic fiber finish and application thereof

A synthetic fiber finish includes a lubricant (A), a polyhydric alcohol fatty acid ester having at least one hydroxyl group per molecule (B), and an organic sulfonic acid compound (C). The lubricant (A) includes a sulfur-containing ester (A3). The amount of the lubricant (A) ranges from 50 to 90 wt %, the amount of the ester (B) ranges from 1 to 20 wt % and the amount of the sulfur-containing ester (A3) ranges from 5 to 20 wt %, to a nonvolatile component of the finish.

ANTIMONY FREE BROMINATED FLAME RETARDANT SYSTEM FOR TEXTILES
20180135239 · 2018-05-17 ·

The present invention teaches an antimony free brominated flame retardant composition, comprising a brominated flame retardant, an organic phosphorus-containing flame retardant which is an organic phosphate that is either an amorphous solid or a liquid, and a flame retardant which is a source of nitrogen and inorganic phosphorus, this source being amorphous compound. The invention further teaches textile coating formulations comprising these compositions, a process for applying them on textile fabrics, and the flame retarded fabrics coated by these compositions and formulations.

ANTIMONY FREE BROMINATED FLAME RETARDANT SYSTEM FOR TEXTILES
20180135239 · 2018-05-17 ·

The present invention teaches an antimony free brominated flame retardant composition, comprising a brominated flame retardant, an organic phosphorus-containing flame retardant which is an organic phosphate that is either an amorphous solid or a liquid, and a flame retardant which is a source of nitrogen and inorganic phosphorus, this source being amorphous compound. The invention further teaches textile coating formulations comprising these compositions, a process for applying them on textile fabrics, and the flame retarded fabrics coated by these compositions and formulations.

Emulsifier for solubilizing polar solvents in oils and polyols
09889417 · 2018-02-13 · ·

The present disclosure is directed to compositions having lecithin, a plasticizer, and an emulsifier. The composition may be used solubilize polar solvents in non-polar liquids. Methods of producing and using the compositions disclosed herein are also disclosed.