B32B2262/023

Fibrous Structures with Improved Surface Properties

Fibrous structures that exhibit improved surface properties, for example lower Force Variability Values as measured by the Glide on Skin Test Method described herein, compared to known fibrous structures, sanitary tissue products comprising such fibrous structures and method for making such fibrous structures are provided.

Fibrous Structures with Improved Surface Properties

Fibrous structures that exhibit improved surface properties, for example lower Force to Drag Values as measured by the Glide on Skin Test Method described herein, compared to known fibrous structures, sanitary tissue products comprising such fibrous structures and method for making such fibrous structures are provided.

Fibrous Structures with Improved Surface Properties

Fibrous structures that exhibit improved surface properties, for example lower Force Variability Values and lower Force to Drag Values as measured by the Glide on Skin Test Method described herein, compared to known fibrous structures, sanitary tissue products comprising such fibrous structures and method for making such fibrous structures are provided.

Layered Fibrous Structures with Inter-Layer Voids

Layered, and optionally dispersible fibrous structures containing fibrous elements that exhibit inter-layer voids between two or more layers within the fibrous structures, sanitary tissue products employing such layered, optionally dispersible fibrous structures, and methods for making same are provided.

Apparatus and method for forming retaining elements by forming
11426905 · 2022-08-30 · ·

A method of forming a retaining device with hooks, wherein: a molding strip is provided that presents an inside face and an outside face, and that has a plurality of cavities, each cavity defining a stem extending from the outside face towards the inside face and including an end forming a head that extends from the stem towards the inside face of the molding strip; and the molding strip is positioned on rotary drive means, comprising at least two rollers, the inside face of the molding strip being arranged to bear against the drive means.

CLOTH HAVING GAS SHEET
20170217119 · 2017-08-03 ·

In one aspect, there is provided a fabric containing gas therein, the fabric comprising a weave between warps and wefts, wherein each warp includes an elongate array of a plurality of individual gas cells, wherein neighboring gas cells are physically coupled to each other via a connection, wherein the connection is monolithic with the gas cells, and each cell contains the gas therein.

FLAME-RESISTANT LAYERED MOLDED ARTICLE

The present invention is a flame-resistant layered molded article in which one surface of a fiber sheet material containing at least infusible fibers A, particularly a fiber sheet material containing infusible fibers A and thermoplastic fibers B, is exposed to the outside of a molded article, and in which at least a part of the other surface side is joined to a thermoplastic resin C forming a molded article body. As a flame-resistant layered molded article, the present invention can realize to exhibit the high flame resistance and flame-shielding property that are required, and to ensure the desired strength and stiffness and good moldability that are required overall.

WATERPROOF AND MOISTURE PERMEABLE FABRIC, AND MANUFACTURING METHOD THEREFOR
20170266919 · 2017-09-21 ·

Provided is a breathable waterproof fabric including: a fabric substrate; a surface modified layer formed on a bonding surface of the fabric substrate; a dot adhesive member transferred to the surface modified layer; and a membrane bonded to the fabric substrate by the dot adhesive member.

HEAT-INSULATION SHEET, ELECTRONIC DEVICE USING SAME, AND METHOD FOR PRODUCING HEAT-INSULATION SHEET
20170266920 · 2017-09-21 ·

A heat-insulation sheet includes a first silica xerogel layer, a second silica xerogel layer, and a composite layer. The first silica xerogel layer includes a first silica xerogel, and the second silica xerogel layer includes a second silica xerogel. The composite layer is located between the first silica xerogel layer and the second silica xerogel layer, and includes at least one type of unwoven fabric fibers, and a third silica xerogel. The third silica xerogel is located in a spatial volume of the unwoven fabric fibers.

BEAUTY SHEET AND METHOD FOR MANUFACTURING SAME

Provided are a cosmetic sheet including: a cosmetic layer configured in the form of a nanofiber web and melted by moisture by electrospinning a water-soluble polymer material and a functional material together; and a moisture retaining layer separably attached to the cosmetic layer and retaining the moisture of the cosmetic layer when wearing the cosmetic layer on the face and performing outdoor activities, to thus prevent moisture from drying out during the time the cosmetic layer is absorbed into the skin, when wearing the cosmetic sheet on the face and taking outdoor activities.