D06M11/83

SYNTHETIC MATERIAL FABRIC WITH IMPROVED OPTICAL TRANSPARENCY EFFECT
20230043798 · 2023-02-09 ·

A fabric formed by an interweaving of monofilaments (2) of synthetic material and which has two opposite metalized faces, in which at least one of said faces has at least one color (5) which determines the level of transparency.

Compared to the known fabrics for making transparent panels for the building sector, the fabric according to the invention offers the advantage of allowing control of the level of transparency to light, depending on the color applied to the metalized surface of the fabric.

SYNTHETIC MATERIAL FABRIC WITH IMPROVED OPTICAL TRANSPARENCY EFFECT
20230043798 · 2023-02-09 ·

A fabric formed by an interweaving of monofilaments (2) of synthetic material and which has two opposite metalized faces, in which at least one of said faces has at least one color (5) which determines the level of transparency.

Compared to the known fabrics for making transparent panels for the building sector, the fabric according to the invention offers the advantage of allowing control of the level of transparency to light, depending on the color applied to the metalized surface of the fabric.

METHOD FOR THERMALLY DRAWING NANOCOMPOSITE-ENABLED MULTIFUNCTIONAL FIBERS

A method of thermally drawing fibers containing continuous crystalline metal nanowires therein includes forming a preform comprising an inner core and an outer cladding, wherein at least one of the core and cladding has nanoelements dispersed therein. The preform is drawn through a heated zone to form a reduced size fiber. A second preform is then created from a plurality of fibers created from the reduced size fiber. The second preform is then drawn through the heated zone to form an elongated fiber containing continuous crystalline metallic nanowires therein having a maximum cross-sectional dimension of less than 100 nm. Optionally, a third or additional preforms are created from fibers made from the previous thermal drawing operation that are then drawn through the heated zone to form a fiber containing even smaller crystalline metal continuous nanowires therein. In some embodiments, only a single pass through the heated zone may be needed.

METHOD FOR THERMALLY DRAWING NANOCOMPOSITE-ENABLED MULTIFUNCTIONAL FIBERS

A method of thermally drawing fibers containing continuous crystalline metal nanowires therein includes forming a preform comprising an inner core and an outer cladding, wherein at least one of the core and cladding has nanoelements dispersed therein. The preform is drawn through a heated zone to form a reduced size fiber. A second preform is then created from a plurality of fibers created from the reduced size fiber. The second preform is then drawn through the heated zone to form an elongated fiber containing continuous crystalline metallic nanowires therein having a maximum cross-sectional dimension of less than 100 nm. Optionally, a third or additional preforms are created from fibers made from the previous thermal drawing operation that are then drawn through the heated zone to form a fiber containing even smaller crystalline metal continuous nanowires therein. In some embodiments, only a single pass through the heated zone may be needed.

PERSONAL PROTECTIVE EQUIPMENT
20230233847 · 2023-07-27 ·

The present invention relates to anti-microbial, antiviral, fibers, and fabrics and to devices made from said fabrics. The invention has particular utility in connection with personal protective equipment (PPE’s) such as surgical masks and respirators, and will be described in connection with such utilities, although other utilities are contemplated, including, for example for forming air handling filters for people movers, i.e., automobiles, trucks, buses, trains, ships and planes, as well as for forming filters for air handling equipment for buildings.

PERSONAL PROTECTIVE EQUIPMENT
20230233847 · 2023-07-27 ·

The present invention relates to anti-microbial, antiviral, fibers, and fabrics and to devices made from said fabrics. The invention has particular utility in connection with personal protective equipment (PPE’s) such as surgical masks and respirators, and will be described in connection with such utilities, although other utilities are contemplated, including, for example for forming air handling filters for people movers, i.e., automobiles, trucks, buses, trains, ships and planes, as well as for forming filters for air handling equipment for buildings.

ARTICLE WITH PATHOGEN INHIBITING TREATMENT
20230233722 · 2023-07-27 ·

A substrate with a pathogen inhibiting treatment. The substrate comprising a first coating of an inorganic material. The inorganic material being applied to the substrate via a vapour deposition process. A second coating applied at an upper surface of the first coating, and wherein the second coating is at least one of a protective coating for the first coating and a functional coating.

ARTICLE WITH PATHOGEN INHIBITING TREATMENT
20230233722 · 2023-07-27 ·

A substrate with a pathogen inhibiting treatment. The substrate comprising a first coating of an inorganic material. The inorganic material being applied to the substrate via a vapour deposition process. A second coating applied at an upper surface of the first coating, and wherein the second coating is at least one of a protective coating for the first coating and a functional coating.

A METHOD FOR FABRICATING CONDUCTIVE YARNS AND FABRICS AT ROOM TEMPERATURE
20230235501 · 2023-07-27 ·

A method of fabricating a conductive yarn comprising a plurality of filaments, the method comprising the steps of: (a) applying a reducing agent solution to the treated surface; and (b) applying a metal ion solution to the treated at least one of the lurality of filaments. The method comprising a further step of treating the surface of the at least one of the plurality of filaments with a hydrophilic agent before performing steps (a) and (b).

A METHOD FOR FABRICATING CONDUCTIVE YARNS AND FABRICS AT ROOM TEMPERATURE
20230235501 · 2023-07-27 ·

A method of fabricating a conductive yarn comprising a plurality of filaments, the method comprising the steps of: (a) applying a reducing agent solution to the treated surface; and (b) applying a metal ion solution to the treated at least one of the lurality of filaments. The method comprising a further step of treating the surface of the at least one of the plurality of filaments with a hydrophilic agent before performing steps (a) and (b).