Abstract:
The present invention relates to a color-coated fouling-resistant conductive cloth and a manufacturing method thereof. The method includes the steps of providing a conductive cloth interwoven by natural fibers or artificial fibers and containing a metal layer, and forming at least one colored resin-coating layer on the metal layer of the conductive cloth by means of blade coating, wherein the surface of the resin-coating layer does not exceed the intersections of warp yarns and weft yarns of the conductive cloth. The conductive cloth of the present invention has the characteristics of colored appearance, artificial or environmental contamination resistance, and low surface resistance.
Abstract:
The present invention provides a conductive fabric comprising base cloth and a conductive metallic circuit structure formed on the surface of the base cloth. The conductive metallic circuit structure comprises at least one metallic seed layer and at least one chemical-plating layer. The metallic seed layer is an evaporation-deposition layer or a sputter-deposition layer and has a circuit pattern. The chemical-plating layer is applied over the surface of the metallic seed layer. The conductive fabric has improved conductivity and heat generation efficiency.
Abstract:
The present invention provides a conductive fabric comprising base cloth and a conductive metallic circuit structure formed on the surface of the base cloth. The conductive metallic circuit structure comprises at least one metallic seed layer and at least one chemical-plating layer. The metallic seed layer is an evaporation-deposition layer or a sputter-deposition layer and has a circuit pattern. The chemical-plating layer is applied over the surface of the metallic seed layer. The conductive fabric has improved conductivity and heat generation efficiency.
Abstract:
A unilateral sweat-absorbing quick-drying fabric includes a hydrophilic base having an inner surface and an outer surface and a plurality of hydrophobic patterns embedded in the inner surface, wherein the hydrophilic base includes fiber material, and the hydrophobic patterns are configured to transfer sweat absorbed by the hydrophilic base from the inner surface to the outer surface by unilateral capillary action. A method for preparing the unilateral sweat-absorbing quick-drying fabric is characterized by embedding a plurality of hydrophobic patterns in an inner surface of a hydrophilic base including fiber material, wherein the hydrophobic patterns are configured to transfer sweat absorbed by the hydrophilic base from the inner surface to an outer surface of the hydrophilic base by unilateral capillary action.
Abstract:
A unilateral sweat-absorbing quick-drying fabric includes a hydrophilic base having an inner surface and an outer surface and a plurality of hydrophobic patterns embedded in the inner surface, wherein the hydrophilic base includes fiber material, and the hydrophobic patterns are configured to transfer sweat absorbed by the hydrophilic base from the inner surface to the outer surface by unilateral capillary action. A method for preparing the unilateral sweat-absorbing quick-drying fabric is characterized by embedding a plurality of hydrophobic patterns in an inner surface of a hydrophilic base including fiber material, wherein the hydrophobic patterns are configured to transfer sweat absorbed by the hydrophilic base from the inner surface to an outer surface of the hydrophilic base by unilateral capillary action.
Abstract:
The invention relates to a synthetic fiber fabric having translucent printing (dyeing) patterns thereon. The invention also relates to a process for producing a synthetic fiber fabric having translucent printing (dyeing) patterns thereon, which includes a printing step prior to an etching step, wherein the printing step includes printing a paste for dyeing and/or printing containing a transparent printing developer onto a surface of the fabric.
Abstract:
The present invention provides a fabric having soil resistance and no oil stains after wiping and a manufacturing method thereof. The fabric of the present invention comprises an underlayer and a soil-resistant protection film, which can effectively prevent oil corrosion, penetration, and permeation of the surface of the fabric, thus resulting in no oil stains after wiping. The manufacturing method of the present invention comprises the steps of dyeing, setting, performing an underlayer surface treatment to form an underlayer on a surface of the fabric, and performing a soil resistance processing treatment to form a soil-resistant protection film on the surface of the underlayer.
Abstract:
The present invention relates to a color-coated fouling-resistant conductive cloth and a manufacturing method thereof. The method includes the steps of providing a conductive cloth interwoven by natural fibers or artificial fibers and containing a metal layer, and forming at least one colored resin-coating layer on the metal layer of the conductive cloth by means of blade coating, wherein the surface of the resin-coating layer does not exceed the intersections of warp yarns and weft yarns of the conductive cloth. The conductive cloth of the present invention has the characteristics of colored appearance, artificial or environmental contamination resistance, and low surface resistance.
Abstract:
The present invention relates to a method of manufacturing an ultra-thin soft conductive cloth, which includes the steps of providing a cloth interwoven with artificial fibers, thermal calendering the cloth at least once to reduce the thickness and increase the softness, and electroless plating the thermal calendered cloth for metallization, so as to form the ultra-thin soft conductive cloth having electromagnetic shielding effect.
Abstract:
The subject invention relates to a method of preparing fabrics having a lotus leaf effect. The subject invention also relates to fabrics having a lotus leaf effect.