Abstract:
The invention aims to improve the manufacture of flexible goods, such as garments, through the temporary modification of the physical properties of the components to be assembled, facilitating their handling and manipulation later on in the manufacturing process. Attributes that can be affected by this process are the stiffness of the material, the presence of mechanical or physical markings, the density of the material, the air or fluid permeability of the material, the responsiveness of the material to magnetic fields, or the adhesive nature of the material.
Abstract:
An absorbent article comprising a liquid permeable nonwoven topsheet, a nonwoven second material that is a separate material from the topsheet, a liquid impermeable backsheet, and an absorbent core positioned intermediate the second material and the backsheet. The second material is positioned intermediate the topsheet and absorbent core. The topsheet is nested with the second material to form a nested laminate comprising a plurality of recesses and a plurality of raised areas. Voids are defined in the raised areas under the second material. A first aperture is formed in a substantially central location of the raised areas. The recesses each form a base positioned most distal from the substantially central locations of the raised areas. A second aperture is formed in the bases of the recesses. The first and second apertures extend through both the topsheet and second material.
Abstract:
A non-woven web including: a first surface area of the web including hydro-embossments and devoid of thermo-embossments, wherein the first surface area covers five to ninety-five percent of a total surface area of the non-woven web, and a second surface area of the web including thermo-embossments and devoid of hydro-embossments, wherein the second surface area covers at least two percent of the total surface area of the non-wove web and wherein the first surface area does not overlap the second surface area.
Abstract:
The invention aims to improve the manufacture of flexible goods, such as garments, through the temporary modification of the physical properties of the components to be assembled, facilitating their handling and manipulation later on in the manufacturing process. Attributes that can be affected by this process are the stiffness of the material, the presence of mechanical or physical markings, the density of the material, the air or fluid permeability of the material, the responsiveness of the material to magnetic fields, or the adhesive nature of the material.
Abstract:
An embossing and texturizing system for imparting a natural cloth-like surface to a flexible thermoplastic material or film simultaneously to either or both of its two exterior surfaces, through the use of a device and technique combining metal rolls, metal and rubber rolls, and embossing and texturizing fabric rolls into an embossing system creating the desired visual and tactile feel of natural fabrics as well as additional performance characteristics. The embossing and texturizing system embosses and texturizes the exterior surface of the flexible thermoplastic material or film by selectively altering the exterior surface, and therefore, the film can be embossed simultaneously on either or both of its two exterior surfaces (face and reverse). The use of the embossing and texturizing mechanism and its alignment to the core and stabilizing reinforcing substrate enables the exterior texturized surface and the bottom side exterior texturized surface to be identical in all manner.
Abstract:
An embossing and texturizing system capable of imparting a natural cloth-like surface to a flexible thermoplastic material or film simultaneously to either or both of its two exterior surfaces, through the use of a unique device and technique combining metal rolls, metal and rubber rolls, and embossing and texturizing fabric rolls into an embossing system creating the desired visual and tactile feel of natural fabrics as well as additional performance characteristics. The embossing and texturizing system embosses and texturizes the exterior surface of the flexible thermoplastic material or film by selectively altering the exterior surface, and therefore, the film can be embossed simultaneously on either or both of its two exterior surfaces (face and reverse) without necessitating major interruption or adjustment of the system. The use of the embossing and texturizing mechanism and its alignment to the core and stabilizing reinforcing substrate enables the exterior texturized surface and the bottom side exterior texturized surface to be identical in all manner.
Abstract:
A nonwoven fabric that is easily deformed but resistant to collapse, and that has excellent air permeability in the planar direction. The nonwoven fabric comprises continuous fibers and bonded sections formed by bonding multiple fibers including the continuous fibers, wherein the nonwoven fabric comprises a first side and a second side on the side opposite the first side, the first side comprises a plurality of projections, each projection including at least one bonded section, a plurality of projections including no bonded section, and at least one recess, the second side comprises a plurality of recesses, each recess overlapping with at least a part of the projection of the first side, and the coefficient of variation of the diameters of the continuous fibers is at least 10%.
Abstract:
Sail membrane preferably made of a woven fabric of synthetic fibers, with said membrane having a microroughness in the form of parallelly extending grooves arranged so as to achieve a density of 5 to 25 grooves/mm deposited on or integrated into said membrane surface.
Abstract:
The present invention provides a method for manufacturing embossed conductive cloth, which comprises the steps of (a) providing cloth made of natural fibers or artificial fibers; (b) embossing the cloth to form embossed patterns on it; (c) subjecting the cloth with embossed patterns to a surface roughening treatment while maintaining the embossed patterns on the cloth; and (d) subjecting the surface-roughened cloth to a surface metalizing treatment.The embossed conductive cloth obtained from the method of the present invention has excellent metal adhesion.
Abstract:
A method for forming a texture patterned fabric by selectively printing a corresponding pattern of heat absorbing fluid to the greige fabric to form zones of differential heat absorption capacity across the fabric. The differential heat absorption properties across the fabric are then used to selectively heat shrink yarns surrounding locations of fluid application.