B32B38/1858

Textured nonwoven laminate
11123949 · 2021-09-21 · ·

A textured laminate that contains a coform nonwoven web formed from a matrix of synthetic fibers and an absorbent material is provided. The coform web is positioned adjacent to a cellular film that includes a plurality of cavities encapsulating a gas (e.g., air). By selectively controlling various aspects of the coform web, film, and the particular manner in which the film and coform web are laminated together, the present inventors have discovered that the resulting laminate can achieve an increased bulk that remains relatively stable even in a wet condition. Thus, the resulting laminate can be readily employed in a wet wipe without losing its bulk and overall texture.

SYSTEM AND APPARATUS FOR LAMINATING OPTICAL FILM
20210268788 · 2021-09-02 ·

The present invention relates to an optical film laminating system for laminating an optical film on a panel in order to manufacture a display unit wherein a control unit which sets, in accordance with attachment conditions, an optical film laminating mode in respect to the panel to at least one of a first mode in which the panel and the optical film are inputted together between a first roller unit and a second roller unit so that the optical film is laminated on the panel, and a second mode in which the second panel conveying unit holds the panel by suction and conveys the panel and the optical film is inputted between the panel and an attachment roller unit, which is any one of the first roller unit and the second roller unit, so that the optical film is laminated on the panel.

METHOD FOR PRODUCING POLYMER COATED STEEL SHEET FOR 3-PIECE CANS AND USE THEREFOF

A method for producing polymer coated steel sheet for 3-piece cans and 3-piece cans produced thereof.

FILM COATING APPARATUS AND FILM COATING METHOD
20210229372 · 2021-07-29 ·

A film coating apparatus and a film coating method for improving the adhesion of a thin film and a substrate are provided. The substrate fixing device has an arched surface for fixing the substrate. The thin film bearing device has a bearing surface opposite to the arched surface and being detachably disposed to the bearing surface. The press roll is located at a side of the thin film away from the substrate fixing device, and may move towards the substrate and roll from one end of the thin film to the other end.

Method and apparatus for assembling absorbent articles

The present disclosure relates to assembling elastic laminates that may be used to make absorbent article components. Methods herein may include an anvil adapted to rotate about an axis of rotation, wherein first and second spreader mechanisms adjacent the anvil roll are axially and angularly displaced from each other with respect to the axis of rotation. During the assembly process, a substrate may be advanced in a machine direction onto the rotating anvil. The first spreader mechanism stretches a first elastic material in the cross direction, and the second spreader mechanism stretches a second elastic material in the cross direction. The stretched first and second elastic materials advance from the spreader mechanisms and onto the substrate on the anvil roll. The combined and elastic materials may then be ultrasonically bonded together on the anvil to form at least one elastic laminate.

Elastic laminates and methods for assembling elastic laminates for absorbent articles

The present disclosure relates to elastic laminates and methods for assembling elastic laminates that may be used to make absorbent article components. Elastic laminates may include one or more reinforcement layers positioned between unstretched portions of elastic materials and substrates to which the elastic materials are bonded.

METHOD FOR MANUFACTURING AUTOMOTIVE ORNAMENT

A method for manufacturing an automotive ornament is provided, and the method includes following steps. A light-transmitting element is provided. At least one opening running through at least part of the light-transmitting element is formed. A sputtering layer is formed by a sputtering process using a sputtering device, where the sputtering layer is located in the at least one opening to form an ornament unit.

Method and apparatus for an insulating glazing unit and compliant seal for an insulating glazing unit

A vacuum insulating glazing unit (VIGU) comprises two or more glass lites (panes) spaced apart from one another and hermetically bonded to an edge seal assembly therebetween. The resulting cavity between the lites is evacuated to create at least one insulating vacuum cavity within which are disposed a plurality of stand-off members to maintain separation between the lites. The edge seal assembly is preferably compliant in the longitudinal (i.e., edgewise) direction to allow longitudinal relative motion between the two lites (e.g., from thermal expansion). The longitudinal compliance may be obtained by imprinting a three-dimensional pattern into the edge seal material. The edge seal assembly is preferably bonded to the lites with a first bond portion that is hermetic and a second bond portion that is load-resistant. Methods for producing VIGUs and/or compliant edge seal assemblies and VIGU and edge seal apparatus are disclosed.

METHODS AND APPARATUSES FOR ASSEMBLING ELASTIC LAMINATES WITH DIFFERENT BOND DENSITIES FOR ABSORBENT ARTICLES

The methods herein relate to assembling an elastic laminate with a first elastic material and a second elastic material bonded between first and second substrates. During assembly, an elastic laminate may be formed by positioning the first and second substrates in contact with stretched central regions of the first and second elastic materials. The elastic laminates may include two or more bonding regions that may be defined by the various layers or components of the elastic laminate that are laminated or stacked relative to each other. In some configurations, a first plurality of ultrasonic bonds are applied to the elastic laminate to define a first bond density in the first bonding region, and a second plurality of ultrasonic bonds are applied to the elastic laminate to define a second bond density in the second bonding region, wherein the second bond density is not equal to the first bond density.

METHODS AND APPARATUSES FOR ASSEMBLING ELASTIC LAMINATES WITH DIFFERENT BOND DENSITIES FOR ABSORBENT ARTICLES

The methods herein relate to assembling an elastic laminate with a first elastic material and a second elastic material bonded between first and second substrates. During assembly, an elastic laminate may be formed by positioning the first and second substrates in contact with stretched central regions of the first and second elastic materials. The elastic laminates may include two or more bonding regions that may be defined by the various layers or components of the elastic laminate that are laminated or stacked relative to each other. In some configurations, a first plurality of ultrasonic bonds are applied to the elastic laminate to define a first bond density in the first bonding region, and a second plurality of ultrasonic bonds are applied to the elastic laminate to define a second bond density in the second bonding region, wherein the second bond density is not equal to the first bond density.