Y10T428/15

GLASS PLATE AND MANUFACTURING METHOD OF GLASS PLATE
20190359514 · 2019-11-28 · ·

Separation lines are formed in a glass plate having first and second main surfaces by irradiating with laser light. The separation lines are configured of a product line corresponding to an outline of a glass article to be separated from the glass plate; and a release line. The product line includes a first in-plane void array configured of in-plane voids arranged on the first main surface. A maximum distance between centers of the adjacent in-plane voids arranged on the first main surface falls within a range of 1 m to 10 m. The release line includes internal void arrays for release line, which are arranged along lines connecting the first and second main surfaces, respectively. A maximum distance between centers of the adjacent points, at which extension lines extended from the internal void arrays for release line cross the first main surface, is greater than 10 m.

INTERIOR PANEL INCLUDING A COVER SKIN WITH A TEAR SEAM FOR A MOTOR VEHICLE AND A METHOD FOR MAKING THE SAME

Interior panels for motor vehicles and methods for making such interior panels are provided. In one example, an interior panel includes a substrate and a cover skin that overlies the substrate. The cover skin has a tear seam configured as a double wave pattern including a first score line wave pattern and a second score line wave pattern that are substantially in phase. The first and second score line wave patterns each have an amplitude of from about 1.3 to about 1.7 mm and a period of from about 8 to about 10 mm.

Self-laminating rotating cable marker label with breakaway portion

A self-laminating rotating cable marker label is constructed of a transparent film having a first adhesive area, an adhesive-free smooth area, and a second adhesive area. A print-on area forms one side of the transparent film, the print-on area adapted to receive indicia identifying the cable about which the marker label is applied. A perforation extends across the transparent film providing a line of separation of the transparent film. When wrapped around a cable, the second adhesive area overlies the print-on area such that the cable identifying indicia is visible through the transparent second adhesive area. As the transparent film is wrapped around the cable, the first adhesive area adheres to the cable. The remainder of the transparent film is rotated, breaking the perforation, whereby the smooth area of the film in contact with the cable provides smooth rotation of the label around the cable.

Privacy label

A privacy label includes a label sheet having a top surface and an adhesive underside surface. The top surface is adapted for printing indicia thereon. The label sheet includes a line of weakness dividing the label sheet into two adjacent segments. Each segment is separable from the other along the line of weakness. Removing one of the segments from the other renders indicia printed on the label sheet incoherent.

CLEAN EDGE CUSTOM PRINT OBJECTS
20190322073 · 2019-10-24 ·

A printable blank sheet includes a sheet with a first layer and a second layer attached to a bottom side of the first layer, slit-over-perforation line in the sheet, and an object held in the sheet. The slit-over-perforation lines define a periphery of the object in the sheet. The slit-over-perforation lines include cuts running through the first layer, and perforations running through the second layer underneath the cuts running through the first layer. A method for creating custom print objects includes running a printable blank sheet through a printer, wherein the sheet includes slit-over-perforation lines defining a periphery of an object in the sheet. The sheet is bent along the slit-over-perforation lines to weaken and separate the slit-over-perforation lines, and the object is detached from the sheet.

Edge chamfering methods

Processes of chamfering and/or beveling an edge of a glass or other substrate of arbitrary shape using lasers are described herein. Three general methods to produce chamfers on glass substrates are disclosed. The first method involves cutting the edge with the desired chamfer shape utilizing an ultra-short pulse laser. Treatment with the ultra-short laser may be optionally followed by a CO.sub.2 laser for fully automated separation. The second method is based on thermal stress peeling of a sharp edge corner, and it has been demonstrated to work with different combination of an ultrashort pulse and/or CO.sub.2 lasers. A third method relies on stresses induced by ion exchange to effect separation of material along a fault line produced by an ultra-short laser to form a chamfered edge of desired shape.

Separable composite labeling articles in sheet or roll form

A linear series of connected unitary sheet-like merchandise labeling articles, each of which comprises a labeling tag flatly cojoined along a unifying flat bond zone with a flexible elastic layer that extends away from the tag and includes an elastic fastening loop. Adjacent labeling articles of the series are ruptureably connected in a manner permitting the series to be handled as a unit while at the same time permitting ruptureable separation of individual merchandise labeling articles from the series. In one embodiment, the linear series is wound into roll form.

Method for making fluid filled units

A preformed web and a method of producing dunnage units from the preformed web. The web is an elongate flattened thermoplastic tube having an inflation edge and an opposite edge. The tube includes spaced transverse seals that define sides of pouches. In one embodiment, the web is configured such that a gap forms between each pair of adjacent pouches when the pouches are inflated. In one embodiment, an inflation edge of the web comprises a frangible connection that allows the inflation edge to be broken by an unsharpened object.

Processing 3D shaped transparent brittle substrate

Methods are provided for laser processing arbitrary shapes of molded 3D thin transparent brittle parts from substrates with particular interest in substrates formed from strengthened or non-strengthened Corning Gorilla glass (all codes). The developed laser methods can be tailored for manual separation of the parts from the panel or full laser separation by thermal stressing the desired profile. Methods can be used to form 3D surfaces with small radii of curvature. The method involves the utilization of an ultra-short pulse laser that may be optionally followed by a CO.sub.2 laser for fully automated separation.

Paper towel with customized tear force perforations
10390662 · 2019-08-27 ·

A paper towel having a full sheet includes differing tear forces between the main sheet portion and a plurality of smaller paper portions. The smaller paper portions may be detached from the main sheet as desired for use as a spill cleaner, napkin, tissue, or the like.