Abstract:
A system for printing on a substrate can comprise a conveyor that is configured to move the substrate along a substrate movement axis. The system can further comprise at least one print head array. Each print head array has a plurality of print heads, each print head having a respective orientation axis. The plurality of print heads can have at least a first print head and a second print head, wherein the orientation axis of the first print head is angularly offset from the orientation axis of the second print head. The first print head can be offset from the second print head along the substrate movement axis.
Abstract:
The present invention relates to using soft photopolymer plates in a printing process, and more specifically, to an apparatus and methods of using soft photopolymer materials to decorate an exterior surface of cylindrical metallic containers with high definition graphics and other indicia.
Abstract:
A printing blanket is provided which includes a reinforcing layer formed from a polymeric fabric reinforcing material which softens and flows at a temperature less than that used in the final curing step of forming the blanket or a polymeric reinforcing material having a thickness of between about 0.003 inches and 0.010 inches. The reinforcing layer provides a smooth surface to support an outer print surface layer and provides improved print performance while enabling a reduction in the overall thickness of the reinforcing layer.
Abstract:
A method and a device for engraving a flexible strip, the device including a drive device for moving a flexible strip in a longitudinal direction of the flexible strip; a support device for supporting the strip in a circumferential direction of a cylinder on a surface segment of the cylinder acting as a support surface; a processing head oriented towards the support surface for engraving the strip with at least one tool oriented towards the support surface; and a drive device for moving the processing head, wherein the processing head is pivotable through the drive device about a longitudinal axis of the cylinder. In order to engrave a closed loop with a single processing head it is proposed that the processing head is pivotable through a drive device about a longitudinal axis of the cylinder.
Abstract:
The present invention relates to using soft secondary plates and specialty inks in a printing process. More specifically, the present invention relates to an apparatus and methods of using soft secondary plates made of a rubber comprising a saturated chain of polymethylene or a photopolymer material to decorate an exterior surface of cylindrical metallic containers with high definition graphics and other indicia.
Abstract:
A nanowire device of the present description may be produced with the incorporation of at least one hardmask during the fabrication of at least one nanowire transistor in order to assist in protecting an uppermost channel nanowire from damage that may result from fabrication processes, such as those used in a replacement metal gate process and/or the nanowire release process. The use of at least one hardmask may result in a substantially damage free uppermost channel nanowire in a multi-stacked nanowire transistor, which may improve the uniformity of the channel nanowires and the reliability of the overall multi-stacked nanowire transistor.
Abstract:
The disclosure discloses a printer performing printing processing that forms desired print on a print-receiving medium. The printer includes a cartridge holder, a drive device, a thermal head, an energization device, an attribute detecting device, a first determination portion, and a processing portion. The cartridge holder removably mounts a cartridge. The drive device drives a feeding roller to feed the print-receiving medium. The thermal head performs printing on the print-receiving medium fed. The energization device controls energization of the thermal head. The attribute detecting device detects an attribute of the print-receiving medium. The first determination portion determines whether or not a tube cartridge capable of supplying a tubular print-receiving medium is mounted. The processing portion performs predetermined processing that is for suppressing expansion of the tubular print-receiving medium and is triggered by the determination that the tube cartridge has been mounted by the first determination portion.
Abstract:
A customization system for a tubular article of apparel includes a printing system for printing a graphic onto the tubular article. The customization system also includes a cylinder for holding the tubular article for printing a graphic upon the article. The cylinder can include one or more recesses in the outer surface of the cylinder to accommodate one or more regions of increased thickness on the tubular article. By providing recesses in the cylinder that correspond to the regions of increased thickness, the tubular article can present a substantially uniform flat surface for printing the graphic upon.
Abstract:
A hot stamping machine including a stamping member which presses a stamping foil against a peripheral surface of articles which are successively positioned in a stamping position and wherein stamping foil is removed from an unwinding mechanism for each stamping sequence and passes in succession into a suction box, along a braking surface and opposite the stamping member that urges the foil against an article, and wherein a reserve of foil is available in the suction box between the unwinding means and the braking surface, while the foil is tensioned between the stamping member and the article, during stamping of the article, and between the braking surface and a rewinding mechanism.
Abstract:
A processing system according to the present invention includes a printer that receives unprocessed marker tubing stock (i.e., multiple rows of uncut and unprinted tubing mounted on a carrier) for simultaneous printing of the marker tubing and the carrier with a single print head. A cutting device is configured to sever the marker tubing rows into sections, regardless of the width of the tubing and regardless of whether there are two rows or four rows of tubing. Since the tubing has its longitudinal axes aligned with a longitudinal axis of the carrier, activation of the cutting device can be controlled to sever sections of marker tubing in varying customized widths. In the same cutting stroke, the carrier can be scored or perforated (“perfed”). A rewinder or the like then takes up the severed and perfed stock.