Abstract:
An imaging member includes a surface layer comprising a fluoroelastomer-perfluoropolyether composite formed from a reaction mixture comprising a fluoroelastomer and a perfluoropolyether compound. Methods of manufacturing the imaging member and processes for variable lithographic printing using the imaging member are also disclosed.
Abstract:
This invention is concerning a multibeam exposure scanning method and apparatus, and a method of manufacturing a printing plate. The problem to be solved is that the influence of the heat from adjacent beams accompanying multibeam exposure is effectively reduced, and a desired shape having a very small size is formed with high precision. The above problem is to be solved by a multi-beam exposure scanning method for engraving a surface of a recording medium by emitting a plurality of beams simultaneously from an exposure head to the recording medium, the exposure head having N levels (N being an integer equal to or greater than 2) of emitting outlet rows each having emitting outlets arranged at intervals of P in a sub scanning direction, the N levels being arranged at regular intervals in a main scanning direction perpendicular to the sub scanning direction, the respective levels being arranged so that respective projected emitting outlets are located at intervals of P/N when the respective emitting outlets are projected in the main scanning direction. The multibeam exposure scanning method includes: scanning the recording medium in the main scanning direction N times with the exposure head; and emitting beams to a first area from only the emitting outlet row of one level while sequentially switching the levels to emit beams for each main scanning operation, where the surface of the recording medium is divided into a target flat area to be maintained without engraving, the first area to be engraved with precision, and a second area that is the remaining area.
Abstract:
A method for preparing a printing cylinder includes providing an image bearing printing surface comprising a plurality of cells; applying a filling material into the cells; fixing the filling material in a first group of cells in a first pattern; and removing the filling material from a second group of cells.
Abstract:
Creating one or more printing plate segments includes exposing a printing plate segment with imaging data to form an imaged plate segment, and marking the floor of the printing plate segment or the back of the printing plate segment with one or more registration marks according to marking data. The registration marks can be within the design area defined by the imaging data marked such that the registration marks are not visible on a print made from the imaged plate segment. Printing using positioned and mounted so-marked imaged plate segments produces a print without the registration marks visible on the print. Such plate segments can be unmounted and reused with the registration marks intact.
Abstract:
In order to propose a dry process technique of producing a printing roll having safe and beauty concave portions for printing image area without discharging environmental contaminating substance and a new technique for improving quality of printed matters, this invention is to provide a printing roll with DLC film layer in which laser beam-engraved grooves as concave portions for printing image area are formed on a carbide cermet spray coating formed on a surface of a roll substrate, and a method wherein a carbide cermet spray coating is formed on a surface of a roll substrate roughened by a blast treatment, the surface of the carbide cermet spray coating is ground or ground-polished, then a DLC film is formed on the ground or ground-polished surface and thereafter laser beam-engraved grooves are formed on the surface of the DLC film as a concave portion for printing image area.
Abstract:
Printing plates, printing system and method for printing electrical circuits. According to embodiments of the invention, patterned layers of conductive, insulating, semi-conductive materials, and other materials can be additively print deposited on a substrate to form electrical circuits. The electrical circuits so formed of single or multiple printed layers can comprise or compose transistor devices, including thin film transistors, multiple transistor circuits or assemblies, or other electrical devices, for example batteries, sensors, displays, memory arrays, and the like. The invention further provides a patterned printing plate imaged by a photolithography and etch process, and a printing system and methods using the patterned plate by which such high resolution, precise registration electrical circuits and circuit devices can be produced.
Abstract:
A matrix board coating composition for use in the formation of a mold in which flexographic printing plates are produced, the coating is a water-based, latex emulsion having a two step phenolic component to increase shelf life, reduce volatiles and improved flow properties of the coating.
Abstract:
A low fiber, high filler content matrix board is provided. The matrix board is characterized by a total mold shrinkage of not more than 0.002 "/", wherein the shrinkage is substantially non-directional. In addition to the fibers and fillers, the board further comprises a resin binder. A matrix mold made from the board is provided together with a method for forming a flexographic printing plate from such a matrix mold and a printing plate made according to this method.
Abstract:
The present invention is an improved replication process which copies a master pattern onto an intermediate transfer mask which is then used to form a lithographic mask on the surface of a substrate. A pattern derived from the original master pattern is then produced in the substrate by an etching process.
Abstract:
A method for producing embossed designs on work surfaces such as on molds, rolls or dies. A photomechanically imageable transfer material is exposed to the design to be embossed. The material is developed and the acid resistant design material remaining on a backing sheet is mechanically transferred to the work surface by burnishing the back of the backing sheet. The surface is then etched and the acid resistant design elements removed so that the embossed work surface is ready for use.