Arrangement for determining register deviations of a...

Printing – Rolling contact machines – Rotary

Reexamination Certificate

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Details

C101S181000, C101S183000

Reexamination Certificate

active

06199480

ABSTRACT:

BACKGROUND OF THE INVENTION
Field of the Invention
The invention relates to a multicolor rotary printing machine for printing sheets or webs, having on-line register adjustment, or register measuring devices. The invention serves for determining register deviations between different ink colors, especially deviations in regard to circumferential, side and diagonal register, which are to be minimized with register adjusting devices connected with a steering and control device.
The known art includes a stationary installed photo-electric scanning device for register marks, which is connected with a switching device for measuring register mark positions (DE 32 26 078 A1, DE 26 43 481 A1, DE 27 31 914 A1, DE 26 58 659 A1, DE 40 14 706 A1, and DE 40 14 708 A1).
The times between the register signals are evaluated between each other or in response to a reference signal, wherein the time/path relations of position deviations of the register marks can be evaluated. In the known devices, the scanning arrangement is connected with start/stop inputs of a counter circuit, whose counting state is proportional with the timed appearance of reference signals and register mark signals (DE 32 26 078 A1). As reference signal, it is possible to use, for example, a fixed edge on a cylinder transporting the printed material, which is detected by means of a scanning device. The known art has the drawbacks that the velocity of the printing material must be constant, which in practice cannot be assured. The peripheral velocity of a printing cylinder swings back and forth even at a constant printing speed as much as several tenths of a percent, which leads to an impermissibly high error in the measurement of the register marks when the register marks are sensed by the scanning device on the surface of the printing cylinder. The uneven velocity is a result of variations in the load on the printing machine drive since the load during printing is subject to strong variations both in regard to time and in regard location in the machine.
Furthermore, there are known devices by means of which the angular position and velocity of a cylinder transporting printing material can be measured with incremental or absolute angle transmitter (DE 26 58 659 A1, DE 27 31 914 A1).
In that manner, the appearance of the register marks are evaluated in relation to the angular position of the cylinder, and from which the actual deviation of a register mark can be determined on the basis of the sheet length in the form of a nominal value. In that case incremental angle transmitters are used, for generating a specially generated reference or zero pulse, which is used as a reference for the angular position at which the register mark signal appears.
Such angle transmitters for determining register deviation require additional investment, especially since the angle transmitter requires a certain mounting space and must, for the purpose of measurement, be mounted very precisely. Furthermore, the transmission of the measuring signals from the angle transmitter require additional electronic investments in order to assure high validity of the signals in the presence of noise. The measurement of the position of the register mark with angle transmitter is subject to error, since during the printing, especially due to forces caused by the gripper and forces appearing during and after the print slot in the printed material (i.e. the point of contact between superimposed rollers or cylinders or printing cylinders and forms), and at least in subregions a relative movement relating to the surface of the transporting cylinders, which can cause errors in the register signals relating to the angle transmitter signals.
In the European Patent application EP 04 44 583 A2, there is described marks printed on a printing material for determining registration, which include crossing lines visually printed for each print color, and which include a linear and a curved section which are machine-readable. The visual sensing of the register deviations is performed in economical off-line manner by means of an optical register cross reader. The machine sensing is performed by means of a video camera, by means of which scanning signals serve to control register adjusting devices.
The aforesaid method has the drawback that for on-line precise register adjustment the data for machine evaluation must be present in predetermined mutually separate positions on the printed material, which requires a relatively wide section of the printed material for the register marks, and require a photo-electric sensor matched to the register marks, and has a scanning width adjusted to the width of the register marks. Furthermore, this approach does not provide information as to which reference the measurements of the register deviations are related.
SUMMARY OF THE INVENTION
It is accordingly an object of the invention to provide an arrangement for determining register deviations in a multicolor rotary printing machine, which provides a high degree of accuracy, combined with low investment for determining positions of register marks printed on printing material.
The invention includes an arrangement for determining register deviations in a multicolor rotary printing machine, wherein at least one scanning device, positioned behind the last printing unit, and behind the printing slot, which scans at least one register mark line on the moving printing material in direction of additional section reference marks on the printing material. The section reference marks are designated in this manner, since the reference marks are formed as short line sections.
The section reference marks can be attained with exactly one printing unit, advantageously in the color which is especially or most suitable for the photo-electric receiver in the scanning device. The signals which are generated by the scanning of the register marks, and their section reference marks, are processed together in a circuit arrangement, and wherein the resulting signals derived from the register marks, and the section reference marks are available for determining the register deviations. The invention requires no additional transmitter for transmitting the machine rotary angle, or sensors for scanning of fixed edges on a transport cylinder in order to obtain a reference signal.
It is especially advantageous, for determining the diagonal register deviations, to provide register mark lines on the edge regions of the printing material, which each cooperate with a respective photo-electric scanning device, and to provide respective section reference marks for each register mark line.
A variation of the invention provides that a line of section reference marks is placed next to the respective register mark lines, wherein the line of section reference marks is composed of periodical line section screens, i.e. like steps in a ladder, wherein the line sections are placed at right angles (perpendicular) to the direction of movement of the printing material, and wherein the section reference marks are scanned with an additional photo-electric receiver in the scanning device.
An improvement in image resolution can be attained if a line of section reference marks is placed next to the respective register mark lines, and wherein the section reference marks are arranged as an uninterrupted row of right angle triangles, each having a respective short side of the triangle positioned on an uninterrupted straight line next to each other, and wherein the other short side of the triangle is perpendicular to the moving direction of the printing material, and wherein further the long sides of the triangles are parallel, and the section reference marks are scanned by an additional receiver of the scanning device.
In regard to the investment, it is advantageous if the section reference marks are located within the range of the register mark lines of a group of register marks, either ahead of or behind the register marks. Register mark signals and section reference mark signals can then be scanned by the same receiver of the scanning device. F

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