专利摘要:
The invention relates to the printing industry, in particular, to devices for slowing down sheets of a sheet-throwing device of a rotary printing machine, and allows for an increase in quality in double-sided printing by preventing stamping. The device for slowing down the sheets contains a suction roller mounted at a higher peripheral speed when the sheet is received than when the sheet is being withdrawn. The suction roller has a circumferential speed equal to the speed of the sheet when the sheet is taken in, interacts with a moisturizing and cleaning device and is made with a paint repellent working surface. 5 hp f-ly, 6 ill.
公开号:SU1544183A3
申请号:SU864028579
申请日:1986-12-02
公开日:1990-02-15
发明作者:Йозеф Германн Альбрехт
申请人:Кениг Унд Бауер Аг (Фирма);
IPC主号:
专利说明:

(21) 4028579 / 30-12
(22) 12/02/86
(31) p 3543 026.5
(32) 12/05/85
(33) DE
(46) 02.15.90. Bul Y 6
(71) Koenig und Bauer Ag (DE)
(72) Albrecht Josef Hermann (DE)
(53) 655.1 (088.8)
(56) Patent of Germany No. 721545, cl. 15 d 28/03, 1942.
(54) DEVICE FOR LASTING THE SHEETS OF THE SHEET-WATER DEVICE OF ROTATIONAL PRINTING MACHINE
(57) The invention relates to printing, in particular to devices.
for slowing down the sheets of the sheet-down device of the rotary printing press, and allows for improved quality in double-sided printing by preventing metering. The device for slowing down the sheets contains a suction roller mounted at a higher peripheral speed when the sheet is received than when the sheet is being withdrawn. The suction roller has a circumferential speed equal to the speed of the sheet when the sheet is taken in, it interacts with a wetting and cleaning device and is made with a paint-resistant working surface. 5 hp ff, 6 ill.
about 55
The invention relates to printing equipment, in particular, a device for slowing down sheets of a sheet-folding device of a sheet-fed rotary printing press.
The aim of the invention is to improve the quality in double-sided printing by preventing mark-off.
1 schematically shows the proposed device for slowing down sheets, side view; Fig. 2 shows a first embodiment of the moisturizing and cleaning device of the proposed device for slowing down sheets; fig.Z - the same, the second option; figure 4 - the same, one of the options; Fig. 5 shows a third embodiment of the wetting and cleaning device; figure 6 is a chart of time and speed.
In the lateral beds (not shown) of the sheet-emitting device, a suction roller 1, which is rotatable as a device for decelerating sheets, is installed, which is driven by having a constant speed of -2 DC motor. The suction roller 1 has a side repulsive cutting
surface 3, for example, with chrome plating. The suction roller 1 is equipped with suction holes 4 radially passing through the roller 1. Starting from the center of the suction roller 1, the holes 4 are mounted on the right or left helix. Under
cl

4b
eo so

cm
the suction roller 1 between the side beds is installed loadable by suction air and compacted from the roller 1 rail 5.
The locking force that the roller 1 exerts on sheet 6 can also be created instead of suction air by electrostatic charging.
The suction roller 1 interacts with a moistening and cleaning device, which (FIG. 2) consists of a reservoir with a moistening liquid, a ductor roller 8 with a chrome coating and a knurling roller 9 with a rubber coating. The ductor roller 8 and the knurling roller 9 are actuated by the suction roller 1 through gears (not shown) so that between the suction roller 1 and the knurling roller 9 or the knurling roller 9 and the ductor roller 8 creates a relative speed of rotation, and the circumferential speed of the knurling roller the roller 9 is smaller than the circumferential speed of the suction roller 1.
The wetting and cleaning device (Fig. 3) consists of a wet vise tape 10 pressed against the suction roller 1 by means of a retainer rod 11. The cherry tape 10 is wound onto the winding 12 periodically through the driven winding 13 of the suction roller 1 against the direction of its rotation "Visherny" the belt 11 (FIG. 4) is moved between the suction roller 1 and the suction rail 5, so that it is possible to refuse to use the pressure rail 11.
The moistening-cleaning device (Fig. 5) consists of a rotating roller 14 with a textile coating 15, such as a moltext, capable of interacting with the suction roller 1, and distributing nozzles 16 directed onto the rollers 14, by means of which the textile coating is periodically moistened.
The wetting and cleaning device is installed under the sheet guiding element 17 in the slats 18 attached to the guide element 17, which can be turned upwards.
Under the moistening and cleaning device on the fixed
0
five
0
five
0
five
0
On the traverse frame, consisting of two parts 19 and 20, a container 21 is installed to receive the used moisturizing fluid. Traverse 19 and 20 is used to attach the nozzles 16.
Figure 6 shows the circumferential speed Vg of the suction roller 1 in the time and speed diagram. In addition, this diagram shows the output speed Va of the sheets and the speed range V of the chain with grippers. The speed range V is limited by the maximum speed of the Vj-chain -c-grippers and the minimum speed VK min-chain with grips. The letter a (slope) denotes the area of the circumferential velocity of the CC AYUK suction roller 1, in which the suction roller slows down. The slope of a is independent of the velocity V to the capture chain. During a constant time of sheet output t q at all speeds of the machines, the peripheral speed Vs and output speed are the same. The letter P marks the moment of opening the capture.
The device works as follows.
Sheets 6 sealed by a double-sided printing machine are transported by means of gripping elements 23 mounted on chains 22 on the pile table 24, and the gripping elements 23 have rows with grippers 25 that can be adjusted. While the sheets 6 are fixed in the grips 25, the circumferential speed Vg of the suction rollers corresponds to the speed Vk of the chains with the grippers.
By means of an adjustable cam (not shown), the grippers 25 are opened until the front edge 26 of the sheets 6 reaches the stop 27 of the pile table 24. The sheet 6 is released and reaches the stop 27. At the same time, when opening the gripper 25, the suction roller 1 starts to slow down by means of the engine 2 direct current until the circumferential speed Vs corresponds to the constant speed Va of the output (for example, 10% of the maximum speed
VK chains with grippers). Accordingly, the decreasing peripheral speed V5 of the suction roller, the sheets 6 are slowed down to a constant output rate.
51544
In order to control the speed of the DC drive 2, thyristors are connected to the main drive of the rotary printing machine, a tachogenerator (setpoint sensor) connected to the 2dc drive, a tachogenerator (actual value sensor), and an electronic backstop generator 10 given value.
Prior to opening the grippers 25, the above regulation ensures the same peripheral speed Vs of the suction roller 1 and the speed V 15 of the chain with the grips. In the event that the grippers 25 are opened, then the setpoint speed for the drive 2 2 is transmitted by the setpoint sensor by the tachogenerator to the setpoint sensor 20 of the electronic setpoint generator. Accordingly, with a given value of the target value generator, the circumferential speed Vs of the roller 1 is constantly 25 reduced to the peripheral speed VQ. As a setpoint sensor, a tachogenerator is connected to the suction roller 1. For the desired VQ output speed, the regulating device 30 for actuator 2 has a setpoint input device.
At the moment the trailing edge 28 of the sheet 6 is removed from the suction roller, this roller 1 is again accelerated by the motor 2 so that the circumferential speed Vg of the suction roller corresponds to the speed VK of the chain 22 with the grippers.
In order to prevent stamping 40 of the sheet 6 sealed from two sides, the hydrophilic surface 3 with a chrome coating of the suction roller 1 is cleaned of colorful substances by means of the above-mentioned 45 cleaning device so that the printed ink does not pass over the printed bottom side 29 of the sheet 6 .
By means of an adjustable distribution cam, depending on the production speed, it is possible to achieve an earlier or later opening of the grippers and thus a constant deceleration of the suction roller 1. Since the moment P of the grippers can be adjusted depending on the variable speed 1836
If Vk of chain 22 with grippers corresponding to the speed of operation of the rotary printing press, then as the speed VK increases, the opening moment P of the grippers changes so that a longer braking path is available to slow down sheet 6.
For this, FIG. 6 depicts a circumferential speed Vs of the suction roller 1 at maximum speed Vj, M of chains 22 with grippers and at minimum speed V MWfl of chains 22 with grippers.
The speed of the roller increases with the production speed, while the slowing down remains the same, preferably with all the production speed.
权利要求:
Claims (4)
[1]
1. A device for slowing down sheets of a leaf-growing device of a rotary printing press, comprising a suction roller with channels, installed with a circumferential capacity greater when taking a sheet than when withdrawing it, and equal to the speed of the sheet when it is received, characterized in that in double-sided printing by preventing mark-off, it contains a moistening-cleaning device that interacts with the suction roll, while the suction roll is made
with paint resistant surface
[2]
2. The device according to p. Which differs in that the moistening-cleaning device contains a tank, a ductor roller immersed in the tank, and a rolling roller, interacting with the ductor roller.
and suction rollers.
[3]
3. A device according to claim 2, characterized in that the knurling roller has a circumferential speed less than the peripheral speed of the suction roller.
[4]
4. The device according to claim 1, characterized in that the wetting and cleaning device is made in the form of an endless belt, mouth 1
figure 1
srig.2
20
fig.Z
3 f
C at R
qius.5
20
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同族专利:
公开号 | 公开日
DE3667956D1|1990-02-08|
EP0225455A3|1988-03-02|
CS766786A2|1989-10-13|
JPS62153057A|1987-07-08|
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CS270214B2|1990-06-13|
US4717141A|1988-01-05|
EP0225455A2|1987-06-16|
引用文献:
公开号 | 申请日 | 公开日 | 申请人 | 专利标题

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法律状态:
优先权:
申请号 | 申请日 | 专利标题
DE3543026A|DE3543026C1|1985-12-05|1985-12-05|Delivery device for a sheet-fed rotary printing machine|
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