The present invention is directed to a method and to a device for drawing-in a web of material. A start of a web tip, which extends laterally of the web, is cut off.
It is known from DE 196 21 507 C1 to draw paper webs into web-fed rotary printing presses. Paper web draw-in devices are used for this purpose.
DE 26 57 789 A1 describes a device for drawing-in a paper web. A draw-in tip of the web is cut off a draw-in mechanism by a cutting device at the side of the longitudinal former.
The object of the present invention is directed to providing a method and a device for drawing-in a web of material.
In accordance with the present invention, this object is attained by providing a start of the web tip which is extending laterally past an alignment line of one of the lateral edges of the web. This start of the web tip is cut off the web draw-in assembly. This cut-off start can be grasped by a conveying system and removed. A strip may be cut between the draw-in assembly and the web. A cutting arrangement to accomplish this can be situated upstream of a former roller or on an end of a driveable web guide roller. A disposal station can be provided to dispose of the cut-off start.
The advantages to be gained by the present invention consist, in particular, in that, following the automatic draw-in of a web of material, the fastening assemblies, for example a formed-on paper tip, are automatically cut off the draw-in mechanism, which may be, for example a draw-in chain, at a preselectable location of a machine, which machine may be, for example, a web-fed rotary printing press.
The cut-off of the paper web draw-in tip from the paper web takes place at a fixed location, for example at a combining roller which is located upstream of the entry of the web of material into a former. The draw-in speed can be increased.
A preferred embodiment of the present invention is represented in the drawings and will be described in greater detail in what follows.
Shown are in:
A guide roller 01, for example a paper guide roller 01, is seated or supported on both ends in spaced lateral frames 02, 03, as seen in
A longitudinal cutting arrangement 21 is located outside the barrel length “a” and on an end, such as the right end 07, of the paper guide roller 01. This longitudinal cutting arrangement 21 consists at least of an upper cutter 22, for example a circular cutter 22, which upper cutter 22 is fastened on a driveable cutter shaft 26 extending axis-parallel with the shaft journal 08 and seated in the lateral frame 03, as well as in a wall 23 of an inner housing 24 which is fastened on the inner side of the lateral frame 03; i.e. the side of the lateral frame 03 close to the roller 01.
A cutting edge of the cutter 22 works together with a lower counter cutter 27, for example in the form of a cutter ring located on the end of the sleeve 11 which is close to the roller 01.
While the paper guide roller 01 can be permanently driven by the motor 18 via its shaft journal 08, the upper cutter 22 located on the shaft 26, as well as the counter cutter 27 arranged on the sleeve 11, can also be driven by the provision of a controllable coupling 28, for example a magnetic coupling 28.
The controllable coupling 28 is located inside the outer housing 19 between a cutter shaft gear wheel 29, fastened on the shaft 26, and a coupling gear wheel 31, which is rotatably seated on the shaft 26. The coupling gear wheel 31 meshes with a bushing gear wheel 32 arranged, fixed against rotation, on the bushing 16. All of the various bearings used in this assembly are identified by 09.
The mode of functioning of the longitudinal cutting arrangement 21 depicted in
The paper guide roller 01 is driven when the motor 18 is switched on. The bushing gear wheel 32, which is fixed on the bushing 16, rotates simultaneously with the paper guide roller 01, and meshes with the coupling gear wheel 31, which can freely rotate on the cutter shaft 26. After the coupling 28 is engaged, the cutter shaft 26, with the upper cutter 22, is caused to rotate. At the same time, torque is transmitted from the cutter shaft gear wheel 29, which is fixedly arranged on the cutter shaft 26, to the sleeve gear wheel 13 which is fixed on the sleeve 11, so that the lower counter cutter 27 is also driven and moves along.
The engagement of the coupling 28 can be caused by a sensor, which is not specifically represented. A switched-on time of the coupling 28 can be limited.
The longitudinal cutting arrangement 21, or the paper guide roller 01 with the longitudinal cutting arrangement, is arranged, viewed in the production direction, for example upstream of a former inlet roller of a former, so that the paper guide roller 01 is used as the combining roller for webs of material 33, 34, 36, 37, for example paper webs 33, 34, 36, 37, entering into the former, as may be seen by referring to
If now the paper web tip 41 reaches the now coupled-in and therefore driven longitudinal cutting arrangement 21, an element or segment 46 of the paper web tip 41, which element or segment 46 is delimited by the generated cutting line 44 represented in dash-dotted lines and which element or segment 46 is fastened to the chain bolt 43, is cut longitudinally, i.e. in the production direction, off the paper web tip 41 and is removed by continued operation of the roller chain 39.
The cutting line 44 of the cutter 22 and the counter cutter 27 extends outside of the paper webs 33, 34, 36 or 37 and in close vicinity of the web lateral edge 42, as seen in
In accordance with a second preferred embodiment of the present invention, a second upper cutter 47, as depicted in
Following the arrival of a paper web tip 41 at the longitudinal cutting arrangement 21 in accordance with the second embodiment, an approximately trapezoidal strip 49 is cut out of the paper web tip 41 by the driven longitudinal cutting arrangement 21, which strip 49 is delimited longitudinally by the cutting line 44 of the first cutter 22 and the first counter cutter 27, as well as by the cutting line 51, created by the second cutter 47 and the second counter cutter 48 and with cutting line 51 extending parallel in respect to cutting line 42 and being represented by dash-dotted lines, as may be seen in
The cutting lines 44, 51 run in such a way that neither the lateral edge 42 of the paper webs 33, 34, 36, 37, nor the chain bolt 43 are damaged.
In accordance with a third preferred embodiment, this strip 49, or the element or segment 46, which is fastened to the draw-in mechanism 39, can be removed from the draw-in mechanism 39 by two endless conveying or belt systems 52, 53, as seen in
One of the strands of the conveying or belt systems 52, 53 is guided between the first cutter 22 and the first counter cutter 27, or the second cutter 47 and the second counter cutter 48, as shown in
The gear wheels 31, 32 of the drive mechanism of the longitudinal cutting arrangement 21 are dimensioned in such a way that the circumferential speed of the first upper cutter 22 and the first counter cutter 27 and of the second cutter 47 and the second counter cutter 48 are different, by up to approximately 10%, from the circumferential speed of the paper guide roller 01.
The starts 59 of the paper web tips 41 can be separated one after the other and in any arbitrary sequence from the paper webs 33, 34, 36, 37.
In accordance with a fourth preferred embodiment of the present invention it is also possible to generate a cutting line 44 with the first cutter 22 and with the first counter cutter 27 and to strip the element or segment 46 of the paper web tip 41, which is now only fastened on the chain bolt 43, off the chain bolt 43. Stripping off of the element or segment 46 can be performed by passing the chain bolt 43 over an up ramp, which rises as far as the free length of the chain bolt 43 and which is fixed in place on the lateral frame.
While preferred embodiments of a method and device for drawing in a material web, in accordance with the present invention, are set forth fully and completely hereinabove, it will be apparent to one of skill in the art that various changes in, for example, the type of web being drawn-in, the drive for the draw-in mechanism, the types of bearings used, and the like could be made without departing from the true spirit and scope of the present invention, which is accordingly to be limited only by the appended claims.
Number | Date | Country | Kind |
---|---|---|---|
101 28 820 | Jun 2001 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
---|---|---|---|---|
PCT/DE02/02056 | 6/6/2002 | WO | 00 | 12/10/2003 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO02/102594 | 12/27/2002 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
3756527 | Collins et al. | Sep 1973 | A |
3764085 | Hawkins | Oct 1973 | A |
4063505 | Sasamoto et al. | Dec 1977 | A |
4187968 | Winterholler et al. | Feb 1980 | A |
5809892 | Kruger et al. | Sep 1998 | A |
6092801 | Abbadessa et al. | Jul 2000 | A |
6240843 | Kruger et al. | Jun 2001 | B1 |
6325266 | Suzuki | Dec 2001 | B1 |
6419217 | Hartmann et al. | Jul 2002 | B1 |
Number | Date | Country |
---|---|---|
26 57 789 | Jun 1978 | DE |
196 21 507 | Sep 1997 | DE |
197 07 427 | Aug 1998 | DE |
2 322 361 | Aug 1998 | GB |
52-50739 | Apr 1977 | JP |
53-50488 | Dec 1978 | JP |
55-101394 | Aug 1980 | JP |
Number | Date | Country | |
---|---|---|---|
20040231477 A1 | Nov 2004 | US |