The present invention relates to a roll changer for feeding a material web wound on a material roll into a web-processing machine having a support frame, in which at least three material rolls are mounted so they are rotatable, whose rotational axes are each oriented parallel to one another, and which are situated so they are pivotable around a shared pivot axis parallel to their rotational axes, in a first pivot position of the at least three material rolls, a material roll being located in an unwinding area, in which the material web may be fed to the web-processing machine from the affected material roll, and a further material roll being located in a charging area, in which the affected material roll is replaceable by a new material roll, by pivoting the material rolls around the pivot axis parallel to the rotational axis into a second position, the material roll being transferable from the unwinding area into the charging area, according to the preamble of Claim 1.
The material web may be a web-shaped film or also a web-shaped film bag, for example. Web-shaped materials of this type are typically wound onto material rolls, they being unwound from the material roll in the course of the processing in web-processing machines and then being processed into bags in bagging plants or being used for packaging products in packaging plants. The material rolls are held in roll changers, which are essentially support frames which have receptacles for the rotatable mounting of material rolls. If a material roll is consumed, a new material roll is brought into position.
he replacement of a material roll and/or a roll change therefore requires comparatively long shutdown times of the web-processing machine, which are caused by the removal of the old material roll and the introduction of a new roll, as well as the positioning and clamping of the free end of the new material roll for further processing in the web-processing machine. In addition, there are usually tight space conditions in plants of this type, which do not allow any alternative solutions for the synchronous placement of multiple new rolls, such as carousel or paternoster systems, or the lateral arraying of multiple rolls.
It is therefore the object of the present invention to ensure a sufficient stockpile of new material rolls in space-saving form, with which a rapid replacement of use of material rolls is to be possible. Such a roll changer is additionally to have a simple design and therefore to be producible cost-effectively. However, it is decisive that even heavy material rolls may be fed with the aid of a roll changer to a downstream processing machine. These objects are achieved by the features of Claim 1.
Claim 1 relates to a roll changer for feeding a material web wound on a material roll into a web-processing machine having a support frame, in which at least three material rolls are mounted so they are rotatable, whose rotational axes are each oriented parallel to one another, and which are situated so they are pivotable around a shared pivot axis parallel to their rotational axes, in a first pivot position of the at least three material rolls, a material roll being located in an unwinding area, in which the material web may be fed to the web-processing machine from the affected material roll, and a further material roll being located in a charging area, in which the affected material roll is replaceable by a new material roll, by pivoting the material rolls around the pivot axis parallel to the rotational axis into a second position, the material roll being transferable from the unwinding area into the charging area. According to the present invention, a roll drive is provided in the unwinding area, which sets the material roll located in the unwinding area into rotation, or brakes it. Depending on the type of operation of the roll drive, a material web may thus be unwound from the material roll, or also wound onto a material roll. The term “unwinding area” is therefore also to be seen in the meaning of “winding area”. According to Claim 2, the roll drive is a belt applied to the material roll.
By situating multiple material rolls pivotable around a shared pivot axis in a support frame, it is possible in particular to replace a material roll of the roll changer while the web-processing machine is served from another material roll. A sufficient stockpile of material rolls is first meaningfully ensured from three material rolls. In addition, the use of three material rolls, for example, allows a more compact and thus more space-saving construction of the roll changer than would be possible if two material rolls were used, for example.
An embodiment which allows for an easy construction of such a role changer is provided by claim 3, according to which a pair of support arms is provided in each case for the rotatable mounting of the material rolls around their particular rotational axis, between which the particular material roll is mounted so it is rotatable, and which each project radially from the pivot axis parallel to the particular rotational axis.
Specifically, it is advantageous after the transfer of a new material roll into the unwinding area of the roll changer if the free end of the material web located on this material roll has a defined position, to be able to feed it more easily and in particular in a more automatable way to the downstream plant sections of the web-processing machine. Therefore, claim 4 provides that a cantilever projects from each of the support arms, a pre-tensioning unit for receiving the free end of the material roll held by the affected pair of support arms being held between the cantilever of the support arms of a pair of support arms.
In regard to the embodiment of the support arms, the features of Claim 5 are advantageous, according to which those support arms which are located on the same side of the material rolls are implemented as a modular unit, which is mounted so it is pivotable around the pivot axis parallel to the particular rotational axes of the material rolls. This modular unit thus typically represents a roll star, through whose center the pivot axis parallel to the particular rotational axes of the material roll runs, and on whose ends facing away from the pivot axis the material rolls are held.
According to claim 6, a charging position may be defined by the material roll whose rotational axis is located in this position below the rotational axes of each of the other material rolls. The roll carrier may thus be charged with a new material roll as close as possible to the floor, which is entirely advantageous for the typically large weight of new material rolls.
For easier charging of the roll changer with new material rolls, in addition, the support frame may have an opening in the charging area, through which a new material roll is insertable in the direction of the rotation axis of the material roll located in the charging area, according to claim 7. This type of charging also reduces the space consumption of the roll changer according to the present invention, because the new material roll is thus introducible laterally into the support frame, and therefore there does not have to be a large clearance on the side of the roll changer facing away from the web-processing machine.
In such an embodiment according to claim 7, it is typically necessary to implement the support arms and the cantilevers as pivotable in relation to the other support arms so that a new material roll may be inserted laterally, however. In the course of mounting a new material roll, the support arm located in the charging area is folded away at least on one side, so that the lateral opening in the support frame is exposed for the insertion of a new material roll. After the lateral insertion of a new material roll, the support arm is folded back into its original position again, and the new material roll is mounted so it is rotatable between the two support arms.
Alternatively thereto, an embodiment according to claim 8 may also be provided, if the space conditions permit it, in which a new material roll is insertable in the charging area perpendicularly to the rotational axis of the material roll located in the charging area. The new material roll may thus be installed directly between the support arms located in the charging area.
For both embodiment variants it is advantageous according to claim 9 to provide a lifting unit in the charging area for material rolls located in the charging area. Using such a lifting unit, new material rolls, which sometimes have a significant weight, may be raised and installed in openings of the support arms, for example.
Furthermore, according to Claim 10, three material rolls may be provided, whose rotational axes define an equilateral triangle in their points of intersection with a plane perpendicular to the rotational axes. In an embodiment having radial support arms, two neighboring support arms thus enclose an angle of 120°.
The present invention is explained in greater detail in the following on the basis of the attached drawings.
The support arms 6 are also mounted so they are pivotable on the support frame 1, around a driven pivot axis D, fixed in relation to the support frame 1, which is oriented parallel to the rotational axes R of the material rolls 2, 3, 4. The support arms 6 each project radially from the pivot axis D, so that they enclose an angle of 120° to one another in each case in the embodiment of
Furthermore, a cantilever 7 projects from each of the support arms 6, a pre-tensioning unit 8 being held between the cantilevers 7 of the support arms 6 of a pair of support arms 6 to receive the free end 5 of the material roll 2, 3, 4 held by the relevant pair of support arms 6. The pre-tensioning unit 8 is used in particular to bring the free end 5 of the material web located on a material roll 2, 3, 4 into a defined position, to make it able to be fed more easily and in particular in a way which is more automatable to the downstream plant sections of the web-processing machine. The pre-tensioning unit 8 will be discussed in greater detail below. The cantilever 7 of a support arm 6 may also be implemented as pivotable in relation to the support arms 6.
By situating multiple material rolls 2, 3, 4 pivotable around a shared pivot axis D in a support frame 1, it is possible in particular, as already noted, to replace one material roll 2, 3, 4 of the roll changer while the web-processing machine is served from another material roll 2, 3, 4.
The charging position is defined in relation to
For easier charging of the roll changer with new material rolls 2, 3, 4, in addition, the support frame 1 may have an opening 14 in the charging area, through which a new material roll is insertable in the direction of the arrow shown in
The roll changer according to the present invention functions as follows. As shown in
By pivoting the material rolls 2, 3, 4 120° counterclockwise around the pivot axis D, the material roll 2 is transferred from the unwinding area into the charging area, the material roll 3 is transferred from the charging area into a reserve position, and the material roll 4 is transferred from the reserve position into the unwinding area.
A new material roll 19 may now be inserted laterally into the charging area of the roll changer through the recess 14 and installed between the support arms 6. After the new material roll 19 is installed, the picture of the roll changer shown in
The free end 5 of the material web of the material roll 4 which is not located in the unwinding area of the roll changer may be bonded via the pre-tensioning unit 8 and the clamping unit 9 to the outgoing end 12 of the preceding material web. One possibility for this purpose is indicated in
In the course of a pivot movement of the support arms 6 (not visible in
Of course, other types of bond production between outgoing end 12 and incoming end 5 are also conceivable, for example, by gluing or clamping or also using special cutting before the bond production. It is only essential that the bond is capable of transmitting the traction exerted by the web-processing machine to the incoming end 5 of the new material roll 4, so that the new material roll 4 is set into motion. If necessary, however, rotation motors may also be situated on the support arms 6, which set the material rolls 2, 3, 4 into appropriate rotation in the unwinding area, to support the unwinding of the material web in this way.
Of course, more than three pairs of support arms 6 may also be provided, for example, four or even more pairs. With four pairs of support arms 6, a configuration of the four material rolls would suggest itself, for example, in which the neighboring support arms 6 each enclose an angle of 90°. The movement path of a pivot movement as described above would thus not be 120°, but rather only 90°, by which the movement path would be reduced.
A further embodiment of a roll changer according to the present invention is shown in
For example,
A roll drive 23 may optionally be provided in the unwinding area, which sets the material roll 2 located in the unwinding area into rotation, or also brakes it. For example, it is used to support the unwinding of the material web from the material roll 2, so that the traction required for this purpose does not have to be applied exclusively by the downstream web-processing machine. If the material roll 2 is consumed and must be moved into the charging area, in contrast, it is advantageous to first stop it after the outgoing material web is cut off. If the roll drive 23 has a belt applied to the material roll 2 for this purpose, as shown in
For easier charging of the roll changer with new material rolls, in addition, the roll changer may be equipped in the charging area with a lift unit 20, by which a new material roll is insertable in the direction of the arrow shown in
By pivoting the material rolls 2, 3, 4 120° clockwise around the pivot axis D, the material roll 2 is transferred from the unwinding area into the charging area, the material roll 3 is transferred from the charging area into a reserve position, and the material roll 4 is transferred from the reserve position into the unwinding area.
As shown in
A new material roll 19 (not shown in
With the aid of the roll changer according to the present invention, a sufficient stockpile of new material rolls 2, 3, 4 is thus provided in space-saving form, in which rapid replacement of consumed material rolls 2, 3, 4 is possible. Such a roll changer additionally has a simple design and is therefore to be produced cost-effectively.
Number | Date | Country | Kind |
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A 1286/2005 | Jul 2005 | AT | national |
A 1287/2005 | Jul 2005 | AT | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/AT2006/000325 | 7/28/2006 | WO | 00 | 3/12/2008 |