The present invention concerns a machine for making packing boxes, both small and large, and in particular for performing cutting and pre-creasing operations on a sufficiently rigid sheet, such as for example cardboard, smooth or corrugated, plastic material or other similar materials, and thus to obtain a flat product, shaped and possibly pre-creased, that represents the development of the packing box to be produced, or at least part of it, ready to be used later so as to form the packing box itself, in a three-dimensional form. By the word sheet, here and hereafter, we mean a single sheet, or a strip, or a roll, from which a plurality of sheets can be made, having a thickness comprised between some tenths of a millimeter and some millimeters. In particular, the cutting and/or pre-creasing operations are carried out by a plurality of working heads, each provided with cutting and pre-creasing tools, some of which are positioned, either manually or automatically, in the desired positions, transverse to the direction of feed of the sheet, depending on the sizes and shape of the packing box or boxes to be made.
A machine for making packing boxes is known, which comprises feed rolls able to feed the sheet to be cut and/or pre-creased in a longitudinal direction, a first working head, provided with a cutting and/or pre-creasing tool, and mobile in a transverse direction, substantially perpendicular to the longitudinal direction, in order to perform transverse cuts and/or pre-creasings. A group of other working heads, each provided with a cutting and/or pre-creasing tool, is able to perform longitudinal cuts and/or pre-creasings.
The group of longitudinal working heads is guided on transverse guides, and each of them can be selectively positioned in a desired transverse position. The movement of the longitudinal working heads in the transverse direction must be performed every time that the machine has to be set so as to make a packing box different from the one made before.
In this known machine, an electric motor is combined with each longitudinal working head which, with its own toothed pinion, engaging on a fixed rack, is able to displace autonomously the corresponding longitudinal working head and to position it in the desired position.
However, the known machine has the disadvantage that it is very complex and costly, because it entails using a number of electric motors, and the relative control servo-mechanisms, the same as that of the longitudinal working heads, which at times may be more than ten.
One purpose of the present invention is to achieve a machine and a relative method to make packing boxes that not only allows to position precisely and automatically each longitudinal working head in the transverse direction, but that at the same time is simple and inexpensive.
Another purpose of the present invention is to achieve a machine and a relative method to make packing boxes that does not entail using a plurality of electric motors, to command the different longitudinal working heads.
Another purpose of the present invention is to allow a possible manual displacement of each longitudinal working head in the transverse direction.
The Applicant has devised, tested and embodied the present invention to overcome the shortcomings of the state of the art and to obtain these and other purposes and advantages.
The present invention is set forth and characterized in the independent claims, while the dependent claims describe other characteristics of the invention or variants to the main inventive idea.
In accordance with the above purpose, a machine for making packing boxes according to the present invention allows to perform cutting and/or pre-creasing operations on a sheet of sufficiently rigid material, to obtain a flat product, shaped and possibly pre-creased, which represents the development of the packing box to be made, or at least part of it, ready to be later bent so as to form the packing box itself in three-dimensional form.
The machine according to the present invention comprises feed means able to feed the sheet in a longitudinal direction, a first working head, provided with a cutting and/or pre-creasing tool, and mobile in a transverse direction, substantially perpendicular to the longitudinal direction, in order to perform transverse cuts and/or pre-creasings, and at least a second working head, also provided with a cutting and/or pre-creasing tool, and selectively positionable in a desired position in the second transverse direction, in order to perform longitudinal cuts and/or pre-creasings.
According to a characteristic feature of the present invention, on the first working head positioning means are disposed, which are able to cooperate with the second working head in order to position it selectively in the desired transverse position.
Advantageously, the machine comprises a plurality of second working heads, each of which has the same characteristics and which can be moved by the positioning means in the transverse direction.
In particular, the first working head comprises a first slider, commanded by motor means and able to slide alternately in the two senses in the transverse direction.
Advantageously, in some forms of embodiment, the positioning means comprise at least a drawing element mounted on the slider and selectively drivable so as to engage with the second working head.
According to some forms of embodiment of the present invention, the drawing element comprises a pointed pin commanded by an actuator mounted on the first slider.
According to some forms of embodiment, the drawing element is able to cooperate with a clamping device mounted on the second working head and able to hold the latter clamped in the transverse direction.
According to some other forms of embodiment of the present invention, the motor means comprise a transmission belt commanded by a motor and having at least a rectilinear segment substantially parallel to the transverse direction.
These and other characteristics of the present invention will become apparent from the following description of a preferential form of embodiment, given as a non-restrictive example with reference to the attached drawings wherein:
To facilitate comprehension, the same reference numbers have been used where possible, to identify identical common elements in the drawings.
With reference to
F.
On the lateral flanks 12 and 13 (
The slider 22 of the working head 21 is permanently connected to a transmission belt 30 (
On the lateral flanks 12 and 13, above the feed rolls 15 and downstream of the working head 21 (
Each working head 41 comprises a slider 42 on which a cutting tool 43, also consisting of a circular blade, and a pre-creasing tool 45, also consisting of a shaped disc, are mounted. The tools 43 and 45 are connected, in a known manner, to corresponding actuators 46 and respectively 47, for example pneumatic, which are able to take them selectively against the sheet F below, in order to make longitudinal cuts and/or pre-creasings, that is, in the direction L.
Each slider 42 is shaped so as to have a front vertical upright 50 (on the right in
On the upper part of each slider 42 a clamping device 60 is mounted (
Each clamping device 60 (
According to a characteristic feature of the present invention, each working head 41 can be moved automatically, instead of manually, along the transverse bar 40 and positioned in a desired position.
This is possible due to the presence of the positioning device 75 cited above, which is mounted on the slider 22 of the first working head 21.
In some forms of embodiment, which do not restrict the field of the protection of the present invention, the positioning device 75 comprises a pair of actuators 76, for example pneumatic, mounted on the rear part of the slider 22 (on the left in
A graduated bar 80 (
It is not excluded that, in some other forms of embodiment, the positioning device 75 is formed by or configured with different components, but equivalent in functioning to what we have described above.
The machine 10 as described heretofore functions as follows.
Firstly, the position of each working head 41 (
Each working head 41 (
Initially, with the tools 23 and 25 of the working head 21 raised in a non-operating position, the slider 22 is made to complete a full travel from left to right and from right to left, so that the photocell 78 (
Then, in order to move transversely any one of the working heads 41, the control circuit C commands the motor 35 which, by means of the transmission belt 30, causes the slider 22 to be displaced until the pointed pin 77 of one of the two actuators 76 (normally the one nearer the working head 41 to be moved) is exactly opposite the hole 66 (
Then the electric motor 35 is again commanded (
The actuator 76 (
The same operation is then repeated for all the other working heads 41 that are to be moved and positioned transversely with respect to the transverse bar 40.
Once all the working heads 40 have been positioned, the machine 10 can perform on the sheet F, in a known manner, all the desired cutting and/or pre-creasing operations, both transverse, by means of the working head 21, and also longitudinal, by means of the group of working heads 41.
It should be noted that each working head 41 can not only be positioned automatically in the desired position as described above, but can also be moved manually along the transverse bar 40 by driving the corresponding handle 70.
It is clear that modifications and/or additions of parts may be made to the machine for making packing boxes as described heretofore, without departing from the field and scope of the present invention.
It is also clear that, although the present invention has been described with reference to some specific examples, a person of skill in the art shall certainly be able to achieve many other equivalent forms of machine for making packing boxes, having the characteristics as set forth in the claims and hence all coming within the field of protection defined thereby.
Number | Date | Country | Kind |
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UD2010A000085 | Apr 2010 | IT | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/IB2011/000896 | 4/26/2011 | WO | 00 | 10/26/2012 |