The present invention relates to an apparatus for producing a pack from a packaging-material web, which particularly produces packs comprising a plurality of sealing edges in the longitudinal direction of the pack.
Apparatuses for producing packs from a packaging-material web are known from the prior art in different designs and are frequently referred to as “form-fill-seal bagging machines”. The production of food packs, in which food is stored, is, for example, an application of such an apparatus. The German patent publication DE 101 59 053 A1 proposes, for example, to provide seal seams in the packaging-material web prior to producing a flexible enveloping tube, said seal seams then forming the corners of the pack after the flexible enveloping tube has been produced. This apparatus has basically proved to be successful. However, in order to produce the seal seams, a corresponding machine part has to be disposed upstream of the actual bag forms, which leads to very large design space requirements.
The apparatus according to the invention has, in contrast, the advantage of being designed in a compact and space-saving manner. In addition, different packs having different numbers of seal seams in the longitudinal direction can be produced in a simple way. This end is achieved according to the invention by virtue of the fact that the apparatus for producing a pack from a packaging-material web comprises a forming tube, a filling tube as well as a forming shoulder for forming a plastic tube. Furthermore, a folding means is provided which is disposed downstream of the forming shoulder, as seen in the conveying direction of the flexible enveloping tube. The forming tube thereby has a first diameter in the region of the forming shoulder, and the filling tube has a second diameter, which is smaller than the first diameter, in the region of the folding means. In so doing, a reduction in the diameter of the flexible enveloping tube is achieved; and therefore outwardly directed folds in said flexible enveloping tube can be folded by the folding means. Said folds can then be sealed and form edge regions in the finished state of the pack. In order to achieve a continuous folding via the folding means, said folding means comprises at least one parabola-form folding element, wherein the folding process begins at a vertex of the parabola. That means that the parabola-form folding element is arranged such that the vertex is oriented in the direction of the forming shoulder, i.e. counter to the conveying direction of said flexible enveloping tube. The excess material at the forming tube resulting from the reduction in diameter can therefore be guided along the parabola-form folding element and be folded into a fold, which can subsequently be sealed by the sealing means.
In order to achieve an especially good folding result, parabola-form recesses are likewise preferably formed on the forming tube. A parabola-form gap is thus provided between the parabola-form folding element and the parabola-form recesses in the forming tube, through which gap the flexible enveloping tube can be guided. The parabolic shapes are thereby preferably different; wherein in a particularly preferred manner, the parabolic shape of the parabola-form recess is more elongated than that of the parabola-form folding element. According to a further preferred embodiment of the invention, the parabolic shape of the parabola-form folding element and/or of the parabola-form recesses is asymmetrical.
In a particularly preferred manner, the folding means comprises exactly four parabola-form folding elements as well as preferably likewise exactly four parabola-form recesses. In this way, packs can be produced having a maximum of four sealing edges.
According to another preferred embodiment of the present invention, the sealing units are drag sealing units, which facilitate a sealing process of the folds during a movement of the flexible enveloping tube. It should be noted that even in the case of a temporary stoppage in order to seal a transverse seam, the drag sealing units can also still seal in order to obtain a better sealing result.
The apparatus further preferably comprises a feed device for moving the flexible enveloping tube in the conveying direction. The feed device is preferably a rotating belt which engages on the outside of said flexible enveloping tube. In a particularly preferred manner, said feed device is disposed in the circumferential direction between sealing units of the sealing means in order to enable an overall axial length of said means which is as short as possible.
The apparatus further preferably comprises a retaining element in order to hold the forming tube to a table top or something similar. A recess, through which the forming tube is guided, is then to be formed in the table top or similar object.
The sealing units further preferably have a length in the conveying direction of the flexible enveloping tube which is less than a length of the edges on the pack which have been produced. This is possible because the sealing units are designed as drag sealing units so that a sealing process can not only be performed during a stoppage of the intermittently operating machine, if, e.g., a transverse seal seam is being produced, but also during the feed of the flexible enveloping tube.
The vertexes of the parabola-form folding element and the parabola-form recess further preferably lie in a straight line which is parallel to the conveying direction of the flexible enveloping tube.
The packs produced with the apparatus according to the invention are preferably used for food items. The packs can thereby, for example, have five seal seams in the longitudinal direction, namely four edge seal seams on the edges of the pack as well as a median longitudinal seam. In one embodiment of the inventive machine, only four seams can be required if the median longitudinal seam coincides in fact with an edge sealing seam. Furthermore, packs having only two lateral edge seal seams can also be produced.
An exemplary embodiment of the invention is described below in detail with reference to the accompanying drawings. In the drawings:
a to 4d show different packs which can be produced using the apparatus from
An apparatus 1 for producing a pack from a packaging-material web is described below in detail with reference to
As can be seen in
The apparatus 1 further comprises a sealing means 6 having a multiplicity of sealing units 6a, 6b as well as a folding means 7 for producing outwardly directed folds in a flexible enveloping tube produced by means of the forming shoulder 3. The folds produced in the folding means 7 are then sealed in the sealing means 6, wherein the sealed folds serve as stiffened edges for the pack to be produced.
The folding means 7 is depicted in detail in
As can be seen in
As can further be seen in
The flexible enveloping tube is conveyed by means of a feed device 13 shown in
It should be further noted that the sealing units 6a, 6b of the sealing means 6 are provided as drag sealing means, with which a sealing operation is possible during a stoppage of the flexible enveloping tube as well as when said flexible enveloping tube is being conveyed. Because the depicted form-fill-seal bagging machine has an intermittent mode of operation in order to respectively produce corresponding transverse seal seams, a sealing takes place even during a stoppage of the machine. In this connection, provision can be made for the sealing process to be interrupted after a certain amount of stoppage time in order to avoid too large of a heat generation at the fold to be sealed.
As can be especially seen in
It should be further noted that a length L1 of the sealing units 6a, 6b is shorter than a length L2 of the produced pack. As an alternative, a length L1 of the sealing units can also be longer than a length L2 of the produced pack. Examples of the pack which can be produced by means of the inventive form-fill-seal bagging machine are shown in
According to the invention, an intermittent form-fill-seal bagging machine 1 having a very compact design, in particular as seen in the conveying direction A of the flexible enveloping tube, is provided. By making provision for the parabola-form folding elements 8, a fast and reliable shaping of folds to be sealed can be achieved, said folds being subsequently sealed by the sealing means 6. The form-fill-seal bagging machine according to the invention can thereby be quickly retrofitted for use with other packs, for example by exchanging the complete forming system (forming shoulder including filling pipe) and/or removing parabola-form folding elements or removing sealing units of the sealing means.
The parabolic shapes of the parabola-form folding element 8 and the parabola-form recess 10 are furthermore preferably different. In particular, the formed parts on the front and back are the same and likewise the formed parts on the left and right side. The formed parts on the front and rear are however not the same as the formed parts on the left and right side.
Number | Date | Country | Kind |
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10 2010 038 776.2 | Aug 2010 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP2011/059102 | 6/1/2011 | WO | 00 | 2/4/2013 |