This is the U.S. national phase of International Application No. PCT/IB2016/051526, filed Mar. 18, 2016, which claims the benefit of Italian Patent Application No. BO2015A000135, filed Mar. 19, 2015.
The present invention relates to a grouping unit and method to form groups of hygiene absorbent articles in a packaging machine.
A packaging machine for hygiene absorbent articles normally comprises a feeding unit that receives the hygiene absorbent articles in succession from a manufacturing machine and, if necessary, rotates the hygiene absorbent articles to impart to hygiene absorbent articles themselves the correct orientation, a grouping unit to form groups of hygiene absorbent articles, and a wrapping unit which introduces the groups of hygiene absorbent articles in corresponding wraps to form the packs.
The grouping unit (for example as described in patent application WO9918021A1) comprises a conveyor which receives in succession single hygiene absorbent articles from the feeding unit in an input station and transfers groups of hygiene absorbent articles to the wrapping unit in an output station. The grouping unit comprises a conveyor in turn comprising a belt, which is closed so as to form a ring, is vertically arranged, and is wound around pulleys. Along the belt a plurality of pockets is defined, each of which is adapted to house a respective hygiene absorbent article, and a static support plane, which is arranged horizontally below the belt and on which the hygiene absorbent articles carried by the pockets rest and slide as they advance along a grouping path. The belt supports a plurality of blades, each of which extends perpendicularly to the belt and laterally delimits a respective pocket. For obvious geometric constraints, two successive and adjacent blades are parallel to each other along the rectilinear sections of the grouping path and are inclined one with respect to the other along the curvilinear sections of the grouping path in the area wherein the belt is wound around a pulley; accordingly, each pocket has a minimum width along the rectilinear sections of the grouping path and has a maximum width along the curvilinear sections of the grouping path P. The input station is arranged at a pulley, and therefore in the input station each pocket has the maximum width that facilitates the introduction of the corresponding hygiene absorbent article, whereas the output station is arranged between two pulleys, and therefore in the output station the pockets have the minimum width (which, however, does not constitute an obstacle for the removing of a group of hygiene absorbent articles from the corresponding pockets).
It was observed that operating at high hourly productivity (indicatively when a productivity of 700-900 articles per minute is exceeded) the frequency of clogging in the grouping unit significantly increases, i.e. the frequency with which a hygiene absorbent article assumes an unwanted position in the grouping unit that determines the partial or total destruction of the hygiene absorbent article itself and especially determines the automatic stop of the grouping unit (and therefore of the whole packaging machine) so as to allow removing the shreds of the hygiene absorbent article and then restore the full functionality of the grouping unit.
The patent application WO2013000527A1 describes a grouping unit to form groups of hygiene absorbent articles in a packaging machine wherein a conveyor which receives single hygiene absorbent articles in an input station is provided, which feeds the hygiene absorbent articles along a grouping path, and releases the groups of hygiene absorbent articles in an output station; a braking device is provided, which is arranged at the input station in order to slow down the introduction movement of the hygiene absorbent articles. However, the braking device described in the patent application WO2013000527A1 has a very complex and bulky structure that involves both high production costs, and a negative impact on all the other elements arranged at or close to the input station.
The object of the present invention is to provide a grouping unit and a method to form groups of hygiene absorbent articles in a packaging machine, which grouping unit is free from the drawbacks described above and, at the same time, is simple and inexpensive to produce.
According to the present invention, a grouping unit and a method to form groups of hygiene absorbent articles in a packaging machine, as claimed in the attached claims, are provided.
The present invention will now be described with reference to the accompanying drawings, which illustrate a non-limiting embodiment, wherein:
In
The packaging machine 1 comprises a known type feeding unit 6 which receives the hygiene absorbent articles 4 in succession from a manufacturing machine arranged upstream from the packaging machine 1 and which, if necessary, rotates the hygiene absorbent articles 4 to impart to the hygiene absorbent articles 4 themselves the correct orientation. The packaging machine 1 also comprises a grouping unit 7 to form groups 3 of hygiene absorbent articles 4, which receives in succession single hygiene absorbent articles 4 from the feeding unit 6 at an input station S1, and transfers groups 3 of hygiene absorbent articles 4 to a wrapping unit 8 in an output station S2. The wrapping unit 8 receives the groups 3 of hygiene absorbent articles 4 and introduces the groups 3 of hygiene absorbent articles 4 in corresponding wraps 5 to form packs 2; in the embodiment illustrated in
As illustrated in
Along the belt 10 a plurality of pockets 12 is defined, each of which is adapted to house a respective hygiene absorbent article 4 to accompany (push) the hygiene absorbent article 4 along the grouping path P; in particular, each pocket 12 receives a respective hygiene absorbent article 4 at the input station S1 and releases the respective hygiene absorbent article 4 along with other hygiene absorbent articles 4 forming a group 3 at the output station S2. Furthermore, the conveyor 9 comprises a stationary support plane 13 (i.e. completely fixed), which is arranged horizontally below the belt 10 (therefore below the pockets 12) and on which the hygiene absorbent articles 4 carried by pockets 12 rest and slide as they advance along the grouping path P.
The belt 10 supports a plurality of blades 14, each of which extends perpendicularly to the belt 10 and laterally delimits a respective pocket 12 (i.e. forming the wall of the respective pocket 12). Consequently, each pocket 12 is defined and delimited by two successive and facing blades 14 and a blade 14 itself delimits on one side a pocket 12 and on the opposite side another preceding or successive pocket 12. For obvious geometric constraints, two successive and adjacent blades 14 are parallel to each other along the rectilinear sections of the grouping path P (i.e. along the sections of the grouping path P comprised between two pulleys 11) and are mutually inclined (that is, converging towards the central rotation axis of the corresponding pulley 11) along the curvilinear sections of the grouping path P (i.e. at a pulley 11 in the area where the belt 10 is wound around the pulley 11). Consequently, each pocket 12 has a minimum width along the rectilinear sections of the grouping path P and has a maximum width along the curvilinear sections of the grouping path P. The input station S1 is arranged at a pulley 11 (i.e. along a curvilinear section of the grouping path P), and then in the input station S1 each pocket 12 has the maximum width that facilitates the entry of the corresponding hygiene absorbent article 4, while the output station S2 is arranged between two pulleys 11 (i.e. along a rectilinear section of the grouping path P), and then in the output station S2, the pockets 12 have the minimum width (which, however, does not constitute an obstacle for the removal of a group 3 of hygiene absorbent articles 4 from the corresponding pockets 12).
According to the preferred (but not limiting) embodiment illustrated in
As illustrated in
The active braking device 15 comprises a pushing element 16, which is arranged inside each pocket 12 arranged in the input station S1 so as to push a corresponding hygiene absorbent article 4 which enters the pocket 12 against a blade 14 that delimits the pocket 12 itself. In other words, when a hygiene absorbent article 4 enters the corresponding pocket 12 arranged in the input station S1, the pushing element 16 progressively pushes the hygiene absorbent article 4 against one of the two blades 14 which delimit the pocket 12 to brake, by friction, the advancement of the hygiene absorbent article 4. The braking action of the pushing element 16 can only slow down the hygiene absorbent article 4 so that the hygiene absorbent article 4 comes into contact with the bottom of the pocket 12 (i.e. with the belts 10) at low speed (therefore determining an irrelevant mechanical rebound) or the braking action of the pushing element 16 can stop the hygiene absorbent article 4 when the hygiene absorbent article 4 has completely entered the pocket 12 so that hygiene absorbent article 4 does not come into contact with the bottom of the pocket 12 (i.e. with the belts 10) completely eliminating mechanical rebound.
The active braking device 15 comprises a moving device 17, which cyclically moves the pushing element 16 between an open position (e.g. illustrated in
In the preferred, but not limiting, embodiment illustrated in the attached figures, the moving device 17 comprises an arm 18 that is rotatably mounted around a rotation axis 19 and supports the pushing element 16, and an actuator 20 that cyclically rotates the arm 18 around the rotation axis 19 to move the pushing element 16 between the open position and the closed position. In the preferred, but not limiting, embodiment illustrated in the attached figures, the actuator 20 is a linear actuator (i.e. alternately performs a back and forth linear movement) of electric or pneumatic type (for example comprising a linear electric motor).
The moving device 17 is synchronized with the movement of each hygiene absorbent article 4 entering a corresponding pocket 12 arranged in the input station S1 so that the pushing element 16 reaches the closed position when, and only when the hygiene absorbent article 4 has completely entered the pocket 12. Preferably, the moving device 17 is synchronized with a movement of each hygiene absorbent article 4 entering a corresponding pocket 12 arranged in the input station S1, so that the pushing element 16 reaches the closed position when, and only when the hygiene absorbent article 4 has completely entered the pocket 12 and has not yet come into contact with the belt 10.
As illustrated more clearly in
In
According to a different and not illustrated embodiment, which is not part of the present invention, the active braking device 15 is not of mechanical type as described above (i.e. the pushing element 16 is absent) and is instead of pneumatic type; in this embodiment, the active braking device 15 comprises at least one nozzle which is arranged, in a fixed position, at the input station S1 and is adapted to generate a blow of compressed air that is positioned inside the pocket 12 arranged in the input station S1 and hits the hygiene absorbent article 4 entering the pocket 12 itself. In particular, the blow of compressed air generated by the nozzle of the active braking device 15 is oriented in parallel and opposite direction with respect to the advancement direction of the hygiene absorbent article 4 entering the pocket 12 arranged in the input station S1.
The grouping unit 7 described above has numerous advantages.
First, the grouping unit 7 described above allows to attenuate (making it irrelevant) or to totally eliminate mechanical rebound of the hygiene absorbent articles 4 that enter pockets 12, against the bottom 12 of the pockets themselves. In this way, it is always guaranteed that, in the input station S1, the hygiene absorbent articles 4 are arranged in the correct position inside the corresponding pockets 12 and therefore the possibility that a hygiene absorbent article 4 assumes an undesired position inside the corresponding pocket 12 thus causing the clogging of the grouping unit 7 is totally eliminated. In other words, by eliminating the negative effects of the mechanical rebound of hygiene absorbent articles 4, entering the pockets 12, against the bottom of the pockets 12 themselves, it is ensured that in the input station S1 the hygiene absorbent articles 4 always have the correct position in the corresponding pockets 12 and thus a bad positioning of a hygiene absorbent article 4 which can cause clogging of the grouping unit 7 is prevented.
It is important to note that thanks to the fact that the braking action acting on a hygiene absorbent article 4 entering a corresponding pocket 12 in the input station S1 is present only in the final step of the hygiene absorbent article 4 entering a corresponding pocket 12, the introduction of the hygiene absorbent article 4 into a corresponding pocket is, anyway, very fast. In other words, the hygiene absorbent article 4 can quickly enter the corresponding pocket 12 and is decelerated (braked) only in the final step of the hygiene absorbent article 4 entering the pocket 12.
In addition, the grouping unit 7 described above is simple and inexpensive to produce, since the braking device 15 can be both easily integrated at the input station S1 without any particular modification to the existing structure, and is low-cost (it is essentially constituted by a linear motor, a hinge and an arm).
Number | Date | Country | Kind |
---|---|---|---|
BO2015A0135 | Mar 2015 | IT | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/IB2016/051526 | 3/18/2016 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2016/147151 | 9/22/2016 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
1760030 | Alger | May 1930 | A |
4124203 | Muller | Nov 1978 | A |
5127209 | Hunter | Jul 1992 | A |
5360316 | O'Mara | Nov 1994 | A |
5620081 | Kivits | Apr 1997 | A |
5897291 | Gerwe | Apr 1999 | A |
6065746 | Tranquilla | May 2000 | A |
6644461 | Imbert | Nov 2003 | B1 |
6834755 | Jay | Dec 2004 | B2 |
8317183 | Brunschwiler | Nov 2012 | B2 |
8583279 | Fecht | Nov 2013 | B2 |
20010040085 | Rebeaud | Nov 2001 | A1 |
20070108218 | Schmetzer | May 2007 | A1 |
20100071318 | Brandhorst | Mar 2010 | A1 |
20100230887 | Stauber | Sep 2010 | A1 |
20130068590 | Fujita | Mar 2013 | A1 |
20130156536 | Dowiasch | Jun 2013 | A1 |
20140151188 | Schulte | Jun 2014 | A1 |
Number | Date | Country |
---|---|---|
1323730 | Nov 2001 | CN |
0806380 | Nov 1997 | EP |
WO-9918021 | Apr 1999 | WO |
WO-2013000527 | Jan 2013 | WO |
WO-2013107985 | Jul 2013 | WO |
Entry |
---|
Ferris et al., In-line substrate escapement, IBM Technical Disclosure Bulletin, 10(2):148 (1967). |
International Search Report and Written Opinion, International Application No. PCT/IB2016/051526, dated Jun. 29, 2016. |
Number | Date | Country | |
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20180050830 A1 | Feb 2018 | US |