| (19) |
 |
|
(11) |
EP 1 028 056 B1 |
| (12) |
EUROPEAN PATENT SPECIFICATION |
| (45) |
Mention of the grant of the patent: |
|
19.01.2005 Bulletin 2005/03 |
| (22) |
Date of filing: 11.02.2000 |
|
| (51) |
International Patent Classification (IPC)7: B65B 51/30 |
|
| (54) |
Tool assembly for making transverse seams in packaging web
Werkzeugzusammenbau zum Herstellen von Quernahten in Verpackungsbahnen
Ensemble d'outils pour fabriquer des soudures transversales dans une bande d'emballage
|
| (84) |
Designated Contracting States: |
|
AT BE CH CY DE DK ES FI FR GB GR IE IT LI LU MC NL PT SE |
| (30) |
Priority: |
12.02.1999 NL 1011299
|
| (43) |
Date of publication of application: |
|
16.08.2000 Bulletin 2000/33 |
| (73) |
Proprietor: Klöckner Hänsel Tevopharm B.V. |
|
3125 BC Schiedam (NL) |
|
| (72) |
Inventor: |
|
- Braakman, Herman Wichert Theodoor
2665 EJ Bleiswijk (NL)
|
| (74) |
Representative: van Westenbrugge, Andries et al |
|
Nederlandsch Octrooibureau
P.O. Box 29720 2502 LS The Hague 2502 LS The Hague (NL) |
| (56) |
References cited: :
EP-A- 0 226 693 US-A- 5 417 041
|
US-A- 3 629 987
|
|
| |
|
|
|
|
| |
|
| Note: Within nine months from the publication of the mention of the grant of the European
patent, any person may give notice to the European Patent Office of opposition to
the European patent
granted. Notice of opposition shall be filed in a written reasoned statement. It shall
not be deemed to
have been filed until the opposition fee has been paid. (Art. 99(1) European Patent
Convention).
|
[0001] The present invention relates to a tool assembly for making a transverse seam in
packaging formed from a continuous web of film material. More specific, the present
invention relates to a tool assembly according to the preamble of claim 1.
[0002] A tool assembly according to the preamble of claim 1 is disclosed by EP-A-226.693.
Figure 3 of this publication discloses a transverse seal station having an upper seal
claw holder driven around a central axis. This seal claw holder is provided with a
crank such that the guide rollers are positioned at a material distance. Upon unrolling
of the guide rollers along curved plates, slides are displaced along guide bars.
[0003] A further tool assembly is disclosed in Netherlands Laid Open Application NL-A 7
703 794. This tool assembly is used in flow wrap packaging machines with which bag-shaped
packaging is formed from a continuous film web by making longitudinal and transverse
seams in the film material. After making a longitudinal seam, the film web is sealed
and cut off between the successive products with the aid of the tool assembly. The
known tool assembly comprises two tools located opposite one another which are attached
to a rotary tool mounting that is driven in such a way that the orientation of the
tool is constantly towards the film web and that, in a sealing position, the tools
move horizontally at the speed of the film web. The tool position is varied with respect
to the central rotary shaft by moving the tool up and down along a guide rod by means
of plain bearings. The position of the tool along the guide rod is determined by a
curved track along which the tool mounting is rotated and against which the tool bears
via a follower rolling over the curved track. The curved track has a shape such that
at the location of the film web the tool moves only horizontally at the speed of the
film. The known installation has the disadvantage that the moving parts are of relatively
heavy construction, with the result that the working capacity is limited. Furthermore,
because of the multiplicity of components, the known installation takes up a relatively
large amount of space so that use of multiple tool pairs is difficult to implement,
as a result of which only limited adaptation to different product formats is possible.
Furthermore, the known follower is enclosed between two curved tracks, with a certain
play. The direction of rotation of the follower changes depending on the bearing surface
over which the follower rolls.
[0004] One aim of the present invention is to provide a tool assembly that is relatively
lightweight and takes up relatively little space and with which a high sealing pressure
can be achieved when forming a transverse seam. A further aim is to provide a tool
assembly that can easily be adapted to different product formats.
[0005] To this end the tool assembly according to the present invention is characterised
in that the positioning shafts at each end of a tool are mounted in a respective plain
bearing that is movable along a respective guide rod, wherein the guide rod is rotatable,
close to the second end of the tool, about a second rotary shaft which is a distance
away from the central rotary shaft, which distance corresponds to the distance between
the first and second positioning shafts.
[0006] By using the followers on either side of the tool, which followers are mounted on
bearings about shafts offset with respect to one another, a fixed tool orientation
is obtained without complex transmissions being required for this. As a result the
tool assembly can be of lightweight construction, so that the forces of inertia remain
restricted and a high working capacity becomes possible. By placing the positioning
shafts apart in the vertical direction, skewing of the tools in the horizontal path
when the tools are subjected to force (during sealing) is prevented. As a result of
the space-saving construction of the tool assembly according to the present invention
it is possible to place multiple tool pairs around the central rotary shaft. Furthermore,
a tool can be dismantled easily, for example for maintenance or for adaptation to
a different product format, by shifting the plain bearings of the guide rods or by
dismantling the guide rods. After the tools have been dismantled, the cam discs or
curved discs can also be easily exchanged, in order to adapt the shape of the bearing
surfaces to the working capacity and the product format.
[0007] In one embodiment of the tool assembly according to the present invention, the guide
rods have two plain bearings on either side of the respective rotary shafts of the
guide rods, which plain bearings are movable along the guide rods and each bear via
a follower on diametrically opposed positions of the respective bearing surface and
are linked to one another via coupling elements.
[0008] By means of the diametrically opposed followers, each tool is positioned in two radial
directions with respect to the curved track, so that contact of the followers with
the track at high speeds of rotation is always guaranteed. Compared with the known
method of using spring loading to guarantee that the followers are in contact with
the bearing surfaces, the construction according to the invention offers the advantage
that drive forces for rotation of the tools can remain restricted. Preferably, there
is a tool connected to the plain bearings on each side of the rotary shaft, so that
two tools are rotated over the bearing surfaces of the curved track per pair of diametrically
opposed followers.
[0009] It is pointed out that EP-A 0 738 582 discloses a tool assembly with which four tools
with followers are rotated over an internal and an external curved track, such that
the followers are enclosed between the curved tracks. The tools are held in a fixed
orientation by means of a planetary gear system. The known installation is relatively
heavy because of its multiplicity of components and is relatively complex. Close abutting
contact of the followers of the tools by connecting two diametrically opposed tools
to one another is not shown in this publication. Furthermore, the known followers
are mounted on bearings in a large disc on which the tools are also mounted, with
the result that the disc is relatively heavy. Moreover, the radius of the track of
the tool heads changes during the sealing path so that guiding of the tools is necessary.
Such a guide is expensive and relatively vulnerable, partly because of the thermal
expansion and contraction which is caused by the heated tools.
[0010] In a further embodiment of the tool assembly according to the present invention,
a second pair of guide rods is located transversely to the first pair of guide rods,
so that one or more further tools are movable along the second pair of guide rods.
The further tools bear on the bearing surfaces via their followers. By using the relatively
open construction according to the present invention, four or six tools can be rotated
around the curved tracks, so that a very high working capacity can be obtained.
[0011] The tools can have been provided with a cutting element that is movable in a slot
in the tool and is operated by a stationary pressure element which engages on the
cutting element when the tool is in the sealing position and pushes said cutting element
beyond the bottom edge of the tool.
[0012] In a tool unit having an upper and a lower tool assembly according to the invention,
wherein the drive mechanisms of the tool units have each been provided with a drive
shaft with a toothed element, a drive element in the form of a closed loop is placed
around the toothed elements. By driving the upper and the lower tool unit by means
of a single toothed belt or chain, the tools are rotated in opposing directions in
a manner which produces little noise, without play and without the need to use lubricants.
[0013] A further embodiment of a tool unit having an upper and a lower tool assembly, each
with a rotary tool, is characterised in that the upper tool assembly is hingeably
connected to the lower tool assembly at a hinge point located on one side of a separation
plane. By this means it is possible to open up an entire tool group at the hinge point,
so that the tools are easily accessible for cleaning and maintenance. The upper and
the lower tool assembly can also have been connected via an elastic hinge so as to
provide for an accurately determined small mutual displacement.
[0014] The invention will be explained in more detail with reference to the appended drawing,
in which:
Figure 1 shows a cross-sectional view of a tool unit with four upper and lower tool
assemblies according to the present invention,
Figure 2 shows a plan view, partially in cross-section, of the tool unit according
to Figure 1, and
Figure 3 shows a side view, partially in cross-section, of the tool unit according
to Figure 1.
[0015] Figure 1 shows a tool unit 1 for making transverse seams in a flow wrap packaging
installation with an upper tool assembly 2 and a lower tool assembly 3. The upper
tool assembly 2 comprises four tools, two tools 4, 5 of which are shown in Figure
1. Tool 5 is in the sealing position, in which it is in contact with the tool 6 of
the lower tool assembly 3.
[0016] The tool 4 is provided at its first end 7 with a follower 8 that is rotatably mounted
on a bearing around a first positioning shaft 9. The tool 4 is rotatably connected
at the second end 11 thereof to a second follower 13 via a crank 12. The follower
13 is rotatably mounted on a bearing around a second positioning shaft 14. The first
positioning shaft 9 and the second positioning shaft 14 are located parallel to one
another some distance (d) apart.
[0017] The followers 8, 13 bear against curved discs 16, 17. The axis of the curved disc
16 is coincident with a central rotary shaft 18 about which the tools 4 and 5 and
the positioning shaft 9 are rotated. The second curved disc 17 is positioned eccentrically
with respect to the curved disc 16. The axis of the second curved disc 17 is coincident
with a second rotary shaft 25 about which the follower 13 and the positioning shaft
14 are rotated. The second rotary shaft 25 is located a distance (d) away from the
central rotary shaft (18), the distance (d) corresponding to the distance between
the first positioning shaft 9 and the second positioning shaft 14 of the tool 4. As
a result of the eccentric positioning of the curved discs 16, 17 and the mutually
offset positions of the positioning shafts 9, 14, the orientation of the tool 4 remains
constant on rotation of the tool 4 about the central rotary shaft 18, the followers
8, 13 rolling over the bearing surfaces of the curved discs 16, 17.
[0018] As shown in Figure 3, the curved track 16 comprises a flat bottom section 16', so
that in the sealing region, in which the tools move parallel to the film web, the
tools 5, 6 in contact with the web are pushed against one another under a constant
force.
[0019] As a result of the rolling of the followers 8, 13 along the curved tracks 16, 17,
the distance of the tool 4 from the central rotary shaft 18 is varied, whilst the
position of the tool remains constant. The radial movement of the tool 4 with respect
to the central rotary shaft 18 is guided along guide rods 19, 20. The tool 4 is vertically
displaceable over the guide rods 19, 20 via plain bearings 21, 22. The plain bearings
21, 22 are rotatable about the positioning shafts 9 and 14, respectively. The guide
rods 19, 20 are fixed in blocks 23, 24. The block 23 is driven around the central
rotary shaft 18 via a toothed belt and toothed pulley 26. The block 24 and the guide
rod 20 are driven around the second rotary shaft 25 via a toothed pulley 27. The construction
according to the present invention is very lightweight and open so that various pairs
of guide rods 19, 19' (for example 2, 3 or 4 pairs) can be used crosswise, as is clear
from Figure 3. Maintenance of the tools and adjustments to the product format by adding
or removing tools is very simple since these can easily be dismantled by uncoupling
the plain bearings 21, 22 from the guide rods 19, 20 or by detaching the guide rods
19, 20 from the blocks 23, 24.
[0020] As can clearly be seen from Figure 3, the plain bearings 30, 31 of the tool 5, which
is located diametrically opposite tool 4, are linked to the plain bearings 21, 22
via coupling rods 32, 33. By means of the mutual coupling of the plain bearings 21,
30; 22, 31 it is guaranteed that the followers 8, 13 of the upper tool 4 and the followers
34, 35 of the lower tool 5 are in close abutting contact with the curved discs 16,
17, even at high speeds of rotation at which centrifugal forces force the followers
radially away from the curved discs 16, 17.
[0021] As can be seen from Figure 2, the tool 4 has a slot 37 in which a cutting element
is accommodated such that it is movable up and down. The cutting element is provided
with two projections 38, 39 which in the sealing position of the tool can be brought
into engagement with rollers 40, 41 which are attached via arms 42, 43 to the central
rotary shaft 25. As a result of the engagement of the rollers 40, 41 on the projections
38, 39 the cutting element is pushed out below the sealing surface of the tool 4 so
that the film clamped beneath the tool is cut through.
[0022] As shown in Figure 3, the upper tool assembly 2 and the lower tool assembly 3 are
driven by a single toothed belt 46 which is fed in a closed loop around the toothed
pulleys 26, 26' via two guide pulleys 47, 48. Gears could also be used instead of
the toothed belt drive.
[0023] As shown in Figure 3, the upper tool assembly 2 and the lower tool assembly 3 are
hingeable with respect to one another along a separation plane 50. The tool assemblies
2, 3 are connected to one another at one side of the separation plane 50 via a hinge
51. In the embodiment under discussion the hinge 51 is formed by a flexible metal
connection between the upper tool assembly 2 and the lower tool assembly 3. The elastic
hinge 51 is made from an elastic aluminium alloy and is ideal for movements with a
short stroke and displacement with high accuracy. A hinge in the form of a hinge pin
at point 51 is also possible. The spacing between the upper tool assembly 2 and the
lower tool assembly 3, and thus the sealing pressure between the tools 5, 6, can be
adjusted by means of a compression spring 52 which presses the upper tool assembly
2 against the lower tool assembly 3.
[0024] The slit width of the gap at the separation plane 50 is determined by a sleeve 54
positioned eccentrically with respect to a post 55. The slit width between the upper
tool assembly 2 and the lower tool assembly 3 can be accurately adjusted by rotation
of the sleeve 54.
1. Tool assembly (2, 3) for making a transverse seam in packaging formed from a continuous
web of film material, comprising:
- a tool (4), rotatable about a central rotary shaft (18), having a longitudinal axis
and having, at a first end (7), a follower (8) that is fixed to the tool (4) and is
rotatable around a first positioning shaft (9),
- a stationary bearing surface (16) having a closed contour on which the follower
(8) bears,
- a guide rod (19) which is rotatable together with the tool (4) about the central
rotary shaft (18), the tool (4) being connected to the guide rod (19) via a plain
bearing (21) that is movable along the guide rod (19), and
- a drive mechanism (26, 26') for rotating the tool (4), the follower (8) and the
guide rod (19) about the central rotary shaft (18),
in which the tool is connected at a second end (11) to a second follower (13) that
is rotatable about a second positioning shaft (14) which is parallel to the first
positioning shaft and which is located a predetermined distance (d) away from the
first positioning shaft (9), a second bearing surface (17) which is parallel to the
first bearing surface (16) and on which the second follower (13) bears being provided
close to the second end (11) of the tool (4),
characterised in that the positioning shafts (9, 14) at each end (7, 11) of a tool are mounted in a respective
plain bearing (21, 22) that is movable along a respective guide rod (19, 20), wherein
the guide rod (20) is rotatable, close to the second end (11) of the tool (4), about
a second rotary shaft (25) which is a distance (d) away from the central rotary shaft
(18), which distance (d) corresponds to the distance between the first and second
positioning shafts (9, 14).
2. Tool assembly (2, 3) according to Claim 1, characterised in that the guide rods (19, 20) have two plain bearings (21, 30; 22, 31) on either side of
the respective rotary shafts (18, 25) of the guide rods, which plain bearings are
movable along the guide rods and each bear via a follower (8, 34; 13, 35) on diametrically
opposed positions of the respective bearing surface (16, 17) and are linked to one
another via coupling elements (32, 33).
3. Tool assembly (2, 3) according to Claim 2, characterised in that a tool (4, 5) is connected to the plain bearings (21, 22; 30, 31) on each side of
the rotary shafts (18, 25).
4. Tool assembly (1) according to Claim 1, 2, or 3, characterised in that at least a second pair of guide rods (19') is located transversely to the first pair
of guide rods (19, 20), over which second pair of guide rods (19') one or more further
tools are movable, which further tools bear on the bearing surfaces (16, 17) via their
followers.
5. Tool assembly (2, 3) according to one of the preceding claims, characterised in that the bearing surfaces (16, 17) are provided, in a sealing position of the tools, with
an essentially flattened section (16') to provide a predetermined compressive force
of the tool (5) on a tool (6) located opposite in the sealing position.
6. Tool assembly (2, 3) according to one of the preceding claims, characterised in that at least one tool (4) is provided with a central slot (37) and a cutting element
(38, 39) movable in the slot, wherein a pressure element (40, 41) is provided that,
in the sealing position of the tool (4), engages on the cutting element (38, 39) and
that pushes the latter out of the slot (37).
7. Tool assembly (2, 3) according to Claim 6, characterised in that the pressure element (40, 41) is arranged on a pressure arm (42, 43) extending transversely
to rotary shaft (18, 25).
8. Tool unit (1) comprising an upper and a lower tool assembly (2, 3) according to one
of the preceding claims, characterised in that the drive mechanisms of the upper and the lower tool assembly are each provided with
a drive shaft with a toothed element (26, 26') fixed thereto, one drive element (46)
being placed in the form of a closed loop around the toothed elements of the upper
and the lower tool assembly (2, 3).
9. Tool unit (1) according to Claim 8, characterised in that the drive element (46) is guided along a top side of the top toothed element (26)
to a first return element (47) located below the bottom toothed element and from there
is guided to a top side of the bottom toothed element (26') and via a second return
element (48) to the top toothed element (26).
10. Tool unit (1) comprising an upper and a lower tool assembly (2, 3) according to one
of Claims 1 to 7, characterised in that the upper tool assembly (2) is joined at a hinge point (51) to the lower tool assembly
(3) on a first side of a separation plane (50) between the upper tool assembly (2)
and the lower tool assembly (3).
11. Tool unit (1) according to Claim 10, characterised in that the hinge point (51) is formed by a connection, made of an elastic material, between
the upper and the lower tool assembly (2, 3).
12. Tool unit (1) according to Claim 10 or 11, wherein the lower tool assembly (3) is
joined, at a second side located opposite the first side of the separation plane (50),
to the upper tool assembly (2) via a spring element (52).
1. Werkzeuganordnung (2, 3) zum Herstellen einer Quemaht beim Verpacken, in dem eine
kontinuierliche Bahn eines Folienmaterials bearbeitet wird, wobei umfasst ist:
- ein Werkzeug (4), das um eine zentrale Drehwelle (18) drehbar ist, welches eine
Längsachse und an einem ersten Ende (7) eine Kurvenrolle (8) aufweist, die an dem
Werkzeug (4) befestigt und drehbar um eine erste Positionierungswelle (9) ist,
- eine stationäre Auflagefläche (16), die eine geschlossene Kontur hat, die die Kurvenrolle
(8) trägt,
- eine Führungsstange (19), die zusammen mit dem Werkzeug (4) drehbar um die zentrale
Drehwelle (18) ist, wobei das Werkzeug (4) mit der Führungsstange (19) mittels eines
Radiallagers (21) verbunden ist, welches entlang der Führungsstange (19) bewegbar
ist, und
- einem Antriebsmechanismus (26, 26'), um das Werkzeug (4), die Kurvenrolle (8) und
die Führungsstange (19) um die zentrale Drehwelle (18) zu drehen,
wobei das Werkzeug an einem zweiten Ende (11) mit einer zweiten Kurvenrolle (13)
verbunden ist, welche drehbar um eine zweite Positionierungswelle (14) ist, die sich
parallel zu der ersten Positionierungswelle und in einem festgelegten Abstand (d)
von der ersten Positionierungswelle (9) befindet, und mit einer zweiten Auflagefläche
(17), die parallel zu der ersten Auflagefläche (16) ist und die zweite Kurvenrolle
(13) trägt, wobei diese nahe des zweiten Endes (11) des Werkzeuges (4) vorgesehen
ist,
dadurch gekennzeichnet, dass die Positionierungswellen (9, 14) an jedem Ende (7, 11) eines Werkzeuges in einem
jeweiligen Radiallager (21, 22) montiert sind, welches bewegbar entlang einer jeweiligen
Führungsstange (19, 20) ist, wobei die Führungsstange (20) nahe an dem zweiten Ende
(11) des Werkzeugs (4) drehbar um eine zweite Drehwelle (25) ist, welche einen Abstand
(d) entfernt von der zentralen Drehwelle (18) ist, und wobei der Abstand (d) dem Abstand
zwischen der ersten und zweiten Positionierungswelle (9, 14) entspricht.
2. Werkzeuganordnung (2, 3) nach Anspruch 1, dadurch gekennzeichnet, dass die Führungsstangen (19, 20) zwei Radiallager (21, 30; 22, 31) an jeder Seite der
jeweiligen Drehwellen (18, 25) der Führungsstangen aufweisen, wobei die Radiallager
entlang der Führungsstangen und jedes Lager über eine Kurvenrolle (8, 34; 13, 35)
an diametral gegenüberliegenden Positionen der jeweiligen Lagerflächen (16, 17) bewegbar
und miteinander über Kopplungsglieder (32, 33) verbunden sind.
3. Werkzeuganordnung (2, 3) nach Anspruch 2, dadurch gekennzeichnet, dass ein Werkzeug (4, 5) verbunden ist mit den Radiallagern (21, 22; 30, 31) an jeder
Seite der Drehwellen (18, 25).
4. Werkzeuganordnung (1) nach Ansprüchen 1, 2 oder 3, dadurch gekennzeichnet, dass mindestens ein zweites Paar Führungsstangen (19') quer zu dem ersten Paar Führungsstangen
(19, 20) angeordnet ist, wobei über dieses zweite Paar Führungsstangen (19') ein oder
mehrere weitere Werkzeuge bewegbar sind, und die weiteren Werkzeuge an den Lagerflächen
(16, 17) über ihre Kurvenrollen aufliegen.
5. Werkzeuganordnung (2, 3) nach einem der vorherigen Ansprüche, dadurch gekennzeichnet, dass die Lagerflächen (16, 17) in einer Schweißposition der Werkzeuge mit einem im wesentlichen
abgeflachten Abschnitt (16') versehen sind, um eine vorbestimmte Druckkraft des Werkzeuges
(5) auf ein Werkzeug (6), welches sich in der Schweißposition gegenüberliegend befindet,
auszuüben.
6. Werkzeuganordnung (2, 3) nach einem der vorherigen Ansprüche, dadurch gekennzeichnet, dass mindestens ein Werkzeug (4) mit einem zentralen Schlitz (37) versehen ist und einem
Schneidelement (38, 39), welches in dem Schlitz bewegbar ist, wobei ein Druckelement
(40, 41) vorgesehen ist, das in der Schweißposition des Werkzeuges (4) an dem Schneidelement
(38, 39) eingreift und letzteres aus dem Schlitz (37) drückt.
7. Werkzeuganordnung (2, 3) nach Anspruch 6, dadurch gekennzeichnet, dass das Druckelement (40, 41) an einem Druckarm (42, 43) angeordnet ist, welcher quer
zur Drehwelle (18, 25) verläuft.
8. Werkzeugeinheit (1) umfassend eine obere und eine untere Werkzeuganordnung (2, 3)
nach einem der vorherigen Ansprüche, dadurch gekennzeichnet, dass der Antriebsmechanismus der oberen und der unteren Werkzeuganordnung jeweils mit
einer Antriebswelle mit einem daran befestigten Zahnelement (26, 26') versehen ist,
wobei ein Antriebselement (46) in Form einer geschlossenen Schleife um die Zahnelemente
der oberen und der unteren Werkzeuganordnung (2, 3) platziert ist.
9. Werkzeugeinheit (1) nach Anspruch 8, dadurch gekennzeichnet, dass das Antriebselement (46) entlang einer oberen Seite des oberen Zahnelements (26)
bis zu einem ersten Umkehrelement (47) geführt wird, welches sich unterhalb des unteren
Zahnelements befindet und von dort aus zu einer oberen Seite des unteren Zahnelements
(26') und über ein zweites Umkehrelement (48) zu dem oberen Zahnelement (26) geführt
wird.
10. Werkzeugeinheit (1) umfassend eine obere und eine untere Werkzeuganordnung (2, 3)
nach einem der Ansprüche 1 bis 7, dadurch gekennzeichnet, dass die obere Werkzeuganordnung (2) an einem Gelenkpunkt (51) mit der unteren Werkzeuganordnung
(3) an einer ersten Seite einer Trennungsebene (50) zwischen der oberen Werkzeuganordnung
(2) und der untere Werkzeuganordnung (3) verbunden ist.
11. Werkzeugeinheit (1) nach Anspruch 10, dadurch gekennzeichnet, dass der Gelenkpunkt (51) gebildet wird aus einer Verbindung zwischen der oberen und der
unteren Werkzeuganordnung (2, 3), wobei sie aus einem elastischen Material gemacht
ist.
12. Werkzeugeinheit (1) nach Anspruch 10 oder 11, wobei die untere Werkzeuganordnung (3)
an einer zweiten, gegenüber der ersten Seite der Trennungsebene (50) liegenden Seite
mit der oberen Werkzeuganordnung (2) über ein Federelement (52) verbunden ist.
1. Ensemble (2, 3) d'outils pour réaliser une soudure transversale dans un emballage
formé d'une bande continue de matière sous forme de film, comprenant :
- un outil (4), mobile en rotation autour d'un axe central tournant (18), comportant
un axe longitudinal et possédant, à une première extrémité (7), un suiveur de came
(8) qui est fixé à l'outil (4) et qui est mobile en rotation autour d'un premier axe
(9) de positionnement,
- une surface stationnaire (16) d'appui ayant un contour fermé sur laquelle appuie
le suiveur de came (8),
- une tige (19) de guidage qui est mobile en rotation, conjointement avec l'outil
(4), autour de l'axe central tournant (18), l'outil (4) étant relié à la tige (19)
de guidage via un palier lisse (21) qui est mobile le long de la tige (19) de guidage,
et
- un mécanisme (26, 26') d'entraînement servant à faire tourner l'outil (4), le suiveur
de came (8) et la tige (19) de guidage autour de l'axe central tournant (18),
dans lequel l'outil est relié à une seconde extrémité (11), à un second suiveur
de came (13) qui est mobile en rotation autour d'un second axe (14) de positionnement
qui est parallèle au premier axe de positionnement et qui est situé à une distance
prédéterminée (d) à l'écart du premier axe (9) de positionnement, une seconde surface
(17) d'appui, qui est parallèle à la première surface (16) d'appui et sur laquelle
appuie le second suiveur de came (13), étant prévue à proximité de la seconde extrémité
(11) de l'outil (4),
caractérisé en ce que les axes (9, 14) de positionnement situés à chaque extrémité (7, 11) d'un outil sont
montés dans un palier lisse respectif (21, 22) qui est mobile le long d'une tige (19,
20) de guidage respective, dans lequel la tige (20) de guidage est mobile en rotation,
à proximité de la seconde extrémité (11) de l'outil (4), autour d'un second axe tournant
(25) qui se trouve à une distance (d) à l'écart de l'axe central tournant (18), laquelle
distance (d) correspond à la distance qui sépare les premier et second axes (9, 14)
de positionnement.
2. Ensemble (2, 3) d'outils selon la revendication 1, caractérisé en ce que les tiges (19, 20) de guidage comportent deux paliers lisses (21, 30 ; 22, 31) de
chaque côté des axes tournants respectifs (18, 25) des tiges de guidage, lesquels
paliers lisses sont mobiles le long des tiges de guidage et chacun d'entre eux appuie,
via un suiveur de came (8, 34 ; 13, 35), sur des positions diamétralement opposées
de la surface (16, 17) d'appui respective et sont liés l'un à l'autre via des éléments
(32, 33) de couplage.
3. Ensemble (2, 3) d'outils selon la revendication 2, caractérisé en ce qu'un outil (4, 5) est relié aux paliers lisses (21, 22 ; 30, 31) de chaque côté des
axes tournants (18, 25).
4. Ensemble (1) d'outils selon la revendication 1, 2 ou 3, caractérisé en ce qu'au moins une seconde paire de tiges (19') de guidage est située transversalement à
la première paire de tiges (19, 20) de guidage, sur laquelle seconde paire de tiges
(19') de guidage un ou plusieurs outils supplémentaires sont mobiles, lesquels outils
supplémentaires appuient sur les surfaces (16, 17) d'appui via leurs suiveurs de came.
5. Ensemble (2, 3) d'outils selon l'une des revendications précédentes, caractérisé en ce que les surfaces (16, 17) d'appui sont pourvues, dans une position de soudage des outils,
d'une section essentiellement aplatie (16') ayant pour rôle d'appliquer une force
de compression prédéterminée de l'outil (5) à un outil (6) situé à l'opposé dans la
position de soudage.
6. Ensemble (2, 3) d'outils selon l'une des revendications précédentes, caractérisé en ce qu'au moins un outil (4) est pourvu d'une fente centrale (37) et d'un élément (38, 39)
de coupe mobile dans la fente, dans lequel un élément (40, 41) de pression est prévu
de sorte que, dans la position de soudage de l'outil (4), il engage l'élément (38,
39) de coupe et pousse ce dernier hors de la fente (37).
7. Ensemble (2, 3) d'outils selon la revendication 6, caractérisé en ce que l'élément (40, 41) de pression est agencé sur un bras (42, 43) de pression s'étendant
transversalement à l'axe tournant (18, 25).
8. Module (1) d'outils comprenant un ensemble (2, 3) d'outils supérieur et inférieur
selon l'une des revendications précédentes, caractérisé en ce que les mécanismes d'entraînement de l'ensemble d'outils supérieur et inférieur sont
tous les deux pourvus d'un arbre d'entraînement équipé d'un élément denté (26, 26')
qui est fixé à celui-ci, un élément (46) d'entraînement étant placé sous la forme
d'une boucle fermée autour des éléments dentés de l'ensemble (2, 3) d'outils supérieur
et inférieur.
9. Module (1) d'outils selon la revendication 8, caractérisé en ce que l'élément (46) d'entraînement est guidé le long d'un côté supérieur de l'élément
denté supérieur (26) vers un premier élément (47) de renvoi situé au-dessous de l'élément
denté inférieur et, de là, est guidé, par rapport à un côté supérieur de l'élément
denté inférieur (26') et via un second élément (48) de renvoi, vers l'élément denté
supérieur (26).
10. Module (1) d'outils comprenant un ensemble (2, 3) d'outils supérieur et inférieur
selon l'une des revendications 1 à 7, caractérisé en ce que l'ensemble (2) d'outils supérieur est relié, au niveau d'un point (51) d'articulation,
à l'ensemble (3) d'outils inférieur sur un premier côté d'un plan (50) de séparation
entre l'ensemble (2) d'outils supérieur et l'ensemble (3) d'outils inférieur.
11. Module (1) d'outils selon la revendication 10, caractérisé en ce que le point (51) d'articulation est formé par une liaison, réalisée en matériau élastique,
entre les ensembles (2, 3) d'outils supérieur et inférieur.
12. Module (1) d'outils selon la revendication 10 ou 11, dans lequel l'ensemble (3) d'outils
inférieur est relié, au niveau d'un second côté situé opposé au premier côté du plan
(50) de séparation, à l'ensemble (2) d'outils supérieur via un élément (52) de ressort.

