[0001] This invention relates to a packaging machine, which is especially suitable for processing
beverage multipacks from blank to completed filled cartons. The machine is readily
adjustable to accommodate various carton types, for example, wraparound type cartons
and basket style carriers without undue time being taken to adapt the machine from
running one type of carton to running a different type of carton.
[0002] The majority of known packaging machines are dedicated machines, which construct
only one size of one type of carton. Therefore, modern bottling plants are required
to use a plurality of packaging machines to package different carton types, each machine
taking up considerable floor space and being expensive to both purchase and operate.
[0003] A limited number of packaging machines are capable of packaging different sizes of
cartons for example, six, eight or twelve packs of a wrap around carton. All such
machines require adjustment when switching from one size of carton to another. This
adjustment includes the manual removal of all of the cartons within the packaging
machine and possibly the mechanical adjustment of components in the machine. During
this change over period, which can be thirty minutes or more, a machine cannot be
used (known as "down time"), which is an expensive delay in a bottling plant. Such
a delay may even result in down time for the entire bottling line, not just the packaging
machine, if problems arise during the change over procedure.
[0004] In US 5,507,128 there is shown the use of two magazines for two different types of
blanks, which are selectively withdrawn by a lug and conveyor assembly.
[0005] It is an object of the present invention to provide a packaging machine which overcomes
the technical and commercial disadvantages of known packaging machines.
[0006] It is a further object of the present invention to provide a packaging machine which
is capable of switching from one carton type or size to another with a minimal down
time. The present invention seeks to overcome these commercial disadvantages by providing
one machine which is able to set up and load more than one type of carton.
[0007] Further. the processing time of loading a wraparound carton is different than that
of loading of basket type carrier. In order to maximise the efficiency of such a machine,
it is necessary to decrease the set up time of a basket type carrier. The present
invention seeks to overcome or at least mitigate these problems.
[0008] One aspect of the invention provides a method of switching a packaging machine from
supplying and loading a first carton type with articles to supplying and loading a
second carton type with articles comprising the steps of: placing a first feeder means
and carton set up means for feeding and setting up one type of carton in an inoperative
position, adjusting means for conveying the cartons downstream to feed the second
type of carton, moving a second feeder means for feeding the second carton type into
an operative position and commencing the feeding of the second type cartons.
[0009] A second aspect of the invention provides a packaging machine switchable between
the supply and loading of cartons of the first and second types , comprising means
for conveying articles through the machine, first feeder means sequentially to deliver
successive cartons of the first type in a flat collapsed condition to a setting up
station to separate side walls of the flat collapsed cartons. The setting up station
delivers the cartons to a carton conveying means, the carton conveying means comprising
support means adapted to be brought into contact with base panels of the carton during
movement downstream such that the carton is held in the position required to be loaded
by lowering said carton onto at least one article. In order to switch to the supply
and loading of cartons of the second type, the first feeder means and setting up station
become inoperative, and second feeder means is brought into an operative position
to feed cartons of the second carton type, the support means being adjustable to engage
the base panels of the second carton type.
[0010] According to an optional feature of the second aspect of the invention the carton
conveying means may comprise a pair of chainsets.
[0011] According to another optional feature of the second aspect of the invention the support
means may comprise a pair of oppositely disposed guide pins projecting from respective
ones of the chainsets.
[0012] The chainsets may be moved apart to adjust to the second carton type.
[0013] A belt may be located so as to apply downward pressure onto successive cartons as
the cartons are lowered onto the articles. Preferably, the belt may be adjustable
vertically in its lowered position to engage and apply pressure to different carton
types.
[0014] According to a further optional feature of the second aspect of the invention the
successive cartons and articles may progress downstream to a panel locking station,
a second vertically adjustable belt preventing unwanted vertical movement of the carton
as the base panels are folded around to the underside of the carton and interconnected.
[0015] According to a still further optional feature of the second aspect of the invention
the first and second feeder means may comprise rotary vacuum feeders supplying cartons
from respective hoppers.
[0016] According to yet another optional feature of the second aspect of the invention a
controller may control the switchover. Preferably, the controller may comprise a processor
with a manual input.
[0017] According to yet another optional feature of the second aspect of the invention the
first and second feeder means to provide carton blanks may further comprise a hopper
to store blanks and a rotary feeder to transfer a blank from the hopper to the set
up station. Preferably, regulating means may be provided to control the flow of articles
on the article conveying means, the regulating means further comprising means to control
the pressure of the articles into the machine and means to determine the correct number
of articles for each carton.
[0018] Optionally, the regulating means to control the pressure of the articles may comprise
an infeed star wheel.
[0019] A third aspect of the invention provides a control system for a packaging machine
switchable between the supply of first and second type cartons, and the loading thereof
with articles, the control system controlling the changeover from one carton type
to the other according to the following steps: stopping a first feeder means feeding
a first carton type and a set-up station for setting up the cartons, adjusting means
for conveying the cartons downstream so as to feed the second carton type, moving
a second feeder means for feeding cartons of the second type into an operative position
and commencing the feeding of the cartons of the second type. Preferably, the control
means may calculate the necessary adjustments required at changeover from carton parameter,
data supplied via manual input means of the control means.
[0020] Embodiments of the invention will now be described by way of example, with reference
to accompanying drawings in which:
FIGURE 1a is a side view of a basket type carton supplied in a flat collapsed condition
suitable for use with a machine according to the invention;
FIGURE 1b is a perspective view of a basket type carton suitable for use with a machine
according to the invention;
FIGURE 2a is a perspective view of a wraparound carton blank suitable for use with
a machine according to the invention;
FIGURE 2b is a perspective view of an erected and loaded carton of the type illustrated
in Figure 2a;
FIGURE 3 is a perspective view of a machine according to the invention illustrating
those parts of the machine required for construction of basket type carriers;
FIGURES 4, 5 and 6 are perspective views of the carton supply infeed and set up stations
of the machine according to the invention adapted to load basket type cartons;
FIGURE 7 is a perspective view of details of one embodiment of the opening wheel units;
FIGURE 8 is a simplified view of the carton conveyor used to transfer the carton from
the set up station to the loading station;
FIGURE 9 is a perspective view of the carton conveyor and loading station of the machine
adapted to load basket type carriers;
FIGURE 10 is a perspective view of the outfeed end of the machine containing basket
type carriers;
FIGURE 11 is a perspective view of the machine shown in Figure 3 illustrating those
parts required to set up and load wraparound cartons; and
FIGURE 12 is a perspective view of the outfeed end of the machine containing wraparound
cartons.
[0021] The machine according to the present invention is capable of loading both wraparound
and basket type cartons.
[0022] Referring to the drawings, and in particular Figures 1a and 1b thereof, carton 10
is a basket type carrier, shown in Figure 1b, in a set up condition ready for lowering
onto articles. The carton 10 includes opposed side wall panels 12, 14 and opposed
end wall panels 16, 18 hingably connected one to the next. The carton 10 further includes
a handle structure 20 which interconnects end wall panels 16. 18 and comprises transverse
partition panels 22 interconnecting each side wall panel 12, 14. Base panels 24, 26
are hingably connected to each side wall panel 12, 14 respectively.
[0023] As illustrated in Figures 2a and 2b, carton 30 is a wraparound type carton, shown
in Figure 2a in its blank form. The carton blank 30 includes first base panel 32,
side wall 34, top panel 36, second side panel 38 and base panel 40 hingably connected
one to next. Top panel 36 comprises three pairs of apertures 42, 44 spaced between
the side edges of top panel 36 and adapted to receive an upper portion of articles
A, illustrated in Figure 2b.
[0024] It is envisaged that the cartons can vary depending upon the shape and/or quantity
of articles to be packaged and accordingly, a machine in accordance with the present
invention is adjustable in numerous respects so that it can process a wide variety
of such cartons. The principal arrangements which are likely to be varied are shown
in Figure 1a and 2b in which "H" is the overall height of the set up carton equivalent
to the distance between the upper edge of the side wall and base panel, "L" is the
overall length of the carton when the base panels are closed.
[0025] Referring now to Figure 3 of the drawings, there is shown a machine 50 for processing
cartons 52 of the basket type outlined above. There is shown a packaging machine for
continuously setting up and loading basket type cartons comprising opposed side 12,
14 and end walls 16, 18 which machine comprises article conveying means 46 for conveying
articles through the machine, feed means 47 sequentially to deliver successive cartons
from a supply in fiat collapsed condition to
a setting up station of the machine, means 48 to restrain a side wall of the carton
relative to its opposed side wall thereof as it is moved downstream so as to separate
the side and end walls to bring the carton into a set up condition, support means
49 adapted to be brought into contact with base panels of the carton during movement
downstream so that the carton is maintained in a set up condition and is loaded by
lowering said carton onto at least one article.
[0026] The upstream end of the machine includes a hopper 54 in which a multiplicity of cartons
52 in flat collapsed condition are held ready for processing. As shown in Figures
4 and 5, the cartons are removed from the hopper 54 sequentially by feed means 47
which in this embodiment is a rotary vacuum feeder 56. The vacuum feeder 56 comprises
carton pick up means comprising four pairs of suction cups (not shown) each being
interconnected to a drive shaft 58 by an elongated support rod 60. In one class of
embodiments, the rods 60 are slidably mounted respectively on a collar structure 63
which collar structure is rigidly secured to main rotatable shaft 65. The drive shafts
58 are preferably connected to a cam track by a cam follower housed in a housing 62
which provide a uniform path for the suction cups when the drive shaft 58 is rotated.
[0027] The main drive shaft 65 is rotatable about a fixed axis X-X. The shaft 65 is generally
supported at its end by a suitable bearing structure which is conventional and which
is mounted to a side frame. Suitable driving mechanism, for example a servo motor
57, is provided to rotate the shaft 58.
[0028] In the present embodiment, it is envisaged that a vacuum break is provided in the
feeder mechanism 56 which is used in conjunction with a vacuum supply to set the vacuum
connection and cut off points thereby determining when the carton is held by the feeder
mechanism 56.
[0029] Whilst the use of a rotary vacuum feeder to supply cartons to the conveyor is preferred,
it is envisaged that the present invention can be used with other types of feeder
mechanisms without departing from the scope of the invention.
[0030] The hopper 54 is a "gravity feed" type whereby the carton blanks 52 are held in the
hopper at an incline to provide a positive feed. In order for the blank to be transferred
from this inclined position to a vertical plane, it is necessary to off-set the axis
of rotation X-X of the rotary feeder from the vertical plane, as illustrated in Figure
4. The feed system is described in greater detail in parent application GB 9710639.7
and various other patent applications which depend therefrom for a priority date.
[0031] In use, the feeder mechanism 56 continuously and sequentially feeds cartons from
the hopper to the infeed by the main shaft 65 rotating the pick up means in the direction
indicated by the arrow "A", shown in Figure 4. As the pick up means rotates, the suction
cups are moved in contact with side wall of carton 10. A vacuum is then applied to
the set of suction cups by the vacuum supply. Thus, the carton 10 is withdrawn and
then transferred to a belt 64. The vacuum is then maintained during this transfer
stage so that the suction cups hold the side wall of the carton 10. When the carton
is deposited at the belt 64, the vacuum break disconnects the vacuum supply from the
suction cups to release the carton.
[0032] The blank is then placed between the nip end 66 of an infeed belt set shown generally
at 64. The infeed belt set includes pairs of upper and lower receiving belts 70, 72
spaced apart so as to receive the handle portion 20 and base panels 24, 26 of a flat
carton delivered by the rotary feeder 56. The belt sets 70, 72 maintain the position
of the carton and move the carton downstream to a set up station shown generally at
74. It will be seen from Figures 4, 5 and 6 that as the rotary vacuum feeder rotates
the cartons, they also undergo a translation about the path of the rotary movement
from an inclined angle to a vertical plane.
[0033] The set up station 74 includes a pair of opening wheel units (or panel separating
means) 76, 78 which are used to separate opposing panels and to assist in partly erecting
the carton. The units 76, 78 are positioned either side of the carton of which the
nearside unit 76 is adjustable relative to the far side unit 78 transversely to the
machine to reflect the adjustments made to the type of carton. The wheel units are
similar and hence only unit 76 is described in detail with reference to Figures 4,
6, 7. The apparatus used to separate opposing panels is described in more detail in
parent application GB9710639.7 and various other applications which depend therefrom
for a priority date.
[0034] As shown in Figure 7, the nearside unit 76 comprises a vacuum suction cup 79 connected
via a drive rod 81 to the opening wheel 80. The opening wheel 80 is mounted onto a
drive shaft 82 which is powered by a servo motor 84. The servo motor 84 is controlled
by suitable control means, which can cause the rotational velocity of the opening
wheel 80 to be varied and therefore, the suction cup 79.
[0035] The drive rod 81 is preferably connected to a cam track by a cam follower (not shown)
contained in a housing 83 or to other suitable means to provide a uniform path for
the suction cups when the drive shaft 82 is rotated. Thus, the suction cups and drive
rod are moved under a guided linear motion "M" towards and away from the carton during
one complete rotation "R" of the drive shaft.
[0036] In the present embodiment, it is envisaged that a vacuum break is provided in the
housing 83 which is used in conjunction with a vacuum supply to set the vacuum connection
and cut off points thereby determining when the carton is held by the panel separating
means 76.
[0037] Likewise, the far side unit 78 shown in Figure 6 corresponds to the near side unit
76 and comprises a vacuum suction cup 79 connected via a drive rod 81 to the opening
wheel 86. The opening wheel 86 is mounted onto a drive shaft 88 powered by a servo
motor 90. The servo motor 90 is adapted to vary the rotational velocity of the opening
wheel 86 and therefore, the suction cup.
[0038] In order to bring the carton 52 into a set up condition the lower belt set terminates
short of opening units 76, 78 and the carton is moved downstream by the upper belt
unit only as shown in figures 4 and 5. The suction cup 79 of the far side opening
wheel 86 is rotated and caused to engage the corresponding side panel 14 of the carton.
The far side opening wheel 86 is accelerated by the control means relative to the
moving blank so that the suction cup 79 is accelerated relative to the moving blank.
The suction cup is also caused to move away from the carton by the cam effect of the
opening wheel 86 so that side panel 14 and leading end panel 18 are separated and
moved apart from the handle structure 20.
[0039] Likewise, the suction cup of the nearside opening wheel 80 is rotated and caused
to engage the opposing side panel 12 of the carton blank. Vacuum is applied to the
suction cup 79 mounted on the nearside opening wheel 80 and the electronic cam effect
causes the suction cup to move away from the handle structure 20 thereby separating
leading side panel 12 and trailing end panel 16 from the handle structure 20. Thus,
the side panels 12, 14 are moved apart so that carton 52 is progressively brought
into a set up condition (shown in Figure 1b). Preferably, the nearside opening wheel
80 is caused to decelerate so that the suction cup slows relative to the velocity
of the carton as it moves through the set up station.
[0040] The preferred point of contact between the panel separating means 76. 78 and respective
panels 12, 14 is in a central portion of the wall being separated. However, the position
will vary according to the type of carton and in particular the dimensional variations
of the side and end walls for each carton type and for different carton sizes. It
is envisaged that the acceleration and/or deceleration can be altered according to
the type of carton being processed through the machine and throughput times required
by including manual input capability in the control means. Of course, the control
means may be a dedicated processor or may be a control means for a packaging machine
with which the apparatus of the invention is used. Alternatively, the control means
may preferably be a known programmable servo control system.
[0041] Turning again to Figure 4, the end panels 16, 18 are maintained in a perpendicular
relationship to the side panels 12, 14 by blocking lugs 92 mounted on a pair of side
lug chain sets 94, 96. The base panels 24, 26 are then outwardly folded into a substantially
perpendicular relationship with their respective side panels 12, 14 by guides 98 positioned
either side of the carton 52.
[0042] After the cartons have been set up, they are transferred to the loading station 100
shown in Figure 3. Thus, the cartons leave engagement with the upper belt set and
blocking lugs 92 and engagement is gradually transferred as the cartons move downstream
to a pair of side lug chain sets 102, 104 shown in Figure 8. Each side lug chain 102,
104 set is of similar construction and includes endless chains 106 having a plurality
of guide pin sets 108 which engage the opposed base panels 24, 26 of the carton in
order to continue the downstream movement of the carton and to retain the base panels
24, 26, side panels 12, 14 and end panels 16, 18 in the set up condition illustrated
in Figure 1b.
[0043] As illustrated in Figure 8, the set of three guide pins 110 are inserted into respective
ones of apertures formed from each base panel 24, 26.
[0044] The endless chain sets 102, 104 are mounted on tables 112, 114 to provide additional
support to the base panels 24, 26 and are downwardly inclined towards the loading
station 100.
[0045] Articles such as bottles are fed into the machine by an infeed conveyor (not shown)
and the line pressure of the bottles is controlled by an infeed star wheel (not shown),
as is well known. The articles are separated into groups of the correct number per
blank by means of a series of spaced metering bars (not shown) which also control
the flow of the articles so that they can be introduced to the carton at the same
rate as the carton blank flow.
[0046] At loading station 100 illustrated in Figure 9, the cartons are introduced to the
group of articles from above as the carton and article group are moved forward in
unison. The carton is lowered onto the articles due to the downward incline of the
endless chains sets 102, 104. As illustrated in Figure 8, lateral movement of the
carton 52 in the loading station 100 is controlled by a pair of guides 116, 118 positioned
above each chain set 102, 104 and adapted to receive the free edges of each base panel
24, 26. Vertical movement of the carton is minimised by a pressure belt 119 shown
in Figure 9 positioned above the endless chain sets 102, 104 and adapted to apply
downward pressure to the handle structure. It is envisaged that in some embodiments,
the pressure belt could be replaced by fixed guides or, where appropriate, vertically
mounted endless chain and lug sets.
[0047] Once the cartons have been loaded with articles, they are transferred by means of
the article conveyor and/or pressure belt 119 to a further set of endless chains with
side lugs 120, 122 which are used to transfer the carton to the outfeed end of the
machine shown in Figure 10.
[0048] During this stage, the base panels 24, 26 are folded around to the underside of the
carton and are interconnected by a locking mechanism 124 known in the art. Optionally,
where the basket carrier is provided with apertures to receive and retain the articles,
folding mechanism 126 is provided prior to constructing the base, as is known in the
art. A second pressure belt 128 is provided above the handle structure to prevent
unwanted upward movement of the carrier. The completed carton is transferred to the
outfeed end of the machine.
[0049] Turning to the construction of wraparound type cartons, as illustrated in Figures
2a and 2b, the machine 10 must first be adjusted to receive cartons of this type.
Thus, the pair of downwardly inclined chain sets 102, 104 and tables 112, 114 are
mounted on platforms which can be adjusted in both vertical and horizontal planes
by computer controlled servo motors 130. Likewise, the first and second pressure belts
119, 128 are also mounted on units 132, 134 which are adjustable in a vertical plane
by computer controlled servo motors 136, 138.
[0050] In order to modify the machine to receive wraparound cartons shown in Figures 11
and 12, the downwardly inclined chain sets are moved apart to increase the width between
the chain sets 102, 104 and a second hopper 140 and rotary vacuum feeder 142 brought
into position of use. The hopper 140 holds a multiplicity of carton blanks 30 illustrated
in Figure 2 which are held ready for processing. The blanks 30 are then removed sequentially
by the rotary vacuum feeder 142. The vacuum feeder 142 is mounted horizontally and
is similar in construction to the feeder 56 outlined above. A blank is removed from
the hopper 140 and is fed one at a time to the paper feed chain sets 102, 104 so that
the base panels 32 and 40 and side panels 34, 38 are supported. The carton is transferred
to the set up station by the endless chains 102, 104 and guide pins 110. The chain
is downwardly inclined so that the carton can be introduced to a group of articles
from above during forward movement as illustrated in Figure 11. It is often the case
that the angle of incline will differ for different carton types and therefore the
chain sets 102, 104 and tables 112, 114 can be adjusted vertically to alter the angle
of incline by suitable control means.
[0051] The articles are introduced to the loading station 100 by the article conveyor in
the same way as described above.
[0052] At the loading station 100, upper portions of the articles are inserted through apertures
42, 44 by lowering the cartons. This is achieved by the first pressure belt 119 which
is positioned in a central region to lower the top panel and enable the neck portions
of the articles to pass through the apertures.
[0053] As illustrated in Figure 11, the side panels are folded into a perpendicular relationship
with top panel by fixed guides (not shown) and the partly erected carton is transferred
to the second set of endless chains 120, 122 which transfer the carton to the outfeed
end of the machine. In this embodiment, the second pressure belt 128 is raised to
a position of non-use and where appropriate, the second set of endless chains are
moved apart or brought closer together by means of horizontal adjustment which are
controlled and powered by servo motors (not shown). The bottom is constructed and,
where appropriate, article retaining means is formed by the same method as described
above. Thus, the carton is secured to complete the packaging operation.
[0054] By pre-programming the control system, the adjustments to the machine required to
change from packaging one carton type to another carton type can be preset, thus reducing
the amount of down time when interchanging carton types or styles. According to this
invention, the speed of operation of the apparatus is improved as well as its efficiency
and durability. An advantage of the present invention is the flexibility offered by
the system.
[0055] While the preferred embodiment described herein is for loading bottles into cartons,
it will be recognised that the invention is not limited to cartons for bottles. The
invention may be used with machines for packaging cans, paperboard "bricks" and other
containers into cartons.
[0056] Moreover, while the preferred embodiment described herein is shown as part of a machine
for loading containers into basket type cartons, the invention is not limited to cartons
of this type. As will be recognised by those skilled in the art, the invention may
be used with wrap-around or end-loaded cartons.
[0057] It will be understood that the carton erecting mechanism of the invention has been
illustrated with reference to a specific embodiment and that numerous modifications
are possible within the scope of the invention. The carton erecting mechanism is able
to process cartons comprising numerous configurations of groups of articles covering
a range of carton size and shape, for example, four, six, eight and twelve bottles
without undue time being spent in adjusting the mechanism.
1. A method of switching a packaging machine from supplying and loading a first carton
type (10) with articles to supplying and loading a second carton type (30) with articles
comprising the steps of: placing a first feeder means (47) and carton set up means
(48) for feeding and setting up one type of carton in an inoperative position, adjusting
means (49) for conveying the cartons downstream to feed the second type of cartons,
moving a second feeder means (142) for feeding the second carton type into an operative
position and commencing the feeding of the second carton type.
2. A packaging machine (50) switchable between the supply and loading of cartons of first
and second types, comprising means (46) for conveying articles through the machine,
first feeder means (47) to deliver successive cartons of the first type in a flat
collapsed condition to a setting up station (74) to separate side walls of the flat
collapsed cartons, the setting up station delivering the cartons to a carton conveying
means (46), the carton conveying means comprising support means (49) adapted to be
brought into contact with base panels of the carton during movement downstream such
that the carton is held in the position required to be loaded by lowering said carton
onto at least one article, characterised in that to switch to the supply and loading of cartons of the second type, the first feeder
means (47) and setting up station (74) become inoperative, and second feeder means
(142) is brought into an operative position to feed cartons of the second carton type,
the support means (49) being adjustable to engage the base panels of the second carton
type.
3. A packaging machine according to claim 2 wherein the carton conveying means (46) comprises
a pair of chainsets (102, 104; 120, 122).
4. A packaging machine according to claim 3, wherein the support means (49) comprises
a pair of oppositely disposed guide pins (108) projecting from respective ones of
said chainsets (102, 104; 120, 122).
5. A packaging machine according to any of claims 2 to 4 wherein the chainsets (102,
104; 120, 122) are moved apart to adjust to the second carton type.
6. A packaging machine according to claims 2 to 5 wherein a belt (119) is located so
as to apply downward pressure onto successive cartons as the cartons are lowered onto
the articles.
7. A packaging machine according to claim 6 wherein the belt (119) is adjustable vertically
in its lowered position to engage and apply pressure to different carton types.
8. A packaging machine according to any one of claims 2 to 7 wherein the successive cartons
and articles progress downstream to a panel locking station, a second vertically adjustable
belt (128) preventing unwanted vertical movement of the carton as the base panels
are folded around to the underside of the carton and interconnected.
9. A packaging machine according to any one of claims 2 to 8, wherein the first and second
feeder means (47, 147) comprise rotary vacuum feeders (56, 142) supplying cartons
from respective hoppers (54, 140).
10. A packaging machine according to any one of claims 2 to 9, wherein a controller controls
the switchover between first carton supply and second carton supply.
11. The packaging machine as claimed in claim 10 wherein the controller comprises a processor
with a manual input.
12. A packaging machine according to any of claims 2 to 11 wherein regulating means is
provided to control the flow of articles on the article conveying means (46), said
regulating means further comprising means to control the pressure of said articles
into the machine and means to determine the correct number of articles for each carton.
13. A packaging machine according to claims 12 wherein said regulating means to control
the pressure of said articles comprises an infeed star wheel.
14. A control system for a packaging machine switchable between the supply of first and
second type cartons, and the loading thereof with articles, the control system controlling
the changeover from one carton type to the other according to the following steps:
stopping a first feeder means (47) feeding a first carton type and a set-up station
(74) for setting up the cartons, adjusting means for conveying the cartons downstream
so as to feed the second carton type, moving a second feeder means (147) for feeding
cartons of the second type into an operative position and commencing the feeding of
the cartons of the second type.
15. A control system according to claim 14, wherein the control means calculates the necessary
adjustments required at changeover from carton parameter, data supplied via manual
input means of the control means.
1. Verfahren zum Umschalten einer Verpackungsmaschine vom Zuführen und Beladen eines
ersten Schachteltyps (10) mit Gegenständen zum Zuführen und Beladen eines zweiten
Schachteltyps (30) mit Gegenständen, folgende Schritte umfassend: Anordnen einer ersten
Zufuhreinrichtung (47) und Schachtel-Aufrichteinrichtung (48) zum Zuführen und Aufrichten
eines Schachteltyps in eine funktionsuntüchtige Position, Anpassen von Mitteln (49)
zum Befördern der Schachteln stromabwärts, um die Schachteln des zweiten Typs zuzuführen,
Bewegen einer zweiten Zufuhreinrichtung (147) in eine funktionsfähige Position zum
Zuführen des zweiten Schachteltyps und Beginnen des Zuführens des zweiten Schachteltyps.
2. Verpackungsmaschine (50), die zwischen dem Zuführen und Beladen von Schachteln eines
ersten und zweiten Typs umschaltbar ist, umfassend Mittel (46) zum Befördern der Gegenstände
durch die Maschine, eine erste Zufuhreinrichtung (47), um aufeinanderfolgende Schachteln
des ersten Typs in einem flachen, zusammengefalteten Zustand an eine Aufrichtstation
(74) zu liefern, um die Seitenwände der flachen, zusammengefalteten Schachteln zu
trennen, wobei die Aufrichtstation die Schachteln zu einer Schachtel-Beförderungseinrichtung
(46) liefert, wobei die Schachtel-Beförderungseinrichtung Stützmittel (49) umfasst,
die angepasst sind, mit Bodenwandflächen der Schachtel während der Bewegung stromabwärts
in Berührung gebracht zu werden, so dass die Schachtel in der Position gehalten wird,
die erforderlich ist, um durch Absenken der Schachtel auf wenigstens einen Gegenstand
beladen zu werden, dadurch gekennzeichnet, dass, um zum Zuführen und Beladen der Schachteln des zweiten Typs umzuschalten, die erste
Zufuhreinrichtung (47) und Aufrichtstation (74) funktionsuntüchtig werden und die
zweite Zufuhreinrichtung (147) in eine funktionsfähige Position gebracht wird, um
Schachteln des zweiten Schachteltyps zuzuführen, wobei die Stützmittel (49) angepasst
werden können, die Bodenwandflächen des zweiten Schachteltyps in Eingriff zu nehmen.
3. Verpackungsmaschine nach Anspruch 2, wobei die Schachtel-Beförderungseinrichtung (46)
ein Paar von Kettensätzen (102, 104; 120, 122) umfasst.
4. Verpackungsmaschine nach Anspruch 3, wobei die Stützmittel (49) ein Paar gegenüberliegend
angeordneter Führungsstifte (108) umfassen, die von den jeweiligen Kettensätzen (102,
104; 120, 122) vorstehen.
5. Verpackungsmaschine nach einem der Ansprüche 2 bis 4, wobei die Kettensätze (102,
104; 120, 122) auseinander bewegt werden, um sich an den zweiten Schachteltyp anzupassen.
6. Verpackungsmaschine nach einem der Ansprüche 2 bis 5, wobei ein Gurt (119) derart
angeordnet ist, um auf aufeinanderfolgende Schachteln einen Druck nach unten aufzubringen,
während die Schachteln auf die Gegenstände herabgesenkt werden.
7. Verpackungsmaschine nach Anspruch 6, wobei der Gurt (119) in seiner abgesenkten Position
vertikal anpassbar ist, um verschiedene Schachteltypen in Eingriff zu nehmen und auf
diese Druck aufzubringen.
8. Verpackungsmaschine nach einem der Ansprüche 2 bis 7, wobei die aufeinanderfolgenden
Schachteln und Gegenstände stromabwärts zu einer Wandflächen-Verschlussstation fortschreiten,
wobei ein zweiter vertikal anpassbarer Gurt (128) unerwünschte vertikale Bewegung
der Schachtel verhindert, während die Bodenwandflächen zu der Unterseite der Schachtel
gefaltet werden und miteinander verbunden werden.
9. Verpackungsmaschine nach einem der Ansprüche 2 bis 8, wobei die erste und zweite Zufuhreinrichtung
(47, 147) Rotationsvakuumspender (56, 142) umfassen, welche Schachteln von jeweiligen
Magazinen (54, 140) zuführen.
10. Verpackungsmaschine nach einem der Ansprüche 2 bis 9, wobei eine Steuereinrichtung
die Umschaltung zwischen der Zufuhr der ersten Schachtel und der Zufuhr der zweiten
Schachtel steuert.
11. Verpackungsmaschine nach Anspruch 10, wobei die Steuereinrichtung einen Prozessor
mit einer manuellen Eingabe umfasst.
12. Verpackungsmaschine nach einem der Ansprüche 2 bis 11, wobei Regulierungsmittel bereitgestellt
sind, um den Fluss von Gegenständen auf der Gegenstandsbeförderungseinrichtung (46)
zu steuern, wobei die Regulierungsmittel ferner Mittel umfassen, um den Druck dieser
Gegenstände in die Maschine zu steuern sowie Mittel, um die korrekte Anzahl von Gegenständen
für jede Schachtel zu bestimmen.
13. Verpackungsmaschine nach Anspruch 12, wobei die Regulierungsmittel, um den Druck der
Gegenstände zu steuern, ein Einspeisungssteuerrad umfassen.
14. Steuersystem für eine Verpackungsmaschine, die zwischen dem Zuführen von ersten und
zweiten Schachteltypen und dem Beladen dieser Schachteln mit Gegenständen umschaltbar
ist, wobei das Steuersystem die Umschaltung von einem Schachteltyp zu dem anderen
gemäß den folgenden Schritten steuert: Anhalten einer ersten Zufuhreinrichtung (47),
die einen ersten Schachteltyp zuführt, sowie einer Aufrichtstation (74) zum Aufrichten
der Schachteln, Anpassen von Mitteln für die Beförderung der Schachteln stromabwärts,
um den zweiten Schachteltyp zuzuführen, Bewegen einer zweiten Zufuhreinrichtung (147)
zum Zuführen von Schachteln des zweiten Typs in eine funktionsfähige Position und
Beginnen des Zuführens der Schachteln des zweiten Typs.
15. Steuersystem nach Anspruch 14, wobei die Steuermittel die nötigen Anpassungen berechnen,
die bei der Umschaltung erforderlich sind für Schachtelparameter, wobei die Daten
über manuelle Eingabemittel der Steuermittel geliefert werden.
1. Procédé de commutation d'une machine de conditionnement de la fourniture d'un premier
type de cartons (10) et de son chargement avec des articles, à la fourniture d'un
deuxième type de cartons (30) et à son chargement avec des articles, comprenant les
étapes consistant à : placer un premier moyen d'acheminement (47) et un moyen de mise
en forme de cartons (48) pour acheminer et mettre en forme un type de carton dans
une position hors service, régler un moyen (49) pour transporter les cartons en aval
afin d'acheminer le deuxième type de carton, déplacer un deuxième moyen d'acheminement
(142) pour acheminer le deuxième type de carton dans une position en service, et commencer
l'acheminement du deuxième type de carton.
2. Machine de conditionnement (50) commutable entre la fourniture et le chargement de
cartons de premier et deuxième types, comprenant un moyen (46) pour transporter des
articles à travers la machine, un premier moyen d'acheminement (47) qui achemine des
cartons successifs du premier type dans un état affaissé à plat vers un poste de mise
en forme (74) qui sépare les parois latérales des cartons affaissés à plat, le poste
de mise en forme fournissant les cartons à un moyen de transport de cartons (46),
le moyen de transport de carton comprenant un moyen de support (49) apte à être amené
en contact avec des panneaux de base du carton durant un déplacement aval de manière
que le carton soit maintenu dans la position exigée afin d'être chargé en abaissant
ledit carton au moins sur un article, caractérisé en ce que pour commuter sur la fourniture et le chargement des cartons du deuxième type, le
premier moyen d'acheminement (47) et le poste de mise en forme (74) deviennent hors
service, et le deuxième moyen d'acheminement (142) est amené en contact dans une position
en service afin d'acheminer les cartons du deuxième type de carton, le moyen de support
(49) pouvant être réglé afin de venir en prise avec les panneaux de base du deuxième
type de carton.
3. Machine de conditionnement selon la revendication 2, dans laquelle le moyen de transport
de cartons (46) comprend une paire de jeux de chaînes (102, 104 ; 120, 122).
4. Machine de conditionnement selon la revendication 3, dans laquelle le moyen de support
(49) comprend une paire de broches de guidage (108) placées de manière opposée faisant
saillie par rapport à des chaînes respectives desdits jeux de chaînes (102, 104 ;
120, 122).
5. Machine de conditionnement selon l'une quelconque des revendications 2 à 4, dans laquelle
les jeux de chaînes (102, 104 ; 120, 122) s'écartent afin de s'adapter au deuxième
type de carton.
6. Machine de conditionnement selon les revendications 2 à 5, dans laquelle une courroie
(119) est située afin d'appliquer une pression descendante sur des cartons successifs
lorsque les cartons sont abaissés sur les articles.
7. Machine de conditionnement selon la revendication 6, dans laquelle la courroie (119)
est réglable verticalement dans sa position abaissée afin de venir en prise avec des
types de carton différents et leur appliquer une pression.
8. Machine de conditionnement selon l'une quelconque des revendications 2 à 7, dans laquelle
les cartons successifs et les articles progressent en aval en direction d'un poste
de blocage de panneau, une deuxième courroie réglable verticalement (128) empêchant
un déplacement vertical non voulu du carton lorsque les panneaux de base sont pliés
autour du côté inférieur du carton et reliés entre eux.
9. Machine de conditionnement selon l'une quelconque des revendications 2 à 8, dans laquelle
les premier et deuxième moyens d'acheminement (47, 147) comprennent des dispositifs
d'acheminement rotatifs à vide (56, 142) fournissant des cartons à partir de chargeurs
automatiques (54, 140) respectifs.
10. Machine de conditionnement selon l'une quelconque des revendications 2 à 9, dans laquelle
un dispositif de commande commande la commutation entre la première fourniture de
cartons et la deuxième fourniture de cartons.
11. Machine de conditionnement selon la revendication 10, dans laquelle le dispositif
de commande comprend un processeur à entrée manuelle.
12. Machine de conditionnement selon l'une quelconque des revendications 2 à 11, dans
laquelle un moyen de régulation est prévu afin de commander l'écoulement des articles
se trouvant sur le moyen de transport d'articles (46), ledit moyen de régulation comprenant,
en outre, un moyen pour commander la pression desdits articles dans la machine, et
un moyen pour déterminer le nombre correct d'articles pour chaque carton.
13. Machine de conditionnement selon la revendication 12, dans laquelle ledit moyen de
régulation qui commande la pression desdits articles comprend une roue d'entrée en
étoile.
14. Système de commande pour une machine de conditionnement commutable entre la fourniture
de cartons de premier et deuxième types et leur chargement avec des articles, le système
de commande commandant la commutation d'un type de carton à l'autre selon les étapes
suivantes consistant à : arrêter un premier moyen d'acheminement (47) acheminant un
premier type de carton, et un poste de mise en forme (74) destiné à mettre en forme
les cartons, régler un moyen pour transporter les cartons en aval afin d'acheminer
le deuxième type de carton, déplacer un deuxième moyen d'acheminement (147) pour acheminer
des cartons du deuxième type dans une position en service, et commencer l'acheminement
des cartons du deuxième type.
15. Système de commande selon la revendication 11, dans lequel le moyen de commande calcule
les réglages nécessaires exigés lors d'un changement des paramètres des cartons, données
fournies par l'intermédiaire d'un moyen d'entrée manuel du moyen de commande.