[0001] This invention relates generally to sterilization techniques and, more specifically,
to an improved apparatus and method for sterilizing thermoplastic coated, liquid carrying
paperboard containers prior to their being filled with a liquid and sealed.
[0002] It is desirable from a marketing standpoint to increase the storage or shelf life
of various comestible products. This is accomplished by employing a sterilization
process in conjunction with the forming, filling and sealing operations. Heretofore,
sterilization of thermoplastic coated, liquid carrying paperboard containers has typically
been accomplished on the forming, filling and sealing machine at a location between
the station where the bottom formed container is stripped from an indexing mandrel
and a station downstream thereof where the container is filled with a liquid, such
as milk or juice. Such an arrangement is shown and described in U.S. Patent specification
No. 3,566,575.
[0003] It is also known to use a sterilization apparatus and process wherein a channel is
formed through the length of each mandrel of a typical indexing sprocket and mandrel
assembly, with the channel communicating with openings and compartments formed in
the hub of the indexing sprocket and mandrel assembly, such that as each mandrel reaches
the 6:00 position, there is communication with a line leading from a generator which
is capable of continuously producing a chlorine dioxide or hydrogen peroxide fog,
thereby conveying such fog through the compartment and respective channels to the
interior of each container as the latter is being mechanically stripped from the mandrel
upon which it is slidably mounted. Such an arrangement is shown and described in U.S.
Patent application No. 369,940.
[0004] One object of the invention is to enable efficient sterilization of paperboard containers,
by means and compatible with existing forming, filling and sealing machine, and further,
in conjunction with the indexing sprocket and mandrel assembly currently included
on many models of forming, filling and sealing machines.
[0005] In accordance with the present invention we propose providing an atomising or nebulizing
nozzle on a forming, filling and sealing machine so as to dispense a suitable sterilant
in a fog state into and through a tubular, open ended carton blank, just after the
blank has been removed in a folded-over flattened state from a magazine and opened
in the usual manner, and just prior to and during the time that the tubular blank
is being slidably mounted on a mandrel of a forming, filling and sealing machine.
[0006] An embodiment of the present invention will now be described by way of example with
reference to the accompanying drawings.
Figure 1 is a fragmentary side elevational view of a forming, filling and sealing
machine embodying the invention;
Figure 2 is an enlarged, fragmentary cross- sectional view taken along line 2-2 in
Figure 1;
Figure 3 is a perspective schematic view illustrating typical operations performed
on a container as it travels through a forming, filling and sealing machine;
Figure 4A shows a typical folded-over, flattened and side seamed container blank suitable
for being loaded into the magazine of a forming, filling and sealing machine;
Figure 4B is a perspective view of the container blank shown in Figure 4a in open-ended,
tubular form as it appears prior to and while being mounted on a mandrel at Station
A in Figure 3;
Figure 4c is a perspective view of the container after the bottom closure panels have
been sealed at station D in Figure 3; and
Figure 4D is a perspective view of a filled and sealed container after passing through
to the discharge station of the machine, represented as L in Figure 3.
[0007] Referring now to the drawings in greater detail, Figures 1-3 illustrate a sterilization
arrangement 10, including a nebulizing nozzle 12 mounted on the frame 14 of a conventional
forming, filling and sealing machine, represented as 16. The latter includes a magazine
18, a blank feeder assembly 20, a blank loader assembly 22, and an indexing mandrel
assembly or bottom closing mechanism 24 mounted on a drive shaft 26. The assembly
24 includes six equally spaced mandrels 28 extending radially from a hub 30 mounted
on the drive shaft 26. Connected to the nebulizing nozzle 12 is a line 32 which leads
from a suitable generator 34 connected via lines 36 to a source (not shown) of a suitable
sterilizing fluid under pressure.
[0008] The feeder and loader assemblies 20 and 22 are adapted generally to withdraw blanks
successively from the magazine 18, erect them into an open-ended tubular form, and
then load them onto respective mandrels 28 of the bottom closing mechanism 24. For
such purpose, these mechanisms are driven in synchronism with each other from the
main drive of the machine 16.
[0009] Conventionally, a thermoplastic coated paperboard container blank 40 (Figure 4A)
is removed by vacuum pick-up or suction cups 42 (Figure 2) from the magazine 18 (Figure
1), causing the blank 40 to open into a four-sided tube 44 (Figure 4B), and deposited
upon a small conveyor 46 (Figure 1). The conveyor 46 moves the tube 44 toward and
onto one of the mandrels 28 at a load station A located in the 4:00 o'clock position,
as viewed in Figure 1. The nebulizing nozzle 12 is located adjacent the rear end of
the tube 44, aligned with the longitudinal axis thereof.
[0010] Typically, the blank feeder assembly 20 (Figure 2) comprises a pivotally mounted
gate member 48 adapted to swing through an angle of about 90 degrees between the two
positions shown in Figure 2. A plurality of the vacuum pick-up cups 42 are mounted
on the gate member 48, adapted to engage a side panel of the lowermost blank 40 in
the magazine 18. Outward movement of the gate member 48 after engagement with a blank
causes such blank to commence opening, as shown in Figure 2, and snap past the stop
abutments 50. With further outward movement of the gate, the left-hand lateral edge
of the blank is cammed against a fixed arcuate guide 52, opening the blank still further
until it reaches its fully opened position at the end of the arcuate travel of the
gate member 48, whereupon it is deposited on the small conveyor 46.
[0011] The blank loader assembly 22 typically comprises an endless chain 54 having an outwardly
projecting finger 56 formed thereon. The chain is arranged to move the finger through
a stroke generally parallel to the side walls of the squared blank 44. In the course
of such movement, the finger engages the rear outer edge of a bottom closure panel.
When this occurs, the vacuum cups 42 on the gate member 48 release the blank and the
latter is urged along fixed guides (not shown) until it telescopes over an aligned
mandrel 28 of the indexing mandrel assembly 24.
[0012] Once loaded, the mandrel assembly 24 indexes from the load station A to a bottom
panel pre-breaker station B in the 2:00 o'clock position, prior to indexing to a bottom
panel heat station C in the 12:00 o'clock position. The next index is to the bottom
panel tuck and pressure station D at 10:00 o'clock, followed by transfer to a station
E which may be used as a second pressure station at 8:00 o'clock, and finally indexing
to a discharge or stripper station F at 6:00 o'clock as a bottom-sealed container
58 (Figure 2C). The stripping of the bottom-sealed container 58 from each successive
mandrel 28 is effected by a reciprocally actuated mechanical stripper 60 having a
rubber vacuum cup 62 mounted on the end thereof for engagement with the closed and
sealed bottom of the container 58.
[0013] In general, once the sealing of the bottom closure is completed, the container 58
is pulled downwardly by the mechanical stripper 60 from the mandrel 28 at station
F and deposited on a suitable conveyor, represented at 64 in Figure 1. The open-topped
container 58 is thereafter acted upon at a top pre-breaker station G, such pre- breaking
serving to facilitate the subsequent folding and sealing of the top closure. The container
58 is next conveyed to a filling station H where a measured volume of a product, such
as juice, is dispensed into the open end of the container. The container 58 is then
caused to encounter a top partial folding or tucking station I, prior to indexing
to a heating station J which heats the thermoplastic top closure panels just prior
to transfer of the container to a sealing station K where the top closure panels are
brought together with a combined pressure and cooling action to become tightly sealed
into a completed gable top container 66, prior to delivery to a discharge station
L.
[0014] After each blank 40 is removed from the magazine 18 and opened into the tubular blank
44 form, as is it being conveyed by the small conveyor 64 toward the mandrel 28, the
axially aligned nebulizing nozzle 12 serves to dispense a sterilant fog into the tube,
substantially along the entire inside surfaces of the four sides thereof. Secondarily,
the fog strikes the bottom of the mandrel 28 and bounces or swirls back into the tube
44 to further settle onto the four interior wall surfaces. At the bottom panel heat
station C, the heat therefrom is believed to enhance the action of a sterilant, such
as chlorine dioxide, within the tube 44.
[0015] In the event that hydrogen peroxide is used as the sterilizing agent, it may be necessary
to include a drying or heating unit (not shown) between stations G and H, which would
serve to remove the hydrogen peroxide residue from inside the container prior to the
filling of the container with the desired product at station H.
[0016] The above-described sterilisation apparatus provides an improved means for initiating
the sterilization of carton blanks once formed into a tube, prior to being formed
into bottom-sealed containers, rather than after the bottom forming operation at a
remote station along a forming, filling and sealing machine, thereby substantially
increasing the sterilizing time allotted to each carton.
[0017] Such sterilization apparatus serves to intermittently distribute the chlorine dioxide
or hydrogen peroxide fog throughout any machine enclosure (not shown) in which the
indexing mandrel assembly 24 is mounted while the tubular blank 44 is being mounted
on a mandrel 28. This feature thus serves to continuously sterilize the complete mandrel
assembly 24 all the while that it is operational.
1. Sterilization apparatus for four-sided paperboard container blanks (40) stored
in a magazine (18) of a forming, filling and sealing machine in a folded-over, flattened
state with their free edges sealed together, the machine including an indexing mandrel
assembly (24), suction means (42) for removing the folded-over, flattened blanks one
at a time from the magazine; opening each of the blanks into a four-sided, open-ended
tubular blank (44); and placing such tubular blank on conveyor means (46); the apparatus
including a source of sterilant under pressure; a generator (34) for receiving and
dispensing the sterilant in a fog state; and a fixed nebulizing nozzle (12) operatively
connected to the generator (34) and characterised in that the nebulizing nozzle (12)
is mounted on the machine so as to be axially aligned with each respective tubular
blank (44) on the conveyor means (46) for dispensing the sterilant fog into the tubular
blank (44) through the adjacent open end thereof just prior to and concurrent with
the tubular blank being mounted on an axially aligned mandrel (28) of the indexing
mandrel (24) assembly by the conveyor means (46).
2. A method for producing a sterilized paperboard container to be filled with a liquid,
in which a folded-over, flattened four-sided blank (40) with its free edges sealed
together is pulled by suction means (42) from the bottom of a stack of blanks in a
magazine (18) on a forming, filling and sealing machine; opened into an open-ended
tubular blank (44); and placed on conveyor means (46) for being conveyed toward and
onto a mandrel (28) of an indexing sprocket assembly (24), and communicating a sterilant
from a source under pressure into a nebulizing nozzle (12), characterised by the dispensing
of the sterilant in a fog state via the nozzle (12) into the rear open end of the
tubular blank (44) while the blank is being conveyed by the conveyor means (46) towards
and onto the mandrel (28).
3. A method according to claim 2 comprising mounting the nebulizing nozzle (12) on
the machine below the magazine (18) and behind the conveyor means (46), with the axis
of the nozzle aligned with the axis of each tubular blank (44) while the latter is
being conveyed by the conveyor means.
1. Appareil de stérilisation pour ébauches (40) de conteneurs à quatre côtés en papier
cartonné, stockées dans un magasin (18) d'une machine de mise en forme, de remplissage
et de scellement dans un état replié aplati avec leurs côtés libres scellés ensemble,
ladite machine comprenant un mandrin d'indexation (24), des moyens d'aspiration (42)
pour modifier l'état replié à plat desdites ébauches cartonnées issues l'une après
l'autre du magasin; pour ouvrir chacune desdites ébauches en une ébauche tubulaire
(44) à quatre côtés ouverte à ses extrémités; et pour disposer ladite ébauche tubulaire
sur un convoyeur (46); ledit appareil comprenant une alimentation de stérilisant sous
pression, un générateur (34) pour recevoir et distribuer le stérilisant sous forme
de brouillard, et un ajutage nébuliseur fixe (12) connecté d'une manière opératoire
au générateur (34) et caractérisé en ce que l'ajutage nébuliseur (12) est monté sur
la machine de façon à être axialement aligné avec chacune desdites ébauches tubulaires
(44) respectives sur le convoyeur (46) pour distribuer le brouillard stérilisant à
l'intérieur de l'ébauche tubulaire (44) à travers son ouverture d'extrémité adjacente
juste avant et pendant le temps au cours duquel ladite ébauche tubulaire est disposé
ou montée sur un mandrin alignée axialement (28) du mandrin d'indexation (24), et
ce au moyen du convoyeur (46).
2. Procédé pour produire un conteneur cartonné stérilisé devant être remplie par un
liquide, dans lequel une ébauche repliée aplatie à quatre côtés (40) avec ses bords
libres scellés ensemble est attirée par des moyens d'aspiration (42) à l'écart du
fond d'une pile d'ébauches disposées dans un magasin (18) d'une machine de mise en
forme, de remplissage et de scellement; ouverte en une ébauche tubulaire (44) ouverte
à ses extrémités; et placée sur un convoyeur (46) pour être transportée vers et sur
un mandrin (28) d'un tambour d'indexation (24), et transmettant ou délivrant un stérilisant
à partir d'une alimentation sous pression dans un ajutage nébuliseur (12), ledit procédé
étant caractérisé par la distribution du stérilisant sous forme de brouillard par
l'intermédiaire dudit ajutage (12) à travers l'extrémité d'ouverture arrière de l'ébauche
tubulaire (44) tandis que ladite ébauche est en train d'être transportée par le convoyeur
(46) vers et sur le mandrin (28).
3. Procédé selon la revendication 2 comprenant le montage de l'ajutage nébuliseur
(12) sur la machine sous le magasin (18) et en arrière du convoyeur (46), avec l'axe
de l'ajutage aligné avec l'axe de chaque ébauche tubulaire (44), tandis que cette
dernière est en train d'être transportée par le convoyeur.
1. Sterilisiervorrichtung für vierseitige Behälter-Halbzeugstücke 40 aus Pappe, die
in einem Magazin (18) einer Form-, Füll- und Verschließmaschine in einem übergefalteten,
flachgelegten Zustand mit ihren freien Kanten dicht miteinander versiegelt gelagert
sind, wobei die Maschine eine einstellende Dornanordnung (24), Saugeinrichtungen (42)
zum Entfernen der übergefalteten, flachgelegten Halbzeugstücke jeweils einzeln aus
dem Magazin; Öffnen jedes der Halbzeugstücke in ein vierseitiges, rohrförmiges Halbzeugstück
(44) mit offenen Enden; und Auflegen dieses rohrförmigen Halbzeugstückes auf eine
Fördereinrichtung (46); wobei die Vorrichtung eine Quelle für Sterilisiermittel unter
Druck enthält, einen Nebelerzeuger (34) zur Aufnahme und Verteilung des Sterilisiermittels
in Nebelzustand und eine fest angebrachte Vernebelungsdüse (12), die betriebsmäßig
mit dem Nebelerzeuger (34) verbunden ist und dadurch gekennzeichnet, daß die Vernebelungsdüse
(12) auf der Maschine derart angebracht ist, daß sie axial mit jedem jeweiligen rohrförmigen
Halbzeugstück (44) auf der Fördereinrichtung (46) ausgerichtet ist zum Abgeben des
Sterilisiermittel-Nebels in das rohrförmige Halbzeugstück (44) durch dessen benachbartes
offenes Ende soeben bevor und gleichlaufend damit, daß das rohrförmige Halbzeugstück
auf einem axial ausgerichteten Dorn der einstellenden Dornanordnung (24) durch die
Fördereinrichtung (46) angebracht wird.
2. Verfahren zum Herstellen eines mit Flüssigkeit zu füllenden sterilisierten Pappebehälters,
bei welchem ein übergefaltetes, flachgelegtes, vierseitiges und an seinen freien Kanten
dicht zusammengesiegeltes Halbzeugstück (40) durch Saugeinrichtungen (42) vom Boden
eines Stapels solcher Halbzeugstücke in einem Magazin (18) auf eine Form-, Füll- und
Verschließmaschine abgezogen; in ein rohrförmiges Halbzeugstück (44) mit offenen Enden
geöffnet und auf eine Fördereinrichtung (46) plaziert wird, zum Fördern auf einen
Dorn (28) einer einstellenden Speichenanordnung (24) und auf diesen Dorn, und Überführen
eines Sterilisiermittels von einer Quelle unter Druck in eine Vernebelungsdüse (12),
gekennzeichnet durch die Abgabe des Sterilisiermittels in einem Nebelzustand über
die Düse (12) in das rückwärtige offene Ende des rohrförmigen Halbzeugstücks (44),
während das Halbzeugstück durch die Fördereinrichtung (46) soeben nach dem Dorn (28)
hin und auf diesen gefördert wird.
3. Verfahren nach Änspruch 2, enthaltend das Merkmal, daß die Vernebelungsdüse (12)
auf der' Maschine unter dem Magazin (18) und hinter der Fördereinrichtung (26) angebracht
wird, und zwar unter Ausrichten der Achse der Düse mit der Achse jedes rohrförmigen
Halbzeugstückes, während das letztere soeben durch die Fördervorrichtung gefördert
wird.