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EP 0 351 872 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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31.03.1993 Bulletin 1993/13 |
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Date of filing: 21.07.1989 |
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Cleaner for filler nozzles
Reinigungsvorrichtung für Füllstutzen
Dispositif de nettoyage pour ajutages de remplissage
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Designated Contracting States: |
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AT BE CH DE ES FR GB IT LI LU NL SE |
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Priority: |
21.07.1988 US 222457
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Date of publication of application: |
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24.01.1990 Bulletin 1990/04 |
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Proprietor: FMC CORPORATION |
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Chicago
Illinois 60601 (US) |
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| (72) |
Inventor: |
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- Groom, Stanley A.
Hoopeston
Illinois 60942 (US)
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| (74) |
Representative: Bardehle, Heinz, Dipl.-Ing. et al |
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Patent- und Rechtsanwälte
Bardehle . Pagenberg . Dost . Altenburg .
Frohwitter . Geissler & Partner
Galileiplatz 1 81679 München 81679 München (DE) |
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| |
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| 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] This invention relates to a cleaner for filler nozzles, and more particularly to
such a cleaner which removes excess product from the filler nozzles during operation
of the filler.
[0002] A filler places product, such as food stuffs, into containers, which are then sealed
by lids. Contamination of the sealing area by product falling onto, or otherwise contacting,
this area will render the seal between the lid and the container ineffective, and
hence, the resulting package unuseable. It is important, therefore, to maintain the
seal area of the container free from contamination.
[0003] GB-A-2 002 331 discloses a nozzle-wiper assembly for an apparatus for filling containers
with liquid. This apparatus comprises a tubular nozzle having slidably mounted thereon
a ring member which has at least one passage. So the central opening of the ring member
can be subjected to sub-atmospheric pressure to suck off any liquid adhering to the
outer surface of the nozzle tube as the tube and the ring member slide relative to
each other.
[0004] The present invention provides a means which maintains the seal area of containers
free from contamination, which controls both solid and liquid and thus is especially
useful with piston-type fillers, which may be quickly and easily removed from the
filler for cleaning and then just as quickly and easily replaced, which is reliable
and which is relatively economical to manufacture and maintain.
[0005] Those and other advantages of the present invention will become more readily apparent
from a perusal of the following detailed description of a preferred embodiment and
the accompanying drawing, wherein:
- Fig. 1
- is a horizontal section representation of a piston-type filler incorporating the present
invention;
- Fig. 2
- is a sectional view taken on line 2-2 of Fig. 1;
- Fig. 3
- is a sectional view taken on line 3-3 of Fig. 2; and
- Figure 4
- is an expanded view of the structure shown in Figures 2 and 3.
[0006] Referring now to Figure 1, there is shown a piston filler, indicated generally at
10, which may be a C-series M&S piston filler, for example. The filler 10 typically
has a plurality of pistons reciprocable in cylinders 12 equiangularly positioned around
the periphery thereof. The pistons are moved upward as the filler 10 is rotated about
its vertical axis 14 to fill the cylinders 12 with product which is then discharged
through a nozzle 16, shown in Figures 2 and 3, formed at the lower end of each cylinder.
A chain 18 engages a gear 20 attached to the filler 10 and carries containers 22 past
the filler. The chain and gear cooperate to position each container 22 under a cylinder
12 so that product discharged from the associated nozzle 16 is received by the container.
[0007] A plurality of arcuate vacuum seal blocks 24 are arranged around the periphery of
the filler 10 to form an upper vacuum seal 26. Each block 24 extends between two adjacent
cylinders 12 and is formed with a semicircular notch 28 at each end to engage the
cylinders. Each block 24 is secured in place by four set screws 30, 32, 34 and 36
which extend through threaded holes 38 in the block and engage an annular groove 40
formed in the lower end of the cylinders 12. The circumferential ends of each block
abut the adjacent ends of the blocks on each side thereof and completely encircle
the cylinders 12 to form the circular upper vacuum seal 26. A circumferential groove
42 is formed in the lower surface of each block 24 to provide clearance for the lower
end of the nozzle 16.
[0008] A seal plate 44 is secured to a manifold 46 by a plurality of bolts 48. The manifold
46 is supported on a stationery shelf 50 attached to a non-rotating portion of the
filler. The shelf 50 has a pair of T-shaped lugs 52 and 54 attached to its upper surface.
The lugs 52 and 54 mate with a pair of complementary T-shaped grooves 56 and 58 formed
in the manifold 46. The manifold 46, and the attached seal plate 44, can be positioned
with the grooves 56 and 58 aligned with the lugs 52 and 54 and then pushed toward
the filler 10 until the manifold 46 contacts plates 60 attached at the inner edge
of the shelf 50 and the lugs 52 and 54. The plates 60 position the seal plate 44 radially
so that it is under the upper seal 26. The manifold 46 is held in this position by
a pair of lock bars 62 affixed to the end of a headed lock rods 64. The rods 64 extend
through holes 66 of a diameter smaller than the head but larger than the rod itself
in the manifold 46. Turning the rod 64 so that the lock bar 62 is behind the shelf
50 will secure the manifold 46 and the seal plate 44 to the shelf 50. The manifold
46 and seal plate 44 can be readily removed for cleaning by simply turning the rods
64 to position the lock bar 62 to clear the shelf 50, as shown in Figure 3 and 4.
[0009] The manifold 46 has a central cavity 70 which communicates with a vacuum tube 72,
which is connected at its outer end with a vacuum source. The tube 72 is seated in
a blind cylindrical hole 74 extending through the outer side of the manifold 46 and
across the cavity 70 with its centerline positioned substantially in the plane of
the lower surface of cavity 70. The tube 72 has a slot 76 extending transverse to
the centerline of the tube and a width substantially equal to the width of the cavity
70. The bottom of the slot 76 is level with the bottom of the cavity 70 so that any
material entering the cavity may be drawn into the tube 72 through the slot 76. The
hole 74 extends partially through the inner wall of the manifold 46 and provides a
seat, and thus stability, for the tube 72.
[0010] The seal plate 44 is sealed to the manifold 46 by the bolts 48 and has arcuate extensions
82 and 84 on each end which extend under the upper seal 26 and form a flow chamber
85 with the grooves 42. A pair of holes 86 and 88 in the seal plate 44 are positioned
to provide communication with each end of the cavity 70 in the manifold 46 and the
flow chamber 85. The free end of the extension 82 is beveled at 90 to direct air flow,
as a result of the vacuum, upward into the chamber 85, and is positioned to be adjacent
the exit of the chain 18 from the filler 10. Thus, any liquid dripping from the nozzle
16 that has just filled a container would be sucked into the chamber 85 by the air
flow. Also, any solid particles clinging to the nozzle or strings trailing therefrom
will be drawn into the chamber 85. Any drips of liquid or solid material falling from
the nozzle 16 after it has passed the manifold 46 will be caught by the extension
84. The air flow relative to the nozzle 16 increases over the extension 84 because
the velocity of the air flow is added to the velocity of the nozzle due to rotation
of the filler. The cleaning action is, therefore, efficient and minimizes the possibility
of material being dropped onto the sealing lip of a container during its entrance
to the filler. The entire manifold 46 and seal plate 44 may be removed quickly and
easily for cleaning. The manifold 46, and blocks 24 are preferrable made from a polyethylene
material, such as ultra high molecular weight polyethylene and the seal plate 44 from
stainless steel, which materials are suitable for use with food stuffs.
1. A cleaner for a filler (10) having a plurality of cylinders (12) arranged in a circle
and rotatable as a unit about the center (14) thereof, each cylinder having a nozzle
(16) at its lower end for depositing product into a container conveyed therewith during
a portion of each rotation of said filler; characterized by said cleaner comprising:
a vacuum manifold (46) having a cavity (70) mounted on said filler and fixed against
rotation;
means (72) connecting said cavity to a vacuum source;
a seal plate (44) attached to the top of said manifold;
an upper seal means (24, 26) encircling all of said cylinders and rotatable therewith;
a circumferential groove (42) formed in the seal means (24); and
said nozzles (16) being positioned in said groove (42) whereby said vacuum source
draws air past said nozzles to cause product on said nozzles to be swept into said
cavity.
2. The invention according to claim 1, and further comprising:
a shelf (50) affixed to said filler (10);
a pair of lugs (52, 54) on said shelf (50);
said manifold (46) having slots (56, 58) completementary to and engageable with said
lugs (52, 54);
a plate (60) at the end of each lug (52, 54) to position said manifold (46) radially
of said filler (10); and
means (62, 64) securing said manifold (46) against said plates.
3. The invention according to claim 1, wherein said upper seal is formed by a plurality
of seal blocks (24);
each seal block (24) extending between and engaging adjacent ones of said cylinders
(12).
4. The invention according to claim 1, wherein said seal plate (44) includes an extension
(82, 84) on each end; and
each extension (82, 84) extends radially beyond said manifold (46).
5. The invention according to claim 4, wherein the free ends of said extension includes
an angled portion (90) to direct air flow upward into said flow chamber (85).
6. The invention according to claim 5 and further comprising:
a shelf (50) affixed to said filler (10);
a pair of lugs (52, 54) affixed to said shelf (50);
said manifold (46) having slots (56, 58) complementary to and engageable with said
lugs (52, 54);
limit means (60) on said shelf (50) to radially position said manifold (46); and
quick release means (62, 64) for securing said manifold (46) to said shelf (50).
1. Eine Reinigungsvorrichtung für eine Füllvorrichtung (10), die eine Vielzahl von Zylindern
(12) mit Düsen (16) hat, angeordnet zur Rotation,
gekennzeichnet durch
eine obere Dichtung (26) rund um die Füllvorrichtung (10), die mit den Zylindern (12)
rotiert,
einen Vakuum-Verteiler (26) mit einer Ausnehmung (70), der auf der Füllvorrichtung
(10) montiert ist und gegen Rotation befestigt ist; und
eine Dichtplatte (44), die am oberen Teil des Verteilers (46) angebracht ist und mit
der oberen Dichtung (26) eine Fließkammer (85) bildet; wobei
die Düsen (16) in der Fließkammer (85) positioniert sind, und
die Dichtplatte (44) wenigstens eine Öffnung (86, 88) hat, die eine Verbindung zwischen
der Fließkammer (85) und der Ausnehmung (70) erlaubt.
2. Reinigungsvorrichtung nach Anspruch 1, gekennzeichnet durch
eine Sockelplatte (50), die an der Füllvorrichtung (10) befestigt ist;
ein Paar von Ansätzen (52, 54) auf der Sockelplatte (50); wobei
der Verteiler (46) Schlitze (56, 58) hat, die mit den Ansätzen (52, 54) komplementär
und in Eingriff bringbar sind;
eine Platte (60) am Ende eines jeden Ansatzes (52, 54), um den Verteiler (46) radial
zu der Füllvorrichtung (10) zu positionieren; und
eine Einrichtung (62, 64), die den Verteiler (46) gegen die Platten sichert.
3. Reinigungsvorrichtung nach Anspruch 1, bei dem
die obere Dichtung durch eine Vielzahl von Dichtblöcken (24) gebildet ist; und
jeder Dichtblock (24) sich zwischen zwei benachbarten Zylindern (12) erstreckt und
diese umfaßt.
4. Reinigungsvorrichtung nach Anspruch 1, bei dem
die Dichtplatte (44) auf beiden Endseiten einen Überstand (82, 84) einschließt; und
jeder Überstand (82, 84) sich radial über den Verteiler (46) hinaus erstreckt.
5. Reinigungsvorrichtung gemäß Anspruch 4, bei dem
die freien Enden der Verlängerung einen angewinkelten Abschnitt (90) einschließen,
um einen Luftstrom nach oben in die Fließkammer (85) zu leiten.
6. Reinigungsvorrichtung gemäß Anspruch 5, gekennzeichnet durch:
eine Sockelplatte (50), befestigt an der Füllvorrichtung (10);
ein Paar von Ansätzen (52, 54), befestigt an der Sockelplatte (50); wobei
der Verteiler (46) Nuten (56, 58) hat, die zu den Ansätzen (52, 54) komplementär und
mit diesen in einen Griff bringbar sind;
Begrenzungsmittel (60) auf der Sockelplatte (50) zur radialen Positionierung des Verteilers
(46); und
Schnell-Freigabeeinrichtung (62, 64) zur Sicherung des Verteilers (46) gegen die Sockelplatte
(50).
1. Dispositif de nettoyage pour une machine de remplissage (10) présentant une pluralité
de cylindres (12) avec des ajutages (16) disposés pour être entrainés en rotation
caractérisé
par un organe d'étanchéité supérieure (26) encerclant ladite machine de remplissage
(10) et tournant avec lesdits cylindres (12),
un collecteur sous vide (46) présentant une cavité (70) monté sur ladite machine
de remplissage (10) et fixé pour ne pas être entrainé en rotation;
une plaque d'étanchéité (44) fixée à la partie supérieure dudit collecteur (46)
et formant, avec ledit organe d'étanchéité supérieur (26), une chambre d'écoulement
(85);
lesdits ajutages (16) se trouvant dans ladite chambre d'écoulement (85); et
ladite plaque d'étanchéité (44) présentant au moins une ouverture (86, 88) permettant
la communication entre ladite chambre d'écoulement (85) et ladite cavité (70).
2. Invention selon la revendication 1, comportant en outre :
une tablette (50) fixée à ladite machine de remplissage (10);
une paire de tenons (52, 54) sur ladite tablette (50);
ledit collecteur (46) présentant des mortaises (56, 58) complémentaires auxdits
tenons (52, 54) et venant en prise avec eux;
une plaquette (60) à l'extrémité de chaque tenon (52, 54) pour positionner ledit
collecteur (46) dans le sens radial de ladite machine de remplissage (10); et
des moyens (62, 64) bloquant ledit collecteur (46) contre lesdites plaques.
3. Invention selon la revendication 1, dans laquelle ledit organe d'étanchéité supérieur
est formé par une pluralité de blocs d'étanchéité (24);
chaque bloc d'étanchéité (24) s'étendant entre ceux desdits cylindres (12) qui
sont adjacents et venant en prise avec eux.
4. Invention selon la revendication 1, dans laquelle ladite plaque d'étanchéité (44)
présente un prolongement (82, 84) à chaque extrémité; et
dans laquelle chaque prolongement (82, 84) s'étend, dans le sens radial, au-delà
dudit collecteur (46).
5. Invention selon la revendication 4, dans laquelle les extrémités libres dudit prolongement
présentent une portion en chanfrein (90) pour diriger le flux d'air vers le haut dans
ladite chambre d'écoulement (85).
6. Invention selon la revendication 5 et comportant en outre:
une tablette (50) fixée à ladite machine de remplissage (10);
une paire de tenons (52, 54) sur ladite tablette (50);
ledit collecteur (46) présentant des mortaises (56, 58) complémentaires auxdits
tenons (52, 54) et venant en prise avec eux;
des moyens de limitation (60) sur ladite tablette (50) pour positionner, dans le
sens radial, ledit collecteur (46); et
des moyens (62, 64) à déblocage rapide pour bloquer ledit collecteur (46) sur ladite
tablette (50).

