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EP 0 443 349 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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21.12.1994 Bulletin 1994/51 |
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Date of filing: 31.01.1991 |
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International Patent Classification (IPC)5: B65B 1/28 |
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Powder dispensing apparatus
Pulverabgabevorrichtung
Dispositif pour distribuer de la poudre
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Designated Contracting States: |
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AT BE CH DE DK ES FR GB GR IT LI LU NL SE |
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Priority: |
08.02.1990 GB 9002836
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Date of publication of application: |
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28.08.1991 Bulletin 1991/35 |
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Proprietor: L. E. STOTT LIMITED |
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Bacup, Lancashire OL13 9EQ (GB) |
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Inventor: |
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- Stott, Leslie E.
Bacup,
Lancashire OL13 9EQ (GB)
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| (74) |
Representative: Kelvie, George Thomas et al |
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Urquhart-Dykes & Lord
The Victoria Suite
3rd Floor
Northern Assurance Buildings
Albert Square Manchester M2 4DN Manchester M2 4DN (GB) |
| (56) |
References cited: :
EP-A- 0 058 805 FR-A- 2 194 607
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EP-A- 0 257 683 US-A- 3 693 672
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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 an apparatus for transferring powder from a bulk supply
to containers of smaller size, for example, boxes and bags etc.
[0002] The transfer of powders from a bulk supply to smaller containers for marketing or
storage is complicated by the fact that the flow characteristics of powders are very
different from those of liquids. For example some powders tend to be sticky and flow
only with difficulty whilst others may be of a very light and flocculent nature so
that when they are poured into a container air which is displaced carries with it
substantial quantities of entrained powder. This can cause fire hazards if the powder
is flammable or financial loss and danger to health if the powder is expensive or
toxic.
[0003] The filling of a large number of containers with powder from a bulk supply must for
practical reasons be carried out rapidly and under conditions so that preferably the
escape of powder is prevented or if this is not possible then efficient methods of
powder recovery are employed. Various measures have been taken for the purposes of
achieving this objective. For example one of these involves fitting the delivery end
of a conduit extending from the bulk supply of powder to be transferred to the container
to be filled with an inflatable annulus which can be inflated and made to grip and
form an air-tight seal with the mouth of the container. A second conduit is then provided
between external wall of the inlet conduit and the inflatable annulus through which
displaced air containing entrained powder can pass on its way to a powder recovery
station where powder can be recovered. In order to assist the process a draught created
by an exhaust fan assists the removal of displaced air. However in order to avoid
any excessive reduction in pressure within the container air from outside the container
is allowed to enter the container through a third conduit and merge with the effluent
stream of air leaving the container. In this way an improvement has been effected.
[0004] Such an apparatus is disclosed in EP-A-0 257 683. The preamble of claim 1 is based
on this prior art. However even with existing well designed machines there is a tendency
for small quantities of powder to escape. The present invention is directed to an
improved packaging apparatus which avoid to a major extent the disadvantages of existing
machines as well as providing other benefits.
[0005] Accordingly this invention provides apparatus for filling a flexible container from
a bulk supply, comprising; a weighing base providing a support for a container during
filling thereof; a filling head adapted to be disposed in sealing engagement with
an upper part of said container to be filled; a powder conduit in said filling head
adapted to conduct powder from said bulk supply to an interior space of said container;
a vent conduit providing a gas flow path from said space to atmosphere; an extraction
conduit with one end connected to said interior space and with another end connectable
to an extraction fan, and a purge conduit, connected at one end to a supply of purge
gas, the purge conduit having an other end arranged for supplying purge gas into the
container interior characterised in that the vent conduit provides such gas flow path
to atmosphere in a first direction through a first part of a filter; in that said
extraction conduit has a second part of said filter in a path of gas flow from the
space into the extraction conduit; in that during purging said other end of said purge
conduit discharges purge gas into the extraction conduit which gas thereafter flows
into the space in the container through the second part of the filter in a direction
opposite to that of extracted gas; and in that the said extraction and vent conduits
are so arranged relative to each other that extraction of gas via said extraction
conduit causes ingress of ambient gas via said vent conduit through the first part
of the filter in a direction contrary to the flow of gas expelled from the space in
container during filling.
[0006] The invention is illustrated but not restricted by the following drawings;
Figure 1 is a side view taken in vertical section of one preferred form of the apparatus
made according to the invention.
Figure 2 is an enlarged view of part of the apparatus shown as A in figure 1.
[0007] With reference to the drawings the apparatus comprises a dryer base valve (1) which
controls a supply of powder (2) by means of screw feeder (3) along a powder conduit
(4). Passage of powder along powder conduit (4) is further controlled by valve (5)
and the end of the powder conduit (4) extends down into a bag (25) made of substantially
air-tight material for example polythene.
[0008] A pipe (6) supplies nitrogen gas under control of valve (7) to a purge conduit (8)
which is disposed concentrically round the powder conduit (4). The end of purge conduit
(8) is blocked. However the wall of the conduit is provided with apertures (10) which
communicate with the interior of an extraction conduit (11) to which is clamped a
filter (13) which has an annular first part (13a) and cylindrical second part (13b).
The filter (13) comprises a flexible sheet made of fibres or filaments which preferably
prevent the build-up of electrostatic electricity. Especially good results have been
obtained by using a filter made of fibres of polytetrafluoethylene (P.T.F.E) available
under the trade mark GORE-TEX. The purpose of part 13a is to permit gas to vent from
the container via vent conduit (28) but at the same time to prevent the escape of
any powder.
[0009] Extraction conduit (11) is connected through ducting (15) to air extraction valve
(16) which acts in conjunction with an exhaust fan (17). Ducting (15) also communicates
with a ventilation system consisting of a perforated plenum (18) through a control
flap valve (19).
[0010] The arrangement of conduits (4), (8), (11) and (28) is located within a metal frame
(20) which is secured to the base (21) of a weighing machine. The frame incorporates
a return member (21) which supports a supply (22) of plastics lay-flat tubing which
during the operation of the machine will be converted into filled bags. The frame
also supports filter (13) and an inflatable annulus (23) made of resilient material,
preferably rubber. A keg (24) containing a bag (25) filled with powder rests in the
frame of the base (21) of the weighing machine. The whole of the frame together with
discharge ends of the conduits are enclosed partly by a compartment (26) made conveniently
of any suitable construction material for example a plastics coated wood laminate.
The weight of the compartment is supported from above rather than being carried by
the weigh base (21) and the side of the compartment opposite the perforated plenum
(18) is open so that an operative can carry out certain operations described below.
[0011] Each part of the machine for example the screw feeder and various valves operate
in timed relationship under the control of a control system (not shown) which requires
to be programmed for each powder that has to be packaged. The operation of the machine
can be described conveniently as being divided into three phases.
Pre-Filling Phase
[0012] The exhaust fan (17) is switched off and initially the annulus (23) is in a deflated
state. Valves (1), (5), (7) and (16) are all closed. A supply (22) of lay-flat plastics
tubing for making bags is fed on to support (20) and a keg (24) with a pre-fitted
liner of plastics material is placed on the base (21) beneath the outlet of powder
feed conduit (4). The end of the lay-flat tube is then pulled down from support (20)
and tied so as to effect closure. The closed end of the tube is then pulled down further
until it rests on the bottom of the keg (24). The exhaust fan (17) is then switched
on and valve (1) is opened. Powder now flows from dryer base valve (1) to screw feeder
(3) to form a choke feed. The annulus (23) is then inflated until it engages with
the inner wall of the lay-flat tube which has now been converted by the tying operation
into a bag and forms a seal. Valve (16) is then opened and since the exhaust fan is
operating already air is sucked out of the bag via conduit (11) thereby causing the
walls of the bag to collapse and some air to enter flowing down conduit (28) and down
via filter part (13A). Valve (16) is then closed and valve (7) opened to allow nitrogen,
under pressure, from a supply (not shown) to enter conduit (8) from pipe (6). Since
the end of the conduit (8) is blocked the gas passes through apertures (10) and then
through the vertical porous wall of filter (13), part (13b) (in a direction contrary
to the direction in which the gas flowed through filter part (13b) during extraction)
into the space (27) between the annulus which has been inflated already and the conduits
and inflates and fills the container (25).
Filling Phase
[0013] The start button of the sequencer on the weighing machine (not shown) is then operated
to commence the filling operation. The weighing system is set to net weighing mode
after which powder feed valve (5) is opened. This has the effect of starting the screw
feeder (3) which supplies powder at a rate which is determined by a setting on the
control system. Since the walls of the container are made of impermeable plastics
material displaced gas passes through the filter part (13a) during which process any
powder caught up in the stream of gas is held back by the filtering action of the
member. The filtered gas continues up through the space (28) between the support (20)
and the conduits and discharges finally into the compartment (26). After a period
the feeder is slowed until powder is being supplied at a dribble. Finally a cut-out
is operated which stops the screw feeder when the required weight of powder has been
delivered to the bag (25). The feed valve (5) is then closed thereby isolating the
feeding system from the rest of the machine.
Final Phase
[0014] The annulus is then deflated by operating a switch on the control system and valve
(16) is then opened. As a result the contents of the bag (25) is subjected to negative
pressure due to flow of air up the extraction conduit (11), passing inwardly through
filter part (13b). This causes the wall of the bag to collapse. The neck of the bag
is then tied at two positions (29) and (30) one above the other above the surface
(31) of the powder. The keg (24) containing the filled bag is then removed from the
base (21) and a new keg is placed in position. The end of the lay-flat tubing (22)
closed at (29) is then pulled down and positioned on the bottom of the replacement
keg so as to enable the cycle of operations to be repeated.
[0015] During the various stages of operation of the machine and particularly when an operative
is handling the kegs and tying the bags a draught is being created by exhaust fan
(17) through the perforated plenum (18). As a consequence any powder which may inadvertently
have escaped from the machine is removed both rapidly and effectively.
[0016] The machine can be modified in different ways. For example any conventional feeding
system can be used to replace the screw feeder (3). However the latter is preferred
on account of the precision with which it enables the powder to be delivered. In the
event of the powder being incombustible air can be used as a purge gas and closing
of the bags can be effected by heat sealing rather than with ties. The machine can
also be used for filling individual bags in which case storage facilities for continuous
lay-flat tubing can also be dispensed with.
1. Apparatus for filling a flexible container from a bulk supply (2), comprising; a weighing
base (21) providing a support for a container (25) during filling thereof; a filling
head adapted to be disposed in sealing engagement (23) with an upper part of said
container (25) to be filled; a powder conduit (4) in said filling head adapted to
conduct powder from said bulk supply to an interior space of said container (25);
a vent conduit (28) providing a gas flow path from said interior space to atmosphere;
an extraction conduit (11) with one end connected to said interior space and with
another end connectable to an extraction fan (17), and a purge conduit (8), connected
at one end to a supply of purge gas, the purge conduit (8) having an other end arranged
for supplying purge gas into the interior space of the container (25) characterised
in that a filter (13) is provided between the interior space of the container and
respectively the vent conduit (28) and the extraction conduit (11); in that the vent
conduit (28) provides such gas flow path to atmosphere in a first direction through
a first part (13a) of the filter (13); in that said extraction conduit (11) has a
second part (13b) of said filter (13) in a path of gas flow from the space into the
extraction conduit (11); in that during purging said other end of said purge conduit
(8) discharges purge gas into the extraction conduit (11) which gas thereafter flows
into the interior space in the container through the second part (13b) of the filter
(13) in a direction opposite to that of extracted gas; and in that the said extraction
and vent conduits (11, 28) are so arranged relative to each other that extraction
of gas via said extraction conduit (11) causes ingress of ambient gas via said vent
conduit (28) through the first part (13a) of the filter (13) in a direction contrary
to the flow of gas expelled from the space in container (25) during filling.
2. An apparatus according to claim 1 wherein the second conduit is disposed concentrically
with respect to the first conduit.
3. An apparatus according to either of claims 1 and 2 wherein the filter is annular shaped
and is disposed concentrically with respect to the first and second conduits.
4. An apparatus according to claim 3 wherein the filter is made of flexible sheet material.
5. An apparatus according to claim 4 wherein the sheet material comprises filaments made
from polytetrafluoroethylene.
1. Apparat zur Füllung eines Faltbehälters von einer Schüttgutversorgung (2), bestehend
aus einer Wägebasis (21), die eine Halterung für einen Behälter (25) während der Füllung
des besagten Behälters (25) bietet; einem Füllkopf, der einen dichten Verschluß (23)
mit dem Oberteil des besagten, zu füllenden Behälters (25) bietet; einer Pulverleitung
(4) im besagten Füllkopf, der entsprechend ausgeführt ist, um Pulver von der besagten
Schüttgutversorgung in einen Innenraum des besagten Behälters (25) zu führen; einer
Lüftungsleitung (28), die einen Luftfluß vom besagten Innenraum zur Atmosphäre ermöglicht;
einer Absaugleitung (11), mit einem am besagten Innenraum verbundenen Ende und mit
einem anderen, an einem Absauggebläse (17) anschließbaren Ende, sowie einer Ausblasleitung
(8), die an einem Ende an einer Ausblasluftversorgung angeschlossen ist, wobei die
Ausblasleitung (8) ein anderes Ende hat, das entsprechend angeordnet ist, um Ausblasluft
in den Innenraum des Behälters (25) zu liefern, gekennzeichnet dadurch, daß die Lüftungsleitung
(28) Luftfluß zur Atmosphäre in einer ersten Richtung durch einen ersten Teil (13a)
des Filters (13) liefert; daß besagte Absaugleitung (11) in einem Luftfluß vom Innenraum
zur Absaugleitung (11) einen zweiten Teil (13b) des besagten Filters (13) beinhaltet;
daß beim Ausblasen das besagte andere Ende der besagten Ausblasleitung (8) Ausblasluft
in die Absaugleitung (11) einfließen läßt, diese Luft fließt danach durch den zweiten
Teil (13b) des Filters (30) in den Innenraum des Behälters, und zwar in einer entgegengesetzten
Richtung zur abgesaugten Luft; und daß die besagten Absaug- und Lüftungsleitungen
(11, 28) relativ zueinander so angeordnet sind, daß die Absaugung von Luft über besagte
Absaugleitung (11) zum Eintritt von Umgebungsluft über besagte Lüftungsleitung (28)
durch den ersten Teil (13a) des Filters (13) führt, und zwar in einer entgegengesetzen
Richtung zu dem Fluß des vom Innenraum des Behälters (25) während des Füllens verdrängten
Gases.
2. Ein Apparat gemäß Anspruch 1, wobei die zweite Leitung in bezug auf die erste Leitung
konzentrisch angeordnet ist.
3. Ein Apparat gemäß Anspruch 1 bzw. 2, wobei der Filter ringförmig ist und in bezug
auf die erste und zweite Leitung konzentrisch angeordnet ist.
4. Ein Apparat gemäß Anspruch 3, wobei der Filter aus flexiblem Plattenmaterial gefertigt
ist.
5. Ein Apparat gemäß Anspruch 4, wobei das Plattenmaterial aus von Polytetrafluorethylen
bestehenden Spinnfäden besteht.
1. Un appareil destiné à remplir un conteneur flexible à partir d'un dispositif d'alimentation
en vrac (2), comprenant: une base de pesage (21) servant de support à un conteneur
(25) au cours du remplissage de ce dernier; une tête de remplissage adaptée, engagée
dans un joint hermétique (23) communiquant avec la partie supérieure du conteneur
susdit (25) devant être rempli; un conduit (4) situé dans la tête de remplissage et
permettant le passage de la poudre depuis le dispositif d'alimentation en vrac jusqu'à
l'espace intérieur du conteneur susdit (25); un conduit de ventilation (28) permettant
le passage du gaz depuis l'espace intérieur du conteneur susdit vers l'atmosphère
extérieure; un conduit d'extraction (11) dont l'une des extrémités est raccordée à
l'espace intérieur susdit et l'autre à un ventilateur d'extraction (17), et un conduit
de purge (8) dont l'une des extrémités est raccordée à une alimentation en gaz de
purge, son autre extrémité permettant d'alimenter l'espace intérieur du conteneur
(25) en gaz de purge et étant caractérisée par le fait que le conduit de ventilation
(28) permet la circulation du gaz vers l'atmosphère dans une première direction par
une première section (13a) du filtre (13); par le fait que le conduit d'extraction
susdit (11) contient une seconde section (13b) du filtre susdit (13), placée sur la
trajectoire du flux de gaz entre l'espace intérieur et le conduit d'extraction (11);
par le fait que, au cours de la purge, l'autre extrémité susdite du conduit de purge
susdit (8) décharge le gaz de purge dans le conduit d'extraction (11), lequel gaz
passe ensuite dans l'espace intérieur du conteneur à travers la seconde section (13b)
du filtre (30) dans une direction opposée à celle du gaz extrait; et par le fait que
les conduits d'extraction et de ventilation susdits sont disposés de telle manière
l'un par rapport à l'autre que l'extraction du gaz par le conduit d'extraction susdit
(11) provoque la pénétration de gaz ambient par le conduit de ventilation susdit (28)
à travers la première section (13a) du filtre (13) dans une direction opposée à celle
du flux de gaz expulsé de l'espace intérieur du conteneur (25) au cours de son remplissage.
2. Un dispositif correspondant à la revendication 1, où le deuxième conduit est disposé
de manière concentrique par rapport au premier conduit.
3. Un dispositif correspondant aux revendications 1 ou 2, où le filtre est de forme annulaire
et disposé de manière concentrique par rapport au premier et au deuxième conduits.
4. Un dispositif correspondant à la revendication 3, où le filtre est constitué de feuilles
de matériau flexible.
5. Un dispositif correspondant à la revendication 4, où les feuilles de matériau comportent
des filaments de polytétrafluoroéthylène.

