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EP 0 655 650 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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13.10.1999 Bulletin 1999/41 |
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Date of filing: 11.11.1994 |
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International Patent Classification (IPC)6: G03D 3/06 |
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Apparatus for processing photographic material and a method of regenerating a process
liquid therein
Gerät zur Entwicklung von fotografischen Material und Verfahren zur Regeneration einer
darin verwendeten Flüssigkeit
Appareil de traitement de matériau photographique et une méthode pour régénérer un
liquide de développement utilisé dans cet appareil
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Designated Contracting States: |
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BE DE FR GB NL |
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Priority: |
29.11.1993 EP 93203328
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Date of publication of application: |
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31.05.1995 Bulletin 1995/22 |
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Proprietor: AGFA-GEVAERT N.V. |
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2640 Mortsel (BE) |
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Inventor: |
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- Van den Bergen, Patrick,
c/o Agfa-Gevaert N.V.
B-2640 Mortsel (BE)
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References cited: :
DE-B- 1 106 178 US-A- 5 059 998
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US-A- 2 570 627
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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).
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Field of the invention.
[0001] This invention relates to apparatus for the processing of exposed photographic material,
and in particular for apparatus for developing colour proofs, and a method of regeneration
of the process liquid used in such apparatus.
Background Technology
[0002] In the development of proofs particularly colour proofs the photographic plate will
pass through a development process in which the plate passes through in turn a developing
section, a fixing section, a wash section and a drying section. In the developing
and fixing sections a plate typically passes through a bath of process liquid. The
process liquid in the respective bath will degenerate due to chemical reaction with
the photographic material, and oxidation due to contact with the air. The process
liquid in the bath will drop in level due to carry-over on the photographic materials
and due to evaporation. It is therefore necessary to add fresh liquid to the bath.
This addition thus depends on the amount of processed material but it will be time-dependent
as well.
[0003] It is known to add fresh liquid to the bath by means of so-called chicken-feed bottles
that supply liquid as the liquid level in the bath lowers due to carry-over, but also
due to intentional removal of used liquid in order to cause spontaneous replacement
by fresh liquid for reasons of oxidation compensation. Such removal occurs by opening
a discharge valve in a bottom conduit of the tank, and the used liquid flows in a
waste collection vessel. A disadvantage of this system is premature oxidation of procesing
liquid in the bottle.
[0004] It is further known to carry out bath control by means of so-called cubitainers,
i.e. a collapsable plastic bag in a rectangular cardboard box, which is in connection
with a supply conduit through which liquid is withdrawn and pumped in the processing
station under the control of a level sensor in the station, and a return conduit via
which liquid can return to the cubitainer. The return conduit is normally closed by
a discharge valve. This valve is opened for certain periods to withdraw an amount
of liquid from the bath and automatically produce thereby its replacement by fresh
liquid, in order to compensate for oxidation of the bath. It has been shown that time-controlled
operation of this discharge valve, unlike the valve in a chicken-feed system comprising
a waste collection vessel, does not produce true time-dependent discharge rates because
the air pressure in the cubitainer fluctuates as a consequence of the airtight connection
of the supply and return conduits to the cubitainer and of the changing volume of
the bag caused by a progressive removal of its contents to compensate for evaporation
and carry-over of processing liquid from the bath.
Object of invention
[0005] The present invention provides an apparatus for processing photographic material,
which includes a process bath filled with processing liquid and having discharge means
for discharging a given amount of processing liquid from the bath which operates more
accurately than known discharge means so that regeneration can be effected with improved
accuracy.
Statements of Invention
[0006] According to the invention there is provided apparatus for processing photographic
material and which includes at least one process bath, the or each bath in use being
filled with processing liquid held in a sealed collapsible container, a delivery pump
for removing liquid from said container and delivering it to said respective bath,
a respective sensor for determining when the liquid has reached a predetermined level
in said bath to control the delivery pump, and discharge means for removing predetermined
volumes of liquid from the bath and returning them to said container, which is characterized
in that said discharge means is formed by a volumetric pump in an exit of the bath.
[0007] The apparatus may have a second sensor means for monitoring the quantity of photographic
material processed in the bath and/or processor, said second sensor means also controlling
the discharge means.
[0008] The process bath may be for developing and/or fixing the photographic images on a
plate.
[0009] Also according to the invention there is provided a method of regenerating a process
liquid in a photographic development process in which photographic material passes
through a bath of said liquid, the liquid being fed to the bath to maintain the liquid
level therein at a predetermined level and predetermined volumes of used liquid being
discharged from the bath causing the new liquid to be fed to the bath to maintain
said level, the process liquid fed to the bath being provided in an enclosed collapsible
container, and discharged process liquid being received in said same collapsible container,
characterised in that the discharge of said liquid occurs by means of a volumetric
pump.
[0010] Preferably, the process liquid when pumped from the container can cause the container
to collapse.
[0011] The invention will be described by way of example and with reference to the accompanying
drawing which is a schematic diagram of an apparatus according to the present invention.
Detailed description of the invention.
[0012] With reference to the drawing there is illustrated in schematic form a processor
10 for processing photographic material and in particular for producing off-press
colour proofs for accessing the quality of colour separations and colour rendition
in printing.
[0013] Only those features of the processor 10 relating to the present invention will be
described.
[0014] The photographic proof will in the course of its development pass through a liquid
developer which develops the silver image, a liquid fixer which removes silver from
the proof, a wash to remove non hardened parts and a drier. A proof will have to make
four such passes to build up a full colour picture.
[0015] The processor 10 has a housing 11 which encloses a first process bath 12 and a second
process bath 13. The first bath 12 is a development bath and the second bath 13 is
a fixing bath. The development bath, in particular, is as enclosed as possible to
prevent oxidation of the liquid developer in the bath 12.
[0016] Essentially the supply and regeneration of process liquid to both baths 12 and 13
is similar.
[0017] The process liquids are each supplied in a respective collapsible container 15. Containers
known as cubitainers which consist of a collapsible plastic cube inside a corrugated
outer board are suitable. The mouth 16 of each container is sealed by a cap (not shown)
through which a supply conduit 17 and a return conduit 18 pass. We refer to our application
EP-654 710-A entitled "A cap for a liquid storage container and apparatus using such
cap" wherein a particularly suitable cap system for a cubitainer is disclosed. The
process liquid is delivered to the respective bath 12 or 13 through the supply conduit
17 by means of a delivery pump 19 located in the supply conduit between the respective
bath and container. The delivery pump 19 has a motor 22 connected to a controller
21 which controls the operation of the pump. Each delivery pump 19 is preferably a
bellows type pump.
[0018] A liquid level sensor 23 monitors the presence of liquid in each bath 12 or 13 and
is connected to the controller 21 to cause the respective delivery pump 19 to supply
the respective process liquid to the bath until the liquid level therein has reached
a predetermined level. This will automatically compensate for loss of process liquid
caused by evaporation and carry over.
[0019] A discharge means in the form of an exit pump 25 is located in the return conduit
18 between each respective bath 12 or 13 and its container 15. Each exit pump 25 has
a motor 26 connected to the controller 21 for operation of the respective exit pump
25. Each exit pump 25 is preferably a peristaltic type pump which gives a good shut
off when the pump is inoperative. The controller 21 causes each exit pump 25 to operate
for a predetermined time period after predetermined time intervals so that used liquid
from the baths 12, 13 is regularly removed and returned to the respective container
15. This removes process liquid which may be degenerated due to both oxidation and
use. The time interval between operations of the exit pump, and/or the time period
for which the pump is operational may be controlled by a timer control 27.
[0020] The developing bath 12 may have a second sensor 31 which monitors the quantity of
photographic material passing through the processor 10. Such a sensor can be of a
type as described in EP 582 752-A.The second sensor 31 will additionally cause the
respective exit pump 25 to also operate after a predetermined quantity of photographic
material has passed through the processor 10, to compensate for developer exhausted
by chemical reaction with the photographic material.
[0021] Typically a collapsible container 15 will hold approximately 6 - 10 times more process
liquid than the bath. In this case the baths 12 & 13 have a capacity of about 3 litres
and the supply container 15 holds about 20 litres of process liquid. Since the containers
15 are sealed then the bulk of the process liquid at any given moment is prevented
from reacting with the surrounding atmosphere . This slows down the oxidation process.
[0022] The exit pumps 25 are caused to operate for 13 seconds per minute and have a pump
capacity of 300mls/min. The volume of the bath returned to the container, causes consequent
operation of the delivery pumps 19 under the control of level sensor 23 for regeneration
of the liquid in the respective bath by delivering the same volume of fluid as that
removed.
[0023] When the second sensor 31 triggers the exit pump 25 this may additionally operate
to remove a large quantity of liquid from the developing bath 12, and thereby also
cause regeneration of the bath contents.
[0024] With sealed collapsable containers 15 to minimize oxidation, the exit pumps 25 could
cause an increase in pressure within the containers. The bellows delivery pumps 19
allow the high pressure to defuse through the delivery pump. Alternatively pressure
sensitive safety valves could be provided.
[0025] Since the delivery pumps 19 remove more liquid from the containers 15 than is returned
thereto by the discharge pumps (because of evaporation and carry-over), the plastic
bag of the containers will progressively collapse, no air entering the container.
[0026] Whilst the invention has been described with reference specifically to developing
and fixing liquids, it will be apparent that the invention could be applied to regenerating
any process liquid utilised in photographic material processing, especially such liquids
which are liable to react with their surrounding atmosphere.
1. Apparatus for processing photographic material and which includes at least one process
bath (12 or 13), the or each bath (12 or 13) in use being filled with processing liquid
held in a sealed collapsible container (15), a delivery pump (19) for removing liquid
from said container (15) and delivering it to said respective bath, a respective sensor
(23) for determining when the liquid has reached a predetermined level in said bath
to control the delivery pump, and discharge means (25) for removing predetermined
volumes of liquid from the bath and returning them to said container, characterised
in that said discharge means is formed by a volumetric pump in an exit of the bath.
2. Apparatus according to claim 1, characterised in that it further includes a timer
control (27) which causes the discharge means (25) to operate for a determined period
of time at regular time intervals.
3. Apparatus according to claim 1 or 2, which includes a second sensor means (31) for
monitoring the quantity of photographic material processed in the bath and/or processor,
said sensor means (31) also controlling the discharge means (25).
4. Apparatus according to any of claims 1 to 3, wherein the apparatus includes a second
process bath (13).
5. A method of regenerating a process liquid in a photographic development process in
which photographic material passes through a bath (12 or 13) of said liquid, the liquid
being fed to the bath (13 or 13) to maintain the liquid level therein at a predetermined
level, and predetermined volumes of used liquid being discharged from the bath causing
the new liquid to be fed to the bath to maintain said level, the process liquid fed
to the bath being provided in an enclosed collapsible container (15), and discharged
process liquid being received in said same collapsible container, characterised in
that the discharge of said liquid occurs by means of a volumetric pump.
6. A method according to claim 5, characterised in that the ratio of the volume of the
bath to the container is in the ratio of 1:6 to 10 and about 2% of the bath content
is returned to the container per minute.
7. A method as claimed in claim 5 or 6, characterised in that liquid is also removed
from the bath after a predetermined quantity of photographic material has passed through
the bath.
1. Gerät zur Entwicklung von fotografischem Material, das wenigstens ein Entwicklungsbad
(12 oder 13), wobei das oder jedes Bad (12 oder 13) in Betrieb mit in einem abgeschlossenen
zusammenklappbaren Behälter (15) enthaltener Verarbeitungsflüssigkeit gefüllt ist,
eine Zufuhrpumpe (19) zum Ansaugen von Flüssigkeit aus dem Behälter (15) und Zuführung
zu dem dazugehörigen Bad, einen zu dem oder jedem Bad gehörenden Sensor (23), der
ermittelt, wenn die Flüssigkeit einen vorbestimmten Stand im betreffenden Bad erreicht
hat, und dementsprechend die Zufuhrpumpe steuert, und ein Abfuhrmittel (25) enthält,
das vorbestimmte Volumen von Flüssigkeit aus dem Bad entfernt und zum Behälter zurückführt,
dadurch gekennzeichnet, daß das Abfuhrmittel aus einer volumetrischen Pumpe an einem
Ausgang des Bads besteht.
2. Gerät nach Anspruch 1, dadurch gekennzeichnet, daß es weiterhin ein Zeitsteuergerät
(27), das das Abfuhrmittel (25) für einen bestimmten Zeitraum mit regelmäßigen Zeitintervallen
einschaltet, umfaßt.
3. Gerät nach Anspruch 1 oder 2, das einen zweiten Sensor (31) zur Überwachung der Menge
im Bad und/oder Entwicklungsgerät verarbeiteten fotografischen Materials und ebenfalls
zur Steuerung des Abfuhrmittels (25) umfaßt.
4. Gerät nach irgendeinem der Ansprüche 1 bis 3, dadurch gekennzeichnet, daß es ein zweites
Entwicklungsbad (13) umfaßt.
5. Verfahren zur Regeneration einer Verarbeitungsflüssigkeit in einem fotografischen
Entwicklungsverfahren, in dem fotografisches Material durch ein mit der Flüssigkeit
gefülltes Bad (12 oder 13) geführt wird, wobei die Flüssigkeit dem Bad (12 oder 13)
zugeführt wird, um den Flüssigkeitsstand im Bad auf einem vorbestimmten Wert zu halten,
und vorbestimmte Mengen verbrauchter Flüssigkeit aus dem Bad entfernt werden, damit
zwecks der Aufrechterhaltung des Flüssigkeitsstands frische Flüssigkeit zum Bad zugeführt
werden kann, wobei die dem Bad zugeführte Verarbeitungsflüssigkeit in einem abgeschlossenen
zusammenklappbaren Behälter (15) enthalten ist und abgeführte Verarbeitungsflüssigkeit
in demselben zusammenklappbaren Behälter gesammelt wird, dadurch gekennzeichnet, daß
die Abführung der Flüssigkeit mittels einer volumetrischen Pumpe erfolgt.
6. Verfahren nach Anspruch 5, dadurch gekennzeichnet, daß das Verhältnis des Badvolumens
zum Behältervolumen zwischen 1:6 und 1:10 liegt und pro Minute etwa 2% des Badeinhalts
zum Behälter zurückgeführt wird.
7. Verfahren nach Anspruch 5 oder 6, dadurch gekennzeichnet, daß die Flüssigkeit auch
aus dem Bad entfernt wird, sobald eine vorbestimmte Menge fotografischen Materials
durch das Bad befördert worden ist.
1. Appareil pour traiter un matériau photographique et qui englobe au moins un bain de
traitement (12 ou 13), le ou chaque bain (12 ou 13) en état de marche étant rempli
avec un liquide de traitement maintenu dans un récipient (15) fermé de manière hermétique
et apte à s'aplatir, une pompe de distribution (19) pour évacuer le liquide dudit
récipient (15) et pour le distribuer audit bain respectif, un capteur respectif (23)
pour déterminer le moment auquel le liquide a atteint un niveau prédéterminé dans
ledit bain dans le but de commander la pompe de distribution, et un moyen d'évacuation
(25) pour évacuer des volumes prédéterminés de liquide à partir du bain et pour les
renvoyer audit récipient, caractérisé en ce que ledit moyen d'évacuation est réalisé
par une pompe volumétrique dans une sortie du bain.
2. Appareil selon la revendication 1, caractérisé en ce qu'il englobe en outre un générateur
de rythme (27) qui fait en sorte que le moyen d'évacuation (25) travaille pendant
un laps de temps déterminé à des intervalles de temps réguliers.
3. Appareil selon la revendication 1 ou 2, qui englobe un second moyen de capteur (31)
pour surveiller la quantité du matériau photographique traitée dans le bain et/ou
dans la développeuse, ledit moyen de capteur (31) commandant également le moyen d'évacuation
(25).
4. Appareil selon l'une quelconque des revendications 1 à 3, dans lequel l'appareil englobe
un second bain de traitement (13).
5. Procédé de régénération d'un liquide de traitement dans un procédé de développement
photographique, dans lequel le matériau photographique passe à travers un bain (12
ou 13) dudit liquide, le liquide étant alimenté au bain (12 ou 13) pour y maintenir
le niveau de liquide à un niveau prédéterminé et des volumes prédéterminés de liquide
consommé étant évacués du bain, faisant en sorte que le nouveau liquide est acheminé
au bain pour maintenir ledit niveau, le liquide de traitement alimenté au bain étant
prévu dans un récipient fermé (15) apte à s'aplatir et le liquide de traitement évacué
venant se disposer dans le même récipient apte à s'aplatir, caractérisé en ce que
l'évacuation dudit liquide a lieu à l'aide d'une pompe volumétrique.
6. Procédé selon la revendication 5, caractérisé en ce que le rapport du volume du bain
à celui du récipient s'élève de 1:6 à 10 et une quantité d'environ 2% du contenu du
bain est renvoyée au récipient par minute.
7. Procédé selon la revendication 5 ou 6, caractérisé en ce que du liquide est également
évacué du bain après le passage d'une quantité prédéterminée du matériau photographique
à travers le bain.
