[0001] The invention discloses a device for cleaning ink-jet printheads.
[0002] The invention is particularly intended for use in the field of industrial printing,
particularly for the marking of packaging, without excluding however other types of
use, by way of example, within domestic or employment environments.
[0003] There are known ink-jet printing apparatuses, used in industrial field for printing
texts, bar codes, logos or the like, on porous or semi-porous surfaces such as the
carton the box-shaped packaging are made of; however, such devices are also suitable
for printing on non-porous surfaces.
[0004] The packaging, or other objects to be printed, are carried horizontally along a conveyor
next to which the printing apparatus is arranged. Such apparatuses include a printing
member which comprises at least one printhead contained in a special housing together
with the control electronics and exhibiting an opening to allow the nozzles array
of the printhead to face outwards thus enabling the printing.
[0005] It is also known that such printheads must be cleaned periodically to remove any
air bubbles that may have formed therein or any dirt aggregates which usually form
inside the nozzles due to the accumulation of dust which mingle with the ink inside
the nozzles.
[0006] Over time, the dirt tends to clog the nozzles.
[0007] The cleaning is performed via a so called purging operation, during which the ink
is caused to pass through the nozzles without performing any printing, thereby allowing
escape of air bubbles and discharge of dirt.
[0008] Systems have been devised for automatically collecting and recovering the purging
ink so as to prevent the latter, which comes out from the printhead, from dirtying
the printing member, the conveyor, the packaging and the floor.
[0009] However any systems are currently available on the market which can be effectively
applied to those apparatuses predisposed for the printing on horizontal surfaces.
[0010] Indeed, within such apparatuses, the nozzles array is disposed on a horizontal plane
above the printing conveyor so that the printing can be performed on top of the packaging
(or the like).
[0011] The system of the known type applied to the apparatuses herein, provides first and
foremost to stop printing operations when a purging cycle is being performed.
[0012] At this point, the printing member, which contains the printhead, is moved from its
operational position wherein it substantially surmounts the transit line of the packaging,
to a position in which it is placed above a collection tray.
[0013] The purging procedure is activated and the purge ink falls into the tray. Then, a
removal element intervenes mechanically to remove the residual patina of purge ink.
[0014] Having to stop the production line each time a purge cycle occurs is the major drawback
of the prior art, in that it causes a continuous decrease in productivity resulting
in a costs increase.
[0015] In addition, the system of the known type does not allow to recover or rather, to
re-use the purge ink.
[0016] WO 2010101075 discloses a liquid jetting recording device having a liquid jetting head provided
with a set of nozzle ports and with two suction channels having respective suction
ports located at the longitudinal ends of the set of nozzle ports.
[0017] JP 2011235495 print apparatus having a plurality of components arranged at different levels. At
an upper level, a printhead is placed having three nozzles, below which a first layer
is provided having three holes, facing respective nozzles. Below said first layer,
a second layer is provided comprising holes, facing the holes of the first layer and
connected to aspiration openings by means of small channels.
[0018] JP 2011178040 describes a print device provided with an ejection system intended to improve the
dropping of the ink. Under a printhead, a chamber is provided that is crossed by the
drops. At a longitudinal end of the chamber, a fan is provided in order to blow air
horizontally in the chamber. The technical task at the base of the present invention
is to provide a device for the cleaning of printheads which overcomes the drawbacks
listed hereinabove.
[0019] An object of the invention within this aim, is to propose a cleaning device which
enables the effective removal of purge ink regardless of the spatial orientation of
the printhead and particularly of the nozzle array thereof.
[0020] A further object of the invention herein is to make available a device which allows
recovery of the purge ink.
[0021] Another object of the invention is to make available a device for protecting the
printhead from impacts, scratches, or dust.
[0022] The technical task mentioned and the aim specified are attained by the device according
to claim 1.
[0023] Further characteristics and advantages of the present invention will become more
apparent from the indicative, and therefore non-limiting, description of non-exclusive
embodiments of the cleaning device herein disclosed, as illustrated in the accompanying
drawings in which:
- Figure 1 is an exploded view of a printing member on which the device of the invention
is implemented;
- Figure 2 is an axonometric view of a main unit of the device of the invention;
- Figures 3 and 4 are isometric views of the main unit of a first embodiment of the
invention;
- Figure 5 is a plan view of an outer coverage body of the first embodiment;
- Figure 6 and Figure 7 are two axonometric views of the main unit of two further embodiments
of the invention;
- Figures 8 and 9 are plan views of two versions of the external body which can be used
in the two embodiments of Figures 6 and 7;
- Figure 10 is an axonometric view of the main unit of a third embodiment; and
- Figure 11 is a plan view of the external body of the third embodiment. With reference
to the above figures, by 1 it is overall indicated the device for the cleaning of
printheads 2 of the invention herein.
[0024] The device 1 proposed has been devised for cleaning the ink jet printheads 2 of the
type comprising a nozzles array which may be like the ones already briefly described
in the explanation of the prior art. However, the invention does not only concern
the use in the industrial sector, with particular reference to the marking or printing
on labels for which it may also find application in domestic or working environments.
[0025] As it will become clear in the description of the invention, the device 1 enables
to perform the above purge cycles of the printhead 2, thereby cleaning effectively
the latter without dirtying the surrounding environment or interrupting the production.
[0026] The device 1 can be implemented within a printing apparatus 2, 3, 10, whose printing
member is represented in its essential parts in Figure 1.
[0027] The printhead 2 of the example shown in Figure 1 is of the type solidly constraint
with the control logic and exhibits one printing face 20, preferably planar, at the
free end of a projecting portion, which includes the array of nozzles 21 from which
the ink is ejected, for example via a technology of the piezoelectric type or of other
known systems.
[0028] The array 21 preferably has a substantially linear shape.
[0029] The device 1 proposed, in its most general form, includes first of all a main unit
10 provided with a housing 100 for a printhead 2.
[0030] In detail, the housing 100 preferably defines a concavity substantially prismatic,
so as to receive part of said projecting portion of the printhead 2, which is typically
substantially polygonal.
[0031] The printing member may comprise a containment and protection housing 3, provided
for holding the printhead 2, which housing is closed on one side by the main unit
10 of the device 1, to define a unitary block (see Figure 1).
[0032] The printing member is in turn part of a printing apparatus which can also be of
the known type, apart from the device 1 of the invention. Preferably, the housing
100 of the main unit 10 includes an inlet 11 conformed so as to fit to size the aforementioned
projecting portion of the printhead 2, which issue will be better detailed in a later
section.
[0033] According to an important aspect of the invention, the housing 100 is provided with
a passing slot 12, for example in the form of a slit, which is destined to face the
array of nozzles 21 of the printhead 2, so as to allow the passage of the printing
ink.
[0034] In practice, when in use, the printhead 2 is coupled to the main unit 10 of the device
1 in such a manner that the array 21 is placed directly in front of the slot 12, thereby
allowing the jet of the ink to be directed outwards the device 1, towards the article
to be marked or printed.
[0035] Advantageously, one or more draw openings 13 are defined within the housing 100,
which draw openins (13) are adapted to be put into fluid-dynamic communication with
a suction source (see figure 2).
[0036] Given that, during the cleaning cycles, the purge ink that flows from the nozzles
is found immediately in the housing 100, then it appears clear how, by operating the
suction source, the same can be removed via the openings prior to escaping from the
printing member, thus being the risk of dirtying the surrounding environment totally
prevented.
[0037] The way in which this occurs, will be better detailed upon explanation of the working
principles of the invention.
[0038] In the embodiments illustrated in the appended drawings, the draw openings 13 are
placed substantially in the plane in which said array of nozzles 21 lays, thereby
intercepting the purge ink as soon it flows out from the printhead 2.
[0039] Preferably, the draw openings 13 are placed on two opposite sides of the housing
100, being therefore arranged on opposite sides of the printing face 20 of the printhead
2 and therefore of the array 21 of nozzles. Generally the projecting portion of the
printhead 2 is substantially parallelepiped, for which reason also the housing 100
is generically parallelepiped.
[0040] However, in all configurations exhibiting an elongated housing 100, the draw openings
13 are arranged along the longest sides of the housing 100, which sides are destined,
in use, to flank the array 21 of nozzles.
[0041] The purge ink flows away from the housing 100 and from the main unit 10 of the device
1 via one or more conduits 14 which extend between at least one outlet 15 being formed
on the perimeter of the unit 10, and the draw openings 13.
[0042] The outlet 15 is connectable to the suction source which can be, by way of example,
a pump or a depression source of the type with compressed air.
[0043] Here below there are described some preferential constructive aspects of the main
unit 10 of the invention.
[0044] It should be appreciated that the device 1, as illustrated in the appended figures,
comprises a support bracket 4 to which the printhead 2 can be removably fastened.
[0045] The support bracket 4 may comprise a plate-shape wall 40 equipped with a passage
41 in which the projecting portion of the printhead 2 can be inserted, so that the
above mentioned printing face 20 can cross therethrough and then be arranged within
the housing 100.
[0046] Preferably, as shown in figure 1, the passage 41 of the support bracket 4 substantially
matches to the profile of the printing face 20, and the projecting portion, so as
to fit to size, as already described above.
[0047] This allows to use the suction source more efficiently.
[0048] In other words, the passage 41 can be substantially rectangular. The device 1 provided
herein, also comprises a covering element 5 provided with a cavity 50, which cavity
50 partially defines said housing 100, at the bottom of which cavity 50, aforementioned
slot 12 is fashioned. The covering element is applied, for example glued, to said
plate-shaped wall 40 of the support bracket 4, so as to define the main unit 10 of
the device 1.
[0049] In practice, the shaped passage 41 of the support bracket 4 defines said mouth of
the housing 100, which housing 100 is internally defined by the cavity 50, within
said housing 100 being inserted the printing face 20 of the cartridge.
[0050] In detail, the covering element may comprise an external body 51, for example, a
plate-shaped body, intended for contact with the article to be printed, inside of
which said conduits (see Figures 5, 8, 9 and 11), are obtained.
[0051] The external body 51 is provided with a recess 510 which defines the bottom of the
housing 100, which recess 510 is provided with inlet holes 520 being in direct communication
with the conduits.
[0052] In some embodiments, the device 1 proposed also includes an interposition member
53, preferably annular, inserted into the recess 510 of the external body 51, so as
to define with it aforesaid covering element 5.
[0053] The interposition member 53, where present, laterally defines the cavity 50 of the
covering element 5 and thus also that of the housing 100 which is obtained following
the connection between the support bracket 4 and the covering element 5.
[0054] The interposition member 53 is provided to be arranged between the bottom of the
recess 510 and the wall 40 of the support bracket 4 provided with the passage 41.
[0055] In detail, the member 53 of interposition fits to size in the recess 510, opposite
and preferably in contact with the inner wall 40 having same thickness of the recess
510.
[0056] There are now described some preferred embodiments of the device 1, which do not
exhaust all possible embodiments of the invention herein.
[0057] A first embodiment is shown in Figures 3, 4 and 5.
[0058] In this embodiment, several shaped elements 54 originate from the bottom of the recess
510 of the external body 51.
[0059] Such shaped elements are placed upstream relative to said inlet holes 520 along the
fluid-dynamic path followed by the purge ink from the housing 100, along the conduits,
up to the outlets.
[0060] In the example shown, the shaped elements 54 are arranged opposite to the largest
sides of the recess 510.
[0061] In this embodiment, each draw opening is defined between two shaped elements 54 following
application of the external body 51 to the support bracket 4.
[0062] In detail, each draw opening is defined and bounded by the bottom of the recess 510,
the aforementioned wall 40 of the support bracket 4 and two moulded elements.
[0063] The elements 54 may have a triangular shape so as to define a passageway for facilitating
the suction of the purge ink. Said elements 54 may also have a conical, elliptical,
circular, oval and half-moon shape.
[0064] In the example shown, such first embodiment exhibits a useful aspect which is applicable
to the printing of particularly large codes and/or writings or in case of a four-color
printing.
[0065] Indeed the outlets of the conduits are formed only on an outer edge with longitudinal
end, that is to say on one of the outer short sides.
[0066] In this manner, the use of printing members can be provided wherein the device 1
of the invention includes more main units 10 arranged side by side relative to the
long side.
[0067] The further embodiments join the aspect of providing an interposition member 53 which
conforms the shaped elements 55, having the function of defining the draw openings
13, as the moulded elements 53 described hereinabove.
[0068] In this case, however, the shaped elements 55 are formed in the inner side of the
interposition member 53, which comes into contact with the bottom of the recess 510,
with which it defines the draw openings 13 exactly through the shaped elements 55.
[0069] In the second embodiment, shown in Figure 6, the interposition member 53 exhibits
shaped elements 55 which are conformed likewise the shape elements of the external
body 51 as described in the first embodiment, thereby defining a sort of passageway
of the type mentioned above.
[0070] In this embodiment, the holes 520 are arranged opposite the draw openings 13, that
is, opposite the shaped elements 55.
[0071] This aspect is also applicable to the third embodiment shown in Figure 7 which differs
from the second embodiment due to the fact that the shaped elements 55 thereof have
a parallelepiped shape.
[0072] Said shaped elements 55 may also have a conical, elliptical, circular, oval and half-moon
shape.
[0073] The figure 8 and figure 9 represent variants of an external body 51 which can be
used both in relation to the first and second embodiment of the device 1.
[0074] In one case, the internal conduits of the body 51 lead to respective openings (see
figure 8), located on the peripheral edge.
[0075] In a second case, the conduits are also joined by a cross connection leading to an
outlet 15 arranged at the planar surface which is distanced from the edges.
[0076] In both versions, the inlet holes 520 also open into the outlet 15, this time on
the edge of the longest side.
[0077] Based on application needs, some of said holes 520 can be plugged and the remaining
ones are connected to the suction source.
[0078] In this manner, the invention versions described above can also be applied to the
four-color or large size printing.
[0079] In the last embodiment, the shaped elements 55 formed on the interposition member
53, unlike the previous embodiments, do not completely protrude therefrom.
[0080] In detail, in this embodiment, the external body 51 preferably exhibits two holes
520 opposed one to another, arranged by way of example, in a median position on the
respective side, and each longest side of the interposition member 53 has two shaped
elements 55 placed side by side which together form a triangular shaped element converging
towards the respective hole 520.
[0081] The hole can exhibit its own exit 15 on the outer edge of the longer side of the
body 51 which can be plugged or connected to the suction source.
[0082] The various embodiments described hereinabove join the aspect providing the presence
of several shaped elements 54, 55 being spaced one from another so as to define draw
openings 13, said shaped elements 54, 55 being arranged between the bottom of the
recess 510 and the planar wall 40 of the support bracket 4.
[0083] The disclosed device operates as follows.
[0084] The printing member is arranged such that the slot 12 of the outlet 15 of the ink
jet is facing towards the zone of passage of the surfaces to be printed.
[0085] For example, where it is necessary to perform printing on horizontal surfaces, such
as the top of packaging passing along a linear conveyor, the slot 12 can be faced
downwards.
[0086] A processing unit 10 periodically controls a purging cycle during which, as explained,
the purge ink is made to pass through the printhead 2 and then comes out of the array
21 of nozzles.
[0087] As soon as the purge ink comes out of the printhead 2, the same remains temporarily
in the housing 100 of the device 1.
[0088] Given that, at each purging cycle, the suction source is activated, then, the purge
ink is taken from inside the housing 100 and made to exit by the main unit 10 of the
printing member via the aforementioned outlet opening, 15 prior to leaking through
the slot 12.
[0089] In detail, the ink bleed is sent to a filter, which traps any impurities, from which
then comes to a manifold.
[0090] The collector is connected by pneumatic means to the tank of the printhead 2 so that
the ink can be re-used.
[0091] As it can be appreciated, upon applying the invention herein, neither the production
line is to be stopped, nor the printing member needs to be moved aside and repositioned,
as it happens today by employing the systems of the prior art.
[0092] Following each purging cycle, both the array 21 of nozzles and the surface of the
printing face 20 are free of any residual ink and the surrounding environment, particularly
the conveyor and the articles to be marked or printed, did not become dirty so that
printing can be smoothly continued.
[0093] Furthermore, unlike the prior art, the purge ink is not wasted but re-used.
1. A device (1) for cleaning printheads, comprising a main unit (10) having a housing
(100) for at least one printhead (2) which comprises an array of nozzles (21), said
housing (100) being provided with a slot (12) for passage (41) of the printing ink
and destined to face said array of nozzles (21) of the printhead (2), wherein one
or more draw openings (13) are defined in said housing (100), said openings (13) being
able to be put into fluid-dynamic communication with a suction source; said draw openings
(13) are located at least on two opposite sides of the housing (100); and said device
being characterized in that the housing (100) is elongated and said opposite sides are the longer sides which
are destined to flank said array (21) of nozzles.
2. The device (1) according to the preceding claim, wherein said draw openings (13) are
substantially arranged in the plane in which said array (21) of nozzles lies.
3. The device (1) according to at least one of the preceding claims, wherein said unit
(10) includes at least one conduit (14) that extends between at least one outlet (15),
which is connectable to said suction source, and the draw openings (13).
4. The device (1) according to at least one of the preceding claims, comprising a support
bracket (4) to which a printhead (2) can be fastened, said support bracket (4) being
provided with a passage (41) in which there can be inserted a printing face (20) of
the printhead (2) at which the array (21) of nozzles is arranged.
5. The device (1) according to the preceding claim, wherein said passage (41) is substantially
shaped complementarily to said printing face (20).
6. The device (1) according to at least one of the preceding claims, comprising a covering
element (5) having a cavity (50) for receiving a printing face (20) of the printhead
(2) at which an array (21) of nozzles is arranged, said cavity (50) comprising a bottom
wherein said slot (12) is provided.
7. The device (1) according to the two preceding claims, wherein said covering element
(5) is applied to said bracket (4) so as to define said main unit (10).
8. The device (1) according to claim 5 or claim 6, wherein said covering element (5)
comprises an external body (51), wherein said conduit is provided, said body (51)
also having a recess (510), on the bottom of which the slot (12) is afforded.
9. The device (1) according to the preceding claim, wherein said recess (510) is provided
with holes (520) in communication with said conduit (14).
10. The device (1) according to claim 8 or claim 9, wherein, between the bottom of the
recess (510) and a wall (40) of the support bracket (4) in which the passage is afforded
(41), a number of shaped elements (54, 55) are arranged, between which the draw openings
(13) are defined (13).
11. The device (1) according to the preceding claim, wherein the shaped elements (54)
originate from the bottom of the recess (510), each draw opening being defined and
delimited by the bottom of the recess (510), by said wall (40) of the support bracket
(4) and by two shaped elements.
12. The device (1) according to claim 11, wherein said main unit (10) comprises at least
one interposition member (53) inserted in said recess (510) of the external body (51)
so as to define therewith said covering element (5), the interposition member (53)
shaping said elements (55).
1. Vorrichtung (1) zur Reinigung von Druckköpfen, umfassend eine Haupteinheit (10) aufweisend
ein Gehäuse (100) für mindestens einen Druckkopf (2), der eine Anordnung von Düsen
(21) umfasst, wobei das Gehäuse (100) mit einem Schlitz (12) zum Durchgang (41) der
Druckfarbe versehen ist und dazu ausgelegt, um der Anordnung von Düsen (21) des Druckkopfes
(2) zugewandt zu sein, wobei eine oder mehrere Ziehöffnungen (13) in dem Gehäuse (100)
definiert sind, wobei die Öffnungen (13) in fluiddynamische Kommunikation mit einer
Saugquelle gebracht werden können;
die Ziehöffnungen (13) mindestens an zwei gegenüberliegenden Seiten des Gehäuses (100)
angeordnet sind; und wobei die Vorrichtung dadurch gekennzeichnet ist, dass das Gehäuse (100) länglich ist und die gegenüberliegenden Seiten die längeren Seiten
sind, die dazu ausgelegt sind, die Anordnung (21) von Düsen zu flankieren.
2. Vorrichtung (1) nach dem vorhergehenden Anspruch, wobei die Ziehöffnungen (13) im
Wesentlichen in der Ebene angeordnet sind, in der die Anordnung (21) von Düsen liegt.
3. Vorrichtung (1) nach mindestens einem der vorhergehenden Ansprüche, wobei die Einheit
(10) mindestens eine Leitung (14) einschließt, die sich zwischen mindestens einem
Auslass (15), der mit der Saugquelle verbindbar ist, und den Ziehöffnungen (13) erstreckt.
4. Vorrichtung (1) nach mindestens einem der vorhergehenden Ansprüche, umfassend einen
Stützbügel (4), an dem ein Druckkopf (2) befestigt werden kann, wobei der Stützbügel
(4) mit einem Durchgang (41) versehen ist, in dem sich dort eine Druckfläche (20)
des Druckkopfes (2) eingesetzt werden kann, an dem die Anordnung (21) von Düsen angeordnet
ist.
5. Vorrichtung (1) nach dem vorhergehenden Anspruch, wobei der Durchgang (41) im Wesentlichen
komplementär zu der Druckfläche (20) geformt ist.
6. Vorrichtung (1) nach mindestens einem der vorhergehenden Ansprüche, umfassend ein
Abdeckelement (5) aufweisend einen Hohlraum (50) zur Aufnahme einer Druckfläche (20)
des Druckkopfes (2), an dem sich eine Anordnung (21) von Düsen angeordnet ist, wobei
der Hohlraum (50) einen Boden umfasst, in dem der Schlitz (12) vorgesehen ist.
7. Vorrichtung (1) nach den beiden vorhergehenden Ansprüchen, wobei das Abdeckelement
(5) am Bügel (4) angebracht ist, um die Haupteinheit (10) zu definieren.
8. Vorrichtung (1) nach Anspruch 5 oder 6, wobei das Abdeckelement (5) einen Außenkörper
(51) umfasst, wobei die Leitung vorgesehen ist, wobei der Körper (51) auch eine Aussparung
(510) aufweist, an deren Boden der Schlitz (12) ausgebildet ist.
9. Vorrichtung (1) nach dem vorhergehenden Anspruch, wobei die Aussparung (510) mit Löchern
(520) versehen ist, die mit der Leitung (14) in Kommunikation stehen.
10. Vorrichtung (1) nach Anspruch 8 oder 9, wobei eine Anzahl an geformten Elementen (54,
55) zwischen dem Boden der Aussparung (510) und einer Wand (40) des Stützbügels (4),
in der der Durchgang ausgebildet ist (41), angeordnet ist, zwischen denen die Ziehöffnungen
(13) definiert sind (13).
11. Vorrichtung (1) nach dem vorhergehenden Anspruch, wobei die geformten Elemente (54)
vom Boden der Aussparung (510) ausgehen, wobei jede Ziehöffnung durch den Boden der
Aussparung (510), durch die Wand (40) des Stützbügels (4) und durch zwei geformte
Elemente definiert und begrenzt ist.
12. Vorrichtung (1) nach Anspruch 11, wobei die Haupteinheit (10) mindestens ein Zwischenelement
(53) umfasst, das in die Aussparung (510) des Außenkörpers (51) eingesetzt ist, um
damit das Abdeckelement (5) zu definieren, wobei das Zwischenelement (53) die Elemente
(55) formt.
1. Dispositif (1) de nettoyage de têtes d'impression, comprenant une unité principale
(10) comportant un logement (100) pour au moins une tête d'impression (2) comprenant
une matrice de buses (21), ledit logement (100) étant pourvu d'une fente (12) pour
le passage (41) de l'encre d'impression et destinée à faire face à ladite matrice
de buses (21) de la tête d'impression (2), dans lequel une ou plusieurs ouvertures
de prélèvement (13) sont définies dans ledit logement (100), lesdites ouvertures (13)
pouvant être mises en communication fluidique et dynamique avec une source d'aspiration
;
lesdites ouvertures de prélèvement (13) sont situées au moins sur deux côtés opposés
du logement (100) ; et ledit dispositif étant caractérisé en ce que le logement (100) est allongé et lesdits côtés opposés sont les côtés les plus longs
étant destinés à flanquer ladite matrice (21) de buses.
2. Dispositif (1) selon la revendication précédente, dans lequel lesdites ouvertures
de prélèvement (13) sont substantiellement disposées dans un plan dans lequel repose
ladite matrice (21) de buses.
3. Dispositif (1) selon au moins l'une des revendications précédentes, dans lequel ladite
unité (10) inclut au moins un conduit (14) se prolongeant entre au moins une sortie
(15), pouvant être reliée à ladite source d'aspiration, et les ouvertures de prélèvement
(13).
4. Dispositif (1) selon au moins l'une des revendications précédentes, comprenant un
étrier de support (4) auquel une tête d'impression (2) peut être fixée, ledit étrier
de support (4) étant pourvu d'un passage (41) dans lequel peut être introduit un côté
d'impression (20) de la tête d'impression (2) en correspondance de laquelle est disposée
la matrice (21) de buses.
5. Dispositif (1) selon la revendication précédente, dans lequel ledit passage (41) est
substantiellement façonné de façon complémentaire au dit côté d'impression (20).
6. Dispositif (1) selon au moins l'une des revendications précédentes, comprenant un
élément de couverture (5) comportant une cavité (50) pour recevoir un côté d'impression
(20) de la tête d'impression (2) en correspondance de laquelle est disposée une matrice
(21) de buses, ladite cavité (50) comprenant un fond dans lequel est prévue ladite
fente (12).
7. Dispositif (1) selon les deux revendications précédentes, dans lequel ledit élément
de couverture (5) est appliqué au dit étrier (4) de sorte à définir ladite unité principale
(10).
8. Dispositif (1) selon la revendication 5 ou 6, dans lequel ledit élément de couverture
(5) comprend un corps extérieur (51) dans lequel est prévu ledit conduit, ledit corps
(51) comportant aussi un renfoncement (510) sur le fond duquel est réalisée la fente
(12).
9. Dispositif (1) selon la revendication précédente, dans lequel ledit renfoncement (510)
est pourvu d'orifices (520) en communication avec ledit conduit (14).
10. Dispositif (1) selon la revendication 8 ou la revendication 9, dans lequel, entre
le fond du renfoncement (510) et une cloison (40) de l'étrier de support (4) dans
laquelle est réalisé le passage (41), est disposé un nombre d'éléments façonnés (54,
55) entre lesquels sont définies (13) les ouvertures de prélèvement (13).
11. Dispositif (1) selon la revendication précédente, dans lequel les éléments façonnés
(54) émanent du fond du renfoncement (510), chaque ouverture de prélèvement étant
définie et délimitée par le fond du renfoncement (510), par ladite cloison (40) de
l'étrier de support (4) et par deux éléments façonnés.
12. Dispositif (1) selon la revendication 11, dans lequel ladite unité principale (10)
comprend au moins un organe d'interposition (53) introduit dans ledit renfoncement
(510) du corps extérieur (51) de sorte à définir avec celui-ci ledit élément de couverture
(5), l'organe d'interposition (53) façonnant lesdits éléments (55).