EP2089164B1 - Pulverisateur universel et procede correspondant permettant son fonctionnement - Google Patents

Pulverisateur universel et procede correspondant permettant son fonctionnement Download PDF

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Publication number
EP2089164B1
EP2089164B1 EP07819602.9A EP07819602A EP2089164B1 EP 2089164 B1 EP2089164 B1 EP 2089164B1 EP 07819602 A EP07819602 A EP 07819602A EP 2089164 B1 EP2089164 B1 EP 2089164B1
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EP
European Patent Office
Prior art keywords
paint
flushing
atomiser
pipe
accordance
Prior art date
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Application number
EP07819602.9A
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German (de)
English (en)
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EP2089164B2 (fr
EP2089164A2 (fr
Inventor
Frank Herre
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Duerr Systems AG
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Duerr Systems AG
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B12/00Arrangements for controlling delivery; Arrangements for controlling the spray area
    • B05B12/14Arrangements for controlling delivery; Arrangements for controlling the spray area for supplying a selected one of a plurality of liquids or other fluent materials or several in selected proportions to a spray apparatus, e.g. to a single spray outlet
    • B05B12/1409Arrangements for controlling delivery; Arrangements for controlling the spray area for supplying a selected one of a plurality of liquids or other fluent materials or several in selected proportions to a spray apparatus, e.g. to a single spray outlet the selection means being part of the discharge apparatus, e.g. part of the spray gun
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B5/00Electrostatic spraying apparatus; Spraying apparatus with means for charging the spray electrically; Apparatus for spraying liquids or other fluent materials by other electric means
    • B05B5/025Discharge apparatus, e.g. electrostatic spray guns
    • B05B5/04Discharge apparatus, e.g. electrostatic spray guns characterised by having rotary outlet or deflecting elements, i.e. spraying being also effected by centrifugal forces
    • B05B5/0403Discharge apparatus, e.g. electrostatic spray guns characterised by having rotary outlet or deflecting elements, i.e. spraying being also effected by centrifugal forces characterised by the rotating member
    • B05B5/0407Discharge apparatus, e.g. electrostatic spray guns characterised by having rotary outlet or deflecting elements, i.e. spraying being also effected by centrifugal forces characterised by the rotating member with a spraying edge, e.g. like a cup or a bell

Definitions

  • the invention relates to an atomizer, in particular a rotary atomizer, and a corresponding operating method according to the independent claims.
  • paint systems for painting automobile body parts various paint systems are used as wet paints, namely solvent paints and water-based paints that are more environmentally friendly.
  • the application of the various paint systems takes place here by atomizers, which may be embodied, for example, as a rotary atomizer and in addition to a paint line for supplying the wet paint with the desired color also have a purge line to rinse the atomizer during breaks in operation or a color change with a detergent, said the detergent is adapted to the particular paint system used.
  • valve arrangement which serves to mix the various components (for example stock varnish / hardener) of a multicomponent varnish.
  • this known valve arrangement is not suitable for supplying different paint systems (eg water-based paint / solvent-based paint).
  • the invention is therefore based on the object to improve the known atomizer described above accordingly and to specify an associated operating method.
  • the invention comprises the general technical teaching of providing separate paint feeds for the different paint systems in the atomizer, so that the atomizer can be operated alternately with the different paint systems.
  • the differentiation between different paint systems used in the invention preferably distinguishes solvent-based paints on one side and water-based paints on the other side, wherein the two paint systems can each be supplied in different colors.
  • Different-colored water-based paints thus belong within the meaning of the invention to the same paint system, as well as solvent-based paints with different colors are assigned to the same paint system.
  • the in the frame The term coating system used in the invention thus encompasses all components of the respective coatings, such as, for example, solvents, binders, additives, dyes, and fillers.
  • the various coating systems can thus, for example, as in the above-mentioned case, be differentiated by the solvent used, the one solvent system being essentially a solvent Water may contain, while the other paint system may contain an organic solvent.
  • a primer may be applied with a water-based paint, followed by a waterborne basecoat and then a solvent-borne clearcoat.
  • the various paint feeders for the individual paint systems each have separate main needle valves that provide a common application element (e.g., a bell cup) to the various paint systems.
  • a common application element e.g., a bell cup
  • an application element preferably is based on rotating bell plates, which are known per se and therefore need not be described in detail.
  • the invention is not limited to Bell plate with respect to the application element to be used, but includes as application elements, for example, the discs commonly used in disc atomizers, baffles, air atomizers and the like.
  • separate main needle monitoring devices are preferably provided in order to independently monitor and / or adjust the valve position of the individual main needle valves.
  • a common main needle valve is provided for the different paint feeds.
  • the individual paint supply lines for the different paint systems are thus combined in the atomizer and then open into the common main needle valve, which is arranged upstream of the application element (for example a bell cup).
  • a shut-off valve is preferably arranged upstream of the common main needle valve in the individual separate paint feeds, so that the individual paint feeds can be shut off independently of one another. This is important to prevent a chemical reaction between the different paint systems when switching between chemically incompatible paint systems (e.g., water-based paint and solvent-based paint).
  • the nebulizer according to the invention preferably has separate return lines for the individual paint feeds, which allows a fast rinsing with large detergent flows or volumes in each paint feed.
  • the possible detergent flows are limited because the bell cup could be flooded.
  • everything that has been "dumped" into the cabin or washed out must be filtered out of the washout again.
  • Returns, on the other hand are usually connected directly to corresponding collection containers, which considerably simplifies disposal.
  • the return lines allow a permanent circulation of the respective paint system. Another important point for the use of returns for the different areas is the time savings through at least partially parallel processes, such as eg rinsing between color changer and atomizer (depending on the type of charge and varnish).
  • these return lines are completely separated from each other in the nebulizer outside the nebulizer to prevent a chemical reaction between incompatible coating systems.
  • chemically compatible coating systems there is also the possibility that the individual return lines for the various paint systems flow downstream into a common return line.
  • the atomizer according to the invention may further comprise an electrostatic charge for the applied wet paint.
  • an electrostatic charge for the applied wet paint In this case, either external charging and / or direct charging can be used, which is known per se from the prior art.
  • the atomiser according to the invention can therefore have at least one outer electrode for the electrostatic external charging of the applied lacquer systems and / or at least one contact electrode for the electrostatic direct charging of the applied lacquer systems.
  • a combination charging is possible within the scope of the invention, wherein both a direct charging and an external charging takes place.
  • a combination charging is for example in the patent application DE 41 05 116 A1 so that the content of this patent application is fully attributable to the present specification.
  • the paint systems water-based paint and solvent-based paint can be charged by means of direct charging.
  • the possibility that water-based paint is charged only by means of external charging whereas solvent-based paint is charged by means of combination charging.
  • the external charging is electrically grounded in an application of solvent-based lacquer, to prevent ignition of the solvent-based paint by flying sparks.
  • outer charging with the associated electrodes can be temporarily removed from the atomizer and deposited in an application of solvent-based lacquer, which is described, for example, in the patent application EP 1 634 651 A1 is described, so that the content of the present description is fully attributable.
  • the atomizer according to the invention preferably has separate rinsing lines for the individual paint systems in order to be able to supply in each case chemically compatible rinsing agents which are adapted to the respective paint system.
  • each of the paint feeds is preferably assigned a rinsing pipe in each case in order to be able to feed the respectively suitable rinsing agent for the respective paint system (water-based paint or solvent-based varnish).
  • an additional additional purge line is additionally provided in order to avoid a chemical reaction between the different coating systems when changing between the different coating systems.
  • the additional flushing agent must therefore be chemically compatible with the various paint systems and the associated flushing agents and act as a kind of buffer.
  • the number of different rinsing agents and thus, as a rule, the number of rinsing lines is greater than the number of different varnish systems or varnish feeders.
  • the number of different rinsing agents or flushing lines can be greater by one than the number of different paint systems or paint feeders.
  • At least one purge line in the atomizer opens into a line section downstream of the common main needle valve and downstream of the individual main needle valves.
  • This arrangement of the flushing line is particularly suitable for short flushing of the application element in order to clean the application element.
  • the purge lines in the atomizer open into a line section upstream of the common main needle valve or in front of the separate main needle valves.
  • This arrangement of the purge line advantageously also allows flushing of the main needle valve or the main needle valves.
  • At least one of the short flush purge lines in the atomizer may open into a conduit section downstream of the common main needle valve and behind the separated main needle valves, respectively, while at least one of the purge lines in the atomizer opens into a conduit section upstream lies in front of the common main needle valve or before the separate main needle valves.
  • rinsing agent is then fed via the rinsing line which opens downstream behind the main needle valve or valves, while the rinsing line, which opens in front of the main needle valve or in front of the main needle valves, is used for the normal rinsing operations.
  • the atomizer has two main needle valves, via which in each case a coating system (eg water-based paint or solvent-based lacquer) can be supplied.
  • a coating system eg water-based paint or solvent-based lacquer
  • only a single purge line is provided, which in a line section downstream flows behind the two main needle valves.
  • the invention comprises not only the atomizer described above as a single component, but also a complete painting machine with such an atomizer, wherein the coating machine can be configured, for example, as a multi-axis painting robot, side machine or as a roofing machine.
  • the invention is not limited to painting robots, roofing machines or side machines in terms of machine type, but includes other types of machines well known in the art.
  • the rinsing of the atomizer with rinsing agents for the different paint systems can in this case be carried out by a plurality of internal rinse lines, which run in the atomizer, as already described above.
  • the nebulizer has two internal purge lines, one of the two internal purge lines serving for short rinsing and therefore discharging in the nebulizer into a conduit section downstream of the main needle valve, while the other internal purge line opens into a conduit section upstream of the main needle valve ,
  • the two internal purge lines in the atomizer are doing through the Spülventilanowskiowski lines supplied from several (eg three) external purge lines with different rinsing agents for the individual paint systems.
  • the purge valve arrangement optionally connecting the external purge lines to the internal purge lines.
  • the external flushing valve arrangement can be arranged, for example, on the so-called "arm 1" or on the so-called “arm 2" of the painting robot.
  • the invention is not limited to the above examples in terms of the spatial arrangement of the Spülventilan Aunt, but also feasible in other ways.
  • the coating machine according to the invention preferably has separate supply lines for the different paint systems.
  • the individual supply lines for the different paint systems can each have a color changer to allow a color change in each supply strand.
  • the metering of the different coating systems can be carried out in each case by separate metering pumps, which are arranged in the individual supply lines.
  • the painting machine according to the invention is designed as a multi-axis painting robot and has a first robot arm ("arm 1") and a second robot arm (“arm 2"), wherein the second robot arm is movably attached to the first robot arm and directly a robot hand axis with an application device (eg a rotary atomizer) wearing.
  • the two metering pumps for the different paint systems can both be attached to or in the first robot arm ("arm 1").
  • the individual metering pumps for the various paint systems can be attached to or in the second robot arm (“arm 2").
  • one of the metering pumps is attached to or in the first robot arm, while the other of the two metering pumps is attached to the second robot arm.
  • the painting machine according to the invention can have a travel axis with a carriage which can be moved on a rail, wherein the carriage carries, for example, a painting robot.
  • the metering pumps can hereby be wholly or partly arranged on the carriage.
  • the invention is not limited to the examples described above in terms of the spatial arrangement of the metering pumps, but also realized in other ways.
  • the invention comprises a painting booth with a painting machine according to the invention and a cabin wall, which spatially limits the painting booth.
  • the metering pumps for the individual paint systems can hereby be arranged completely or partially on the cabin wall, either inside the paint booth or outside the paint booth.
  • the invention also includes an atomizer operating method to enable universal operation with various paint systems.
  • FIG. 1 shows a partially conventionally constructed rotary atomizer 1 with a rotatably mounted bell cup 2, wherein the rotary atomizer 1 serves both for the application of a solvent-based paint as well as for the application of a water-based paint.
  • the water-based paint is in this case fed via a paint feed 3, whereas the solvent-based paint is supplied via a separate paint feed 4 in the rotary atomizer 1.
  • paint feed 3 and the associated return line 5 on the one hand and the other paint feed 4 and the associated return line 6 on the other hand are separated from each other to prevent contact between the different paint systems (solvent and water paint). This is important because contact between the different paint systems would lead to a chemical reaction and thus irreversible damage to the rotary atomizer 1.
  • shut-off valve RFA or RFB is arranged in the two return lines 5, 6, which allows a shut-off of the return line 5 and 6 respectively.
  • shut-off valve RFA is closed when the main needle valve FA is opened, since then no circulation via the return line 5 is required.
  • the shut-off valve RFA is opened when the main needle valve FA is closed so that the paint system in the paint supply 3 can then circulate via the return line 5.
  • shut-off valve RFB in the return line 6 is opened when the other main needle valve FB is closed.
  • the shut-off valve RFB is closed when the main needle valve FB is opened, since then no circulation via the return line 6 is required.
  • the two paint feeds 3, 4 lead via a respective main needle valve FA or FB into a common line section 7, which leads to the bell cup 2.
  • the rotary atomizer 1 has two flushing lines 8, 9, which run separately in the rotary atomizer 1, wherein a flushing agent for solvent-based lacquer is supplied via the flushing line 8, while a flushing agent for water-based lacquer is supplied via the flushing line 9.
  • the two purge lines 8, 9 open via a respective purge valve V1 or V2 in the line section 7 between the two main needle valves FA, FB and the bell cup 2 and thereby allow a purge of the rotary atomizer 1 with the various rinsing agents, via the two purge lines 8, 9 are supplied.
  • FIG. 2 is largely consistent with the embodiment FIG. 1 to avoid repetition, reference is made to the above description, wherein the same reference numerals are used for corresponding components in the following.
  • a special feature of this embodiment is that in the line section 7, a common main needle valve HN is arranged, while in the two paint feeds 3, 4 each have a shut-off valve FG1 and FG2 is arranged to prevent contact between the various paint systems in the two paint feeds 3, 4.
  • FIG. 3 again in part agrees with the embodiment according to FIG. 1 so as to avoid repetition to the above description
  • FIG. 1 is referenced, wherein the same reference numerals are used for corresponding components in the following.
  • a special feature of this embodiment is that in addition to the two paint feeds 3, 4, a third paint supply 10 is provided, which opens via a further main needle valve FC in the common line section 7.
  • a separate return line 11 also branches off from the third paint feed 10 via a shut-off valve RFC, so that even in the paint feed 10 the supplied paint can circulate permanently, as already described above.
  • a third purge line 12 opens via a further purge valve V3 in the line section 7, wherein the mouth of the purge lines 8, 9 and 12 in this embodiment, immediately in front of the bell cup. 2 is, so that the purge lines 8, 9, 12 are particularly suitable for short rinsing of the bell cup 2.
  • the rotary atomizer 1 in this exemplary embodiment has three further flushing lines 13, 14 and 15 which open via a respective flush valve v1, v2 and v3 in the common line section 7 of the rotary atomizer 1.
  • the mouth of the purge line 13-15 is here in the common line section 7 immediately behind the main needle valve FA-FC, ie at the upstream end of the common line section 7.
  • the purge lines 13-15 are therefore suitable for normal flushing of the common line section 7, the of the purge lines 8, 9 and 12 can be flushed less effectively.
  • the rotary atomizer allows not only a change between different paint systems (solvent and water paint), but also a change between different colors.
  • different colors of a paint system can be supplied via the two paint feeds 3, 4 in the so-called A / B operation, whereas another paint system is supplied via the paint feed 10.
  • FIG. 4 shows a modification of the embodiments described above, so that reference is made to avoid repetition of the above description, wherein the same reference numerals are used for corresponding components in the following.
  • a special feature of this embodiment is that the rotary atomizer 1 has three paint feeds 3, 4 and 10, but only two internal rinse lines 8, 13 for supplying different rinsing agents.
  • the purge line 8 opens via a purge valve KS downstream behind the common main needle valve HN in the common power section 7, so that the purge line 8 is particularly well suited for short rinsing of the bell cup 2.
  • the other purge line 13 opens via a flush valve V in the common line section 7 upstream of the common main needle valve HN.
  • the purge line 13 is therefore also suitable for flushing the main needle valve HN.
  • various rinsing agents can be supplied, which are adapted to the different paint systems and are supplied via three external rinse lines 16, 17, 18.
  • the external purge lines 16, 17, 18 are in this case connected via an external Spülventilan extract 19 with the two internal purge lines 8, 13, so that each of the external purge lines 16-18 of the purge valve assembly 19 with one or both of the purge lines 8, 13 can be connected ,
  • the flush valve arrangement 19 is in this case arranged outside the rotary atomizer 1 and can be arranged, for example, on a robot arm of a painting robot.
  • the distribution of the various flushing means from the external flushing lines 16-18 to the two internal flushing lines 8, 13 is effected by three flushing valves V1, V2 and V3 connected in parallel and two flushing valves FG KS and GF V. connected in parallel on the output side.
  • FIG. 5 finally shows two painting robots 20, 21 according to the invention, which are linearly movable along a travel rail 22.
  • the two painting robots 20, 21 each have a robot base 23 on which a roundel 24 is rotatably mounted about a vertical axis.
  • a robot arm 25 (arm 1") pivotally mounted, wherein the robot arm 25 carries another robot arm 26 ("arm 2").
  • the robot arm 26 finally carries, via a robot hand axis 7, an electrostatic rotary atomizer 28, as described above and in various embodiments in FIGS FIGS. 1 to 4 is shown.
  • FIG. 6 is largely consistent with the embodiment FIG. 1 to avoid repetition, reference is made to the above description, wherein the same reference numerals are used for corresponding components in the following.
  • a special feature of this embodiment is that the purge line 8 is the only purge line.

Landscapes

  • Spray Control Apparatus (AREA)
  • Electrostatic Spraying Apparatus (AREA)
  • Details Or Accessories Of Spraying Plant Or Apparatus (AREA)
  • Application Of Or Painting With Fluid Materials (AREA)
  • Nozzles (AREA)

Claims (19)

  1. Pulvérisateur (1 ; 28), plus particulièrement pulvérisateur rotatif, avec
    a) une première alimentation de peinture (3) pour un premier système de peinture,
    b) au moins une deuxième alimentation de peinture (4) supplémentaire pour un deuxième système de peinture, les deux alimentations de peinture (3, 4) étant séparées l'une de l'autre, de façon à ce que le pulvérisateur (1 ; 28) puisse appliquer au choix un des deux systèmes de peinture,
    c) un élément d'application (2), plus particulièrement un plateau à cloche, pour l'application des deux systèmes de peinture,
    d) moyennant quoi, pour l'alimentation de l'élément d'application (2) avec le premier système de peinture ou le deuxième système de peinture
    d1) une première soupape principale (FA) est prévue dans la première alimentation de peinture (3) et une deuxième soupape principale (FB) est prévue dans la deuxième alimentation de peinture (4) ou
    d2) une soupape principale commune (HN) est prévue pour les deux alimentations de peinture (3, 4) et
    e) une portion de conduite commune (7), qui conduit à l'élément d'application (2), les deux alimentations de peinture (3, 4) débouchant par l'intermédiaire de l'au moins une soupape principale (FA, FB ; HN) dans la portion de conduite commune (7),
    caractérisé en ce que
    f) l'au moins une soupape principale (FA, FB ; HN) étant une soupape à pointeau principale (FA, FB ; HN) et
    g) au moins une conduite de rinçage (8, 9 ; 12) débouche dans la portion de conduite commune (7), qui se trouve en aval derrière l'au moins une soupape à pointeau principale (FA, FB ; HN).
  2. Pulvérisateur (1 ; 28) selon la revendication 1,
    caractérisé par
    a) un premier dispositif de surveillance de pointeau principal pour la surveillance de la première soupape à pointeau principale (FA) et
    b) un deuxième dispositif de surveillance de pointeau principal pour la surveillance de la deuxième soupape à pointeau principale (FB).
  3. Pulvérisateur (1 ; 28) selon l'une des revendications précédentes, caractérisé par
    a) une première conduite de retour (5), qui bifurque à partir de la première alimentation de peinture (3) et
    b) une deuxième conduit de retour (6), qui bifurque à partir de la deuxième alimentation de peinture (4), les deux conduites de retour (5, 6) étant séparées l'une de l'autre, plus particulièrement les deux conduites de retour séparées débouchant en aval dans une conduite de retour commune, et/ou
    c) au moins une électrode externe pour la charge électrostatique externe des systèmes de peinture appliqués, et/ou
    d) au moins une électrode de contact pour la charge électrostatique directe des systèmes de peinture appliqués.
  4. Pulvérisateur (1 ; 28) selon l'une des revendications précédentes, caractérisé par
    a) une première conduite de rinçage (8) pour le rinçage du pulvérisateur (1 ; 28) avec un premier produit de rinçage, qui est adapté au premier système de peinture,
    b) une deuxième conduite de rinçage (9) pour le rinçage du pulvérisateur (1 ; 28) avec un deuxième produit de rinçage, qui est adapté au deuxième système de peinture,
    c) les deux conduites de rinçage (8, 9) s'étendant séparément l'une de l'autre dans le pulvérisateur (1 ; 28) et permettant l'alimentation de produits de rinçage différents pour les deux systèmes de peinture et/ou
    d) une troisième conduite de rinçage (12) pour le rinçage du pulvérisateur (1 ; 28) avec un troisième produit de rinçage, qui est empêche, lors d'un changement de système de peinture, une réaction chimique entre les systèmes de peinture et/ou entre les produits de rinçage adaptés.
  5. Pulvérisateur (1 ; 28) selon la revendication 4,
    caractérisé en ce qu'au moins une des conduites de rinçage (13) débouche dans le pulvérisateur (1 ; 28) dans une portion de conduite qui se trouve en amont avant la soupape à pointeau principale commune (HN) ou en amont devant les deux avant les deux soupapes à pointeaux principales séparées.
  6. Pulvérisateur (1 ; 28) selon l'une des revendications 4 à 5, caractérisé en ce qu'au moins une des conduites de rinçage débouche dans le pulvérisateur (1 ; 28) dans une portion de conduite qui se trouve en amont avant la soupape à pointeau principale commune (HN) ou en amont devant les deux avant les deux soupapes à pointeaux principales séparées.
  7. Pulvérisateur (1 ; 28) selon l'une des revendications 1 à 3, caractérisé en ce qu'une seule conduite de rinçage (8) est prévue, qui débouche dans le pulvérisateur (1 ; 28) dans une portion de conduite (7), qui se trouve en aval après les deux soupapes à pointeaux principales (FA, FB).
  8. Pulvérisateur (1 ; 28) selon l'une des revendicationsprécédentes, caractérisé en ce que
    a) les différents systèmes de peinture comprennent une peinture à l'eau et une peinture à solvants et/ou
    b) les différents systèmes de peinture comprennent une peinture de base et un vernis transparent.
  9. Machine de peinture, plus particulièrement robot de peinture, avec un pulvérisateur (1 ; 28) selon l'une des revendications précédentes, plus particulièrement
    caractérisée par
    a) au moins une conduite de rinçage interne commune (8, 13) qui est disposée dans le pulvérisateur (1 ; 28) et par l'intermédiaire de laquelle sont amenés différents produits de rinçage pour les différents systèmes de peinture,
    b) plusieurs conduites de rinçage externes (16, 17, 18) qui sont disposées à l'extérieur du pulvérisateur (1 ; 28) et qui amènent chacune un produit de rinçage pour un des systèmes de peinture, ainsi que
    c) un dispositif à soupapes de rinçage (19) disposé à l'extérieur du pulvérisateur (1 ; 28), qui est relié, du côté de l'entrée, avec les conduites de rinçage externes (16, 17, 18) et, du côté de l'entrée, avec la conduite de rinçage interne (8, 13).
  10. Machine de peinture selon la revendication 9,
    caractérisée en ce que
    a) au moins une conduite de rinçage interne (8) pour des rinçages courts débouche dans le pulvérisateur (1 ; 28) dans une portion de conduite (7), qui se trouve en aval après la soupape à pointeau principale commune (HN) ou en aval après les deux soupapes à pointeau principales séparées et
    b) au moins une deuxième conduite de rinçage interne (13) débouche dans le pulvérisateur (1 ; 28) dans une portion de conduite (7) qui se trouve en amont avant la soupape à pointeau principale commune (HN) ou en amont avant les deux soupapes à pointeaux principales séparées.
  11. Machine de peinture selon l'une des revendications 9 à 10, caractérisée par
    a) une première ligne d'alimentation qui alimente la première alimentation de peinture du pulvérisateur (1 ; 28) avec le premier système de peinture et
    b) une deuxième ligne d'alimentation qui alimente la deuxième alimentation de peinture du pulvérisateur (1 ; 28) avec le deuxième système de peinture et/ou
    c) un premier changeur de couleur, qui alimente la première ligne d'alimentation avec une couleur variable du premier système de peinture et
    d) un deuxième changeur de couleur, qui alimente la deuxième ligne d'alimentation avec une couleur variable du deuxième système de peinture.
  12. Machine de peinture selon l'une des revendications 9 à 11, caractérisée en ce que
    a) une première pompe de dosage est prévue pour le dosage du premier système de peinture et une deuxième pompe de dosage est prévue pour le dosage du deuxième système de peinture et/ou
    b) la première pompe de dosage est disposée dans la première ligne d'alimentation et
    c) la deuxième pompe de dosage est disposée dans la deuxième ligne d'alimentation,
    d) plus particulièrement la première pompe de dosage et/ou la deuxième pompe de dosage est intégrée dans le pulvérisateur (1 ; 28).
  13. Machine de peinture selon l'une des revendications 9 à 12, caractérisée en ce que
    a) un premier bras de robot (25) et un deuxième bras de robot (26) sont prévus, qui sont montés de manière mobile sur le premier bras de robot et qui supportent un axe de main de robot (27) avec le pulvérisateur (1 ; 28) et/ou
    b) les deux pompes de dosage sont montées sur le premier bras de robot (25) ou
    c) les deux pompes de dosage sont montées sur le deuxième bras de robot (26) ou
    d) une des deux pompes de dosage est montée sur le premier bras de robot (25) tandis que l'autre des deux pompes de dosage est montée sur le deuxième bras de robot (26).
  14. Machine de peinture selon l'une des revendications 9 à 13, caractérisée par un axe de déplacement avec un chariot, qui peut être déplacé sur un rail (22), la première pompe de dosage et/ou la deuxième pompe de dosage étant disposée de manière mobile sur le chariot.
  15. Cabine de peinture avec une machine de peinture selon l'une des revendications 9 à 14 et une paroi de cabine, la première pompe de dosage et/ou la deuxième pompe de dosage étant disposée sur la paroi de la cabine soit à l'intérieur de la cabine de peinture soit à l'extérieur de la cabine de peinture.
  16. Procédé d'exploitation pour un pulvérisateur (1 ; 28) selon l'une des revendications 1 à 8, le pulvérisateur (1 ; 28) étant exploité successivement avec différents systèmes de peinture et les différents systèmes de peinture étant amenés dans le pulvérisateur (1 ; 28) par l'intermédiaire d'alimentations de peinture séparées, caractérisé en ce que le pulvérisateur (1 ; 28) est rincé avec un produit de rinçage par l'intermédiaire d'une conduite de rinçage (8, 9 ; 12) qui débouche dans une portion de conduite (7) en aval après l'au moins une soupape à pointeau principale (FA, FB, HN).
  17. Procédé d'exploitation selon la revendication 16, caractérisé en ce que le pulvérisateur (1 ; 28) est rincé avec différents produits de rinçage, les différents produits de rinçage étant adaptés chacun à un des systèmes de peinture.
  18. Procédé d'exploitation selon l'une des revendications 16 à 17, caractérisé en ce que
    a) le pulvérisateur (1 ; 28) est rincé successivement avec au moins trois différents produits de rinçage,
    b) le premier produit de rinçage est adapté au premier système de peinture,
    c) le deuxième produit de rinçage est adapté au deuxième système de peinture et
    d) le troisième produit de rinçage permet d'effectuer un rinçage lors d'un changement entre les différents systèmes de peinture, le troisième produit de rinçage empêchant une réaction entre le premier système de peinture et le deuxième système de peinture et/ou entre le premier produit de rinçage et le deuxième produit de rinçage.
  19. Procédé d'exploitation selon l'une des revendications 16 à 18, caractérisé en ce que
    a) le dosage de chacun des différents systèmes de peinture a lieu par l'intermédiaire d'un doseur ou
    b) le dosage du premier système de peinture a lieu par l'intermédiaire de deux doseurs et le dosage du deuxième système de peinture a lieu par l'intermédiaire d'un seul doseur et/ou
    c) les différents systèmes de peinture comprennent une peinture à l'eau et une peinture à solvants et/ou
    d) les différents systèmes de peinture comprennent une peinture de base et un vernis transparent.
EP07819602.9A 2006-11-15 2007-11-05 Pulverisateur universel et procede correspondant permettant son fonctionnement Active EP2089164B2 (fr)

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DE102006053921.4A DE102006053921B4 (de) 2006-11-15 2006-11-15 Lackiermaschine mit einem Zerstäuber und zugehöriges Betriebsverfahren
PCT/EP2007/009581 WO2008058650A2 (fr) 2006-11-15 2007-11-05 Pulvérisateur universel et procédé correspondant permettant son fonctionnement

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DE102010010053B4 (de) * 2010-03-03 2019-05-16 Dürr Systems Ag Zerstäuber und Verfahren zum Applizieren von Ein- und Mehr-Komponenten-Beschichtungsmitteln
USD873874S1 (en) 2012-09-28 2020-01-28 Dürr Systems Ag Axial turbine housing for a rotary atomizer for a painting robot
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WO2015041831A1 (fr) * 2013-09-20 2015-03-26 Nabors Industries, Inc. Appareil d'enrobage de tuyaux
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DE102014010864A1 (de) * 2014-07-24 2016-01-28 Eisenmann Ag Beschichtungssystem zum Beschichten von Gegenständen
DE102015008661A1 (de) * 2015-07-03 2017-01-05 Dürr Systems Ag Nadelventil
DE102015010158A1 (de) * 2015-07-03 2017-01-05 Dürr Systems Ag Applikationsgerät, insbesondere Rotationszerstäuber

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Also Published As

Publication number Publication date
US9346070B2 (en) 2016-05-24
WO2008058650A3 (fr) 2008-08-28
JP5502489B2 (ja) 2014-05-28
WO2008058650A2 (fr) 2008-05-22
JP2010509059A (ja) 2010-03-25
DE102006053921B4 (de) 2016-11-24
DE102006053921A1 (de) 2008-05-29
CN101557881B (zh) 2012-09-19
RU2009122497A (ru) 2010-12-20
ES2681718T5 (es) 2022-10-31
ES2681718T3 (es) 2018-09-14
US20100133353A1 (en) 2010-06-03
CN101557881A (zh) 2009-10-14
EP2089164B2 (fr) 2022-08-24
RU2450868C2 (ru) 2012-05-20
EP2089164A2 (fr) 2009-08-19

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