EP1394757A2 - Sensoranordnung für eine Beschichtungsanlage - Google Patents
Sensoranordnung für eine Beschichtungsanlage Download PDFInfo
- Publication number
- EP1394757A2 EP1394757A2 EP03019861A EP03019861A EP1394757A2 EP 1394757 A2 EP1394757 A2 EP 1394757A2 EP 03019861 A EP03019861 A EP 03019861A EP 03019861 A EP03019861 A EP 03019861A EP 1394757 A2 EP1394757 A2 EP 1394757A2
- Authority
- EP
- European Patent Office
- Prior art keywords
- sensor
- transmitter
- receiver
- arrangement according
- sensor arrangement
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
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Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B05—SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
- B05B—SPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
- B05B12/00—Arrangements for controlling delivery; Arrangements for controlling the spray area
- B05B12/004—Arrangements for controlling delivery; Arrangements for controlling the spray area comprising sensors for monitoring the delivery, e.g. by displaying the sensed value or generating an alarm
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B05—SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
- B05B—SPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
- B05B12/00—Arrangements for controlling delivery; Arrangements for controlling the spray area
- B05B12/004—Arrangements for controlling delivery; Arrangements for controlling the spray area comprising sensors for monitoring the delivery, e.g. by displaying the sensed value or generating an alarm
- B05B12/006—Pressure or flow rate sensors
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B05—SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
- B05B—SPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
- B05B5/00—Electrostatic spraying apparatus; Spraying apparatus with means for charging the spray electrically; Apparatus for spraying liquids or other fluent materials by other electric means
- B05B5/025—Discharge apparatus, e.g. electrostatic spray guns
- B05B5/04—Discharge apparatus, e.g. electrostatic spray guns characterised by having rotary outlet or deflecting elements, i.e. spraying being also effected by centrifugal forces
- B05B5/0422—Discharge apparatus, e.g. electrostatic spray guns characterised by having rotary outlet or deflecting elements, i.e. spraying being also effected by centrifugal forces comprising means for controlling speed of rotation
Definitions
- the invention relates to a sensor arrangement for a coating system according to the preamble of claim 1 and a coating system with such a sensor arrangement.
- optical fibers are relatively fragile, which is at excessive mechanical stress on the sensor assembly can lead to a malfunction of the speed measurement.
- the invention is therefore the object of the above described known sensor arrangement to improve that a larger component modularity is possible, the mechanical Resilience should be as large as possible.
- the object is, starting from the well-known known Sensor arrangement according to the preamble of claim 1, solved by the characterizing features of claim 1.
- the invention includes the general technical teaching, for transmission provide the sensor signal a transmitter and a receiver, being a wireless connection between the transmitter and consists of the recipient.
- a wireless connection between the sender and the receiver is on the one hand the unlimited mechanical load capacity of the compound, whereas a connection through optical fibers is relatively fragile is.
- a wireless connection between the transmitter and the receiver advantageously any component modularity, because in contrast to optical fibers no separation points occur at the transitions between the individual modules.
- the inventive use of a wireless connection with a transmitter and a receiver advantageously allows an arrangement the sensor in a moving component of a coating plant, whereas the sensor in the above-described known sensor arrangement arranged stationary and over Optical fiber connected to the movable rotary atomizer is.
- the senor is thus preferably on a moving part of the coating system attached while the receiver is arranged stationary.
- the between the transmitter and the receiver thus occurring relative movement
- the connection between the Transmitter and the receiver is wireless.
- the transmitter is a radio transmitter and at the receiver corresponding to a radio receiver, wherein between the radio transmitter and the radio receiver a wireless Radio connection exists.
- the transmitter is an optical Transmitter and the receiver is an optical receiver, wherein between the optical transmitter and the optical receiver a line of sight exists.
- the sensor signals an infrared transmitter are used, whose signal is picked up by an infrared receiver.
- the transmitter is an acoustic Transmitter and the receiver corresponding to an acoustic receiver is.
- the receiver corresponding to an acoustic receiver is.
- the signal from an ultrasonic receiver is detected.
- the wireless connection between the Transmitter and the receiver an electrical potential separation, so that the transmitter on the one hand and the receiver on the other can lie different electrical potentials.
- the transmitter can thus in the sensor arrangement according to the invention are also at a high voltage potential, while the receiver is at a low voltage potential or is at a ground potential.
- the sensor may be, for example, a pressure sensor act, which measures a print size of the coating system, such as for example, the pressure of a medium (air, coating, Solvent) of the coating system.
- a medium air, coating, Solvent
- the drive air pressure the Lenkluftdruck
- the Solvent printing color printing or line pressure as too to call measuring pressure size.
- the senor detects the position the positioning speed and / or the state of a component of Coating plant.
- the senor may be a pig sensor that detects the position, the speed and / or an identification of a pig detected.
- the pig sensor can each output a signal when the pig passes a certain line section or is located in the line section.
- the Sensor detects the position of a nozzle needle of the coating system, which is preferably the main needle of a rotary atomizer is.
- the senor the position of a cylinder of a Piston doser or a piston pump a coating plant to capture.
- the senor is a rotation sensor is the speed, the angle of rotation and / or the Direction of rotation of a turbine wheel of a rotary atomizer detected.
- the senor can also adjust the position and / or the Adjustment speed of one or more axes of a painting robot capture the coating system.
- the invention also a complete coating system with such a sensor arrangement.
- FIG. 1 shows a largely conventional Turbine wheel 1 used in a rotary atomizer turbine can be, for example, known from DE 43 06 800 C2 is.
- Turbine wheel 1 used in a rotary atomizer turbine
- DE 43 06 800 C2 With regard to the structural design of Rotationszerstäuberturbine and the complete rotary atomizer Therefore, for reasons of simplification, reference is made to DE 43 06 800 C2, their contents to the full extent attributable to this description is.
- the turbine wheel 1 has a Glockentellerwelle 2, wherein on 1 left side of the bell-tower shaft second a bell plate can be mounted. Furthermore, the turbine wheel 1 a circular disk-shaped rotor 3, wherein on the bell-plate-side end face of the rotor 3 numerous Turbine blades 4 are arranged distributed over the circumference. During operation of the rotary atomizer, the turbine blades become 4 blown by a so-called drive air, which is well known.
- an optical marking is attached, which is both a provision the rotational speed of the turbine wheel 1 and a Determining the direction of rotation of the turbine wheel 1 allows.
- the optical marking consists of several circular segment-shaped Coatings distributed on the face 5 over the circumference are applied.
- an optical sensor 6 On the side facing away from the bell plate of the rotor 3 is an optical sensor 6 is arranged, which has the different reflectivity the optical marks and the otherwise matte end face 5 detected and a corresponding electrical Signal to a transmitter 7 bader endeavor.
- the transmitter 7 radiates via an antenna 8 from a radio signal, the is received by an antenna 10 via an antenna 9, wherein the antennas 8, 9 are shown here only schematically.
- the Receiver 10 then outputs a corresponding electrical signal from which an evaluation unit determines the speed and the direction of rotation of the turbine wheel 1 can determine.
- the transmitter 7 is in this case arranged in the rotary atomizer, which can be moved by a painting robot. Furthermore the transmitter 7 is located with the sensor 6 and the antenna 8 during the operation of the rotary atomizer at a high voltage potential, so that no electrical insulation of the receiver 7, the sensor 6 or the antenna 8 with respect to the rotary atomizer is required.
- the receiver 10 is stationary in the cabin wall of a Paint booth arranged and therefore only minor mechanical in operation Exposed to stress.
- the Receiver 10 grounded, with the wireless connection between the transmitter 7 and the receiver 10 enables potential separation.
- Figure 2 shows another embodiment of an inventive Sensor assembly that is used to position to determine a pig 11 in a piggable line 12.
- the pig 11 on a permanent magnet 13, the a magnetic field sensor 14 drives, wherein the magnetic field sensor 14 is disposed on the outside of the conduit 12.
- the magnetic field sensor 14 When the pig 11 is at the position shown in FIG. thus, the magnetic field sensor 14 generates due to the permanent magnet 13 an electrical signal to a transmitter 15th is passed on.
- the transmitter 15 then transmits a corresponding one Radio signal via an antenna 16, wherein the radio signal is received by a receiver 17 via an antenna 18.
- the Receiver 17 Of the Receiver 17 then indicates a corresponding electrical signal an evaluation unit on, wherein the evaluation unit for Simplification is not shown.
- FIG. 3 shows a rotary atomizer 19, which is largely conventional, so to supplement the following description with the relevant ones State of the art is referenced.
- the rotary atomizer 19 For mounting the rotary atomizer 19 has this on his mounting side end face a mounting flange 20 with a Fastening pin 21 on which a mechanical attachment on a robot arm of a painting robot.
- a conventional frusto-conical Bell plates 22 are attached, the only here is shown in dashed lines and in operation of the rotary atomizer 19 by a compressed air turbine 23 at a high speed is driven.
- the rotation of the bell cup 22 leads in this case, that the introduced into the interior of the bell cup 22 Coating axially and in particular radially accelerated is sprayed and at a bell plate tear-off becomes.
- the drive of the compressed air turbine 23 takes place here by compressed air, that of the painting robot via the mounting flange 20th is guided, wherein the supply of the drive air here for simplicity not shown.
- a so-called shaping air ring 24 is provided, in the bell-plate-side end face of a housing 25 of the rotary atomizer 19 is arranged.
- the directing ring 24 are a plurality of axially directed shaping air nozzles 26, 27th arranged over the in the operation of the rotary atomizer 19 a Steering air flow axially outside on the conical surface of the Bell plate 22 can be blown.
- the shaping air nozzles 26, 27th blown out shaping air is shaped so the spray and the desired beam width set.
- the supply of the shaping air for the two shaping air nozzles 26, 27 takes place in each case by a flange opening 28, 29, the in arranged the mounting flange 20 of the rotary atomizer 19 are.
- the position of the flange openings 28, 29 within the End face of the mounting flange 20 is in this case by the Position of the corresponding connections on the associated mounting flange specified by the painting robot.
- the outer shaping air nozzle 26 is in this case by a Lenkluft Gustav 30 supplied to the outside of the compressed air turbine 23 between the housing 25 and the compressed air turbine 23 along is guided.
- the flange opening 28 opens first in an axially extending tap hole 31, which then into a radial extending tap hole 32 passes, wherein the radially extending Sting bore 32 finally on the outside of a Valve housing 33 in a space between the housing 25th and the valve housing 33 opens.
- the draft air is then at the Compressed air turbine 23 guided past in a so-called air space 34, from where they finally pierced through holes 35 in the Steering ring 24 reaches the shaping air nozzle 26.
- the supply of the shaping air for the shaping air nozzle 27 takes place, however by a Lenkluft effet 36, of the flange 29th in the mounting flange 20 starting axially and kink-free passes through the valve housing 33.
- the Lenkluft effet 36 also axially by a bearing unit 37 of the Air turbine 23.
- the radial distance of the shaping air line 36 from the axis of rotation of the bell cup 22 is greater than the outer diameter of not shown for simplicity Turbinenrads, so that the Lenklufttechnisch 36 on the outside of the turbine wheel runs.
- the Lenkluft effet 36 then opens bell-plate side in a further air space 38, the between a substantially cylindrical portion 39 of the compressed air turbine 23 and a surrounding cover 40 is arranged is.
- the holes 41 in the section 39 of the compressed air turbine 23 consist of one of the lateral surface of the Section 39 outgoing radial tap hole and one of the bell-plate-side end face of the section 39 outgoing axial tap hole, which is a simple Assembly possible.
- This radio signal is received by a receiver 43 via an antenna 44 received and forwarded to an evaluation unit, wherein the evaluation unit not shown for simplicity is.
- the invention is not limited to those described above Embodiments limited. Rather, a variety Variants and variations conceivable, also from use the idea of the invention and therefore in the Protection range fall.
Landscapes
- Chemical & Material Sciences (AREA)
- Analytical Chemistry (AREA)
- Physics & Mathematics (AREA)
- Fluid Mechanics (AREA)
- Electrostatic Spraying Apparatus (AREA)
- Arrangements For Transmission Of Measured Signals (AREA)
- Spray Control Apparatus (AREA)
- Coating Apparatus (AREA)
Abstract
Description
- Figur 1
- eine Seitenansicht eines Turbinenrades einer Druckluftturbine zum Antrieb eines Rotationszerstäubers mit einer erfindungsgemäßen Sensoranordnung,
- Figur 2
- eine molchbare Leitung mit einer Sensoranordnung zur Erfassung der Molchposition sowie
- Figur 3
- einen Rotationszerstäuber mit einer erfindungsgemäßen Sensoranordnung zur Druckmessung.
Claims (16)
- Sensoranordnung für eine Beschichtungsanlage zur Beschichtung von Werkstücken, mit
mindestens einem Sensor (6, 14, 42) zur Erfassung mindestens einer Betriebsgröße der Beschichtungsanlage und zur Erzeugung eines entsprechenden Sensorsignals,
gekennzeichnet durch
einen mit dem Sensor (6, 14, 42) verbundenen Sender (7, 15) zur Übertragung des Sensorsignals,
einen Empfänger (10, 17, 43) zur Aufnahme des von dem Sender (7, 15) übertragenen Sensorsignals und
eine drahtlose Verbindung zwischen dem Sender (7, 15) und dem Empfänger (10, 17, 43). - Sensoranordnung nach Anspruch 1, dadurch gekennzeichnet, dass der Sender (7, 15) ein Funksender und der Empfänger (10, 17, 43) ein Funkempfänger ist.
- Sensoranordnung nach Anspruch 1, dadurch gekennzeichnet, dass der Sender ein optischer Sender und der Empfänger ein optischer Empfänger ist.
- Sensoranordnung nach Anspruch 3, dadurch gekennzeichnet, dass der Sender ein Infrarotsender und der Empfänger ein Infrarotempfänger ist.
- Sensoranordnung nach Anspruch 1, dadurch gekennzeichnet, dass der Sender ein akustischer Sender und der Empfänger ein akustischer Empfänger ist.
- Sensoranordnung nach mindestens einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass der Sender (7, 15) und/oder der Sensor (6, 14, 42) einerseits und der Empfänger (10, 17, 43) andererseits auf unterschiedlichen elektrischen Potentialen liegen.
- Sensoranordnung nach Anspruch 6, dadurch gekennzeichnet, dass der Sender (7, 15) und/oder der Sensor (6, 14, 42) auf einem Hochspannungspotential liegt, während der Empfänger (10, 17, 43) auf einem Niederspannungspotential oder auf Massepotential liegt.
- Sensoranordnung nach mindestens einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass der Sender (7, 15) und/oder der Sensor (6, 14, 42) an einem beweglichen Teil der Beschichtungsanlage angebracht ist, während der Empfänger (10, 17, 43) stationär angeordnet ist.
- Sensoranordnung nach mindestens einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass der Sensor (42) ein Drucksensor ist.
- Sensoranordnung nach Anspruch 9, dadurch gekennzeichnet, dass der Drucksensor den Antriebsluftdruck, den Lösungsmitteldruck, den Beschichtungsmitteldruck, den Lenkluftdruck oder den Leitungsdruck in einer Beschichtungsmittelleitung oder einer Druckluftleitung erfasst.
- Sensoranordnung nach mindestens einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass der Sensor (6, 14) ein Positionssensor oder ein Geschwindigkeitssensor ist, der die Position, die Stellung oder die Stellgeschwindigkeit eines Bauteils der Beschichtungsanlage erfasst.
- Sensoranordnung nach mindestens einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass der Sensor (14) ein Molchsensor ist, der die Position, die Geschwindigkeit und/oder eine Kennung eines Molchs (11) erfasst.
- Sensoranordnung nach Anspruch 11 und/oder Anspruch 12, dadurch gekennzeichnet, dass der Sensor die Position einer Düsennadel der Beschichtungsanlage erfasst.
- Sensoranordnung nach mindestens einem der Ansprüche 11 bis 13, dadurch gekennzeichnet, dass der Sensor die Stellung eines Zylinders der Beschichtungsanlage erfasst.
- Sensoranordnung nach mindestens einem der Ansprüche 11 bis 14, dadurch gekennzeichnet, dass der Sensor (6) ein Drehwertsensor ist, der die Drehzahl, den Drehwinkel und/oder die Drehrichtung eines Turbinenrads (1) eines Rotationszerstäubers erfasst.
- Beschichtungsanlage mit einer Sensoranordnung nach mindestens einem der vorhergehenden Ansprüche.
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| DE10240451A DE10240451A1 (de) | 2002-09-02 | 2002-09-02 | Sensoranordnung für eine Beschichtungsanlage |
| DE10240451 | 2002-09-02 |
Publications (3)
| Publication Number | Publication Date |
|---|---|
| EP1394757A2 true EP1394757A2 (de) | 2004-03-03 |
| EP1394757A3 EP1394757A3 (de) | 2005-04-13 |
| EP1394757B1 EP1394757B1 (de) | 2013-01-09 |
Family
ID=31197573
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP03019861A Expired - Lifetime EP1394757B1 (de) | 2002-09-02 | 2003-09-01 | Sensoranordnung für eine Beschichtungsanlage |
Country Status (4)
| Country | Link |
|---|---|
| US (2) | US20050098102A1 (de) |
| EP (1) | EP1394757B1 (de) |
| DE (1) | DE10240451A1 (de) |
| ES (1) | ES2402658T3 (de) |
Cited By (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2008037456A1 (de) | 2006-09-27 | 2008-04-03 | Dürr Systems GmbH | Elektrostatische zerstäuberanordnung |
| DE102006045631A1 (de) * | 2006-09-27 | 2008-04-10 | Dürr Systems GmbH | Elektrostatische Zerstäuberanordnung |
| DE102007004819A1 (de) | 2007-01-31 | 2008-08-21 | Dürr Systems GmbH | Elektrostatische Zerstäuberanordnung |
| WO2011035886A1 (de) * | 2009-09-24 | 2011-03-31 | Dürr Systems GmbH | Verfahren zur funktionskontrolle eines rotationszerstäubers und entsprechende beschichtungsanlage |
| DE102009042956A1 (de) * | 2009-09-24 | 2011-04-07 | Dürr Systems GmbH | Rotationszerstäuber und Verfahren zur Kontrolle seines Absprühkörpers |
| WO2022157098A1 (de) * | 2021-01-19 | 2022-07-28 | Dürr Systems Ag | Beschichtungseinrichtung, insbesondere rotationszerstäuber |
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| MX2014000492A (es) | 2011-07-14 | 2014-05-14 | Dedert Corp | Atomizador rotatorio con cojinetes electromagneticos y rotor de iman permanente. |
| GB2536019B (en) * | 2015-03-03 | 2017-09-13 | Ant Hire Solutions Llp | Safety system |
| EP3073274A1 (de) | 2015-03-27 | 2016-09-28 | Alfa Laval Corporate AB | System zur detektion von rotation |
| FR3108046B1 (fr) * | 2020-03-11 | 2023-02-10 | Exel Ind | Pulvérisateur, installation comportant un tel pulvérisateur et procédé associé |
| IT202300010713A1 (it) * | 2023-05-26 | 2024-11-26 | Elixe S R L | Spruzzatore per l’applicazione di un fluido su una superficie interna di un elemento tubolare |
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| DE10033986A1 (de) | 2000-07-13 | 2002-01-24 | Duerr Systems Gmbh | Verfahren zur Verwendung eines Molches in einer Beschichtungsanlage und Molch hierfür |
| DE10033987A1 (de) | 2000-07-13 | 2002-01-24 | Duerr Systems Gmbh | Verfahren zur Versorgung eines Beschichtungsorgans für die elektrostatische Serienbeschichtung von Werkstücken und Versorgungssystem hierfür |
| DE10059041C2 (de) * | 2000-11-28 | 2002-11-14 | Lactec Ges Fuer Moderne Lackte | Verfahren und Vorrichtung zum Fördern von elektrisch leitfähigen Lacken zwischen unterschiedlichen Spannungspotenzialen |
| DE10063234C1 (de) | 2000-12-19 | 2002-07-04 | Duerr Systems Gmbh | Schlauchsystem mit einem molchbaren Schlauch |
| DE10130173A1 (de) | 2001-06-22 | 2003-01-02 | Duerr Systems Gmbh | Pulverbeschichtungsanlage |
| DE10202712A1 (de) | 2002-01-24 | 2003-07-31 | Duerr Systems Gmbh | Verfahren zum Steuern der Sprühstrahlbreite eines Zerstäubers und Zerstäuber für die Serienbeschichtung von Werkstücken |
| US7038192B2 (en) * | 2002-05-23 | 2006-05-02 | Honeywell International, Inc. | Optical sensor method, system and apparatus |
-
2002
- 2002-09-02 DE DE10240451A patent/DE10240451A1/de not_active Withdrawn
-
2003
- 2003-09-01 ES ES03019861T patent/ES2402658T3/es not_active Expired - Lifetime
- 2003-09-01 EP EP03019861A patent/EP1394757B1/de not_active Expired - Lifetime
- 2003-09-02 US US10/653,444 patent/US20050098102A1/en not_active Abandoned
-
2006
- 2006-06-30 US US11/427,958 patent/US7432495B2/en not_active Expired - Lifetime
Cited By (11)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2008037456A1 (de) | 2006-09-27 | 2008-04-03 | Dürr Systems GmbH | Elektrostatische zerstäuberanordnung |
| DE102006045631A1 (de) * | 2006-09-27 | 2008-04-10 | Dürr Systems GmbH | Elektrostatische Zerstäuberanordnung |
| US8485125B2 (en) | 2006-09-27 | 2013-07-16 | Dürr Systems GmbH | Electrostatic spraying arrangement |
| DE102007004819A1 (de) | 2007-01-31 | 2008-08-21 | Dürr Systems GmbH | Elektrostatische Zerstäuberanordnung |
| WO2011035886A1 (de) * | 2009-09-24 | 2011-03-31 | Dürr Systems GmbH | Verfahren zur funktionskontrolle eines rotationszerstäubers und entsprechende beschichtungsanlage |
| DE102009042955A1 (de) * | 2009-09-24 | 2011-04-07 | Dürr Systems GmbH | Verfahren zur Funktionskontrolle eines Rotationszerstäubers und entsprechende Beschichtungsanlage |
| DE102009042956A1 (de) * | 2009-09-24 | 2011-04-07 | Dürr Systems GmbH | Rotationszerstäuber und Verfahren zur Kontrolle seines Absprühkörpers |
| CN102510776A (zh) * | 2009-09-24 | 2012-06-20 | 杜尔系统有限责任公司 | 用于旋转喷雾器的功能控制的方法及相应的涂覆设备 |
| CN102510776B (zh) * | 2009-09-24 | 2015-10-14 | 杜尔系统有限责任公司 | 用于旋转喷雾器的功能控制的方法及相应的涂覆设备 |
| US9180469B2 (en) | 2009-09-24 | 2015-11-10 | Durr Systems Gmbh | Rotary atomizer and method for the control of the spraying body of said rotary atomizer |
| WO2022157098A1 (de) * | 2021-01-19 | 2022-07-28 | Dürr Systems Ag | Beschichtungseinrichtung, insbesondere rotationszerstäuber |
Also Published As
| Publication number | Publication date |
|---|---|
| ES2402658T3 (es) | 2013-05-07 |
| US20050098102A1 (en) | 2005-05-12 |
| US20070145250A1 (en) | 2007-06-28 |
| US7432495B2 (en) | 2008-10-07 |
| DE10240451A1 (de) | 2004-03-11 |
| EP1394757B1 (de) | 2013-01-09 |
| EP1394757A3 (de) | 2005-04-13 |
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