EP2292338A1 - Coating method - Google Patents
Coating method Download PDFInfo
- Publication number
- EP2292338A1 EP2292338A1 EP10008791A EP10008791A EP2292338A1 EP 2292338 A1 EP2292338 A1 EP 2292338A1 EP 10008791 A EP10008791 A EP 10008791A EP 10008791 A EP10008791 A EP 10008791A EP 2292338 A1 EP2292338 A1 EP 2292338A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- masking
- component
- coating
- functional surface
- powder
- 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
- B05D—PROCESSES FOR APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
- B05D1/00—Processes for applying liquids or other fluent materials
- B05D1/02—Processes for applying liquids or other fluent materials performed by spraying
- B05D1/04—Processes for applying liquids or other fluent materials performed by spraying involving the use of an electrostatic field
- B05D1/06—Applying particulate materials
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B05—SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
- B05D—PROCESSES FOR APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
- B05D1/00—Processes for applying liquids or other fluent materials
- B05D1/32—Processes for applying liquids or other fluent materials using means for protecting parts of a surface not to be coated, e.g. using stencils, resists
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B05—SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
- B05D—PROCESSES FOR APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
- B05D2350/00—Pretreatment of the substrate
- B05D2350/10—Phosphatation
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B05—SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
- B05D—PROCESSES FOR APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
- B05D7/00—Processes, other than flocking, specially adapted for applying liquids or other fluent materials to particular surfaces or for applying particular liquids or other fluent materials
- B05D7/14—Processes, other than flocking, specially adapted for applying liquids or other fluent materials to particular surfaces or for applying particular liquids or other fluent materials to metal, e.g. car bodies
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B05—SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
- B05D—PROCESSES FOR APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
- B05D7/00—Processes, other than flocking, specially adapted for applying liquids or other fluent materials to particular surfaces or for applying particular liquids or other fluent materials
- B05D7/50—Multilayers
- B05D7/52—Two layers
- B05D7/54—No clear coat specified
Definitions
- the component to be coated is first provided with a liquid applied coating and then provided in a known manner with a powder coating layer, i. powder coated.
- a powder coating layer i. powder coated.
- At least one functional surface is provided on the component, which should either be completely powder-coating-free or at least should have a smaller layer thickness of the powder coating. This is achieved in the context of the invention in that a masking is used.
- the masking is not directly on the functional surface, but is located at a distance from the functional area. It creates a laterally open gap under the masking.
- the distance between the functional surface and the masking is chosen so that the masking can be applied even before the application of the liquid coating, wherein the liquid applied coating passes between the masking and the functional surface.
- the corrosion-inhibiting properties of the liquid coating are achieved both in the masked and in the unmasked areas.
- the opposing frusto-conical spacers 6 serve to maintain a certain distance A from the respective functional surface 3 to be protected in order to create a gap 7 between the respective functional surface 3 and the side of the masking 4, 5 facing the functional surface 3.
- the distance A or the width of the gap 7 is selected so that as little powder coating as possible is introduced into the region of the gap 7, i. on the functional surface 3, can get.
Landscapes
- Application Of Or Painting With Fluid Materials (AREA)
Abstract
Description
Die Erfindung betrifft ein Beschichtungsverfahren, bei welchem gleichzeitig lackfreie Bereiche gewährleistet werden sollen.The invention relates to a coating method in which at the same time paint-free areas are to be ensured.
Beschichtungen auf Flächen, auf denen Verschraubungen angebracht werden, unterliegen besonderen Anforderungen. Diese Anforderungen resultieren aus einem Setzverhalten der Beschichtung, was zu einem unerwünschten Klemmkraftverlust der Verschraubung führen kann. Die Anforderungen an diese Funktionsflächen variieren, wobei grundsätzlich angestrebt wird, die Funktionsflächen lackfrei zu halten. Gleichzeitig muss bei metallischen Bauteilen aber gewährleistet werden, dass unlackierte Funktionsflächen korrosionsfrei bleiben. Diese Korrosionsfreiheit muss zumindest temporär bis zu einer weiteren Montage, in welcher die Funktionsfläche bedeckt wird, gewährleistet werden.Coatings on surfaces to which fittings are attached are subject to special requirements. These requirements result from a setting behavior of the coating, which can lead to an unwanted loss of clamping force of the screw. The requirements for these functional surfaces vary, with the basic aim being to keep the functional surfaces free of lacquer. At the same time, it must be ensured with metallic components that unpainted functional surfaces remain corrosion-free. This freedom from corrosion must be ensured at least temporarily until a further assembly in which the functional surface is covered.
Es zählt z.B. bei der Herstellung eines Stabilisators eines Kraftfahrzeugs zum Stand der Technik, eine Vorbehandlung der Oberfläche des Bauteils durchzuführen. Das Bauteil wird gereinigt und anschließend mit einer Eisen- oder Zinkphosphatierung versehen, um den Korrosionsschutz und die Lackhaftung der nachfolgenden Pulverbeschichtung zu erhöhen. Nach dem Auftragen der Phosphatierung werden die Endbereiche des Stabilisators, in denen die Anschraubflächen liegen, abgedeckt und der Stabilisator wird pulverbeschichtet. Im nächsten Arbeitsschritt werden die Abdeckungen entfernt und die Enden in einen Nasslack getaucht, welcher auf der Anschraubfläche eine dünnere und gleichmäßigere Schichtdicke gewährieistet. Auf diese Weise kann eine dünne Lackschicht beispielsweise mit einer Schichtdicke von nur 20 µm im Bereich der Anschraubfläche realisiert werden. Dennoch ist die Anschraubfläche nicht lackfrei.For example, in the manufacture of a stabilizer of a motor vehicle, it is state of the art to perform a pretreatment of the surface of the component. The component is cleaned and then with an iron or zinc phosphating provided to increase the corrosion protection and the paint adhesion of the subsequent powder coating. After applying the phosphating, the end portions of the stabilizer, in which the Anschraubflächen lie covered and the stabilizer is powder coated. In the next step, the covers are removed and the ends are immersed in a wet paint, which ensures a thinner and more uniform layer thickness on the mounting surface. In this way, a thin lacquer layer, for example, with a layer thickness of only 20 microns in the area of the mounting surface can be realized. Nevertheless, the mounting surface is not free of paint.
Soll die Anschraubfläche selbst lackfrei sein, ist es möglich, nur die Anschraubflächen des Stabilisators nach einer Reinigung mit rondenförmigen Aufklebern zu versehen. Diese Aufkleber bleiben bis zur weiteren Montage am Bauteil. Leider sind bei Verwendung von Aufklebern zwei zusätzliche Arbeitsschritte notwendig, nämlich das Aufbringen und das Ablösen der Aufkleber. Da die Aufkleber schon vor der Phosphatierung aufgebracht werden und erst unmittelbar vor der weiteren Montage entfernt werden, ermöglichen diese einen temporären Korrosionsschutz bis zur weiteren Montage. Dennoch ist der Aufwand zum präzisen Aufbringen und Ablösen der Aufkleber relativ hoch.If the mounting surface itself is to be free of paint, it is possible to provide only the mounting surfaces of the stabilizer after cleaning with Ronde-shaped stickers. These stickers remain on the component until further assembly. Unfortunately, when using stickers two additional steps are necessary, namely the application and detachment of the stickers. Since the stickers are applied before the phosphating and are removed only immediately before further assembly, they allow a temporary corrosion protection until further assembly. Nevertheless, the effort to precisely apply and remove the sticker is relatively high.
Zum Stand der Technik zählt es durch die
Durch die
Zum Stand der Technik ist ferner die
Diese Aufgabe ist durch ein Beschichtungsverfahren mit den Merkmalen des Patentanspruchs 1 gelöst.This object is achieved by a coating method having the features of
Die Unteransprüche betreffen zweckmäßige Weiterbildungen der Erfindung.The subclaims relate to expedient developments of the invention.
Bei dem erfindungsgemäßen Beschichtungsverfahren wird das zu beschichtende Bauteil zunächst mit einer flüssig aufgetragenen Beschichtung versehen und anschließend in bekannter Weise mit einer Pulverlackschicht versehen, d.h. pulverlackiert. An dem Bauteil ist wenigstens eine Funktionsfläche vorgesehen, die entweder vollständig pulverlackfrei sein soll oder zumindest eine geringere Schichtdicke des Pulverlacks aufweisen soll. Dies wird im Rahmen der Erfindung dadurch erreicht, dass eine Maskierung verwendet wird.In the coating method of the invention, the component to be coated is first provided with a liquid applied coating and then provided in a known manner with a powder coating layer, i. powder coated. At least one functional surface is provided on the component, which should either be completely powder-coating-free or at least should have a smaller layer thickness of the powder coating. This is achieved in the context of the invention in that a masking is used.
Die Maskierung liegt allerdings nicht unmittelbar auf der Funktionsfläche auf, sondern befindet sich in einem Abstand von der Funktionsfläche. Es wird ein seitlich offener Spalt unter der Maskierung geschaffen. Der Abstand zwischen der Funktionsfläche und der Maskierung wird so gewählt, dass die Maskierung schon vor dem Auftragen der flüssigen Beschichtung angebracht werden kann, wobei die flüssig aufgetragene Beschichtung zwischen die Maskierung und die Funktionsfläche gelangt. Dadurch wird erreicht, dass die korrosionshemmenden Eigenschaften der flüssigen Beschichtung sowohl in den maskierten als auch in den unmaskierten Bereichen zum Tragen kommen.However, the masking is not directly on the functional surface, but is located at a distance from the functional area. It creates a laterally open gap under the masking. The distance between the functional surface and the masking is chosen so that the masking can be applied even before the application of the liquid coating, wherein the liquid applied coating passes between the masking and the functional surface. As a result, the corrosion-inhibiting properties of the liquid coating are achieved both in the masked and in the unmasked areas.
Die anschließende Pulverbeschichtung kann durchgeführt werden, ohne dass die Maskierung näher an die Funktionsfläche verlagert werden muss, da durch den Prozess des Pulverlackierens das Pulver nicht oder nur unwesentlich in den umfangsseitig offenen Spalt zwischen der Maskierung und der Funktionsoberfläche gelangt.The subsequent powder coating can be carried out without the mask having to be moved closer to the functional surface, since the powder does not pass through the process of powder coating or only insignificantly into the gap which is open on the periphery between the mask and the functional surface.
Mit dem erfindungsgemäßen Verfahren ist es möglich, ein Bauteil zu schaffen, dessen wenigstens eine Funktionsfläche, insbesondere eine Anschraubfläche, mit einem Korrosionsschutz versehen ist, wobei das Bauteil im Bereich der Funktionsfläche eine geringere Schichtdicke der aufgetragenen Beschichtungen aufweist als die außerhalb der Maskierung angeordneten Bereiche. Der temporäre Korrosionsschutz bis zur weiteren Montage ist gewährleistet.With the method according to the invention, it is possible to provide a component whose at least one functional surface, in particular a screw-on surface, is provided with a corrosion protection, the component having a smaller layer thickness of the applied coatings in the area of the functional surface than the regions arranged outside the masking. The temporary corrosion protection until further assembly is guaranteed.
Der genaue Abstand zwischen der Maskierung und der Funktionsfläche hängt nicht nur von dem Durchmesser der beispielsweise kreisrunden Maskierung ab, sondern auch davon, ob angestrebt wird, geringe Pulverlackmengen in den Spalt zwischen der Maskierung und der Funktionsfläche einzubringen. Grundsätzlich kann mit zunehmender Spaltbreite Pulverlack in den Spalt eindringen. Wird der Spalt hingegen sehr klein, dringt so gut wie kein Pulverlack in den Spalt ein, so dass die Funktionsfläche als (pulver)lackfrei bezeichnet werden kann. Die Spaltbreite sollte allerdings ein Minimalmaß nicht unterschreiten, damit die flüssig aufgetragene Beschichtung noch zuverlässig in den Spalt gelangen und die Funktionsfläche benetzen kann.The exact distance between the masking and the functional surface depends not only on the diameter of the circular masking, for example, but also on whether it is desired to introduce small amounts of powder coating into the gap between the masking and the functional surface. In principle, powder coating can penetrate into the gap with increasing gap width. On the other hand, if the gap becomes very small, virtually no powder coating penetrates into the gap, so that the functional surface can be referred to as (powder-free). However, the gap width should not be less than a minimum so that the liquid applied coating can still reliably reach the gap and wet the functional surface.
Es wird als zweckmäßig angesehen, wenn die Maskierung in einem Abstand von 0,5 mm bis 20 mm zur Funktionsfläche angebracht wird. Insbesondere beträgt der Abstand der Maskierung zur Funktionsfläche zwischen 1 mm und 4 mm. Maßgeblich ist der Abstand am Rand des Spaltes, d.h. an dessen Mündung. Die Spaltbreite im Inneren des Spaltes kann variieren.It is considered expedient if the masking is applied at a distance of 0.5 mm to 20 mm from the functional surface. In particular, the distance of the masking to the functional surface is between 1 mm and 4 mm. Decisive is the distance at the edge of the gap, i. at its mouth. The gap width inside the gap may vary.
Als flüssig aufgetragene Beschichtung kann eine so genannte Konversionsschicht aufgetragen werden. Konversionsschichten bilden sich infolge einer chemischen Umwandlung der Metalfoberfläche des Werkstücks mit einer wässrigen Reaktionslösung, die im Tauch- oder auch im Sprühverfahren aufgetragen werden kann. Mögliche Konversionsschichten können durch das Verfahren des Phosphatierens, Chromatierens, Eloxierens oder Brünierens aufgetragen werden. Insbesondere Phosphatieren ist dazu geeignet, einen Haftgrund mit gutem Korrosionsschutz zu schaffen. Gleichzeitig dient die Phosphatierung zur Verbesserung des Verschleißschutzes. Das Phosphatieren kann insbesondere bei Stahl zum Einsatz kommen, aber auch bei Aluminium und Aluminiumlegierungen sowie Magnesium und Magnesiumlegierungen. Im vorliegenden Anwendungsfall dient die Phosphatierung vor allem als Haftgrund für die nachfolgende Pulverbeschichtung.As a liquid applied coating, a so-called conversion layer can be applied. Conversion layers form as a result of a chemical transformation of the metal surface of the workpiece with an aqueous reaction solution, which are applied by dipping or by spraying can. Possible conversion layers can be applied by the process of phosphating, chromating, anodising or burnishing. In particular phosphating is suitable for creating a primer with good corrosion protection. At the same time phosphating serves to improve wear protection. The phosphating can be used in particular for steel, but also for aluminum and aluminum alloys and magnesium and magnesium alloys. In the present application, the phosphating serves primarily as a primer for the subsequent powder coating.
Die Pulverbeschichtung unter Verwendung der Maskierungen führt dazu, dass sich der Pulverlack nur auf Bereichen abscheidet, welche nicht maskiert sind. Die Maskierung sorgt zum einen durch eine mechanische Abschirmung dafür, dass der Pulverlack sich nicht im Bereich der Funktionsfläche anlagert. Darüber hinaus wird auch eine elektrostatische Abschirmung geschaffen, die auf dem Prinzip eines Faraday'schen Käfigs beruht, wobei unterstellt wird, dass eine elektrisch leitende Maskierung verwendet wird. Bei der bekannten Corona-Aufladung des Pulverlacks werden elektrische Feldlinien zwischen einer Pulversprühvorrichtung und dem zu beschichtenden Bauteil erzeugt. Die Pulverlackpartikel bewegen sich vornehmlich entlang dieser Feldlinien. Wenn die Maskierung in der gleichen Polarität wie das zu beschichtende Bauteil elektrisch geladen ist, z.B. geerdet ist, zieht auch die Maskierung Pulverpartikel an. Es bilden sich jedoch keine Feldlinien zwischen dem zu beschichtenden Bauteil und der Maskierung aus, so dass die Pulverpartikel im Wesentlichen nur außerhalb des Spalts auf den Funktionsflächen abgelagert werden.The powder coating using the masking causes the powder coating to deposit only on areas that are not masked. The masking ensures on the one hand by a mechanical shield that the powder coating does not accumulate in the area of the functional surface. In addition, there is also provided an electrostatic shield based on the principle of a Faraday cage, assuming that electrically conductive masking is used. In the known corona charging of the powder coating, electric field lines are generated between a powder spraying device and the component to be coated. The powder coating particles move primarily along these field lines. If the mask is electrically charged in the same polarity as the component to be coated, e.g. grounded, the masking also attracts powder particles. However, no field lines are formed between the component to be coated and the masking, so that the powder particles are deposited substantially only outside the gap on the functional surfaces.
Bei einer triboelektrischen Aufladung des Pulverlacks in der Sprüheinrichtung entstehen keine Feldlinien zwischen der Sprüheinrichtung und dem Bauteil. Dennoch kann durch die Sprührichtung und die Eigenschaften des Lackpulvers, die Wahl der Spaltbreite und anderen Einflussgrößen erreicht werden, dass der Bereich der Funktionsfläche lackfrei bleibt.In a triboelectric charging of the powder coating in the spray no field lines between the spray and the component arise. Nevertheless, the spraying direction and the properties of the coating powder, the choice of the gap width and other influencing variables can ensure that the area of the functional surface remains free of lacquer.
Je nach Führung der Pulversprühpistole kann in gewissem Umfang Pulverlack auch in den Spalt eingebracht und somit gezielt reduzierte Pulverlackschichten auf den Funktionsflächen ausgebildet werden.Depending on the guidance of the powder spray gun, to some extent powder coating can also be introduced into the gap and thus purposefully reduced powder coating layers can be formed on the functional surfaces.
Unter einer reduzierten Pulverlackschicht ist eine Pulverlackschicht zu verstehen, deren Schichtdicke geringer ist als die Schichtdicke der Pulverlackschicht in den nicht maskierten Bereichen.A reduced powder coating layer is to be understood as meaning a powder coating layer whose layer thickness is smaller than the layer thickness of the powder coating layer in the unmasked regions.
Es wird als besonders vorteilhaft angesehen, wenn die dem Abstand zur Funktionsfläche anzuordnenden Maskierungen an einer Aufhängung angeordnet sind, mittels welcher das Bauteil während des Beschichtungsverfahrens insbesondere klemmend gehalten wird. Eine solche Aufhängung kann insbesondere eine Öffnung des Bauteils durchgreifen, zumal es sich bei den lackfrei oder im Wesentlichen lackfrei zu haltenden Funktionsflächen um Anschraubflächen handelt, die üblicherweise Öffnungen im Bauteil umgeben. Durch diese Art der Maskierung ist es nicht erforderlich, die Maskierung selbst mit dem Bauteil zu verbinden bzw. diese in einem separaten Arbeitsschritt wieder von dem Bauteil zu lösen, da die Entfernung der Maskierung automatisch erfolgt, wenn die Aufhängung nicht mehr benötigt wird, d.h. wenn das Bauteil von der Aufhängung gelöst wird.It is considered to be particularly advantageous if the masks to be arranged at a distance from the functional surface are arranged on a suspension by means of which the component is held in particular in a clamping manner during the coating process. Such a suspension can in particular pass through an opening of the component, especially since it is in the paint-free or substantially free of paint to be held functional surfaces to mounting surfaces, which usually surround openings in the component. By this type of masking, it is not necessary to connect the mask itself with the component or to solve this in a separate step again from the component, since the removal of the masking takes place automatically when the suspension is no longer needed, i. when the component is detached from the suspension.
Es ist im Rahmen der Erfindung auch möglich, dass die Maskierung ohne eine solche Aufhängung verwendet wird. Beispielsweise kann eine Maskierung beiderseits der Öffnungen angeordnet werden, wobei die beiden Maskierungen durch die Öffnungen hindurch miteinander verbunden werden. Wenn die Maskierung am Rand der Öffnung anliegt, wird nicht nur sichergestellt, dass kein Pulver in die Öffnung gelangen kann, sondern auch, dass die Auflageflächen für Schraubverbindungen, d.h. der die Öffnung unmittelbar umgebende Randbereich, als lackfreie Funktionsfläche gestaltet wird. Der Kontakt im Randbereich der Öffnung bringt die Maskierung zudem auf dasselbe Spannungspotenzial wie das Bauteil.It is also possible within the scope of the invention that the masking is used without such a suspension. For example, a mask can be arranged on both sides of the openings, wherein the two masks are connected to each other through the openings. When the mask is applied to the edge of the opening, not only is it ensured that powder can not enter the opening, but also that the bearing surfaces for screw connections, i. the edge immediately surrounding the opening, is designed as a paint-free functional surface. The contact in the edge region of the opening also brings the masking to the same voltage potential as the component.
Die Vorteile der Erfindung werden darin gesehen, dass insbesondere bei einer Integration der Maskierung in die Aufhängung weniger Prozessschritte notwendig sind, was den kompletten Beschichtungsvorgang vereinfacht. Gleichzeitig ist es unter Verwendung der entfernt von der Funktionsfläche angeordneten Maskierung möglich, eine Vorabphosphatierung oder einen anderen Korrosionsschutz im Bereich der Funktionsfläche zu realisieren. Das aufwändige Abkleben der lackfreien Bereiche entfällt. Das Verfahren ist im Durchlaufbetrieb anwendbar, insbesondere wenn die Maskierung in eine Bauteilhalterung integriert ist.The advantages of the invention are seen in the fact that fewer process steps are necessary, in particular when integrating the masking in the suspension, which simplifies the entire coating process. At the same time, using the masking arranged away from the functional surface, it is possible to realize a preliminary phosphating or another corrosion protection in the area of the functional surface. The time-consuming masking of the paint-free areas is eliminated. The method is applicable in continuous operation, in particular when the masking is integrated in a component holder.
Die Erfindung ist nachfolgend anhand eines in den Zeichnungen dargestellten Ausführungsbeispiels näher erläutert. Es zeigt:
Figur 1- ein Ende eines Bauteils in Form eines Stabilisators, an welchem eine lackfreie Anschraubflächen ausgebildet werden soll;
Figur 2- einen Schnitt entlang der Linie II-
II der Figur 1 , wobei der Schnittbereich in mehreren zeitlich aufeinander folgenden Bearbeitungsschritten a) bis e) dargestellt ist und Figur 3- den
Schnittbereich der Figur 2 in einer Detaildarstellung während eines Pulverbeschichtungsvorgangs.
- FIG. 1
- an end of a component in the form of a stabilizer, on which a paint-free mounting surfaces to be formed;
- FIG. 2
- a section along the line II-II of
FIG. 1 , wherein the cutting area is shown in several consecutive processing steps a) to e) and - FIG. 3
- the cutting area of the
FIG. 2 in a detail view during a powder coating process.
Die einander gegenüberliegenden, kegelstumpfförmigen Abstandshalter 6 dienen zur Einhaltung eines bestimmten Abstands A von der jeweils zu schützenden Funktionsfläche 3, um einen Spalt 7 zwischen der jeweiligen Funktionsfläche 3 und der der Funktionsfläche 3 zugewandten Seite der Maskierung 4, 5 zu schaffen. Der Abstand A bzw. die Breite des Spalts 7 ist so gewählt, dass möglichst wenig Pulverlack in den Bereich des Spalts 7, d.h. auf die Funktionsfläche 3, gelangen kann.The opposing frusto-
Die
Die nachfolgende
Schließlich steht nach dem Entfernen der Maskierungen 4, 5 (
Anhand der
- 1 -1 -
- Bauteilcomponent
- 2 -2 -
- Öffnungopening
- 3 -3 -
- Funktionsflächefunctional surface
- 4 -4 -
- Maskierungmasking
- 5 -5 -
- Maskierungmasking
- 6 -6 -
- Abstandshalterspacer
- 7 -7 -
- Spaltgap
- 8 -8th -
- Sprühvorrichtungsprayer
- 9 -9 -
- PulverlackschichtPowder coating
- A -A -
- Abstanddistance
Claims (8)
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
DE200910040206 DE102009040206A1 (en) | 2009-09-07 | 2009-09-07 | coating process |
Publications (2)
Publication Number | Publication Date |
---|---|
EP2292338A1 true EP2292338A1 (en) | 2011-03-09 |
EP2292338B1 EP2292338B1 (en) | 2013-09-18 |
Family
ID=43252012
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP20100008791 Not-in-force EP2292338B1 (en) | 2009-09-07 | 2010-08-24 | Coating method |
Country Status (2)
Country | Link |
---|---|
EP (1) | EP2292338B1 (en) |
DE (1) | DE102009040206A1 (en) |
Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE19814632C1 (en) | 1998-03-26 | 1999-10-14 | Mannesmann Ag | Method and device for applying a protective layer on an elongated body, in particular wire or tube |
DE10134574A1 (en) | 2000-08-11 | 2002-02-28 | Ford Global Tech Inc | Applying paint or similar to flat structure involves charging mask and paint electrically with equal polarity from d.c. source during application of paint to the areas bounded by mask |
WO2005018832A1 (en) * | 2003-08-26 | 2005-03-03 | Darren John Blade | Coating method and apparatus |
DE10343946A1 (en) | 2003-09-23 | 2005-04-28 | Holger Sprenger | Process to partially phosphatize surface of wheels or drive shafts that are subjected to high rotational speeds during service life |
-
2009
- 2009-09-07 DE DE200910040206 patent/DE102009040206A1/en not_active Withdrawn
-
2010
- 2010-08-24 EP EP20100008791 patent/EP2292338B1/en not_active Not-in-force
Patent Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE19814632C1 (en) | 1998-03-26 | 1999-10-14 | Mannesmann Ag | Method and device for applying a protective layer on an elongated body, in particular wire or tube |
DE10134574A1 (en) | 2000-08-11 | 2002-02-28 | Ford Global Tech Inc | Applying paint or similar to flat structure involves charging mask and paint electrically with equal polarity from d.c. source during application of paint to the areas bounded by mask |
WO2005018832A1 (en) * | 2003-08-26 | 2005-03-03 | Darren John Blade | Coating method and apparatus |
DE10343946A1 (en) | 2003-09-23 | 2005-04-28 | Holger Sprenger | Process to partially phosphatize surface of wheels or drive shafts that are subjected to high rotational speeds during service life |
Also Published As
Publication number | Publication date |
---|---|
DE102009040206A1 (en) | 2011-03-17 |
EP2292338B1 (en) | 2013-09-18 |
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