EP3178970B1 - Frame for mounting of annular components and method - Google Patents
Frame for mounting of annular components and method Download PDFInfo
- Publication number
- EP3178970B1 EP3178970B1 EP15198402.8A EP15198402A EP3178970B1 EP 3178970 B1 EP3178970 B1 EP 3178970B1 EP 15198402 A EP15198402 A EP 15198402A EP 3178970 B1 EP3178970 B1 EP 3178970B1
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- EP
- European Patent Office
- Prior art keywords
- drive
- journals
- frame
- drive unit
- drive shaft
- 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.)
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- 238000000034 method Methods 0.000 title claims description 13
- 238000000576 coating method Methods 0.000 claims description 26
- 239000003792 electrolyte Substances 0.000 claims description 24
- 239000011248 coating agent Substances 0.000 claims description 23
- 239000000126 substance Substances 0.000 claims description 16
- 229910052751 metal Inorganic materials 0.000 claims description 6
- 239000002184 metal Substances 0.000 claims description 6
- 238000009713 electroplating Methods 0.000 description 6
- 239000010410 layer Substances 0.000 description 5
- 238000005096 rolling process Methods 0.000 description 5
- 230000007547 defect Effects 0.000 description 4
- 239000011253 protective coating Substances 0.000 description 3
- 230000008021 deposition Effects 0.000 description 2
- 239000003973 paint Substances 0.000 description 2
- 230000002940 repellent Effects 0.000 description 2
- 239000005871 repellent Substances 0.000 description 2
- 240000002853 Nelumbo nucifera Species 0.000 description 1
- 235000006508 Nelumbo nucifera Nutrition 0.000 description 1
- 235000006510 Nelumbo pentapetala Nutrition 0.000 description 1
- BQCADISMDOOEFD-UHFFFAOYSA-N Silver Chemical group [Ag] BQCADISMDOOEFD-UHFFFAOYSA-N 0.000 description 1
- 230000005540 biological transmission Effects 0.000 description 1
- 230000015572 biosynthetic process Effects 0.000 description 1
- 239000011247 coating layer Substances 0.000 description 1
- 230000002209 hydrophobic effect Effects 0.000 description 1
- 239000004922 lacquer Substances 0.000 description 1
- 239000007788 liquid Substances 0.000 description 1
- 230000014759 maintenance of location Effects 0.000 description 1
- 230000001681 protective effect Effects 0.000 description 1
- 239000000758 substrate Substances 0.000 description 1
Images
Classifications
-
- C—CHEMISTRY; METALLURGY
- C25—ELECTROLYTIC OR ELECTROPHORETIC PROCESSES; APPARATUS THEREFOR
- C25D—PROCESSES FOR THE ELECTROLYTIC OR ELECTROPHORETIC PRODUCTION OF COATINGS; ELECTROFORMING; APPARATUS THEREFOR
- C25D17/00—Constructional parts, or assemblies thereof, of cells for electrolytic coating
- C25D17/06—Suspending or supporting devices for articles to be coated
- C25D17/08—Supporting racks, i.e. not for suspending
-
- C—CHEMISTRY; METALLURGY
- C25—ELECTROLYTIC OR ELECTROPHORETIC PROCESSES; APPARATUS THEREFOR
- C25D—PROCESSES FOR THE ELECTROLYTIC OR ELECTROPHORETIC PRODUCTION OF COATINGS; ELECTROFORMING; APPARATUS THEREFOR
- C25D7/00—Electroplating characterised by the article coated
- C25D7/04—Tubes; Rings; Hollow bodies
-
- C—CHEMISTRY; METALLURGY
- C25—ELECTROLYTIC OR ELECTROPHORETIC PROCESSES; APPARATUS THEREFOR
- C25D—PROCESSES FOR THE ELECTROLYTIC OR ELECTROPHORETIC PRODUCTION OF COATINGS; ELECTROFORMING; APPARATUS THEREFOR
- C25D17/00—Constructional parts, or assemblies thereof, of cells for electrolytic coating
- C25D17/005—Contacting devices
-
- C—CHEMISTRY; METALLURGY
- C25—ELECTROLYTIC OR ELECTROPHORETIC PROCESSES; APPARATUS THEREFOR
- C25D—PROCESSES FOR THE ELECTROLYTIC OR ELECTROPHORETIC PRODUCTION OF COATINGS; ELECTROFORMING; APPARATUS THEREFOR
- C25D5/00—Electroplating characterised by the process; Pretreatment or after-treatment of workpieces
- C25D5/04—Electroplating with moving electrodes
-
- C—CHEMISTRY; METALLURGY
- C25—ELECTROLYTIC OR ELECTROPHORETIC PROCESSES; APPARATUS THEREFOR
- C25D—PROCESSES FOR THE ELECTROLYTIC OR ELECTROPHORETIC PRODUCTION OF COATINGS; ELECTROFORMING; APPARATUS THEREFOR
- C25D7/00—Electroplating characterised by the article coated
- C25D7/10—Bearings
-
- C—CHEMISTRY; METALLURGY
- C25—ELECTROLYTIC OR ELECTROPHORETIC PROCESSES; APPARATUS THEREFOR
- C25D—PROCESSES FOR THE ELECTROLYTIC OR ELECTROPHORETIC PRODUCTION OF COATINGS; ELECTROFORMING; APPARATUS THEREFOR
- C25D5/00—Electroplating characterised by the process; Pretreatment or after-treatment of workpieces
- C25D5/02—Electroplating of selected surface areas
- C25D5/022—Electroplating of selected surface areas using masking means
Definitions
- the invention relates to a frame for receiving annular components, in particular bearing rings or cages of rolling or sliding bearings, and for the chemical or electroplating of the components in an electrolyte bath.
- the invention further relates to a method for the chemical or electroplating of annular components, in particular bearing rings or cages of rolling or plain bearings, in an electrolyte bath.
- tilting racks are known in which the components are moved during the coating by tilting in the electrolyte bath.
- the layer defects visible in the region of the contact points between the component and the frame after the coating can be reduced, but not completely prevented.
- the DE 103 09 401 A1 describes an apparatus and method for coating articles having a through opening.
- a vertically oriented, rotatable support plate with arranged horizontal Supporting bodies present, on which the objects to be coated are pushed with play.
- the EP 1 493 847 A2 discloses another such coating arrangement and a coating method.
- the EP 1 600 529 A2 describes a method and apparatus for coating substrates.
- the DE 20 2008 008 485 U1 discloses a paint coater and machine elements with paint coating.
- the at least one first drive unit preferably comprises at least one vertically arranged first drive shaft and the at least one second drive unit at least one horizontally arranged second drive shaft, wherein the at least one second drive shaft is drivably connected to the at least one first drive shaft via at least one first worm gear, and wherein the at least one drive motor is provided for driving the at least one first drive shaft.
- the respective first worm gear has a first worm arranged on the first drive shaft and a first worm wheel arranged on the second drive shaft, wherein the first worm drives the first worm wheel.
- the first drive unit is formed by a belt drive and the at least one second drive unit comprises at least one horizontally arranged second drive shaft, wherein the at least one drive motor is connected via the belt drive with the at least one second drive shaft.
- Both variants of the first drive unit enable a uniform and reliable drive of the second drive shaft (s) and thus a uniform coating process.
- a second cross-brace is arranged parallel to each second drive shaft, which has at least one horizontally disposed auxiliary pin.
- This auxiliary pin can be fixed or formed around his Be formed rotatable longitudinal axis. The auxiliary pin allows for improved, captive retention of the respective annular member on the frame.
- the at least two drive pins are drivably connected to the at least one second drive shaft via at least one second worm gear.
- the respective second worm gear has a second worm arranged on the second drive shaft and a second worm wheel arranged on a rotational axis of the respective drive journal, wherein the second worm drives the second worm wheel.
- the axis of rotation of a drive pin corresponds to its longitudinal axis.
- the longitudinal axes of the at least two drive pins which are arranged on a common first cross-brace, arranged in a horizontal plane (E).
- the patch on the two drive pin annular member receives a uniform support and support, which can be improved by an optional auxiliary pin.
- the component to be coated must be supplied with electrical current in the event that a galvanic coating is to be formed, an electrical contacting of the component is required.
- the at least two drive pins and the at least one first cross-brace are formed from metal and connected to at least one power supply rail.
- the auxiliary pins and the at least one second cross-brace may also be formed from metal and connected to at least one power supply rail. That with the drive pin, optionally continue with the Auxiliary pin, standing in direct contact component is thereby contacted electrically and can be electroplated.
- the positions of the two drive unit (s) together with the second cross brace and the first cross brace relative to the support frame and the first drive unit (s) are adjustable.
- bearing rings or cages of rolling bearings with different outer diameters can be supported in a frame.
- the parts of the frame which need not be metallic and thus electrically conductive for power transmission, in particular coated with an electrically insulating protective coating or protective coating.
- This protective coating preferably has a surface that is repellent with respect to the electrolyte bath, for example, by a dirt and liquid repellent lotus coating, or hydrophobic and further electrically insulating.
- At least four pairs of drive pins are provided for each first cross-brace, wherein in each case a pair of drive pins is adapted to receive an annular component.
- the number of drive pin pairs is not limited. In particular, at least 16 drive pin pairs are provided per frame.
- the method allows by means of the frame a permanent rotational drive of the annular component to be coated by means of the drive pin.
- the component can be moved uniformly and permanently in the electrolyte bath, so that a particularly uniform layer thickness and no layer defects are formed.
- the introduction of the rack into an electrolyte bath or one after the other several electrolyte baths, possibly also rinsing baths, can take place before or after the annular components are set in rotation about their center axis. Preference is given to enable the components in rotation before the onset of the frame in the electrolyte bath in order to avoid formation of contact traces from the beginning.
- the rotation of the components is preferably maintained.
- annular components with outside diameters in the range of 10 to 300 cm are coated.
- bearing rings or cages of roller bearings or plain bearings are preferred here as ring-shaped components.
- the at least two drive pins and the at least one first crossbar are preferably formed from metal and electrically contacted via the at least one power rail and supplied with electrical power.
- FIG. 1 shows a three-dimensional front view of a first frame 1 for receiving annular components 2, here in the form of bearing rings, and for the chemical or electroplating of the components 2 in an electrolyte bath.
- the first frame 1 comprises a carrier frame 1a, a first drive unit 3 and four second drive units 4 and per second drive unit 4 a horizontally arranged first cross-brace 5.
- the first frame 1 further comprises a drive motor 6 for driving the first drive unit 3, wherein the first drive unit 3 with the four second drive units 4 and this is drivingly connected.
- the first frame 1 per first cross-brace 5 comprises a plurality of pairs about its longitudinal axis L (see FIG FIG.
- the first drive unit 3 is formed by a belt drive comprising a belt 3b and a plurality of deflection rollers 3c, wherein each second drive unit 4 comprises a horizontally arranged second drive shaft 4a, and wherein the drive motor 6 is connected to the second drive shafts 4a via the belt drive.
- a second cross-brace 9 Parallel to each second drive shaft 4a, a second cross-brace 9 is arranged, which has a horizontally arranged auxiliary pin 10. This is optional around its longitudinal axis L1 (cf. FIG. 2 ) rotatably mounted.
- the drive pins 8a, 8b are drivably connected to a second drive shaft 4a via a second worm gear 7 '.
- the longitudinal axes L of the two drive pins 8a, 8b, which are arranged on a common first cross-brace 5, are in a horizontal plane E (see FIG FIG. 7 ) arranged.
- the two drive pins 8a, 8b and the first cross-brace 5, optionally also the auxiliary pins 10 and the second cross braces 9 are formed of metal and connected to a power rail 11. In total, 16 pairs of drive pins 8a, 8b are present here, with which 16 annular components 2 are driven.
- a method for chemical or galvanic coating of the annular components 2, here the bearing rings comprises the following steps: Provision of the frame 1 and placing the annular components 2 on two drive pins 8a, 8b of the frame 1 such that an outer diameter of the annular components 2 rests on the horizontally arranged drive pin 8a, 8b.
- the annular component 2 is set in rotation about its center axis 2a.
- the introduction of the frame 1 in an electrolyte bath, not shown, can take place before or after the components 2 are set in rotation.
- the application of a chemical or galvanic Coating on the annular component 2 now takes place with permanent rotation of the component 2 in the electrolyte bath.
- FIG. 2 shows a schematic side view of the frame 1 from FIG. 1 , In this view, the center axis 2a of the annular member 2 can be seen, around which the component 2 rotates when the drive pins 8a, 8b, on which the component 2 is arranged, are driven.
- FIG. 3 shows a rear view of the frame 1 from FIG. 1 , In this view, it can be seen that on the second drive shafts 4a four screws 7a 'of the second worm gear 7' are arranged, each driving two worm wheels 7b ', which in turn drive the drive pins 8a, 8b rotating.
- FIG. 4 shows a three-dimensional front view of a second frame 1 ', which comprises a first drive unit with a first drive shaft 3a.
- the gray parts of the second frame 1 ' are covered with an electrically insulating protective lacquer, the shiny silver parts are uncovered and current-carrying, so that a galvanic deposition on the components 2 can take place.
- the power supply lines 11a supply the drive pins 8a, 8b with electric power.
- a method for chemical or galvanic coating of the annular components 2, here the bearing rings comprises the following steps: Provision of the frame 1 'and placing the annular components 2 on two drive pins 8a, 8b of the frame 1' such that an outer diameter of the annular components 2 rests on the horizontally arranged drive pin 8a, 8b.
- the annular member 2 is rotated about its center axis 2a (see FIG FIG. 2 ).
- the introduction of the frame 1 'in an electrolyte bath, not shown, takes place after the components 2 have been set in rotation.
- the application of a chemical or galvanic coating on the annular member 2 is now carried out with permanent rotation of the component 2 in the electrolyte.
- FIG. 5 shows an enlarged view of the second frame 1 'according to FIG. 4 .
- FIG. 6 shows a further enlarged view of the second frame 1 'according to FIG. 4 .
- FIG. 7 shows a schematic representation of the second frame 1 'according to FIG. 6
- the first drive unit here comprises a vertically arranged first drive shaft 3a (see FIG 9 and FIG. 10 ).
- Each second drive unit 4 comprises a horizontally arranged second drive shaft 4a, the second drive shafts 4a being connected to the first drive shaft 3a via first worm gears 7 (cf. FIGS. 9 and 10 ) are drivably connected.
- the drive motor 6 (see FIGS. 9 and 10 ) is arranged to drive the first drive shaft 3a.
- the longitudinal axes L of the pairs of drive pins 8a, 8b, which are arranged on a common first cross-brace 5, are arranged in a horizontal plane E.
- a second cross-brace 9 Parallel to each second drive shaft 4a, a second cross-brace 9 is arranged, which has a horizontally arranged auxiliary pin 10. This is optional around its longitudinal axis L1 (cf. FIG. 2 ) rotatably mounted.
- the drive pins 8a, 8b are drivably connected to one of the second drive shafts 4a via a second worm gear 7 '(see FIG FIG. 3 ).
- FIG. 8 shows a further enlarged view of the second frame 1 'according to FIG. 6 , wherein the annular member 2 is pushed straight on the drive pins 8a, 8b and the drive pin 8a is not touched.
- FIG. 9 shows a front view of a support frame 1a of the second frame 1 'with the first drive unit 3.
- the first drive unit 3 comprises the vertically arranged first drive shaft 3a.
- Four second drive units, each with a horizontally arranged second drive shaft 4a are driven by the first drive shaft 3a via four first worm gear 7, each comprises first worm gear 7 a worm 7a disposed on the first drive shaft 3a and a worm wheel 7b disposed on one of the second drive shafts 4a.
- FIG. 10 shows a rear view of the support frame 1a of the second frame 1 'according to FIG. 9 with first drive unit 3.
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- Chemical & Material Sciences (AREA)
- Engineering & Computer Science (AREA)
- Chemical Kinetics & Catalysis (AREA)
- Electrochemistry (AREA)
- Materials Engineering (AREA)
- Metallurgy (AREA)
- Organic Chemistry (AREA)
- Electroplating Methods And Accessories (AREA)
- Transmission Devices (AREA)
- Coating Apparatus (AREA)
- Rolling Contact Bearings (AREA)
Description
Die Erfindung betrifft ein Gestell zur Aufnahme von ringförmigen Bauteilen, insbesondere Lagerringen oder Käfigen von Wälz- oder Gleitlagern, und zur chemischen oder galvanischen Beschichtung der Bauteile in einem Elektrolytbad. Die Erfindung betrifft weiterhin ein Verfahren zur chemischen oder galvanischen Beschichtung von ringförmigen Bauteilen, insbesondere Lagerringen oder Käfigen von Wälz- oder Gleitlagern, in einem Elektrolytbad.The invention relates to a frame for receiving annular components, in particular bearing rings or cages of rolling or sliding bearings, and for the chemical or electroplating of the components in an electrolyte bath. The invention further relates to a method for the chemical or electroplating of annular components, in particular bearing rings or cages of rolling or plain bearings, in an electrolyte bath.
Es sind bereits Gestelle zur chemischen oder galvanischen Beschichtung von Bauteilen in einem Elektrolytbad bekannt, bei denen die zu beschichteten Bauteile an dem Gestell befestigt, insbesondere geklemmt werden. Dabei wird das Bauteil am Gestell fixiert und das Gestell mittels eines Krans in unterschiedliche Elektrolytbäder zur Aufbringung einer chemischen oder galvanischen Beschichtung eingebracht.
Nachteilig ist dabei, dass im Bereich der Kontaktstellen zwischen Bauteil und Gestell nach der Beschichtung Schichtdefekte sichtbar sind, die auf ungleichmäßige Schichtdicken in der gebildeten Beschichtung, Kontaktspuren und/oder gänzlich unbeschichtete Bereiche des Bauteils zurückzuführen sind.There are already known racks for the chemical or electroplating of components in an electrolyte bath, in which the components to be coated are fastened to the frame, in particular clamped. In this case, the component is fixed to the frame and the frame is introduced by means of a crane in different electrolyte baths for applying a chemical or galvanic coating.
The disadvantage here is that in the area of the contact points between the component and the frame after the coating layer defects are visible, which are due to uneven thicknesses in the coating formed, contact traces and / or entirely uncoated areas of the component.
Weiterhin sind Kippgestelle bekannt, in welchen die Bauteile während des Beschichtens durch Verkippung im Elektrolytbad bewegt werden. Dadurch lassen sich die im Bereich der Kontaktstellen zwischen Bauteil und Gestell nach der Beschichtung sichtbaren Schichtdefekte mindern, jedoch nicht völlig verhindern.Furthermore, tilting racks are known in which the components are moved during the coating by tilting in the electrolyte bath. As a result, the layer defects visible in the region of the contact points between the component and the frame after the coating can be reduced, but not completely prevented.
Beide bekannten Verfahren sind insbesondere für Bauteile mit großen äußeren Abmessungen im Bereich von 10 bis 300 cm im Einsatz.Both known methods are in particular for components with large external dimensions in the range of 10 to 300 cm in use.
Die
Die
Die
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Es ist nun Aufgabe der Erfindung, ein Gestell und ein Verfahren zur Beschichtung ringförmiger Bauteile bereitzustellen, mit dem sich die Qualität der gebildeten Beschichtung deutlich verbessern lässt.It is an object of the invention to provide a frame and a method for coating annular components, with which the quality of the coating formed can be significantly improved.
Die Aufgabe wird für ein Gestell zur Aufnahme von ringförmigen Bauteilen, insbesondere Lagerringen oder Käfigen von Wälz- oder Gleitlagern, und zur chemischen oder galvanischen Beschichtung der Bauteile in einem Elektrolytbad, dadurch gelöst, dass dieses folgendes umfasst:
- einen Trägerrahmen, der mindestens eine erste Antriebseinheit, mindestens eine zweite Antriebseinheit und mindestens eine horizontal angeordnete erste Querverstrebung aufweist,
- mindestens einen Antriebsmotor zum Antrieb der mindestens einen ersten Antriebseinheit, wobei die mindestens eine erste Antriebseinheit mit der mindestens einen zweiten Antriebseinheit und diese antreibend verbunden ist; und
- mindestens zwei horizontal angeordnete Antriebszapfen mit je einer Längsache, wobei die Antriebszapfen zur Aufnahme eines der ringförmigen Bauteile eingerichtet sind, wobei die Antriebszapfen jeweils um ihre Längsachse rotierbar sind, wobei die Antriebszapfen an der mindestens einen ersten Querverstrebung angeordnet sind, und wobei die mindestens zwei Antriebszapfen mit der mindestens einen zweiten Antriebseinheit zum rotierenden Antrieb der Antriebszapfen um deren Längsachse verbunden sind.
- a carrier frame which has at least one first drive unit, at least one second drive unit and at least one horizontally arranged first cross-bracing,
- at least one drive motor for driving the at least one first drive unit, wherein the at least one first drive unit with the at least one second drive unit and this is drivingly connected; and
- at least two horizontally arranged drive pins each having a longitudinal axis, wherein the drive pins are adapted for receiving one of the annular components, wherein the drive pins are each rotatable about its longitudinal axis, wherein the drive pins are arranged on the at least one first cross-brace, and wherein the at least two drive pins with the at least one second drive unit are connected to the rotating drive of the drive pin about its longitudinal axis.
Bevorzugt umfasst die mindestens eine erste Antriebseinheit mindestens eine vertikal angeordnete erste Antriebswelle und die mindestens eine zweite Antriebseinheit mindestens eine horizontal angeordnete zweite Antriebswelle, wobei die mindestens eine zweite Antriebswelle mit der mindestens einen ersten Antriebswelle über mindestens ein erstes Schneckengetriebe antreibbar verbunden ist, und wobei der mindestens eine Antriebsmotor zum Antrieb der mindestens einen ersten Antriebswelle vorgesehen ist.
Das jeweilige erste Schneckengetriebe weist eine auf der ersten Antriebswelle angeordnete erste Schnecke und ein auf der zweiten Antriebswelle angeordnetes erstes Schneckenrad auf, wobei die erste Schecke das erste Schneckenrad antreibt.The at least one first drive unit preferably comprises at least one vertically arranged first drive shaft and the at least one second drive unit at least one horizontally arranged second drive shaft, wherein the at least one second drive shaft is drivably connected to the at least one first drive shaft via at least one first worm gear, and wherein the at least one drive motor is provided for driving the at least one first drive shaft.
The respective first worm gear has a first worm arranged on the first drive shaft and a first worm wheel arranged on the second drive shaft, wherein the first worm drives the first worm wheel.
Alternativ ist die erste Antriebseinheit durch einen Bandantrieb ausgebildet und die mindestens eine zweite Antriebseinheit umfasst mindestens eine horizontal angeordnete zweite Antriebswelle, wobei der mindestens eine Antriebsmotor über den Bandantrieb mit der mindestens einen zweiten Antriebswelle verbunden ist.
Beide Varianten der ersten Antriebseinheit ermöglichen einen gleichmäßigen und zuverlässigen Antrieb der zweiten Antriebswelle(n) und damit einen gleichmäßigen Beschichtungsvorgang.Alternatively, the first drive unit is formed by a belt drive and the at least one second drive unit comprises at least one horizontally arranged second drive shaft, wherein the at least one drive motor is connected via the belt drive with the at least one second drive shaft.
Both variants of the first drive unit enable a uniform and reliable drive of the second drive shaft (s) and thus a uniform coating process.
Dabei hat es sich bewährt, wenn parallel zu jeder zweiten Antriebswelle eine zweite Querverstrebung angeordnet ist, die mindestens einen horizontal angeordneten Hilfszapfen aufweist. Dieser Hilfszapfen kann feststehend ausgebildet oder um seine Längsachse rotierbar ausgebildet sein. Der Hilfszapfen ermöglicht eine verbesserte, unverlierbare Halterung des jeweiligen ringförmigen Bauteils am Gestell.It has proven useful if a second cross-brace is arranged parallel to each second drive shaft, which has at least one horizontally disposed auxiliary pin. This auxiliary pin can be fixed or formed around his Be formed rotatable longitudinal axis. The auxiliary pin allows for improved, captive retention of the respective annular member on the frame.
Insbesondere sind die mindestens zwei Antriebszapfen mit der mindestens einen zweiten Antriebswelle über mindestens ein zweites Schneckengetriebe antreibbar verbunden. Diese ermöglichen einen gleichmäßigen und zuverlässigen Antrieb der Antriebszapfen und damit einen gleichmäßigen Beschichtungsvorgang des mindestens einen Bauteils.
Das jeweilige zweite Schneckengetriebe weist eine auf der zweiten Antriebswelle angeordnete zweite Schnecke und ein auf einer Drehachse des jeweiligen Antriebszapfens angeordnetes zweites Schneckenrad auf, wobei die zweite Schecke das zweite Schneckenrad antreibt. Die Drehachse eines Antriebszapfens entspricht dabei seiner Längsachse.In particular, the at least two drive pins are drivably connected to the at least one second drive shaft via at least one second worm gear. These allow a uniform and reliable drive of the drive pin and thus a uniform coating process of at least one component.
The respective second worm gear has a second worm arranged on the second drive shaft and a second worm wheel arranged on a rotational axis of the respective drive journal, wherein the second worm drives the second worm wheel. The axis of rotation of a drive pin corresponds to its longitudinal axis.
Bevorzugt sind die Längsachsen der mindestens zwei Antriebszapfen, die an einer gemeinsamen ersten Querverstrebung angeordnet sind, in einer horizontalen Ebene (E) angeordnet.
Dadurch erhält das auf die beiden Antriebszapfen aufgesetzte ringförmige Bauteil eine gleichmäßige Unterstützung und Halterung, die durch einen optionalen Hilfszapfen noch verbessert werden kann.Preferably, the longitudinal axes of the at least two drive pins, which are arranged on a common first cross-brace, arranged in a horizontal plane (E).
As a result, the patch on the two drive pin annular member receives a uniform support and support, which can be improved by an optional auxiliary pin.
Da das zu beschichtende Bauteil im Fall, dass eine galvanische Beschichtung ausgebildet werden soll, mit elektrischen Strom versorgt werden muss, ist dazu eine elektrische Kontaktierung des Bauteils erforderlich. Dazu hat sich bewährt, wenn zumindest die mindestens zwei Antriebszapfen und die mindestens eine erste Querverstrebung aus Metall gebildet und mit mindestens einer Stromversorgungsschiene verbunden sind. Optional können weiterhin auch die Hilfszapfen und die mindestens eine zweite Querverstrebung aus Metall gebildet und mit mindestens einer Stromversorgungsschiene verbunden sein. Das mit den Antriebszapfen, optional weiterhin mit dem Hilfszapfen, in direktem Kontakt stehende Bauteil wird dadurch elektrisch kontaktiert und kann galvanisch beschichtet werden.Since the component to be coated must be supplied with electrical current in the event that a galvanic coating is to be formed, an electrical contacting of the component is required. For this purpose, it has proven useful if at least the at least two drive pins and the at least one first cross-brace are formed from metal and connected to at least one power supply rail. Optionally, the auxiliary pins and the at least one second cross-brace may also be formed from metal and connected to at least one power supply rail. That with the drive pin, optionally continue with the Auxiliary pin, standing in direct contact component is thereby contacted electrically and can be electroplated.
Sofern eine chemische (außenstromlose) Abscheidung aus dem Elektrolytbad erfolgen soll, ist eine elektrische Kontaktierung der Antriebszapfen bzw. weiterer Teile des Gestells nicht erforderlich.If a chemical (electroless) deposition is to take place from the electrolyte bath, an electrical contacting of the drive pin or other parts of the frame is not required.
Um Bauteile unterschiedlicher äußerer Abmessungen mittels des erfindungsgemäßen Gestells beschichten zu können, hat es sich als vorteilhaft erwiesen, wenn die Positionen der zweien Antriebseinheit(en) samt zweiter Querverstrebung und der ersten Querverstrebung gegenüber dem Trägerrahmen und der ersten Antriebseinheit(en) verstellbar sind. So können beispielsweise Lagerringe oder Käfige von Wälzlagern mit unterschiedlichen Außendurchmessern in einem Gestell gehaltert werden.In order to be able to coat components of different external dimensions by means of the frame according to the invention, it has proved to be advantageous if the positions of the two drive unit (s) together with the second cross brace and the first cross brace relative to the support frame and the first drive unit (s) are adjustable. For example, bearing rings or cages of rolling bearings with different outer diameters can be supported in a frame.
Um eine Beschichtung des Gestells selbst zu vermeiden, sind die Teile des Gestells, die nicht für eine Stromübertragung metallisch und damit elektrisch leitfähig ausgebildet sein müssen, insbesondere mit einem elektrisch isolierenden Schutzlack oder Schutzüberzug beschichtet. Dieser Schutzüberzug weist bevorzugt eine Oberfläche auf, die im Hinblick auf das Elektrolytbad abweisend, beispielsweise durch eine schmutz- und flüssigkeitsabweisende Lotos-Beschichtung, oder hydrophob und weiterhin elektrisch isolierend ausgebildet ist.In order to avoid coating of the frame itself, the parts of the frame, which need not be metallic and thus electrically conductive for power transmission, in particular coated with an electrically insulating protective coating or protective coating. This protective coating preferably has a surface that is repellent with respect to the electrolyte bath, for example, by a dirt and liquid repellent lotus coating, or hydrophobic and further electrically insulating.
Bevorzugt sind pro erster Querverstrebung mindestens vier Paare an Antriebszapfen vorhanden, wobei jeweils ein Paar von Antriebszapfen zur Aufnahme eines ringförmigen Bauteils eingerichtet ist. Die Anzahl an Antriebszapfen-Paaren ist allerdings nicht beschränkt. Insbesondere sind pro Gestell mindestens 16 Antriebszapfen-Paare vorgesehen.Preferably, at least four pairs of drive pins are provided for each first cross-brace, wherein in each case a pair of drive pins is adapted to receive an annular component. However, the number of drive pin pairs is not limited. In particular, at least 16 drive pin pairs are provided per frame.
Die Aufgabe wird für das Verfahren zur chemischen oder galvanischen Beschichtung von ringförmigen Bauteilen, insbesondere Lagerringen oder Käfigen von Wälz- oder Gleitlagern, in einem Elektrolytbad, umfassend folgende Schritte:
- Bereitstellen mindestens eines erfindungsgemäßen Gestells;
- Auflegen mindestens eines ringförmigen Bauteils auf jeweils zwei Antriebszapfen des mindestens einen Gestells derart, dass das ringförmige Bauteil im Bereich seines Außendurchmessers auf den horizontal angeordneten Antriebszapfen aufliegt;
- Antreiben der mindestens einen ersten Antriebseinheit mittels des mindestens einen Antriebsmotors, Antreiben der mindestens einen zweiten Antriebseinheit mittels der mindestens einen ersten Antriebseinheit, und Antreiben der Antriebszapfen mittels der mindestens einen zweiten Antriebseinheit, wobei das ringförmige Bauteil in Rotation um seine Mittenachse versetzt wird;
- Einbringen des mindestens einen Gestells in mindestens ein Elektrolytbad; und
- Aufbringen einer chemischen oder galvanischen Beschichtung auf das ringförmige Bauteil.
- Providing at least one frame according to the invention;
- Placing at least one annular component on each of two drive pins of the at least one frame such that the annular component rests in the region of its outer diameter on the horizontally arranged drive pin;
- Driving the at least one first drive unit by means of the at least one drive motor, driving the at least one second drive unit by means of the at least one first drive unit, and driving the drive pins by means of the at least one second drive unit, wherein the annular component is set in rotation about its center axis;
- Introducing the at least one rack into at least one electrolyte bath; and
- Applying a chemical or galvanic coating on the annular member.
Das Verfahren ermöglicht mittels des Gestells einen permanenten rotatorischen Antrieb des zu beschichtenden ringförmigen Bauteils mittels der Antriebszapfen.
Dadurch kann das Bauteil gleichmäßig und permanent im Elektrolytbad bewegt werden, so dass eine besonders gleichmäßige Schichtdicke und keinerlei Schichtdefekte ausgebildet werden.
Das Einbringen des Gestells in ein Elektrolytbad oder nacheinander mehrere Elektrolytbäder, ggf. weiterhin Spülbäder, kann dabei erfolgen, bevor oder nachdem die ringförmigen Bauteile in Rotation um ihre Mittenachse versetzt werden. Bevorzugt ist dabei, die Bauteile bereits vor dem Einsetzen des Gestells in das Elektrolytbad in Rotation zu versetzen, um von Anfang an eine Bildung von Kontaktspuren zu vermeiden. Bei einem Umsetzen des Gestells von einem in ein weiteres Elektrolyt- oder Spülbad wird die Rotation der Bauteile bevorzugt beibehalten.The method allows by means of the frame a permanent rotational drive of the annular component to be coated by means of the drive pin.
As a result, the component can be moved uniformly and permanently in the electrolyte bath, so that a particularly uniform layer thickness and no layer defects are formed.
The introduction of the rack into an electrolyte bath or one after the other several electrolyte baths, possibly also rinsing baths, can take place before or after the annular components are set in rotation about their center axis. Preference is given to enable the components in rotation before the onset of the frame in the electrolyte bath in order to avoid formation of contact traces from the beginning. When converting the frame from one into another electrolyte or rinsing bath, the rotation of the components is preferably maintained.
Insbesondere werden ringförmige Bauteile mit Außendurchmessern im Bereich von 10 bis 300 cm beschichtet. Vor allem sind hierbei als ringförmige Bauteile Lagerringe oder Käfige von Wälz- oder Gleitlagern bevorzugt.In particular, annular components with outside diameters in the range of 10 to 300 cm are coated. Above all, bearing rings or cages of roller bearings or plain bearings are preferred here as ring-shaped components.
Bevorzugt werden zur Ausbildung einer galvanischen Beschichtung die mindestens zwei Antriebszapfen und die mindestens eine erste Querverstrebung aus Metall gebildet und über die mindestens eine Stromversorgungsschiene elektrisch kontaktiert und mit elektrischem Strom versorgt.To form a galvanic coating, the at least two drive pins and the at least one first crossbar are preferably formed from metal and electrically contacted via the at least one power rail and supplied with electrical power.
Die
- FIG 1
- eine dreidimensionale Vorderansicht eines ersten Gestells;
- FIG 2
- eine schematische Seitenansicht des Gestells aus
FIG 1 ; - FIG 3
- eine Rückansicht des Gestells aus
FIG 1 ; - FIG 4
- eine dreidimensionale Vorderansicht eines zweiten Gestells;
- FIG 5
- eine vergrößerte Ansicht des zweiten Gestells gemäß
FIG 4 ; - FIG 6
- eine weiter vergrößerte Ansicht des zweiten Gestells gemäß
FIG 4 ; - FIG 7
- eine schematische Darstellung des zweiten Gestells gemäß
FIG 6 ; - FIG 8
- eine nochmals vergrößerte Ansicht zweiten Gestells gemäß
FIG 6 ; - FIG 9
- eine Vorderansicht eines Trägerrahmens des zweiten Gestells mit erster Antriebseinheit; und
- FIG 10
- eine Rückansicht des Trägerrahmens des zweiten Gestells gemäß
FIG 9 mit erster Antriebseinheit.
- FIG. 1
- a three-dimensional front view of a first frame;
- FIG. 2
- a schematic side view of the frame
FIG. 1 ; - FIG. 3
- a rear view of the frame
FIG. 1 ; - FIG. 4
- a three-dimensional front view of a second frame;
- FIG. 5
- an enlarged view of the second frame according to
FIG. 4 ; - FIG. 6
- a further enlarged view of the second frame according to
FIG. 4 ; - FIG. 7
- a schematic representation of the second frame according to
FIG. 6 ; - FIG. 8
- a further enlarged view of the second frame according to
FIG. 6 ; - FIG. 9
- a front view of a support frame of the second frame with the first drive unit; and
- FIG. 10
- a rear view of the support frame of the second frame according to
FIG. 9 with first drive unit.
Gleiche Bezugszeichen in den
Die Längsachsen L der zwei Antriebszapfen 8a, 8b, die an einer gemeinsamen ersten Querverstrebung 5 angeordnet sind, sind in einer horizontalen Ebene E (vergleiche
The longitudinal axes L of the two
Ein Verfahren zur chemischen oder galvanischen Beschichtung der ringförmigen Bauteile 2, hier der Lagerringe, umfasst folgende Schritte:
Bereitstellen des Gestells 1 und Auflegen der ringförmigen Bauteile 2 auf jeweils zwei Antriebszapfen 8a, 8b des Gestells 1 derart, dass ein Außendurchmesser der ringförmigen Bauteile 2 auf den horizontal angeordneten Antriebszapfen 8a, 8b aufliegt. Antreiben der ersten Antriebseinheit 3 mittels des Antriebsmotors 6, wobei die zweite Antriebseinheiten 4 mittels der ersten Antriebseinheit 3 und die Antriebszapfen 8a, 8b mittels der zweiten Antriebseinheiten 4 angetrieben werden. Das ringförmige Bauteil 2 wird in Rotation um seine Mittenachse 2a versetzt. Das Einbringen des Gestells 1 in ein nicht dargestelltes Elektrolytbad kann dabei erfolgen, bevor oder nachdem die Bauteile 2 in Rotation versetzt werden. Das Aufbringen einer chemischen oder galvanischen Beschichtung auf das ringförmige Bauteil 2 erfolgt nun bei permanenter Rotation des Bauteils 2 im Elektrolytbad.A method for chemical or galvanic coating of the
Provision of the
Ein Verfahren zur chemischen oder galvanischen Beschichtung der ringförmigen Bauteile 2, hier der Lagerringe, umfasst folgende Schritte:
Bereitstellen des Gestells 1' und Auflegen der ringförmigen Bauteile 2 auf jeweils zwei Antriebszapfen 8a, 8b des Gestells 1' derart, dass ein Außendurchmesser der ringförmigen Bauteile 2 auf den horizontal angeordneten Antriebszapfen 8a, 8b aufliegt. Antreiben der ersten Antriebswelle 3a mittels des Antriebsmotors 6, wobei die zweiten Antriebseinheiten 4 mittels der ersten Antriebswelle 3a und die Antriebszapfen 8a, 8b mittels der zweiten Antriebseinheiten 4 angetrieben werden. Das ringförmige Bauteil 2 wird in Rotation um seine Mittenachse 2a (vergleiche
Provision of the frame 1 'and placing the
Die Längsachsen L der Paare von Antriebszapfen 8a, 8b, die an einer gemeinsamen ersten Querverstrebung 5 angeordnet sind, sind in einer horizontalen Ebene E angeordnet. Parallel zu jeder zweiten Antriebswelle 4a ist eine zweite Querverstrebung 9 angeordnet, die einen horizontal angeordneten Hilfszapfen 10 aufweist. Dieser ist optional um seine Längsache L1 (vergleiche
The longitudinal axes L of the pairs of
- 1,1'1,1 '
- Gestellframe
- 1a1a
- Trägerrahmensupport frame
- 22
- ringförmiges Bauteilannular component
- 2a2a
- Mittenachsemid-axis
- 33
- erste Antriebseinheitfirst drive unit
- 3a3a
- erste Antriebswellefirst drive shaft
- 3b3b
- Bandtape
- 3c3c
- Umlenkrolleidler pulley
- 44
- zweite Antriebseinheitsecond drive unit
- 4a4a
- zweite Antriebswellesecond drive shaft
- 55
- erste Querverstrebungfirst cross-bracing
- 66
- Antriebsmotordrive motor
- 6a6a
- MotorantriebstrommelMotor drive drum
- 7, 7'7, 7 '
- Schneckengetriebeworm gear
- 7a, 7a'7a, 7a '
- Schneckeslug
- 7b, 7b'7b, 7b '
- Schneckenradworm
- 8a, 8b8a, 8b
- Antriebszapfendrive journal
- 99
- zweite Querverstrebungsecond cross brace
- 1010
- Hilfszapfenauxiliary pins
- 1111
- StromversorgungsschienePower supply rail
- 11a11a
- StromversorgungsleitungPower line
- L, L1L, L1
- Längsachselongitudinal axis
- Ee
- horizontale Ebenehorizontal plane
Claims (10)
- Frame (1, 1') for receiving annular components (2), in particular bearing rings or cages of anti-friction bearings or plain bearings, and for the chemical or galvanic coating of the components (2) in an electrolyte bath, comprising:- a carrier frame (1a) which has at least one first drive unit (3), at least one second drive unit (4) and at least one horizontally arranged first transverse strut (5),- at least one drive motor (6) for driving the at least one first drive unit (3), the at least one first drive unit (3) being connected to the at least one second drive unit (4) and so as to drive the latter; and- at least two horizontally arranged drive journals (8a, 8b) with in each case one longitudinal axis (L), the drive journals (8a, 8b) being set up to receive one of the annular components (2), it being possible for the drive journals (8a, 8b) to be rotated in each case about their longitudinal axis (L), andthe drive journals (8a, 8b) being arranged on the at least one first transverse strut (5), characterized in that the at least two drive journals (8a, 8b) are connected to the at least one second drive unit (4) for rotationally driving the drive journals (8a, 8b) about their longitudinal axes (L).
- Frame according to Claim 1, the at least one first drive unit (3) comprising at least one vertically arranged first drive shaft (3a), the at least one second drive unit (4) comprising at least one horizontally arranged second drive shaft (4a), the at least one second drive shaft (4a) being connected drivably to the at least one first drive shaft (3a) via at least one first worm gear mechanism (7), and the at least one drive motor (6) being provided for driving the at least one first drive shaft (3a).
- Frame according to Claim 1, the first drive unit (3) being configured by way of a belt drive, the at least one second drive unit (4) comprising at least one horizontally arranged second drive shaft (4a), and the at least one drive motor (6) being connected to the at least one second drive shaft (4a) via the belt drive.
- Frame according to either of Claims 2 and 3, a second transverse strut (9) being arranged parallel to each second drive shaft (4a), which second transverse strut (9) has at least one horizontally arranged auxiliary journal (10) which can be rotated optionally about its longitudinal axis (L1).
- Frame according to one of Claims 2 to 4, the at least two drive journals (8a, 8b) being connected drivably to the at least one second drive shaft (4a) via at least one second worm gear mechanism (7').
- Frame according to one of Claims 1 to 5, the longitudinal axes (L) of the at least two drive journals (8a, 8b) which are arranged on a common first transverse strut (5) being arranged in a horizontal plane (E).
- Frame according to one of Claims 1 to 6, at least the at least two drive journals (8a, 8b) and the at least one first transverse strut (5), and optionally furthermore the auxiliary journals (10) and the at least one second transverse strut (9), being formed from metal and being connected to at least one power supply rail (11) .
- Frame according to one of Claims 1 to 7, there being at least four pairs of drive journals (8a, 8b) per first transverse strut (5), in each case one pair of drive journals (8a, 8b) being set up to receive an annular component (2).
- Method for the chemical or galvanic coating of annular components (2), in particular bearing rings or cages of anti-friction bearings or plain bearings, in an electrolyte bath, comprising the following steps:- providing of at least one frame (1, 1') according to one of Claims 1 to 8;- placing of at least one annular component (2) onto in each case two drive journals (8a, 8b) of the at least one frame (1, 1') in such a way that the annular component (2) lies in the region of its external diameter on the horizontally arranged drive journals (8a, 8b);- driving of the at least one first drive unit (3) by means of the at least one drive motor (6), driving of the at least one second drive unit (4) by means of the at least one first drive unit (3), and driving of the drive journals (8a, 8b) by means of the at least one second drive unit (4), the annular component (2) being set in rotation about its centre axis (2a);- introducing of the at least one frame (1, 1') into at least one electrolyte bath; and- applying of a chemical or galvanic coating to the annular component (2).
- Method according to Claim 9, the at least two drive journals (8a, 8b) and the at least one first transverse strut (5) being formed from metal, and being contacted electrically (11) and supplied with electric current via the at least one power supply rail in order to configure a galvanic coating.
Priority Applications (5)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
HUE15198402A HUE039958T2 (en) | 2015-12-08 | 2015-12-08 | Frame for mounting of annular components and method |
EP15198402.8A EP3178970B8 (en) | 2015-12-08 | 2015-12-08 | Frame for mounting of annular components and method |
PCT/DE2016/200574 WO2017097300A1 (en) | 2015-12-08 | 2016-12-01 | Frame for receiving annular components and method |
KR1020187015824A KR102642760B1 (en) | 2015-12-08 | 2016-12-01 | Rack for accommodating annular parts and method |
CN201680069409.6A CN108291322B (en) | 2015-12-08 | 2016-12-01 | Carrier and method for receiving a ring-shaped component |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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EP15198402.8A EP3178970B8 (en) | 2015-12-08 | 2015-12-08 | Frame for mounting of annular components and method |
Publications (3)
Publication Number | Publication Date |
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EP3178970A1 EP3178970A1 (en) | 2017-06-14 |
EP3178970B1 true EP3178970B1 (en) | 2018-06-27 |
EP3178970B8 EP3178970B8 (en) | 2019-04-03 |
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EP15198402.8A Active EP3178970B8 (en) | 2015-12-08 | 2015-12-08 | Frame for mounting of annular components and method |
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EP (1) | EP3178970B8 (en) |
KR (1) | KR102642760B1 (en) |
CN (1) | CN108291322B (en) |
HU (1) | HUE039958T2 (en) |
WO (1) | WO2017097300A1 (en) |
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CA2619509C (en) | 2005-08-12 | 2015-01-06 | Modumetal, Llc. | Compositionally modulated composite materials and methods for making the same |
BR122013014464B1 (en) | 2009-06-08 | 2020-10-20 | Modumetal, Inc | corrosion resistant multilayer coating on a substrate and electrodeposit method for producing a coating |
CN108486622B (en) | 2013-03-15 | 2020-10-30 | 莫杜美拓有限公司 | Nickel-chromium nanolaminate coating with high hardness |
WO2014146117A2 (en) | 2013-03-15 | 2014-09-18 | Modumetal, Inc. | A method and apparatus for continuously applying nanolaminate metal coatings |
EP4414477A2 (en) | 2013-03-15 | 2024-08-14 | Modumetal, Inc. | Electrodeposited compositions and nanolaminated alloys for articles prepared by additive manufacturing processes |
CA2905548C (en) | 2013-03-15 | 2022-04-26 | Modumetal, Inc. | Nanolaminate coatings |
BR112017005534A2 (en) | 2014-09-18 | 2017-12-05 | Modumetal Inc | Methods of preparing articles by electrodeposition processes and additive manufacturing |
CN106795645B (en) | 2014-09-18 | 2020-03-27 | 莫杜美拓有限公司 | Method and apparatus for continuous application of nanolaminate metal coatings |
EA201990655A1 (en) | 2016-09-08 | 2019-09-30 | Модьюметал, Инк. | METHODS FOR PRODUCING MULTI-LAYER COATINGS ON BILLETS AND THE PRODUCTS EXECUTED BY THEM |
EA201990716A1 (en) | 2016-09-14 | 2019-10-31 | SYSTEM FOR RELIABLE, HIGH-EFFICIENT GENERATION OF COMPLEX ELECTRIC FIELD AND METHOD FOR PRODUCING COATINGS WITH IT | |
WO2018085591A1 (en) | 2016-11-02 | 2018-05-11 | Modumetal, Inc. | Topology optimized high interface packing structures |
US11286575B2 (en) | 2017-04-21 | 2022-03-29 | Modumetal, Inc. | Tubular articles with electrodeposited coatings, and systems and methods for producing the same |
EP3540098A3 (en) * | 2018-03-16 | 2019-11-06 | Airbus Defence and Space GmbH | Apparatus and method for the continuous metallization of an object |
CN112272717B (en) * | 2018-04-27 | 2024-01-05 | 莫杜美拓有限公司 | Apparatus, system, and method for producing multiple articles with nanolaminate coatings using rotation |
CN109518241B (en) * | 2018-12-27 | 2020-08-14 | 中国电子科技集团公司第二研究所 | Automatic feeding, discharging and storing method for piston ring electroplating production line |
CN110438537B (en) * | 2019-08-09 | 2021-10-01 | 常州大学 | A high-flux heat exchange tube and its preparation method and application |
KR20220081494A (en) | 2020-12-09 | 2022-06-16 | 이강찬 | diatomous umbrella case |
CN112647112B (en) * | 2020-12-15 | 2021-12-14 | 杭州富阳鸿日电器有限公司 | Electronic material surface electroplating treatment equipment and electroplating treatment method thereof |
CN113073370B (en) * | 2021-03-31 | 2022-04-15 | 成都文亿辉科技有限公司 | Fixing device for treating guide roller by aluminum alloy micro-arc oxidation |
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JP2001073198A (en) * | 1999-07-01 | 2001-03-21 | Sumitomo Special Metals Co Ltd | Device for electroplating and electroplating method using this device |
DE10309401B4 (en) * | 2003-03-04 | 2006-02-09 | Vacuumschmelze Gmbh & Co. Kg | Apparatus and method for coating objects |
US20050056542A1 (en) * | 2003-07-04 | 2005-03-17 | Seiko Epson Corporation | Plating tool, plating method, electroplating apparatus, plated product, and method for producing plated product |
US7498062B2 (en) * | 2004-05-26 | 2009-03-03 | Wd Media, Inc. | Method and apparatus for applying a voltage to a substrate during plating |
DE102008020499A1 (en) * | 2008-04-23 | 2009-10-29 | Leistchamm Beteiligungen Ag | Electrical immersion-painting equipment for machine parts, includes rack with rows of holders driven through rotating rods, with connection for direct current supply |
CN201268728Y (en) * | 2008-08-04 | 2009-07-08 | 张嘉宏 | Electroplating hanger |
KR101230433B1 (en) | 2012-07-05 | 2013-02-06 | 삼현도금 주식회사 | Jig swing apparatus of electroplating equipment |
-
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- 2015-12-08 EP EP15198402.8A patent/EP3178970B8/en active Active
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-
2016
- 2016-12-01 CN CN201680069409.6A patent/CN108291322B/en active Active
- 2016-12-01 KR KR1020187015824A patent/KR102642760B1/en active IP Right Grant
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WO2017097300A1 (en) | 2017-06-15 |
EP3178970A1 (en) | 2017-06-14 |
HUE039958T2 (en) | 2019-02-28 |
KR20180090278A (en) | 2018-08-10 |
CN108291322A (en) | 2018-07-17 |
CN108291322B (en) | 2021-07-30 |
EP3178970B8 (en) | 2019-04-03 |
KR102642760B1 (en) | 2024-03-05 |
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