CN1840240A - Automobile outer casing printing system with multifunctional painting area - Google Patents
Automobile outer casing printing system with multifunctional painting area Download PDFInfo
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- CN1840240A CN1840240A CN 200510065477 CN200510065477A CN1840240A CN 1840240 A CN1840240 A CN 1840240A CN 200510065477 CN200510065477 CN 200510065477 CN 200510065477 A CN200510065477 A CN 200510065477A CN 1840240 A CN1840240 A CN 1840240A
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Abstract
The invention discloses a vehicle shell coating-assembling system with multifunctional coating-assembling area, which comprises the following parts: pre-coating area, plating area, coating-assembling basal layer area, first-stage dynamic hybrid system, second-stage dynamic hybrid system, agitator, multifunctional coating-assembling area, flash chamber and drying station, wherein the first-stage dynamic hybrid system contains first-stage coating-assembling assembling unit without dominant hue color; the second-stage dynamic hybrid system contains second-stage coating-assembling assembling unit with dominant hue color; the multifunctional coating-assembling area installs one auto electrostatic painting cup-type; the coating-assembling system sprays aquosity color mixed componemt; the combination coating is formed by mixing selected color; the different colors are distributed to auto electrostatic painting cup-type; the different paints are painted on vehicles.
Description
Technical field
The present invention relates to a kind of finishing system, especially a kind of automobile case finishing system, automatically electrostatic spray of this system employs with multi-functional application zone revolve cup with different paint sprayings to shell, and then realize the graceful beautiful outward appearance of automobile.
Background technology
Automobile need carry out multiple coating could realize graceful beautiful outward appearance.Coating comprises basic unit, bottom and skin.These coatings can make automobile case and external environment is isolated, corrosion, can protect car body simultaneously.Present vehicle coating process be at different application stations respectively with paint coating to shell, on different premix paint supply source, each application station, connect one or many automatically electrostatic spray and revolve cup.Shortcoming of this cover technology is: need large-area place hold each application station, and load different automatically electrostatic spray and revolve cup, this certainly will cause the fund input of equipment and factory building bigger, the comparatively loaded down with trivial details and trouble of operation simultaneously.
In the conventional finishing system, automatically electrostatic spray revolve cup all be connected basically many volumes big (volume is 700~2000 liters) the paint supply guard system or similarly on the loop, each loop provides the dominant hue pigment of single premix.
In these systems,, be approximately 700~2000 liters because the volume of each the medium-and-large-sized fluid reservoir in paint supply loop and the circulatory system is very limited; So pigment or the number of colours selected for use are restricted, the automaker can only be automobile selection six or seven kind of color of a kind of model usually.In case a certain color is unpopular, manufacturer will cause waste to increase cost owing to not re-using this color.To clear up simultaneously and handle also suitable trouble and time-consuming of clean system.In addition, the pigment that is pre-mixed in the stirring coating loop that need not stop or make its circulation to prevent sedimentation.But circulation can influence the texture of coating for a long time, as for the coating that much contains the metal scale, after circulating for a long time, these scale particle surfaces will be twisted or destroy, thereby have changed the characteristic of hybrid pigment or shielded the performance that deposits coating.
Summary of the invention
The quantity that the present invention can reduce application station in the automobile case finishing system and automatically electrostatic spray revolves cup, on traditional vehicle coating process basis, provide a cover advanced finishing system, this automobile case finishing system has an enormous advantage: the automaker again needn't rely on increases the pigment fluid reservoir so that increase cost, obtains how selectable color.
Automobile case finishing system with multi-functional application zone of the present invention comprises precoating zone, plating area, application base layer region, the dynamic hybrid system of the first order, the dynamic hybrid system in the second level, agitator, multi-functional application zone, flash chamber and dry station.Wherein the dynamic hybrid system of the first order comprises a cover first order application combiner that does not in fact contain dominant hue pigment, and the dynamic hybrid system in the second level comprises a cover second level application combiner that contains dominant hue pigment, and multi-functional application zone is provided with an automatically electrostatic spray and revolves cup.
The blending ingredients of spraying water-based color dynamically mixes selected color to form the combination coating, make different pigment be assigned to automatically electrostatic spray and revolve cup, again with different paint sprayings to vehicle body.
Automobile case finishing system of the present invention is applicable to the automobile case of coating metal, polymer (comprising thermosets and thermoplastic) and composite.Coating process of the present invention can spray metal shell such as iron, steel and the alloy thereof etc. of iron content, and non-ferrous material such as aluminium, zinc, magnesium and alloy, compound etc. also can use this technology in addition.The automobile case finishing system is better for the automobile case effect of materials such as cold-rolled steel, galvanized steel, aluminium and magnesium.
The precoating zone can be cleaned the precipitation of case surface, degreasing and Coating Pretreatment, and in the plating area, the part of metal shell can use one or more electroplating coating components to carry out electroplating processes.Better electroplating technology and electroplating coating comprise traditional anion or cation electroplating coating material, comprise epoxy resin and polyurethanes coating.
The shell of precoating will clean, heats and cool off, and is coated with in the application base layer region then and loads onto ground floor, after the intact ground floor of application, also will clean, dries, cools off, polishing and seal operation.The ground floor application can be liquid state, suspended nitride, powder etc., the method for the liquid and suspended nitride of spraying comparative maturity technically on the shell is as dipping lacquer, directly roll-type application, oppositely roll-type application, shield application etc.; Powdery paints generally is to adopt electrostatic spraying.
The automatically electrostatic spray that is connected on the dynamic hybrid system of the first order revolves cup, can spray basic unit or functional basic unit, the bottom that can select color and dominant hue pigment and layer of transparent coating to shell in multi-functional application zone.Dominant hue pigment is meant a kind of coating that the multicolour variation effect can be provided, and the multicolour variation effect is meant the coating that shows significant colour or black under visual angle change.
To be requirement be colored through the shell of application to specific multicolour effect under direct-view, and present dead color under 60~80 ° of visual angles, first-selected from intuitively to the vicissitudinous material of view color is arranged.Typical dominant hue pigment comprises mica sheet, aluminium flake, bronze flake, blooming mica, nickel sheet, tin sheet, silver strip, copper sheet and their mixture.Do not contain dominant hue pigment, the actual content of dominant hue pigment in the material that is meant is lower than 3% of coating gross weight.Water paint is meant that the solvent that coating uses mainly is made of water.
This cover finishing system comprises the dynamic hybrid system of the first order, and this hybrid system is combined by the paint supply source, and every suit source of supply provides a kind of water-based, the actual application component that does not contain dominant hue pigment, especially comprises different primitive colors.Each root application conduit is connected between the transmitting device of a cover paint supply source and a cover routine.Pump is transported to automatically electrostatic spray with selected application component from every suit paint supply source and revolves on the cup by a first order agitator and first order conduit.First order agitator can mix one or more application components from selected paint supply source, or mixing the coating material that first order aqueous components forms a kind of selected color from first order paint supply source, pump can be selected displacement pump or variable capacity pump (as 0.6~30 cubic centimetre), rotary volume flushing working face formula gear pump for use.
First order paint supply source is transported to first order conduit by a first order pump with first order aqueous components, and another set of application component source of supply carries the application component to first order conduit as a cover automatic drying source of supply or a flexible composition source of supply via pump.Suitable flexibility and automatic drying component comprise ultra-violet absorber, hindered amine light stabilizer or antioxidant.
More than be suitable basic unit's component, before this external bottom application, a cover basic unit component source of supply that comprises basic unit's component is by a stylobate layer pump, is transported to first order conduit and is sprayed on the shell.
The automobile case finishing system that has multi-functional application zone among the present invention also comprises the dynamic hybrid system in the second level, and the dynamic hybrid system of this hybrid system and the first order finally also is connected to automatically electrostatic spray and revolves on the cup.The dynamic hybrid system in the second level is combined by different dominant hue pigment component sources of supply.Source of supply is transported to second level conduit by dominant hue pigment pump separately with the dominant hue pigment component, mixes as yellow and blue mica sheet and can form a kind of green coating.
The dynamic hybrid system in the second level also comprises a cover second level source of supply, and source of supply comprises a kind of second level aqueous components, compares the first-selected low viscous component of this component with first order component.Second level source of supply is transported to second level conduit via a second level pump with second level aqueous components, and a selectable second level agitator is connected on the conduit of the second level, and this second level, position conduit can connect with first order conduit again.Entering before the first order conduit, source of supply can mix one or more dominant hue pigment and second level component.
In this cover automobile case finishing system, the original look coating material of one or more of first order source of supply can produce a kind of first order primer of required color.For example Xuan Ding original look application component available pump is drawn into first order conduit from first order source of supply, enters automatically electrostatic spray then and revolves cup and be sprayed on the shell through one or more injection channels, has formed first bottom.First order agitator dynamically blending ingredients provides first primer for required color.Therefore, the quantity of each application component and first order component and the final color of first primer, can overlap conventional Computer Control Unit or proportioning valve system or special many valve control systems by one and control, the proportioning valve system can use RCS (ratio control system) device.
Finish after the spraying of first bottom, pigment pump and second level pump begin to mix one or more selected dominant hue pigment that comprise component from the second level component that comes from selectable dominant hue paint supply source and second level source of supply.This dominant hue pigment that comprises component can mix with the selected application component that comes from the first order source of supply in the agitator of the second level, and enter the first order conduit of first order mixer downstream, can produce a kind of dominant hue pigment that comprises second level primer, second level primer is ejected on first subbing through one or more injection channels and then forms second bottom.The dominant hue pigment that comprises second subbing can promote arbitrary remaining first subbing to revolve cup by automatically electrostatic spray, discharges first order conduit; Therefore before spraying second layer subbing, seldom need to clean automatically electrostatic spray and revolve cup.Second level conduit can directly be connected automatically electrostatic spray and revolve on the cup, so that second subbing does not need by first order agitator.
In above-mentioned method, first and second subbings all are that coloring material is a large amount of dyeing pigment application component from the paint supply source.After spraying first bottom, the dynamic hybrid system in the second level is by from second level source of supply and the selected dominant hue pigment that comprises component, pump bottom component cleaning or dyeing to first order conduit, can on shell, spray transparent or translucent second bottom.
Shown in the side view in multi-functional application zone, be installed in an automatically electrostatic spray on the robot arm and revolve whole or most surfaces that cup can spray shell.This cover finishing system can be used to spraying combination coating material such as functional basic unit, flexible coating, air dry coating, cleans coating etc., can be sprayed on the shell continuously as requested.And if this cover finishing system is in fact better for spray car shell effect at electro dipping or wash away in the application and to use around application.
One cover electro dipping shell can move on to multi-functional application zone, and system can provide a kind of functional form application such as functional form basic unit.Basic unit's pump can be drawn into first order conduit with the basic unit's component from basic unit's source of supply, and by automatically electrostatic spray revolve the cup spray on the shell.Basic unit's pump can be stopped, and selected be coated with first subbing that armored pump and first order pump begin to comprise selected color and be sprayed on the shell.The first order that coexists agitator mixes and revolves the cup ejection equally from automatically electrostatic spray, and first subbing can promote to discharge former residue basic unit coating material.Automatically electrostatic spray revolves cup and passes through the robot arm lateral circular around shell, can spray first bottom like this on shell.Carry second subbing can by open second level pump, selected pigment pump, arbitrarily stop or slowing down be coated with armored pump and first order pump, remaining first primer and revolve cup from automatically electrostatic spray and spray before second subbing can promote.
For application clear coat on bottom, the pigment pump can be stopped, and first order pump and second level pump are opened.Second level component is compared with first order component, and first-selected a kind of low viscosity also can form the component of clear coat.Owing to the two-stage component of having added varying number, so the viscosity of the clear coat that this finishing system provides or other coating material can change to dynamic mixing coating material.
Coating in the multi-functional application zone can finally be solidified by the quality of a flash chamber and a dry station control coating.After the spray-on coating of multi-functional application zone, shell enters a flash chamber.By flow velocity, temperature, the humidity of controlling air in the flash chamber and then the evaporation capacity of controlling the application layer of deposition, so constituted application layer, do not had sagging phenomenon and in fact smooth, the uniform horizontal thin film of thickness so that form one with sufficient water content and humidity.
Compare with the temperature and humidity in the jet chamber of routine during coating process, the quality of coating deposition depends on the effect of spray method and drying condition after the utilization spraying more.The coating of case surface can be carried out drying or curing at the drying station of a routine, and for the water-based bottom, drying is meant almost entirely dewaters from coating.
Dry station comprises the drying oven or the infrared radiation baking oven of a routine.Curing can be undertaken by the dry technology of a routine, carries out the dry or use infrared ray heating of hot-air convection as using the hot-air convection baking oven.For solidified coating, it is 120 ℃~150 ℃ and lasting 20~40 minutes that shell should be heated to temperature usually, and the thickness of dry coating is generally 12~125 microns.
Compare with the finishing system of routine, finishing system of the present invention can improve the flexibility of color and bigger container storage tank.Dynamically mixed process can provide a big palette by using less relatively mixing benchmark color or metal mixed color to solid color and metal color.
The invention provides the method and apparatus of automobile case spray-on coating, use an automatically electrostatic spray to revolve cup spraying dominant hue pigment on automobile case, the dynamic hybrid system of general blend of colors is provided.
Description of drawings
Fig. 1 is the structural representation of automobile case finishing system among the present invention.
Fig. 2 is the side view in the multi-functional application zone of automobile case finishing system among the present invention.
Wherein: 1, the precoating zone, 2, the plating area, 3, the application base layer region, 4, multi-functional application zone, 5, automatically electrostatic spray revolves cup, and 6, flash chamber, 7, dry station, 8, robot arm, 9, the dynamic hybrid system of the first order, 10, the dynamic hybrid system in the second level, 11A~11E, the paint supply source, 12, first order conduit, 13A~13E, paint guide, 14A~14E and 14G, pump, 15, first order paint supply source, 16, first order pump, 17, the automatic drying source of supply, 18, the flexible composition source of supply, 19 and 20, pump, 21, first order agitator, 22A~22F, dominant hue paint supply source, 23, second level conduit, 24A~24F, the pigment pump, 25, second level source of supply, 26, second level pump, 27, second level agitator, 28, basic unit's component source of supply, 29, basic unit's pump, 30, automobile case.
The specific embodiment
Embodiment:
The description of embodiments of the invention can be with reference to figure 1~2.
The automobile case finishing system with multi-functional application zone of present embodiment comprises precoating zone (1), plating area (2), application base layer region (3), the dynamic hybrid system of the first order (9), the dynamic hybrid system in the second level (10), two agitators (21) and (21), multi-functional application zone (4), flash chamber (6) and dry station (7).Wherein the dynamic hybrid system of the first order (9) comprises a cover first order application combiner that does not in fact contain dominant hue pigment, and the dynamic hybrid system in the second level (10) comprises that a cover second level application combiner that contains dominant hue pigment, multi-functional application zone (4) are provided with an automatically electrostatic spray and revolve cup (5).
Precoating zone (1) can be cleaned the precipitation on shell (30) surface, degreasing and Coating Pretreatment, and in the plating area (2), a part of metal shell (30) can use multiple electroplating coating component to carry out electroplating processes.Better electroplating technology and electroplating coating adopt polyurethanes coating.
The shell of precoating (30) will clean, heats and cool off, and is coated with in application base layer region (3) then and loads onto ground floor, after the intact ground floor of application, also will clean, dries, cools off, polishing and seal operation.The ground floor application be suspended nitride, shell (30) is gone up the maturation method that the spraying suspended nitride adopts the shielding application.
As shown in Figure 1, an automatically electrostatic spray that is connected on the dynamic hybrid system of the first order (9) revolves cup (5), can be to shell (30) spraying basic unit or functional basic unit, the bottom that can select color and dominant hue pigment and layer of transparent coating in multi-functional application zone (4).
The finishing system of present embodiment comprises a cover dynamic hybrid system of the first order (9), this dynamic hybrid system (9) is by paint supply source (11A)~(11E) combine, every suit source of supply provides a kind of water-based, the actual application component that does not contain dominant hue pigment, especially comprise different primitive colors, wherein 11A represents that encrimson source of supply, 11B represent that yellow paint source of supply, 11C represent that blue paste source of supply, 11D represent that whitewash source of supply and 11E represent the blacking source of supply.Each root application conduit (13A)~(13E) is connected between the transmitting device of an every suit paint supply source 11 and a cover routine, pump (14A)~(14E) is transported to automatically electrostatic spray with selected application component from every suit paint supply source (11A)~(11E) and revolves on the cup (5) by a first order agitator (21) and first order conduit (12).First order agitator (21) can mix one or more application components from selected paint supply source (11A)~(11E), or mixing the coating material that first order aqueous components forms a kind of selected color from first order paint supply source (15), pump (14A)~(14E) can be selected rotary volume flushing working face formula gear pump for use.
First order paint supply source (15) is transported to first order conduit (12) by a first order pump (16) with first order aqueous components, one cover automatic drying source of supply (17) and flexible composition source of supply (18) carries the application component to first order conduit (12) through pump (19) and (20) respectively.Suitable flexibility and automatic drying component comprise ultra-violet absorber, hindered amine light stabilizer.
Before this external bottom application, the cover basic unit's component source of supply (28) that comprises basic unit's component is by a stylobate layer pump (29), is transported to first order conduit (12) and is sprayed on the shell (30).
The finishing system of present embodiment also comprises a cover dynamic hybrid system in the second level (10), and this dynamic hybrid system (10) and the dynamic hybrid system of the first order (9) finally also are connected to automatically electrostatic spray and revolve on the cup (5).The dynamic hybrid system in the second level (10) is by different dominant hue pigment component source of supply (22A)~(22F) combine, wherein source of supply (22A) provides the red cloud master slice, source of supply (22B) provide blue mica sheet, source of supply (22C) provide green mica sheet, source of supply (22D) provide yellow mica sheet, source of supply (22E) provide coarse aluminium flake, source of supply (22F) provide meticulous aluminium flake, dominant hue pigment pump (24A)~(24F) by separately is transported to second level conduit (23) with the dominant hue pigment component respectively, mixes as yellow and blue mica sheet and can form a kind of green coating.
The dynamic hybrid system in the second level (10) also comprises a cover second level source of supply (25), and source of supply (25) comprises a kind of second level aqueous components, compares the first-selected low viscous component of this component with first order component.Second level source of supply (25) is transported to second level conduit (23) via a second level pump (26) with second level aqueous components, a second level agitator (27) is connected on the second level conduit (23), and this second level, position conduit (23) can connect with first order conduit (12) again.Entering before the first order conduit (12), source of supply (22A)~(22F) can mix one or more dominant hue pigment and second level component.
In the present embodiment, the multiple original look coating material of first order source of supply (11A)~(11E) can produce a kind of first order primer of required color.Selected original look application component available pump is drawn into first order conduit (12) from first order source of supply (11A)~(11E), enters automatically electrostatic spray then and revolves cup (5) and be sprayed on the shell (30) through a plurality of injection channels, has formed first bottom.First order agitator (21) dynamically blending ingredients provides first primer for required color.Therefore, the quantity of each application component and first order component and the final color of first primer can be controlled by a cover proportioning valve system, and the proportioning valve system adopts RCS (ratio control system) device.
Finish after the spraying of first bottom, pump (24A)~(24F) and second level pump (26) begin to mix one or more selected dominant hue pigment that comprise component from the second level component that comes from selectable dominant hue paint supply source (22A)~(22F) and second level source of supply (25).This dominant hue pigment that comprises component can mix with the selected application component that comes from the first order source of supply (11A)~(11E) in the second level agitator (27), and enter the first order conduit (12) in first order agitator (21) downstream, can produce a kind of dominant hue pigment that comprises second level primer, second level primer is ejected on first subbing through a plurality of injection channels and then forms second bottom.The dominant hue pigment that comprises second subbing can promote arbitrary remaining first subbing to revolve cup (5) by automatically electrostatic spray, discharges first order conduit (12); Therefore before spraying second layer subbing, seldom need to clean automatically electrostatic spray and revolve cup (5).Second level conduit (23) can directly be connected automatically electrostatic spray and revolve on the cup (5), so that second subbing does not need by first order agitator (21).
In the present embodiment, first and second subbings all are that coloring material is a large amount of dyeing pigment application component from paint supply source (11A)~(11E).After spraying first bottom, the dynamic hybrid system in the second level (10) is by from second level source of supply (25) and the selected dominant hue pigment that comprises component, pump bottom component cleaning or dyeing to first order conduit (12), can go up translucent second bottom of spraying at shell (30).
The side view in multi-functional application zone (4) is as shown in Figure 2: be installed in automatically electrostatic spray on the robot arm (8) and revolve cup (5) can spray the whole or most surperficial of shell (30) on X, Y, three directions of Z.The finishing system of present embodiment can be used to spraying combination coating material such as functional basic unit, flexible coating, air dry coating, cleans coating etc., can be sprayed on continuously as requested on the shell (30).And present embodiment in electro dipping, adopted around application, in fact for the spray car shell
(30) effect is better.
As illustrated in fig. 1 and 2, a cover electro dipping shell (30) can move on to multi-functional application zone (4), and system can spray a kind of functional form basic unit.Basic unit's pump (29) can be drawn into the basic unit's component from basic unit's source of supply (28) first order conduit (12), and by automatically electrostatic spray revolve the cup (5) spray on the shell (30).Basic unit's pump (29) can be stopped, and the selected armored pump (14A)~(14E) that is coated with is sprayed on the shell with first subbing that first order pump (16) begins to comprise selected color.Revolve in glass (5) ejection in first order agitator (21) mixing and from automatically electrostatic spray, first subbing can promote to discharge former residue basic unit coating material.Automatically electrostatic spray revolves cup (5) by robot arm (8) lateral circular at shell (30) on every side, can go up spraying first bottom at shell (30) like this.Carry second subbing can by open second level pump (26), selected pigment pump (24A)~(24F), arbitrarily stop or slowing down be coated with armored pump (14A)~(14E) and first order pump (16), remaining first primer and revolve cup (5) from automatically electrostatic spray and spray before second subbing can promote.
For application clear coat on bottom, pigment pump (24A)~(24F) can be stopped, and first order pump (16) and second level pump (26) are opened.Second level component is compared with first order component, and first-selected a kind of low viscosity also can form the component of clear coat.Owing to the two-stage component of having added varying number, so the viscosity of the clear coat that present embodiment provides or other coating material can change to dynamic mixing coating material.
Coating in the multi-functional application zone (4) can finally be solidified by the quality of a flash chamber (6) and a dry station (7) control coating.After the spray-on coating of multi-functional application zone (4), shell (30) enters a flash chamber (6).By flow velocity, temperature, the humidity of controlling air in the flash chamber (6) and then the evaporation capacity of controlling the application layer of deposition, so constituted application layer, do not had sagging phenomenon and in fact smooth, the uniform horizontal thin film of thickness so that form one with sufficient water content and humidity.
Compare with the temperature and humidity in the jet chamber of routine during coating process, the quality of coating deposition depends on the effect of spray method and drying condition after the utilization spraying more.The coating on shell (30) surface can be carried out drying or curing at the drying station (7) of a routine, and for the water-based bottom, drying is meant almost entirely dewaters from coating.
Dry station (7) comprises the drying oven of a routine.Curing can be undertaken by the dry technology of a routine, uses the hot-air convection baking oven to carry out the hot-air convection drying.For solidified coating, shell (30) should be heated to 130 ℃ and lasting 30 minutes usually, and the thickness of dry coating is about 120 microns.
Claims (6)
1, a kind of automobile case finishing system with multi-functional application zone comprises precoating zone (1), plating area (2), application base layer region (3), the dynamic hybrid system of the first order (9), the dynamic hybrid system in the second level (10), agitator (21) and (21), multi-functional application zone (4), flash chamber (6) and dry station (7).Wherein the dynamic hybrid system of the first order (9) comprises the first order application combiner that does not in fact contain dominant hue pigment, and the dynamic hybrid system in the second level (10) comprises the second level application combiner that contains dominant hue pigment, and multi-functional application zone (4) is provided with an automatically electrostatic spray and revolves cup (5).
2, in the automobile case finishing system as claimed in claim 1, the dynamic hybrid system of the described first order (9) comprises paint supply source (11A)~(11E), first order paint supply source (15), automatic drying source of supply (17), flexible composition source of supply (18), basic unit's component source of supply (28) and pump (14A)~(14E), (14G), (16), (19), (20).
3, in the dynamic hybrid system of the first order as claimed in claim 2 (9), the every suit in described paint supply source (11A)~(11E) comprises the coating of different colours, carries water-based, the actual application component that does not contain dominant hue pigment.
4, in the automobile case finishing system as claimed in claim 1, the dynamic hybrid system in the described second level (10) comprises dominant hue pigment component source of supply (22A)~(22F), dominant hue pigment pump (24A)~(24F), second level source of supply (25), second level pump (26).
5, automobile case finishing system as claimed in claim 1 comprises a flash chamber (6) that is positioned at downstream, multi-functional application zone (4).
6, in the automobile case finishing system as claimed in claim 1, described flash chamber (6) downstream is provided with a dry station (7).
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CN 200510065477 CN1840240A (en) | 2005-04-01 | 2005-04-01 | Automobile outer casing printing system with multifunctional painting area |
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Cited By (5)
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CN101862717A (en) * | 2009-02-16 | 2010-10-20 | 本田技研工业株式会社 | Electrostatic coating method and electrostatic coating device |
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2005
- 2005-04-01 CN CN 200510065477 patent/CN1840240A/en active Pending
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CN101862717A (en) * | 2009-02-16 | 2010-10-20 | 本田技研工业株式会社 | Electrostatic coating method and electrostatic coating device |
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CN105435980A (en) * | 2015-12-11 | 2016-03-30 | 浙江易锋机械有限公司 | Multifunctional coating spray nozzle |
US10159999B2 (en) | 2017-02-25 | 2018-12-25 | Citic Dicastal Co., Ltd. | Hub paint spraying equipment equipped with spraying robot having combined spray gun |
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CN112020395B (en) * | 2017-11-30 | 2022-05-27 | 艾仕得涂料系统有限责任公司 | System for applying coating compositions using high transfer efficiency applicators and corresponding method |
US11453802B2 (en) | 2017-11-30 | 2022-09-27 | Axalta Coating Systems Ip Co., Llc | Method of applying a coating composition to a substrate |
US11613669B2 (en) | 2017-11-30 | 2023-03-28 | Axalta Coating Systems Ip Co., Llc | Coating compositions for application utilizing a high transfer efficiency applicator and methods and systems thereof |
US11649372B2 (en) | 2017-11-30 | 2023-05-16 | Axalta Coating Systems Ip Co., Llc | Coating compositions for application utilizing a high transfer efficiency applicator and methods and systems thereof |
US11649374B2 (en) | 2017-11-30 | 2023-05-16 | Axalta Coating Systems Ip Co., Llc | Coating compositions for application utilizing a high transfer efficiency applicator and methods and systems thereof |
US11649371B2 (en) | 2017-11-30 | 2023-05-16 | Axalta Coating Systems Ip Co., Llc | Method of forming a coating composition for application to a substrate utilizing a high transfer efficiency applicator |
US11649373B2 (en) | 2017-11-30 | 2023-05-16 | Axalta Coating Systems Ip Co., Llc | Coating compositions for application utilizing a high transfer efficiency applicator and methods and systems thereof |
US11655391B2 (en) | 2017-11-30 | 2023-05-23 | Axalta Coating Systems Ip Co., Llc | Coating compositions for application utilizing a high transfer efficiency applicator and methods and systems thereof |
US11820910B2 (en) | 2017-11-30 | 2023-11-21 | Axalta Coating Systems Ip Co., Llc | Coating compositions for application utilizing a high transfer efficiency applicator and methods and systems thereof |
US11840639B2 (en) | 2017-11-30 | 2023-12-12 | Axalta Coating Systems Ip Co., Llc | Coating compositions for application utilizing a high transfer efficiency applicator and methods and systems thereof |
US11945964B2 (en) | 2017-11-30 | 2024-04-02 | Axalta Coating Systems Ip Co., Llc | Coating compositions for application utilizing a high transfer efficiency applicator and methods and systems thereof |
US11965107B2 (en) | 2017-11-30 | 2024-04-23 | Axalta Coating Systems Ip Co., Llc | System for applying a coating composition |
US12054634B2 (en) | 2017-11-30 | 2024-08-06 | Axalta Coating Systems Ip Co., Llc | Method of applying a coating composition to a substrate |
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