CN102233310A - Immersion type coating device - Google Patents
Immersion type coating device Download PDFInfo
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- CN102233310A CN102233310A CN2010101514362A CN201010151436A CN102233310A CN 102233310 A CN102233310 A CN 102233310A CN 2010101514362 A CN2010101514362 A CN 2010101514362A CN 201010151436 A CN201010151436 A CN 201010151436A CN 102233310 A CN102233310 A CN 102233310A
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- plated film
- dividing plate
- type coating
- coating apparatus
- cavity volume
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Abstract
The invention provides an immersion type coating device. The immersion type coating device comprises a coating box body, a partition board, at least one driving device, at least one coating base and an air inlet pipe, wherein the partition board is arranged in the coating box body and divides the coating box body into a first accommodating chamber and a second accommodating chamber which are independent of each other; a hole running through the partition board is formed in the partition board; the at least one driving device is arranged on the partition board; the at least one coating base is connected to the driving device and positioned in the second accommodating chamber; the coating base is driven by the driving device to cover the hole of the partition board; and the at least one air inlet pipe is arranged on the side wall, corresponding to the first accommodating chamber, of the coating box body. The coating box body of the immersion type coating device is divided into two independent accommodating chambers by the partition board and the coating and drying are performed in the two accommodating chambers sequentially, so that a transfer link of coated products is saved, the cost is effectively reduced, and the quality of the products is improved.
Description
Technical field
The present invention relates to a kind of coating apparatus, relate in particular to a kind of infiltration type coating apparatus.
Background technology
In order to improve the outward appearance of electronic product, usually need be at surface-coated one deck decorating film of electronic product, this decorating film normally adopts coating apparatus to be coated on the surface of electronic product.The infiltration type coating apparatus is a kind of the most frequently used coating apparatus, and it is by immersing product in the plated film solvent after a period of time, takes out and the oven dry of carrying out certain hour can be finished plated film.Yet, the infiltration operation of traditional infiltration type coating apparatus and baking operation are finished at the device dress that is separated from each other, so just the workpiece after soaking into need be transported in the drying unit, and it is contaminated easily in the process of the workpiece after transhipment is soaked into, in addition, the extra transloading equipment of process need of transhipment, so just increases the manufacturing cost of product and has reduced the product yield at manpower and time.
Summary of the invention
In view of this, be necessary to provide a kind of infiltration type coating apparatus that can improve the product yield and can reduce cost.
A kind of infiltration type coating apparatus, it comprises a plated film casing, a dividing plate, at least one drive unit, at least one plated film pedestal and at least one air inlet pipe.Described dividing plate is arranged in the described plated film casing described plated film casing is divided into the first separate cavity volume and second cavity volume.Described first cavity volume is in order to the oven dry film-coating workpiece.Described second containing cavity is in order to ccontaining coated solution.Described dividing plate is provided with a perforate that runs through described dividing plate.Described at least one drive unit is arranged on the described dividing plate.Described at least one plated film pedestal is connected on the described drive unit and is positioned at described second containing cavity, and described at least one plated film pedestal carries out plated film in order to carry workpiece to be coated and can be under the driving of described drive unit described workpiece to be coated to be immersed in the coated solution in described second containing cavity.Described at least one plated film pedestal also can cover the perforate of described dividing plate and use so that be exposed in first cavity volume by described perforate through the workpiece behind the infiltration plated film under the driving of described drive unit.Described at least one air inlet pipe is arranged on the sidewall of corresponding described first cavity volume of described plated film casing to feed in first cavity volume and dries gas so that described film-coating workpiece is dried.
Compare prior art, the plated film casing of infiltration type coating apparatus of the present invention is divided into two independently cavity volumes by dividing plate, successively carries out plated film and oven dry in two cavity volumes, thereby can save the transhipment link of plated film product, effectively reduce cost, and improve the quality of product.
Description of drawings
Fig. 1 is the exploded view that dissects of the infiltration type coating apparatus that provides in the embodiment of the present invention.
Fig. 2 be among Fig. 1 the infiltration type coating apparatus dissect assembly drawing.
Fig. 3 is the user mode figure of infiltration type coating apparatus among Fig. 1.
Fig. 4 is the another kind of user mode figure of infiltration type coating apparatus among Fig. 1.
The main element symbol description
Infiltration type coating apparatus 100
Venthole 112a
Mozzle 112b
Charging hole 114a
The first air admission hole 116a
The second air admission hole 116b
Dividing plate 120
Perforate 122
Axle bed 134b
Driving shaft 136a
Substrate 142
Groove 142a
The specific embodiment
See also Fig. 1 and Fig. 2, a kind of infiltration type coating apparatus 100 that better embodiment of the present invention provides, it comprises a plated film casing 110, a dividing plate 120, at least one drive unit 130, at least one plated film pedestal 140, at least one air inlet pipe 150, and an inlet valve 160.Described dividing plate 120 is arranged in the described plated film casing 110 described plated film casing 110 is divided into the first separate cavity volume 113 and second cavity volume 115.Described dividing plate 120 is provided with a perforate 122 that runs through described dividing plate 120, to be communicated with described first cavity volume 113 and second cavity volume 115.Described at least one drive unit 130 is arranged on the described dividing plate 120.Described at least one plated film pedestal 140 is connected on the described drive unit 130 and is positioned at described second cavity volume 115, and can cover the perforate 122 of described dividing plate 120 under the driving of described drive unit 130.Described at least one air inlet pipe 150 is arranged on the sidewall of described plated film casing 110 corresponding described first cavity volumes 113 with feeding gas to first cavity volume 113 in.Described inlet valve 160 is arranged on the sidewall of described plated film casing 110 corresponding described second cavity volumes 115 with feeding plated film solvent to second cavity volume 115 in.
Described plated film casing 110 comprise a top board 112, base plate 114 and one connect described top board 112 and base plate 114 and with described top board 112 and the base plate 114 common sidewalls 116 that constitute the room of a sealing.Described top board 112 is provided with a venthole 112a who runs through described top board 112, and one at the mozzle 112b of top board 112 outer rings around described venthole 112a.Offer a charging hole 114a on the described base plate 114, described inlet valve 160 is arranged on the charging hole 114a place of the base plate 114 of described plated film casing 110, uses for the plated film solvent to feed in described second cavity volume 115.Offering one first air admission hole 116a on the sidewall 116 of corresponding described first cavity volume 113 uses for oven dry gas and feeds in first cavity volume 113.Offering one second air admission hole 116b on the sidewall 116 of corresponding described second cavity volume 115 uses for pressurization gas and feeds in second cavity volume 115.
Described dividing plate 120 is arranged in the described plated film casing 110, thereby and the middle part that is fixed in described sidewall 116 inner space of described plated film casing 110 is partitioned into described first cavity volume 113 and second cavity volume 115.Described dividing plate 120 comprises a upper surface 121 and a lower surface 123, and described perforate 122 runs through upper and lower surperficial 121,123 of described dividing plate 120.The position of contiguous described perforate 122 offers at least one storage tank 124 on the lower surface 123 of described dividing plate 120.In the present embodiment the bilateral symmetry of described perforate 122 be provided with two storage tanks 124, the inwall of described storage tank 124 is provided with internal thread 124a.Be formed with a ring wall 126 on the lower surface 123 of described dividing plate 120 around described perforate 122.
Described at least one drive unit 130 is arranged in the storage tank 124 of described dividing plate 120.Comprise in the present embodiment that two drive units 130 are separately positioned in the storage tank 124 of described dividing plate 120.Described each drive unit 130 comprises 132, one rotating disks 134 of one first drive motors and one second drive motors 136.Described first drive motors 132 is arranged on the upper surface 121 of described dividing plate 120.Described rotating disk 134 is arranged in the storage tank 124 of described dividing plate 120 and with first drive motors 132 and is connected, and can rotate under the driving of described first drive motors 132.The arranged outside of described rotating disk 134 has the external screw thread 134a that matches with the internal thread 124a of described storage tank 124, when the described rotating disk 134 of described first drive motors 132 drives rotates, can make described rotating disk 134 by stretching out in the described storage tank 124 or taking in the described storage tank 124 by described internal and external screw thread 124a, the 134a that cooperatively interacts.Described rotating disk 134 is provided with an axle bed 134b towards a side of second cavity volume 115.Described second drive motors 136 is arranged on described rotating disk 134 and is provided with the side of described axle bed 134b in order to drive described plated film pedestal 140.The terminal rotating of the driving shaft 136a of described second drive motors 136 is supported on the described axle bed 134b.
Described at least one plated film pedestal 140 comprises a substrate 142, is convexly equipped with two contiguous blocks 144 at an end of described substrate 142.Described substrate 142 is connected on the driving shaft 136a of described second drive motors 136 by described contiguous block 144.Comprise in the present embodiment connecting a plated film pedestal 140 that the contiguous block 144 by separately is connected on the driving shaft 136a of described second drive motors 136 respectively.On the surface of each described substrate 142, offer a groove 142a respectively in order to ccontaining and set firmly workpiece to be coated.When described plated film pedestal 140 covered the perforate 122 of described dividing plate 120, described groove 142a and described perforate 122 aligned and an end of described ring wall 126 can be contained in the described groove 142a.
Described at least one air inlet pipe 150 is in order to feed the gas that needs in first cavity volume 113 of described plated film casing 110 or second cavity volume 115.Comprise two air inlet pipe 150 in the present embodiment, it is arranged on the sidewall 116 of described plated film casing 110 and is interconnected with the first air admission hole 116a and the second air admission hole 116b that are formed on the described sidewall 116 respectively.
See also Fig. 3 and Fig. 4, in the coating process, at first open second drive motors 136 of described drive unit 130, described plated film pedestal 140 is rotated to position with plated film solvent liquid level approximate vertical, then open first drive motors 132, drive 134 rotations of described rotating disk, described rotating disk 134 is by screwing out in the described storage tank 124, and drives described plated film pedestal 140 and immerse in the described plated film solvent and carry out plated film.After one period reaction time, open first drive motors 132, drive described rotating disk 134 counter-rotatings, described rotating disk 134 screws in the described storage tank 124, and with described plated film pedestal 140 proposition liquid levels, in this process, can in second cavity volume 115, feed Compressed Gas by the described air inlet pipe 150 and the second air admission hole 116b, thereby the volatilization of accelerated solvent replenishes thereby come that by the plated film solvent that volatilizees the product to be coated on the plated film pedestal 140 is carried out further rete when described plated film pedestal 140 leaves the plated film solvent.When described plated film pedestal 140 breaks away from the liquid level of coated solution fully, open second drive motors 136 and drive described plated film pedestal 140 rotations, and the groove 142a of substrate 142 of plated film pedestal 140 and the perforate 122 on the described dividing plate 120 are aligned.Then, feed oven dry gas, the plated film product on the oven dry plated film pedestal 140 by the first air admission hole 116a and air inlet pipe 150.The waste gas that produces in the drying course is then discharged by the venthole 112a of described plated film casing 110.
Compare prior art, the plated film casing 110 of infiltration type coating apparatus 100 of the present invention is divided into two independently cavity volumes by dividing plate, successively carries out plated film and oven dry in two cavity volumes, thereby can avoid the transhipment link of plated film product, effectively reduce cost, and improve the quality of product.
Be noted that above-mentioned embodiment only is better embodiment of the present invention, those skilled in the art also can do other variation in spirit of the present invention.The variation that these are done according to spirit of the present invention all should be included within the present invention's scope required for protection.
Claims (9)
1. infiltration type coating apparatus, it comprises a plated film casing, a dividing plate, at least one drive unit, at least one plated film pedestal and at least one air inlet pipe; Described dividing plate is arranged in the described plated film casing described plated film casing is divided into the first separate cavity volume and second cavity volume, described first cavity volume is in order to the oven dry film-coating workpiece, described second containing cavity is in order to ccontaining coated solution, described dividing plate is provided with a perforate that runs through described dividing plate, described at least one drive unit is arranged on the described dividing plate, described at least one plated film pedestal is connected on the described drive unit and is positioned at described second containing cavity, described at least one plated film pedestal carries out plated film in order to carry workpiece to be coated and can be under the driving of described drive unit described workpiece to be coated to be immersed in the coated solution in described second containing cavity, described at least one plated film pedestal also can cover described dividing plate under the driving of described drive unit perforate is with so that be exposed in first cavity volume by described perforate through the workpiece that soaks into behind the plated film, and described at least one air inlet pipe is arranged on the sidewall of corresponding described first cavity volume of described plated film casing to feed in first cavity volume and dries gas so that described film-coating workpiece is dried.
2. infiltration type coating apparatus as claimed in claim 1, it is characterized in that: this infiltration type coating apparatus also comprises an inlet valve, and described inlet valve is arranged on the sidewall of corresponding described second cavity volume of described plated film casing to feed described plated film solvent in second cavity volume.
3. infiltration type coating apparatus as claimed in claim 2, it is characterized in that: described plated film casing comprise a top board, base plate and one connect described top board and base plate and with described top board and the common sidewall that constitutes the room of a sealing of base plate, described top board is provided with a venthole that runs through described top board.
4. infiltration type coating apparatus as claimed in claim 3 is characterized in that: also be provided with a mozzle around described venthole on the described top board.
5. infiltration type coating apparatus as claimed in claim 4 is characterized in that: offer one first air admission hole on the sidewall of corresponding described first cavity volume; Offer one second air admission hole on the sidewall of corresponding described second cavity volume; Described infiltration type coating apparatus comprises two air inlet pipe, and described two air inlet pipe are arranged on the sidewall of described plated film casing and are interconnected with first air admission hole and second air admission hole that are formed on the described sidewall respectively.
6. infiltration type coating apparatus as claimed in claim 4, it is characterized in that: described dividing plate comprises a upper surface and a lower surface, described perforate run through described dividing plate on, lower surface, the position of contiguous described perforate offers at least one storage tank on the lower surface of described dividing plate, described each drive unit comprises one first drive motors, a rotating disk and one second drive motors, described first drive motors is arranged on the upper surface of described dividing plate, described rotating disk is arranged in the storage tank of described dividing plate and with first drive motors and is connected, and in the arranged outside of described rotating disk the external screw thread that matches with the internal thread of described storage tank is arranged; Described rotating disk is provided with an axle bed towards a side of second room; Described second drive motors comprises a driving shaft, and described second drive motors is arranged on institute's rotating disk, and the driving the tip of the axis of described drive motors is supported on the described axle bed rotationally.
7. infiltration type coating apparatus as claimed in claim 6 is characterized in that: described at least one plated film pedestal comprises a substrate, is convexly equipped with two contiguous blocks at an end of described substrate; Described substrate is connected on the driving shaft of described second drive motors by described two contiguous blocks.
8. infiltration type coating apparatus as claimed in claim 6 is characterized in that: offer a groove on the surface of the substrate of described plated film pedestal in order to ccontaining and set firmly workpiece to be coated; When described plated film pedestal covered the tapping of described dividing plate, described groove and described perforate aligned.
9. infiltration type coating apparatus as claimed in claim 8 is characterized in that: be formed with one on the lower surface of described dividing plate around described apertured annular wall mounted, when described plated film pedestal covered the tapping of described dividing plate, described ring wall was housed in the described groove.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN2010101514362A CN102233310A (en) | 2010-04-20 | 2010-04-20 | Immersion type coating device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN2010101514362A CN102233310A (en) | 2010-04-20 | 2010-04-20 | Immersion type coating device |
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CN102233310A true CN102233310A (en) | 2011-11-09 |
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CN2010101514362A Pending CN102233310A (en) | 2010-04-20 | 2010-04-20 | Immersion type coating device |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103752464A (en) * | 2014-01-23 | 2014-04-30 | 宁波高新区夏远科技有限公司 | Device for coating surface of cone condenser with anti-condensation solution |
Citations (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH04221061A (en) * | 1990-12-21 | 1992-08-11 | Ricoh Co Ltd | Thin film forming device |
US5299584A (en) * | 1991-04-23 | 1994-04-05 | Tokyo Electron Limited | Cleaning device |
US5514214A (en) * | 1993-09-20 | 1996-05-07 | Q2100, Inc. | Eyeglass lens and mold spin coater |
US5820673A (en) * | 1996-11-12 | 1998-10-13 | Sentilles; J. Bruce | Apparatus for applying coatings to lenses and curing the coatings |
CN1398206A (en) * | 1999-10-12 | 2003-02-19 | 加里·W·费雷尔 | Improvements in drying and cleaning objects using controlled aerosols and gases |
CN101686003A (en) * | 2008-09-25 | 2010-03-31 | 上海宝钢设备检修有限公司 | Electrical equipment dip coating electric heating and ultra-violet curing device |
-
2010
- 2010-04-20 CN CN2010101514362A patent/CN102233310A/en active Pending
Patent Citations (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH04221061A (en) * | 1990-12-21 | 1992-08-11 | Ricoh Co Ltd | Thin film forming device |
US5299584A (en) * | 1991-04-23 | 1994-04-05 | Tokyo Electron Limited | Cleaning device |
US5514214A (en) * | 1993-09-20 | 1996-05-07 | Q2100, Inc. | Eyeglass lens and mold spin coater |
US5820673A (en) * | 1996-11-12 | 1998-10-13 | Sentilles; J. Bruce | Apparatus for applying coatings to lenses and curing the coatings |
CN1398206A (en) * | 1999-10-12 | 2003-02-19 | 加里·W·费雷尔 | Improvements in drying and cleaning objects using controlled aerosols and gases |
CN101686003A (en) * | 2008-09-25 | 2010-03-31 | 上海宝钢设备检修有限公司 | Electrical equipment dip coating electric heating and ultra-violet curing device |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103752464A (en) * | 2014-01-23 | 2014-04-30 | 宁波高新区夏远科技有限公司 | Device for coating surface of cone condenser with anti-condensation solution |
CN103752464B (en) * | 2014-01-23 | 2016-08-17 | 宁波高新区夏远科技有限公司 | A kind of device of cone condensation device surface coating anti-condensation liquid |
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Application publication date: 20111109 |