1. Technical Field
The present disclosure relates to a dip coating apparatus.
2. Description of Related Art
In dip a coating process, workpieces, such as substrates, that need to be coated are immersed into solution of coating material for depositing the coating material on the surface of the workpieces, the workpieces are taken out of the solution and are dried. However, the immersion process and the drying process are respectively carried out in different devices, after the immersion process, the workpieces should be taken out of the immersion device and carried into a drying device via a special carrying tray. Therefore, the workpieces may get contaminated during relocation, such that the quality of the coated workpieces can not be ensured.
What is needed, therefore, is a dip coating apparatus to overcome the above-mentioned problems.
The components of the drawings are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the embodiments of the dip coating apparatus. Moreover, in the drawings, like reference numerals designate corresponding parts throughout the views.
Referring to
Referring to
The workpiece holder 20 is substantially column-shaped. The workpiece holder 20 includes a rotating member 21 and a heating member 22 passing through the rotating member 21. The rotating member 21 includes two fixing portions 211 integrally connected with the rotating member 21 and arranged on opposite sides of the rotating member 21. Each fixing portion 211 defines a plurality of fixing troughs 211a for fixing workpieces therein. The shape of the troughs 211a can be changed according to different shapes of workpieces. The heating member 22 is configured for heating workpieces and the solution of coating material in predetermined range of temperature. The heating member 22 includes a heating core 221 and a plurality of heating rods 222 passing through the heating core 221. The heating core 221 is made of thermal conductive material, such as aluminum, or copper, to conduct heat to workpieces. In this embodiment, the heating rods 222 are electrothermal.
The housing 10 further includes a number of blow tubes 31. Each blow tube 31 is connected to the immersing portion 11 and communicates with the immersion chamber 111. Alternatively, the blow tubes 11 can also connect to the drying portion 12 and communicate with the drying chamber 121. The blow tubes 31 are configured to connect to a blower (not shown) and allow air blown by the blower to enter into the housing 10.
In use, first, the workpiece holder 20 rises up to the drying chamber, then the workpiece holder 20 rotates to let one of the fixing portions 211 face the opening 122, then, a number of workpieces (not shown) are correspondingly fixed into the fixing troughs 211a which now faces the opening 122. After the workpieces are fixed, the workpiece holder can rotate again to let the other fixing portions 211 face the opening 122, and then a number of workpieces can be fixed to the fixing troughs 211a which now face the opening 122. After each of the fixing troughs 211a receives a corresponding workpiece or all the workpieces are fixed to the fixing troughs 211a, the hatch 123 is closed.
Secondly, solution (not shown) of coating material is infused into the immersion chamber 111, then the workpiece holder 20 is descended into the immersion chamber 111, the workpieces are immersed into the solution, and then immersion process is stared. During the immersion process, the workpiece holder 20 slowly rotates and/or moves up and down for getting a desired deposit effect, and the heating rods 222 can be turned on to heat the solution to a desired temperature. After the immersion process, the workpiece holder rises up to the drying chamber 121, and then drying process starts. During the drying processing, the workpiece holder 20 is rotated at a predetermined speed to enhance the evaporation speed of the liquid on the surface of the workpieces. At the same time, air can be blown through the blow tubes 31 into the drying chamber 121 to enhance the evaporation speed of liquid on the surface of the workpieces. In addition, the temperature of the heat rods 222 can be controlled to a predetermined range, so that a desired change can be made in the crystal phase of the coating material deposited on the surface of the workpieces.
Both the immersion processes and the drying processes are completed in the one dip coating device 100. Therefore, there is no need to carry workpiece from one device to another between the immersion process and the drying process. As a result, the cost of the dip coating process of the workpieces is reduced, and the contamination of workpieces can be avoided, ensuring the quality of the coated workpieces.
It is believed that the present embodiments and their advantages will be understood from the foregoing description, and it will be apparent that various changes may be made thereto without departing from the spirit and scope of the disclosure or sacrificing all of its material advantages, the examples hereinbefore described merely being preferred or exemplary embodiments of the disclosure.
Number | Date | Country | Kind |
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200910308565.5 | Oct 2009 | CN | national |