The present invention relates to a printing method and a device thereof, especially to a especially to a screen printing method and a printing device thereof that precisely controls relative distance between a screen and a printed substrate on a surface of a printing table so as to make a squeegee apply a constant pressure forcing ink through the screen to form an image on the printed substrate uniformly and stably.
The screen printing has been broadly applied to various high-tech products such as liquid crystal glass, touch panel, and silicon wafer etc. Refer to
Therefore it is a primary object of the present invention to provide a non-contact screen printing method that precisely controls relative distance between a screen and a printed substrate on a surface of a printing table so as to make a squeegee apply a constant pressure forcing ink through the screen to form an image on the printed substrate while the screen doesn't contact with the printed substrate. Thereby, the thickness of the ink is precisely controlled. Especially to the printed substrate made from fragile and light material such as silicon wafer, this is important. By such method, not only the fragile printed substrate is protected from cracking due to printing pressure, but the printing evenness and stability are also improved. Therefore, precise printing effect is achieved.
It is another object of the present invention to provide a printing device of a non-contact screen printing method that includes a printing table with a table surface for setting a printed substrate, a screen arranged between the printing table and a squeegee for ink to pass through and printed on the printed substrate, and a printing head with at least one driving member that moves upward and downward so as to drive at least one squeegee moving and pressing against the screen with a constant pressure. The squeegee moves under the condition that the screen does not contact with the printed substrate.
It is a further object of the present invention to provide a screen printing method and a printing device thereof that includes a measuring device for detecting positions and distance of the screen relative to the printing table and sending the data into a computer for presetting. Thus during printing processes, the screens is moved to preset position precisely and quickly under control of a computer while the screen doesn't contact with the printed substrate.
Refer to
Refer from
The printing head 20 includes at least one driving member 21 that moves upward and downward so as to drive at least one squeegee 30 moving upward and downward. The squeegee 30 applies a constant pressure to and presses against the screen 40 for printing processes. The driving member 21 consists of at least one linear actuator 201 and/or at least one slide pneumatic cylinder 202 that connects with at least one printing scraper 31. The printing scraper 31 moves synchronously with the driving member 21. The driving member 21 further includes a motor so as to drive the linear actuator 201 or the slide pneumatic cylinder 202 moving upward and downward. According to users' requirements, the motor can be a servo motor or a stepper motor. Furthermore, the slide pneumatic cylinder 202 of the driving member 21 further includes an analog constant pressure valve for control of slide pneumatic cylinder 202 so as to make the pressure keep constant.
Refer to the embodiment in
Furthermore, the operation way of the above driving member 21 can be changed. For example, the constant pressure valve
not used and the slide pneumatic cylinder 202 connects with the squeegee 30 in a full travel way. That means the squeegee 30 doesn't move along with the slide pneumatic cylinder 202. By the digital control way of the servo motor, the upward/downward movement of the linear actuators 201 is precisely operated so as to drive the squeegee 30 pressing against the screen 40 for printing. This means the movement of the squeegee 30 is precisely controlled by the linear actuators 201 and during printing processes, the screen 40 does not contact with the printed substrate 70.
Generally, the screen 40 is formed by a frame and a mesh 401 in the middle area thereof. The ink passes through the mesh 401 to be printed on the object 70. The screen 40 is fixed on a screen fixing seat 41 and is located between the printing table 10 and the squeegee 30. The screen fixing seat 41 includes a rectangular opening in the middle side and two C-shaped frames with openings facing to each other to form an accommodation space 411 for setting the screen 40. Moreover, at least one cylinder 42 whose axis is connected with a pin 43 thereunder is disposed on the C-shaped frame. By movement of the cylinder 42, the pin 43 is driven to insert through an opening 412 of the screen fixing seat 41 and inserts into a pin hole 402 on the frame of the screen 40 so that the screen 40 is fixed firmly in the accommodation space 411 of the screen fixing seat 41. On the other way, when the cylinder 42 moves to the opposite direction, the screen 40 can be released from the screen fixing seat 41. Thus the screen 40 is released from the screen fixing seat 41 quickly and precisely.
In addition, the device of the present invention further includes a measuring device 50 disposed on an outer side of the printing table 10, at the same height of the table surface of the printing table 10. The measuring device 50 is arranged with a sensor head 51 that connects with a computer of the screen printing equipment and detects feedback data. Refer to
Refer to
A feasible way that sets distance between a screen 40 and a printing table surface includes the following procedures: calculate optimum distance between the screen 40 and the printing table surface according to thickness of an object to be printed, thickness of ink, and related parameters such as screen strength or deformation. The data can be learned from manufactures of printed substrate or original design of the object to be printed. Then by test printing, the optimum distance that matches requirement of yield rate is further checked. Next detect the distance and the position of the screen relative to the printing table surface by a measuring device such as the above-mentioned measuring device 50 that detects feedback data and the measured data is input into a computer for settings. Thus the screen moves quickly and precisely to the set position for printing under control of the computer.
Refer to
Refer to
The movement of the squeegee 30 and that of the scraper 31 are further described in details. Refer To
Refer to
A non-contact screen printing method of the present invention includes the following steps:
provide a printing table 10 having a printing table surface disposed with a printed substrate 70;
provide a screen 40 arranged between a squeegee 30 and the printing table surface so that ink on the screen 40 passes through the screen 40 to be printed on the printed substrate 70 over the printing table surface;
set a certain distance between the screen 40 and the printed substrate 70 over the printing table surface;
provide a printing head 20 having at least one driving member 21 and at least one squeegee 30; the driving member 21 drives the squeegee 30 to move downward and press against the screen 40 with a preset constant pressure;
by driving of the printing head 20, the squeegee 30 presses against the screen 40 with a preset constant pressure so as to enable ink passing through the screen 40 and printed on the printed substrate 70;
wherein the distance between the screen 40 and the printed substrate 70 over the printing table surface is calculated according to thickness of the printed substrate 70 and thickness of the ink.
Additional advantages and modifications will readily occur to those skilled in the art. Therefore, the invention in its broader aspects is not limited to the specific details, and representative devices shown and described herein. Accordingly, various modifications may be made without departing from the spirit or scope of the general inventive concept as defined by the appended claims and their equivalents.
Number | Date | Country | Kind |
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097124975 | Jul 2008 | TW | national |