The present disclosure relates to film producing devices, and particularly to a roll-to-roll press device with tension controller.
Many optical films are produced by roll-to-roll press devices. A roll-to-roll press device can include an unreeling shaft for providing a substrate film, and a reeling shaft for reeling the substrate film after the substrate film is pressed.
The components of the drawing are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the embodiments of the present disclosure.
The disclosure is illustrated by way of example and not by way of limitation in the figures of the accompanying drawings in which like references indicate similar elements. It should be noted that references to “an” or “one” embodiment in this disclosure are not necessarily to the same embodiment, and such references mean “at least one.” The references “a plurality of” and “a number of” mean “at least two.”
The unreeling shaft 11 is rotatable to unreel the substrate film 10. In the embodiment, the unreeling shaft 11 is controlled by a controller (not shown) to rotate at a constant speed.
The pressing unit 12 is configured to press the substrate film 20, and print microstructures on at least one surface of the substrate film 20. In this embodiment, the pressing unit 12 includes a first pressing roller 121 and a second pressing roller 122. The substrate film 20 is pressed between the first pressing roller 121 and the second pressing roller 122.
The guiding mechanism 13 is configured to guide the substrate film 20 from the pressing unit 12 to the winding shaft 14.
The winding shaft 14 is configured for winding the substrate film 20 thereon.
The thickness detecting unit 151 is configured for detecting a thickness value of a coil of the substrate film 20 wound around the winding shaft 14. In this embodiment, the thickness detecting unit 15 can be an ultrasonic sensor.
The processing unit 152 is configured for calculating a suitable tension value of the substrate film 20 according to the thickness value detected by the thickness detecting unit 151. In detail, the processing unit 152 is programmed to calculate the suitable tension value of the substrate film 20 according to a predetermined linear relationship between the thickness value of the coil and the suitable tension value of the substrate film 20. In this embodiment, the tension of the substrate film 20 is adjusted to gradually decrease as the thickness of the coil of the base film 20 gradually increases around the winding shaft 14.
The controlling unit 153 is configured for controlling the driving unit 154 to adjust a rotating speed of the reeling shaft 14 according to the calculated suitable tension value. Because the unreeling shaft 11 rotates at a constant speed, the tension of the substrate film 20 can be reduced by slowing the rotating speed of the reeling shaft 14. In this embodiment, the driving unit 154 can be a motor.
In the roll-to-roll process, the substrate film 20 is unreeled from the unreeling shaft 11, passed through the pressing unit 12 and the guiding mechanism 13, and wound around the winding shaft 14. The unreeling shaft 11 is rotated to unreel the substrate film 20, the pressing unit 12 presses the substrate film 20 to print microstructures on at least one surface of the substrate film 20, the guiding mechanism guides the pressed substrate film 20 to the winding shaft 14, and the winding shaft 14 is rotated to wind the pressed substrate film 20 thereon. The thickness detecting unit 151 detects a thickness of the pressed substrate film 20 wound around the winding shaft 14. The processing unit 152 calculates a suitable tension value of the substrate film 20 according to a thickness value detected by the thickness detecting unit 151. The controlling unit 153 controls the driving unit 154 to adjust a rotating speed of the reeling shaft 14, thereby adjusting a tension of the substrate film 20 to the suitable tension value calculated by the processing unit 152. Therefore, the tension of the substrate film 20 can be timely adjusted according to a change in thickness of a coil of the substrate film 20 wound around the winding shaft 14, to prevent slipping of the base film 20 off the reeling shaft 14.
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 exemplary embodiments of the disclosure.
Number | Date | Country | Kind |
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102118138 | May 2013 | TW | national |