A non-residue trace-removing device based on data analysis and its working method
A data analysis and working method technology, applied in the field of data processing, can solve problems such as easy to scratch equipment, difficult to remove film, and difficult to separate equipment and film
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Embodiment 1
[0046] like Figure 1-7 As shown, this embodiment provides a non-residual scratched derivative based on data analysis, including a lace mechanism, and a control mechanism for eliminating a film having a surface of the device, the control mechanism including a processor 1 and a driving device 2, The processor 1 is connected to the drive device 2, the drive device 2 for driving the scranging mechanism to function properly;
[0047] The scratch mechanism includes a chassis 3, a first imaging device 4, and an operation chamber 5, and the first imaging device 4 is connected to the processor 1 for acquiring the state of the film to be subjected to the film to be transmitted. The processor 1 is disposed inside the chassis 3, the operation chamber 5 including a second imaging device 6, an operating station 7, a heating device 8, a first unveiled arm 9 and a second unveiled The film arm 10 is disposed at the top of the operation chamber 5, and is connected to the processor 1 for obtaining t...
Embodiment 2
[0058] like Figure 8 As shown, this embodiment provides a working method of a non-residual scratching device based on data analysis, including the following work steps:
[0059] a) The first imaging device 4 acquires the state of the film to be deposited and transmitted to the processor 1;
[0060] b) The processor 1 calculates the appearance size of the film to be subjected to the film according to the first imaging image, and performs three-dimensional modeling;
[0061] c) The processor 1 is simulated by the three-dimensional model, and a reverse film is set;
[0062] d) The second imaging device 6 acquires the state of the film to be subjected to the film device and transmits the second imaging image to the processor 1;
[0063] e) The processor 1 locks the edge of the film and outputs a heating signal to the drive device 2, the drive device 2 drives the heating device 8 heating the film edge;
[0064] f) The processor 1 determines whether or not to use the first unnecessary a...
Embodiment 3
[0075] like Figure 11 As shown, after the reverse film is completed, the processor 1 determines whether or not the surface of the film is present in accordance with the second imaging image.
[0076] Accordingly, the processor 1 locks the viscosity position and outputs a friction signal to the drive device 2, the drive device 2 drives the friction device for the position until the adhesive stain disappears.
[0077] The processor 1 outputs a wind dry signal to the drive device 2, the drive device 2 drives the air dry device 18 to act on the position.
[0078] Specifically, the back surface of the film has a strong glue. After the reverse film, some glue remains in the surface of the shelf, forming a bulk tunnel, very difficult to clean, and easily contaminated other dirt, the present invention provides a friction device Used to clean up the spherical stain, after the film is opened, the processor 1 locks the position position, moves the friction device to the position, open the re...
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