Film layer structure, preparation method thereof, shell mechanism and electronic equipment
A technology of membrane structure and membrane material, which is applied in the direction of electrical equipment shell/cabinet/drawer, decorative structure, electrical components, etc., can solve the problem of single shell style and so on
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[0148] Please also see again Figure 1-9 , In addition, the method for preparing the film layer structure 100 of the above-mentioned embodiment can prepare the film layer structure 100 with various styles. Specifically, the method for preparing the film layer structure 100 includes the following steps S110-S120:
[0149] S110 , forming a non-black layer 122 on the substrate 110 .
[0150] It should be noted that, for the structures of the base material 110 and the non-black layer 122 , please refer to the above description, which will not be repeated here.
[0151] In one embodiment, the step of forming the non-black layer 122 on the base material 110 includes: forming the non-black layer 122 on the base material 110 using a ribbon thermal transfer process. Further, in the process of forming the non-black layer 122 on the base material 110 by using the ribbon thermal transfer process, the non-black layer 122 with the corresponding color effect is transferred on the base mate...
Embodiment 1
[0215] The structure of the housing mechanism of this embodiment is as Figure 1-9 As shown, its preparation process is as follows:
[0216] (1) The base material is TP23E0 explosion-proof film (purchased from SKC Company). The base material includes an explosion-proof layer and an adhesive layer stacked in sequence. The explosion-proof layer is made of PET. The thickness of the explosion-proof layer is 21 μm. The thickness of the adhesive layer was 15 μm. The ribbon transfer process forms seven non-black layers stacked one after another on the explosion-proof layer, and the ribbon transfer process forms two successively stacked black layers on the non-black layer farthest from the base material to form a ribbon unit. In each black layer, the color band density in the color area is 100%. The density of the color band in the color band area is 100%. The width of the gradient area connected to the color area is 3 mm; the distance between the gradient area and the edge of t...
Embodiment 2
[0223] The structure of the housing mechanism of this embodiment is substantially the same as that of Embodiment 1, except that the dimensions of the housing mechanism are different. The preparation process of the shell mechanism of this embodiment is as follows:
[0224] (1) The base material is TP23E0 explosion-proof film (purchased from SKC Company). The base material includes an explosion-proof layer and an adhesive layer stacked in sequence. The explosion-proof layer is made of PET. The thickness of the explosion-proof layer is 25 μm. The thickness of the adhesive layer was 25 μm. The ribbon transfer process forms seven non-black layers stacked one after another on the explosion-proof layer, and the ribbon transfer process forms two successively stacked black layers on the non-black layer farthest from the base material to form a ribbon unit. In each black layer, the color band density in the color area is 100%. The density of the color band in the color band area is...
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