Product capable of realizing 360-degree watching of naked-eye 3D images and production method of product
A product, 3D technology, applied in the field of naked-eye 3D stereoscopic imaging, can solve problems such as lack of mass production and promotion capabilities, complex production process, and inconspicuous far-sighted effects, etc., to achieve mass production, simple post-production, and manufacturing The effect of simple process
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Embodiment 1
[0050] Such as figure 1 , figure 2 , image 3 As shown, the product capable of viewing naked-eye 3D images at 360 degrees includes a grating sheet 1, and the grating sheet 1 includes an upper microlens array layer 2 on its front side and a lower microlens array layer 3 on its back side, The upper and lower microlens array layers are the two surfaces of the grating sheet, which are produced by extrusion and molded together with the grating sheet. Its specific manufacturing process is as follows:
[0051]First, prepare two roll blanks that are identical and have the same perimeter, and are used to make two surface microstructure array layers of the product respectively. The roller blank is processed by cutting tool engraving, embossing, etching and other processes to produce the microlens array layer roller mold, that is, roller A and roller B. The shape of the micro-lens is semi-spherical. Roller A is used to process the upper microlens array layer of grating products. Th...
Embodiment 2
[0055] Such as Figure 4 , Figure 5 , Image 6 As shown, the product capable of viewing naked-eye 3D images at 360 degrees includes a grating sheet 1, and the grating sheet 1 includes an upper microlens array layer 2 on its front side and a lower microlens array layer 3 on its back side, The upper and lower microlens array layers are the two surfaces of the grating sheet, which are produced by extrusion and molded together with the grating sheet. Its specific manufacturing process is as follows:
[0056] First, prepare two roll blanks that are identical and have the same perimeter, and are used to make two surface microstructure array layers of the product respectively. , the roller blank is produced through processes such as tool engraving, embossing, and etching to produce a microlens array layer roller mold, that is, roller A and roller B. The shape of the micro-lens is semi-spherical. Roller A is used to process the upper microlens array layer of grating products, th...
Embodiment 3
[0060] Such as Figure 7 , Figure 8 , Figure 9 As shown, the product capable of viewing naked-eye 3D images at 360 degrees includes a grating sheet 1, and the grating sheet 1 includes an upper microlens array layer 2 on its front side and a lower microlens array layer 3 on its back side, The upper and lower microlens array layers are the two surfaces of the grating sheet, which are produced by extrusion and molded together with the grating sheet. Its specific manufacturing process is as follows:
[0061] First, prepare two roll blanks that are identical and have the same perimeter, and are used to make two surface microstructure array layers of the product respectively. , the roller blank is produced through processes such as tool engraving, embossing, and etching to produce a microlens array layer roller mold, that is, roller A and roller B. The shape of the microlens is a hexagonal sphere. Roller A is used to process the upper microlens array layer of grating products...
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