Display panel
A display panel and area technology, applied in nonlinear optics, instruments, optics, etc., can solve problems such as poor product quality, liquid crystals cannot be filled with liquid crystal cells, etc., achieve easier cell thickness, avoid poor product quality, and reduce the volume of liquid crystals
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Embodiment 1
[0038] Such as figure 1 As shown, a display panel 100 is defined with a first area 101 and a second area 102 , the second area 102 is a central area, and the first area 101 surrounds the second area 102 . It includes: an array substrate 1 , a color filter substrate 2 , a liquid crystal 3 , a frame glue 4 and a support column 5 .
[0039] Wherein the color filter substrate 2 is arranged on the array substrate 1; the liquid crystal 3 is arranged between the array substrate 1 and the color filter substrate 2; the sealant 4 is arranged around the liquid crystal 3; The supporting pillars 5 are arranged at intervals between the array substrate 1 and the color filter substrate 2 .
[0040] In this embodiment, the upper surface of the support column 5 in contact with the color filter substrate 2 is defined as a support surface. Wherein the sum of the areas of the support surfaces of the support columns 5 per unit area in the first region 101 is greater than the sum of the areas of t...
Embodiment 2
[0046] Such as Figure 4 , Figure 5 As shown, the difference between this embodiment and Embodiment 1 is that the area of the supporting surface of the first supporting pillars 51 remains unchanged, and the arrangement density of the first supporting pillars 51 in the second region 102 is smaller than that of the first supporting pillars 51. The arrangement density of the first supporting pillars 51 in the first region 101 reduces the supporting force of the first supporting pillars 51 under the panel in the second region 102 .
[0047] Specifically, the distance between the first support columns 51 gradually increases from the first area 101 to the second area 102 . In this way, the display panel can be shrunk to a greater extent, thereby avoiding the generation of vacuum bubbles, ultimately avoiding the phenomenon of poor product quality, and improving the reliability of the product.
Embodiment 3
[0049] Such as Figure 6 , Figure 7 As shown, the difference between the present invention and Embodiment 1 is that the supporting surface area of the first support column 51 in the second region 102 in this embodiment is smaller than that of the first support column 51 in the first region 101 at the same time, the arrangement density of the first support pillars 51 in the second region 102 is smaller than the arrangement density of the first support pillars 51 in the first region 101 .
[0050] In other words, from the first area 101 to the second area 102, the supporting surface area of the first support columns 51 becomes smaller and smaller, and at the same time, the arrangement spacing between the first support columns 51 becomes larger and larger, so that Make the display panel shrink to a greater extent, thereby avoiding the generation of vacuum bubbles, ultimately avoiding the phenomenon of poor product quality, and improving product reliability.
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