IP Library Granted Patent US 10,741,633
Granted Patent B2
US 10,741,633 · App. 16/464,268 · Granted Aug 11, 2020

Display panel and method for manufacturing same

Inventors: Kan Wang (Hubei, CN); Cunjun Xia (Hubei, CN)
Assignee: Wuhan China Star Optoelectronics Semiconductor Display Technology Co., Ltd.
H01L27/3276H01L27/323H01L51/0097H01L2251/5338H01L2251/5392
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Quick Facts
Patent No.
US 10,741,633
App. No.
16/464,268
Granted
Aug 11, 2020
Kind
B2
Abstract

A display panel and a manufacturing method thereof are provided. The display panel has a display area, a non-display area, and a bendable connection area being located between the display area and the non-display area and connecting the display area with the non-display area. The display panel includes a substrate; an inorganic insulating layer disposed on the substrate, wherein in the bendable connection area, a plurality of recesses are defined in the inorganic insulating layer; an organic filling layer filled in the plurality of recesses in the inorganic insulating layer and having a concave curved surface; and a wiring layer disposed on the inorganic insulating layer, wherein a concave curved surface formed on the wiring layer corresponds to the concave curved surface of the organic filling layer in each of the recesses.

Claims (36)

1. A display panel, having a display area, a non-display area, and a bendable connection area located between the display area and the non-display area and connecting the display area with the non-display area, the display panel comprising:

a substrate;

an inorganic insulating layer disposed on the substrate, wherein in the bendable connection area, a plurality of recesses are defined in the inorganic insulating layer and form a pattern;

an organic filling layer filled in the plurality of recesses in the inorganic insulating layer, wherein a concave curved surface is formed on the organic filling layer in each of the recesses; and

a wiring layer disposed on the inorganic insulating layer and covering the inorganic insulating layer and the organic filling layer in the plurality of recesses, wherein a corresponding concave curved surface is formed on the wiring layer on the organic filling layer in each of the recesses along with the concave curved surface of the organic filling layer.

2. The display panel as claimed in claim 1 , wherein a flat surface is formed on the wiring layer on a portion of the inorganic insulating layer where the recesses are absent.

3. The display panel as claimed in claim 1 , further comprising:

an organic protective layer disposed on the wiring layer in the bendable connection area to cover the wiring layer.

4. The display panel as claimed in claim 1 , wherein at the pattern, a surface of the inorganic insulating layer is hydrophilic or hydrophobic.

5. The display panel as claimed in claim 1 , wherein a cross-sectional pattern of each of the plurality of recesses is a rectangle, a trapezoid, an inverted trapezoid or a parallelogram.

6. The display panel as claimed in claim 1 , wherein each of the plurality of recesses is a hole, a polygon recess or a groove.

7. The display panel as claimed in claim 1 , wherein material of the organic filling layer is selected from the group consisting of an epoxy resin polymer and an acrylic polymer.

8. A method for manufacturing a display panel, the display panel having a display area, a non-display area, and a bendable connection area located between the display area and the non-display area and connecting the display area with the non-display area, the method comprising:

a step S 10 of providing a substrate;

a step S 20 of disposing an inorganic insulating layer on the substrate;

a step S 30 of forming a plurality of recesses in the inorganic insulating layer in the bendable connection area, wherein the plurality of recesses form a pattern;

a step S 40 of filling the plurality of recesses in the inorganic insulating layer with an organic filling layer, wherein a concave curved surface is formed on the organic filling layer in each of the recesses;

a step S 50 of disposing a wiring layer on the inorganic insulating layer to cover the inorganic insulating layer and the organic filling layer in the plurality of recesses, wherein a concave curved surface is formed on the wiring layer on the organic filling layer in each of the recesses along with the concave curved surface of the organic filling layer.

9. The method for manufacturing the display panel as claimed in claim 8 , wherein a flat surface is formed on the wiring layer on a portion of the inorganic insulating layer where the recesses are absent.

10. The method for manufacturing the display panel as claimed in claim 8 , further comprising:

a step S 60 of disposing an organic protective layer on the wiring layer in the bendable connection area to cover the wiring layer.

11. The method for manufacturing the display panel as claimed in claim 8 , after the step S 30 , before the step (S 40 ), further comprising:

a step S 34 of performing a plasma treatment or an ultraviolet light irradiation treatment on a surface of the inorganic insulating layer at the pattern, such that at the pattern, the surface of the inorganic insulating layer is hydrophilic or hydrophobic.

12. The method for manufacturing the display panel as claimed in claim 8 , wherein the step S 40 comprises:

a step of filling the plurality of recesses in the inorganic insulating layer with the organic filling layer by inkjet printing, wherein the concave curved surface is formed on the organic filling layer in each of the recesses.

13. A display panel having a display area, a non-display area, and a bendable connection area located between the display area and the non-display area and connecting the display area with the non-display area, the display panel comprising:

a substrate;

an inorganic insulating layer disposed on the substrate, wherein in the bendable connection area, a plurality of recesses are defined in the inorganic insulating layer and form a pattern;

an organic filling layer filled in the plurality of recesses in the inorganic insulating layer, wherein a concave curved surface is formed on the organic filling layer in each of the recesses; and

a wiring layer disposed on the inorganic insulating layer and covering the inorganic insulating layer and the organic filling layer in the plurality of recesses, wherein a corresponding concave curved surface is formed on the wiring layer on the organic filling layer in each of the recesses along with the concave curved surface of the organic filling layer, and a flat surface is formed on the wiring layer on a portion of the inorganic insulating layer where the recesses are absent.

14. The display panel as claimed claim 13 , further comprising:

an organic protective layer disposed on the wiring layer in the bendable connection area to cover the wiring layer.

15. The display panel as claimed in claim 13 , wherein at the pattern, a surface of the inorganic insulating layer is hydrophilic or hydrophobic.

16. The display panel as claimed in claim 13 , wherein a cross-sectional pattern of each of the plurality of recesses is a rectangle, a trapezoid, an inverted trapezoid or a parallelogram.

17. The display panel as claimed in claim 13 , wherein each of the plurality of recesses is a hole, a polygon recess or a groove.

18. The display panel as claimed in claim 13 , wherein material of the organic filling layer is selected from the group consisting of an epoxy resin polymer and an acrylic polymer.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 26, 2019
From: WANG, KAN; XIA, CUNJUN
To: WUHAN CHINA STAR OPTOELECTRONICS SEMICONDUCTOR DISPLAY TECHNOLOGY CO., LTD.
Reel/Frame 049283/0014 →
Priority Claims (1)
CN 2018 1 1510418 · Dec 11, 2018 · national
Continuity (1)
Related Publication 20200203459A1 · Jun 25, 2020