Display module
11538365 ยท 2022-12-27
Assignee
Inventors
Cpc classification
G09F11/325
PHYSICS
International classification
Abstract
The present disclosure relate to a display module, comprising: a flexible panel, wherein bumps are formed along two opposing sides of the flexible panel respectively, and a size of the bumps in a thickness direction of the flexible panel is larger than a thickness of the flexible panel; two curled slide rails arranged opposite to and in parallel with each other, wherein each slide rail has a groove for receiving the bump that extends along a curling direction of the slide rail, and for each groove, a groove entry for entering the groove is formed at one end of a respective slide rail; the slide rails and a space therebetween form a receiving rail for receiving the flexible panel; each of the bumps is able to enter a respective groove of the slide rail through the groove entry of the groove and move along the groove where the bump resides.
Claims
1. A display module, comprising: a flexible panel, wherein bumps are formed along two opposing sides of the flexible panel respectively, and a size of the bumps in a thickness direction of the flexible panel is larger than a thickness of the flexible panel; two curled slide rails arranged opposite to and in parallel with each other, wherein each of the two curled slide rails has a groove that extends along a curling direction of the slide rail for receiving a respective bump of the bumps, and for each groove, a groove entry for entering the groove is formed at one end of a respective slide rail of the two curled slide rails, wherein the two curled slide rails and a space therebetween form a receiving rail for receiving the flexible panel; wherein each of the bumps is able to enter a respective groove of a respective slide rail of the two curled slide rails through the groove entry of the groove and move along the groove where the bump resides, so as to drive the flexible panel to be curled and received within the receiving rail and drive the flexible panel to be pulled out from the receiving rail, and wherein each of the two curled slide rails is at least partially stacked and is stacked in layers at stacking positions, and there is a spacing between adjacent layers.
2. The display module according to claim 1, wherein each of the two curled slide rails is a helical slide rail.
3. The display module according to claim 1, wherein grooves of the two curled slide rails are arranged on facing sides of the two curled slide rails, and groove entries of the grooves of the two curled slide rails are arranged to face each other.
4. The display module according to claim 1, wherein each groove has a groove wall and a groove bottom, wherein the groove wall of the groove prevents a respective bump located within the groove from deviating from the groove entry of the groove, and in a depth direction from the groove entry to the groove bottom, widths defined by the groove wall in planes in parallel with the groove entry of the groove gradually increase or gradually increase and then decrease.
5. The display module according to claim 4, wherein each of the bumps has a bar shape and has a trapezoidal cross section, wherein a shorter upper base of the trapezoidal cross section is fixed to the flexible panel, and a shape of the groove matches the bump.
6. The display module according to claim 4, wherein each of the bump has a bar shape and has an arcuate cross section, wherein a chord of the trapezoidal cross section is fixed to the flexible panel, and a shape of the groove matches the bump.
7. The display module according to claim 4, wherein each of the bumps is a chain-shaped bump formed by sequentially fixing a plurality of balls, and an inner wall of the groove forms a hollow cylinder, of which a cross section has an arcuate shape.
8. The display module according to claim 1, further comprising: a reel, wherein one of sides of the flexible panel, which is connected to a respective bump of the bumps, is fixed to the reel through a flexible connection; and wherein the reel rotates the flexible connection to be curled on a surface of the reel, and drives the bump to move along the groove so as to make the flexible panel curled and received within the receiving rail, and drives the flexible panel to be pulled out from the receiving rail.
9. The display module according to claim 1, further comprising: a hollow axis cylinder, wherein the receiving rail is located within the hollow axis cylinder; wherein the hollow axis cylinder has two bump entries for allowing the bumps to enter the grooves of the two curled slide rails; and wherein there is a flexible panel entry between the two bump entries for allowing the flexible panel to enter the hollow axis cylinder.
10. The display module according to claim 1, wherein the bumps are made of an elastic material.
11. The display module according to claim 1, wherein a material of the bumps has a friction coefficient of less than 0.5.
12. The display module according to claim 11, wherein a material of the inner wall of the grooves has a friction coefficient of less than 0.5.
13. The display module according to claim 1, wherein a material of the inner wall of the grooves has a friction coefficient of less than 0.5.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(13) The technical solutions in the embodiments of the present disclosure are clearly and completely described in the following with reference to the accompanying drawings in the embodiments of the present disclosure. It is obvious that the described embodiments are only a part of the embodiments of the present disclosure, and not all of the embodiments. All other embodiments obtained by a person of ordinary skill in the art without inventive effort based on the embodiments of the present disclosure fall into the scope of the disclosure.
(14) As shown in
(15) The display module according to the embodiment of the present disclosure comprises a flexible panel and two curled slide rails, wherein bumps are formed along two opposing sides of the flexible panel respectively, and a size of the bumps in a thickness direction of the flexible panel is larger than a thickness of the flexible panel. In
(16) Regarding a specific pattern of the slide rail, each of the curled slide rails may be at least partially stacked and be stacked in layers at stacking positions, and there is a spacing a between adjacent layers. As shown in
(17) In some embodiments, as shown in
(18) Regarding positions of the grooves of the slide rails, the grooves 210 may be arranged on opposite sides of the two slide rails 200 as shown in
(19) To enable the groove to still receive the bump in case where the groove entry of the groove is facing down, and a groove wall of the groove prevents the bump located within the groove from deviating from the groove entry of the groove, and in a depth direction from the groove entry to the groove bottom, widths defined by the groove wall in planes in parallel with the groove entry of the groove gradually increase or gradually increase and then decrease. The groove and groove wall having such a structure such as to guarantee that the groove is able to still receive the bump when the groove entry is facing down, so as to guarantee the bump to be received within the groove.
(20) In some embodiments, the bumps may have various shapes, and corresponding grooves have matching shapes. As shown in
(21) In some embodiments, the bump has a bar shape, and has an arcuate cross section (not shown), of which a chord is fixed to the flexible panel. A shape of the groove matches the bump.
(22) In some embodiments, as shown in
(23) The shapes of the aforementioned bumps and grooves enable the bumps to be still received in case where the groove entries of the grooves are facing down, so as to guarantee that the bumps are received by the grooves.
(24) To cause the flexible panel to be received in or to be pulled out from the receiving rail, as shown in
(25) The reel is fixed to the flexible panel. The presence of the reel causes the user to operate the reel to move along a curling direction of the slide rail, so as to drive the bump to move along the groove, which facilitates the operation of causing the flexible panel to be curled and received within the receiving rail and be pulled out from the receiving rail.
(26) To better guard the flexible panel, as shown in
(27) The axis cylinder has bump entries and a flexible panel entry for allowing the flexible panel to enter and exit the axis cylinder. The presence of the axis cylinder can serve a guard function for the flexible panel curled and received within the receiving rail.
(28) To achieve a curling of the flexible panel, the bumps located on two opposing sides also need to be curled. Therefore, the bumps are bumps made of an elastic material.
(29) In this way, the bump may deform when the bump moves along the groove where it resides, and be curled along the groove where it resides.
(30) To reduce a resistance of movement of the bump within the groove, a material of the bump has a friction coefficient of less than 0.5, and/or a material of the inner wall of the groove has a friction coefficient of less than 0.5.
(31) In this way, the bump has a relatively small resistance when moving within the groove, the process of causing the flexible panel to be curled and received within the receiving rail and be pulled out from the receiving rail will become relatively smooth.
(32) It is apparent that those skilled in the art can make various modifications and variations to the embodiments of the present disclosure without departing from the spirit and scope of the disclosure. Thus, it is intended that the present invention cover the modifications and the modifications, if these modifications and variations to the present disclosure fall into the scope of the claims of the present disclosure and equivalent technologies thereof.