DOUBLE-SIDED DISPLAY APPARATUS
20230135495 · 2023-05-04
Inventors
Cpc classification
G06F1/1624
PHYSICS
G06F1/1656
PHYSICS
G09F9/301
PHYSICS
G06F1/1658
PHYSICS
G06F1/1652
PHYSICS
International classification
Abstract
A double-sided display device belongs to the technical field of display, and includes a housing including a first housing and a second housing slidingly connected with the first housing; a first flexible screen having a first display surface facing one side, one end of the first flexible screen being connected in the first housing and the other end being wound in the second housing; a second flexible screen arranged opposite to the first flexible screen and having a second display surface facing the other side, one end of the second flexible screen being fixed in the second housing, and the other end being wound in the first housing; and a flexible screen drive part, the flexible screen drive part being configured for driving winding parts of the first flexible screen and the second flexible screen to wind when the second housing slides relative to the first housing.
Claims
1. A double-sided display device, comprising: a housing, comprising a first housing and a second housing slidingly connected with the first housing; a first flexible screen having a first display surface facing one side, one end of the first flexible screen being connected in the first housing and the other end being wound in the second housing; a second flexible screen arranged opposite to the first flexible screen and having a second display surface facing the other side, one end of the second flexible screen being fixed in the second housing, and the other end being wound in the first housing; and a flexible screen drive part, the flexible screen drive part being configured for driving winding parts of the first flexible screen and the second flexible screen to wind when the second housing slides relative to the first housing, so as to change a display area.
2. The double-sided display device according to claim 1, further comprising a housing drive part, configured for driving the second housing to slide relative to the first housing.
3. The double-sided display device according to claim 2, wherein the housing drive part comprises a housing drive motor and a rack assembly driven to slide by the housing drive motor.
4. The double-sided display device according to claim 3, wherein the rack assembly comprises a fixed seat, a first rack, a second rack and a gear meshed with the first rack and the second rack simultaneously, the fixed seat is fixed to the first housing, the first rack and the second rack are both slidably arranged on the fixed seat, and the second rack is connected with the second housing, and the housing drive motor is connected with the first rack and configured for driving the first rack to slide.
5. The double-sided display device according to claim 2, wherein the flexible screen drive part comprises a first roll shaft and a flexible screen drive motor configured for driving the first roll shaft to rotate, and the other end of the flexible screen is wound on the first roll shaft.
6. The double-sided display device according to claim 5, wherein the flexible screen drive part further comprises a second roll shaft, the other end of the second flexible screen is wound on the second roll shaft, and the flexible screen drive motor is further configured for driving the second roll shaft to rotate.
7. The double-sided display device according to claim 5, wherein the flexible screen drive part further comprises a roller, the roller is located between the first flexible screen and the second flexible screen, and teeth are evenly distributed on an outer side of the roller in a circumferential direction; an inner side of the first flexible screen is provided with a plurality of first tooth sockets, the teeth are meshed with the first tooth sockets, and the flexible screen drive motor is further configured for driving the roller to rotate.
8. The double-sided display device according to claim 7, wherein an inner side of the second flexible screen is provided with a plurality of second tooth sockets, and the teeth are meshed with the second tooth sockets.
9. The double-sided display device according to claim 8, further comprising an elastic structure and two fixing structures, wherein the elastic structure and the two fixing structures are all located between the first flexible screen and the second flexible screen, two ends and a middle of the elastic structure are spiral, and one end of the elastic structure is arranged on the first flexible screen through one of the fixing structures, and the other end of the elastic structure is arranged on the second flexible screen through the other of the fixing structures.
10. The double-sided display device according to claim 1, wherein one end of the first flexible screen is wound in the first housing.
11. The double-sided display device according to claim 3, wherein the flexible screen drive part comprises a first roll shaft and a flexible screen drive motor configured for driving the first roll shaft to rotate, and the other end of the flexible screen is wound on the first roll shaft.
12. The double-sided display device according to claim 4, wherein the flexible screen drive part comprises a first roll shaft and a flexible screen drive motor configured for driving the first roll shaft to rotate, and the other end of the flexible screen is wound on the first roll shaft.
13. The double-sided display device according to claim 11, wherein the flexible screen drive part further comprises a second roll shaft, the other end of the second flexible screen is wound on the second roll shaft, and the flexible screen drive motor is further configured for driving the second roll shaft to rotate.
14. The double-sided display device according to claim 11, wherein the flexible screen drive part further comprises a roller, the roller is located between the first flexible screen and the second flexible screen, and teeth are evenly distributed on an outer side of the roller in a circumferential direction; an inner side of the first flexible screen is provided with a plurality of first tooth sockets, the teeth are meshed with the first tooth sockets, and the flexible screen drive motor is further configured for driving the roller to rotate.
15. The double-sided display device according to claim 14, wherein an inner side of the second flexible screen is provided with a plurality of second tooth sockets, and the teeth are meshed with the second tooth sockets.
16. The double-sided display device according to claim 15, further comprising an elastic structure and two fixing structures, wherein the elastic structure and the two fixing structures are all located between the first flexible screen and the second flexible screen, two ends and a middle of the elastic structure are spiral, and one end of the elastic structure is arranged on the first flexible screen through one of the fixing structures, and the other end of the elastic structure is arranged on the second flexible screen through the other of the fixing structures.
17. The double-sided display device according to claim 12, wherein the flexible screen drive part further comprises a second roll shaft, the other end of the second flexible screen is wound on the second roll shaft, and the flexible screen drive motor is further configured for driving the second roll shaft to rotate.
18. The double-sided display device according to claim 12, wherein the flexible screen drive part further comprises a roller, the roller is located between the first flexible screen and the second flexible screen, and teeth are evenly distributed on an outer side of the roller in a circumferential direction; an inner side of the first flexible screen is provided with a plurality of first tooth sockets, the teeth are meshed with the first tooth sockets, and the flexible screen drive motor is further configured for driving the roller to rotate.
19. The double-sided display device according to claim 18, wherein an inner side of the second flexible screen is provided with a plurality of second tooth sockets, and the teeth are meshed with the second tooth sockets.
20. The double-sided display device according to claim 19, further comprising an elastic structure and two fixing structures, wherein the elastic structure and the two fixing structures are all located between the first flexible screen and the second flexible screen, two ends and a middle of the elastic structure are spiral, and one end of the elastic structure is arranged on the first flexible screen through one of the fixing structures, and the other end of the elastic structure is arranged on the second flexible screen through the other of the fixing structures.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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[0035] In the drawings:
[0036] 1 refers to housing; 11 refers to first housing; 12 refers to second housing; 2 refers to first flexible screen; 21 refers to first tooth socket; 3 refers to second flexible screen; 4 refers to housing drive part; 41 refers to fixed seat; 42 refers to first rack; 43 refers to second rack; 44 refers to gear; 45 refers to housing drive motor; 5 refers to flexible screen drive part; 51 refers to first roll shaft; 52 refers to flexible screen drive motor; 53 refers to second roll shaft; 54 refers to roller; 541 refers to tooth; 6 refers to elastic structure; 7 refers to fixing structure; 8 refers to control switch; 9 refers to braced frame; and 10 refers to camera module.
DETAILED DESCRIPTION
[0037] The technical solutions of the present disclosure will be described with reference to the accompanying drawings and through the embodiments hereinafter. The embodiments described herein are merely illustrative of the present disclosure and are not intended to limit the present disclosure. For ease of description, the accompanying drawings only show the parts related to the present disclosure, but not all of the present disclosure.
[0038] In the description of the present disclosure, it should be noted that the orientations or positional relationships indicated by the terms such as “center”, “upper”, “lower”, “left”, “right”, “vertical”, “horizontal”, “inner”, “outer” and the like, refer to the orientations or positional relationships shown the drawings, are only intended to facilitate describing the present disclosure and simplifying the description, and do not indicate or imply that the indicated devices or elements must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation of the present disclosure. Moreover, the terms “first” and “second” are used for descriptive purposes only, and cannot be understood as indicating or implying relative importance.
[0039] In the description of the present disclosure, it should be noted that unless expressly stipulated and defined otherwise, the terms “installation”, “connected” and “connection” should be understood broadly, for example, the connection may be fixed connection, and may also be detachable connection; may be mechanical connection, and may also be electrical connection; and may be direct connection, may also be indirect connection through an intermediate medium, and may also be internal communication of two elements. The meanings of the above terms in the present disclosure can be understood according to the detailed situations.
[0040] This embodiment provides a double-sided display device, the two sides of which are both provided with a flexible screen, and display areas of the flexible screens at the two sides can be adjusted, so that the double-sided display device has higher flexibility.
[0041] As shown in
[0042] As shown in
[0043] As shown in
[0044] The double-sided display device provided by this embodiment has a plurality of display states, which are respectively a normal display state, an extended display state and a transitional display state between the two display states. When the double-sided display device is in the normal display state, the flat part of the first flexible screen 2 on the front side of the housing 1 is exposed and used to display images (as shown in
[0045] When it is necessary to control the double-sided display device to change from a normal display state to an extended display state, the second housing 12 is driven to slide away from the first housing 11 first, so that the second housing 12 can pull the second flexible screen 3 to extend, which is, to pull the winding part of the second flexible screen 3 to unwind, and meanwhile, drive the winding parts of the first flexible screen 2 and the second flexible screen 3 to unwind through the flexible screen drive part 5, so that a second part of the first flexible screen 2 is extended. In this process, the action of the flexible screen drive part 5 may be stopped at any time to obtain a corresponding display area of the first flexible screen 2 and a corresponding display area of the second flexible screen 3 as needed. In this embodiment, the second housing 12 can be manually pulled by a user to slide relative to the first housing 11, and the second housing 12 can also be driven to slide relative to the first housing 11 by a driver, which is not limited in this embodiment.
[0046] According to the double-sided display device provided by the present disclosure, double-sided display of the double-sided display device is implemented by arranging the first flexible screen 2 and the second flexible screen 3 on the front and rear sides of the housing 1 respectively, so that the display area of the double-sided display device is increased; the winding part of the first flexible screen 2 and the second flexible screen 3 are driven to wind and unwind by the housing drive part 5, so that the display area of the double-sided display device can be controlled, and thus, the display area of the double-sided display device can have various situations, which improves the flexibility of adjusting the display area of the double-sided display device, enlarges an application range of the double-sided display device, and is convenient for users to use.
[0047] Optionally, as shown in
[0048] In this embodiment, as shown in
[0049] Optionally, as shown in
[0050] In an embodiment, the housing drive part 4 may include a housing drive motor 45 and a rack assembly driven to slide by the housing drive motor 45. The rack assembly is connected with the second housing 12. When the housing drive motor 45 drives the rack assembly to move, the rack assembly can drive the second housing 12 to slide relative to the first housing 11.
[0051] Optionally, as shown in
[0052] Optionally, the fixed seat 41 may be provided with a slide track, and bottoms of the first rack 42 and the second rack 43 may be provided with runners which can be slidably arranged on the slide track, so as to realize the sliding of the first rack 42 and the second rack 43 relative to the fixed seat 41, and the slide track can also guide a slide direction of the first rack 42 and the second rack 43.
[0053] Optionally, please continuously refer to 7. The flexible screen drive part 5 may include two first roll shafts 51 and a flexible screen drive motor 52 for driving the two first roll shafts 51 to rotate. Two ends of the first flexible screen 2 (i.e., two winding parts of the first flexible screen 2) are wound on the two first roll shafts 51 respectively. When the first roll shaft 51 rotates in a first rotation direction, winding of the winding part of the first flexible screen 2 can be realized.
[0054] When the first roll shaft 51 rotates in a direction opposite the first rotation direction, unwinding of the winding part of the first flexible screen 2 can be realized. Optionally, an outer surface of the first roller shaft 51 may be circumferentially provided with a plurality of bulges to better wind up the first flexible screen 2. The first roll shaft 51 is rotatably connected to the first housing 11, so that one end of the first flexible screen 2 is connected to the first housing 11 through the first roll shaft 51.
[0055] For example, the flexible screen drive motor 52 can be connected with the first roll shaft 51 through a conversion structure. The conversion structure is respectively connected with a telescopic end of the flexible screen drive motor 52 and the first roll shaft 51, and is configured for converting linear displacement generated by the telescopic end into rotation. For example, when the telescopic end is extended, the conversion structure can drive the first roll shaft 51 to rotate in the first rotation direction, and when the telescopic end is retracted, the conversion structure can drive the first roll shaft 51 to rotate in the direction opposite to the first rotation direction. Optionally, the conversion structure may be a gear structure with teeth inside and outside, and the telescopic end may be a rack.
[0056] In an embodiment, as shown in
[0057] In an embodiment, as shown in
[0058] Optionally, the inner side of the second flexible screen 3 may be provided with a plurality of second tooth sockets, and the teeth 541 can be meshed with the second tooth sockets. In this case, the roller 54 can also assist the second housing 12 to drive the second flexible screen 3 to move, so as to ensure that the second flexible screen 3 can be extended or contracted.
[0059] In this embodiment, as shown in
[0060] In an embodiment, as shown in