The present disclosure relates to a display technology field, and more particularly to a display device.
With the development of technology, appearances of mobile electronic devices have been changed greatly. Flexible screens are highly concerned due to their unique characteristics and great potential. Compared to the traditional screens, the flexible screens have characteristics of strong flexibility and being bendable and can decrease degrees of destroying devices accidentally. Durability of the flexible screens is greater than durability of other screens.
Conventional flexible screens include foldable screens and bendable screens. Although sizes of panels of the two types of display screens are decreased to a certain extent, the two types of display screens still occupy great space.
Consequently, there is an urgent need for a flexible display device to solve the above-mentioned technical problem.
The present disclosure provides a display device to solve the problem that sizes of conventional flexible screens are great.
The present disclosure provides a display device including:
In the display device of the present disclosure, the case assembly includes a first case body and a second case body which are disposed opposite to each other, the first case body is fixed to and connected to the first supporting component, and the second case body is fixed to and connected to the second supporting component;
In the display device of the present disclosure, the rack set includes at least one first rack, and the first rack is disposed close to a first side surface or/and a second side surface of the second case body; and
In the display device of the present disclosure, the gear set at least includes:
In the display device of the present disclosure, the gear set further includes:
In the display device of the present disclosure, the first gear is a spur gear, and the second gear and the third gear are bevel gears; and
In the display device of the present disclosure, the display device further includes:
In the display device of the present disclosure, the flexible display screen includes a display panel, a tensile layer, and an adhesive layer positioned between the display panel and the tensile layer, a first terminal of the tensile layer is fixed to and connected to the second case body, and a second terminal of the tensile layer is fixed to and connected to the sliding block.
In the display device of the present disclosure, an area of the display panel is smaller than an area of the tensile layer.
In the display device of the present disclosure, the flexible display screen further includes a third part fixed to and connected to the sliding block, the third part of the flexible display screen corresponds to the tensile layer, and the third part of the flexible display screen is a non-functional area of the display device.
In the display device of the present disclosure, a material of the tensile layer is a tensible material including a sus metallic material or an amorphous material.
In the display device of the present disclosure, the adhesive layer is a viscous layer including an optical adhesive.
In the display device of the present disclosure, the first case body includes a rear case and a first side case and a second side case which are positioned at two sides of the rear case, the second case body includes a front case, the first supporting component is fixed to and connected to the rear case, the first side case, and the second side case, and the second supporting component is fixed to and connected to the front case;
In the display device of the present disclosure, the first supporting component further includes a first bottom plate positioned at one side of the first supporting plate far away from the flexible display screen, and the second supporting component further includes a second bottom plate positioned at one side of the second supporting plate far away from the flexible display screen; and
In the display device of the present disclosure, the display device further includes an elevating mechanism configured to adjust the first bottom plate or/and the second bottom plate;
In the display device of the present disclosure, the first supporting component and the second supporting component are comb-shaped structures which are in coordination with each other.
In the display device of the present disclosure, the case assembly further includes a processor, a driving chip, and a power assembly.
In the display device of the present disclosure, the case assembly further includes a motor driving device disposed therein, the motor driving device is configured to drive the transmission mechanism to work, so that the display device implements the switching of the large-screen display and the small-screen display.
In the present disclosure, the transmission mechanism is disposed in the display device, so that the first supporting component slides relative to the second supporting component and the two ends of the flexible display screen move with the same distance in the same time. As such, a pull tension applied to the display device is not large when the display device is stretched or folded. Damage of the flexible display screen can be avoided, and the usage life of the display device can be extended. Furthermore, the display device can implement a large-screen display or a small-screen display without increasing a size thereof.
To make the objectives, technical schemes, and technical effects of the present disclosure more clearly and definitely, the present disclosure will be described in details below by using embodiments in conjunction with the appending drawings. It should be understood that the specific embodiments described herein are merely for explaining the present disclosure but not intended to limit the present disclosure.
Compared to the traditional screens, the flexible screens have characteristics of strong flexibility and being bendable and can decrease degrees of destroying devices accidentally. Durability of the flexible screens is greater than durability of other screens. Although sizes of the conventional display panels are decreased to a certain extent, the conventional display panels still occupy great space.
Please refer to
In the present disclosure, the transmission mechanism is disposed in the display device 100, so that the first supporting component 13 slides relative to the second supporting component 14 and the two ends of the flexible display screen 20 move with the same distance in the same time. As such, the display device 100 can implement a large-screen display or a small-screen display without increasing a size thereof.
Technical schemes of the present disclosure are described as follows in conjunction with embodiments.
Please refer to
When the display device 100 implements the small-screen display, the first part 21 of the flexible display screen 20 is in a display state and the second part 22 of the flexible display screen 20 is in a non-display state. When the display device 100 implements the large-screen display, the rack set 31 on the second case body 12 drives, via the gear set 32, the screw 40 to rotate, so that the second case body 12 moves in a direction far away from the first case body 11, the second part 22 of the flexible display screen 20 moves from inside of the case assembly 10 to the surface of the case assembly 10, and the first part 21 and the second part of the flexible display screen 20 are in the display state.
In the present disclosure, the gear set 32, the rack set 31, and the screw 40 are disposed in the display device, and the rack set 31 and the gear set 32 drive the screw 40 to rotate, so that the second case body 12 moves in a direction far away from or close to the first case body 11. As such, the display device 100 can implement the large-screen display or the small-screen display without increasing the size thereof.
Please refer to
In the present embodiment, the first direction is a direction of opening the second case body 12.
Please refer to
When the display device 100 implements the large-screen display, an external driving force drives the front case 121 to move in the first direction, so that the display device 100 is in the opened state.
In the display device 100 of the present disclosure, the rack set 31 includes at least one first rack 311. The first rack 311 is disposed close to a first side surface or/and a second side surface of the second case body 12.
Please refer to
In the present embodiment, the first racks 311 bond to one side of the second supporting component 14 far away from the flexible display screen 20 and fixed to and connected to the second supporting component 14.
Please refer to
Furthermore, a number of the first racks 311 and a number of the gear set 32 are not limited to two. For example, plural first racks 311 and the corresponding gear sets 32 may be disposed in equal distances between the first side and the second side of the second supporting component 14.
In the display device 100 of the present disclosure, the gear set 32 at least includes:
Please refer to
In the present embodiment, the first gear 321 may be a spur gear. The second gear 322 and the third gear 323 may be bevel gears.
In the present embodiment, when the display device 100 implements the large-screen display, the first racks 311 transmit, via the first gear 321, the second gear 322, the third gear 323, and the first roller, the driving force to the screw 40, so that the second case body 12 moves via the screw 40 in the direction far away from the first case body 11.
In the display device 100 of the present disclosure, the gear set 32 may further includes:
Please refer to
In the present embodiment, each of the gear stands 324 includes a first plate 325, a second plate 326, and a third plate 327. The first plate 325 is fixed to and connected to the first side case 112 or the second side case 113 of the first case body 11. The second plate 326 is positioned between the first plate 325 and the third plate 327. The third gear 323 engages with the second gear 322 via a hole of the second plate 326. The first bearings may be positioned on the first plate 325 and the third plate 327.
In the present embodiment, a structure surrounded by the rear case 111 of the first case body 11, the second supporting component 14 of the second case body 12, the first plate 325, the second plate 326, and the third plate 327 make the gear stands 324 have the first opening toward the front case 121 of the second case body 12.
In the present embodiment, the first bearings may be ball bearings or plain bearings, but the present disclosure is not limited thereto. The first roller is fixed to and connected to inner bearings of the first bearings. Outside bearings of the first bearings are fixed to and connected to the first side case 112 of the first case body 11, the second side case 113 of the first case body 11, or the first plate 325. The first roller and the inner bearings of the first bearings rotate in the outside bearings of the first bearings under effect of the external driving force.
In the display device 100 of the present disclosure, the display device 100 may further includes:
Please refer to
In the present embodiment, the sliding block 50 includes a protruding structure (e.g., a ball) corresponding to a screw thread of the screw 40. When the screw 40 rotates, the sliding block 50 may move on the screw via the protruding structure in a back and forth manner.
In the present embodiment, the flexible display screen 20 extends from outside of the first case body 11 to inside of the first case body 11 via the second roller 60. The flexible display screen 20 is rotated 180 degrees via the second roller 60 and extends to the first roller, so that one terminal of the flexible display screen 20 is fixed to and connected to the sliding block 50.
Please refer to
Please refer to
In the present embodiment, when a pitch diameter of the first gear 321 is A, a pitch diameter of the second gear 322 is B, a pitch diameter of the third gear 323 is C, and a screw pitch of the screw 40 is L, a relationship of the first gear 321, the second gear 322, the third gear 323, and the screw 40 is B*L=π*A*C.
For example, when a moving distance of the second case body 12 is X, a moving distance of the first rack 311 is X. Since the first gear 321 engages with the first rack 311, a rotating arc length of the first gear 321 is X. It can be understood that a rotating radian of the first gear 321 is 2X/A. Second, since the first gear 321 and the second gear 322 rotate coaxially via the first roller, a rotating radian of the second gear 322 is equal to the rotating radian of the first gear 321. A corresponding rotating arc length of the second gear 322 is (X*B)/A. Furthermore, since the third gear 323 engages with the second gear 322, a rotating arc length of the third gear 323 is equal to the rotating arc length of the second gear 322. That is, a corresponding rotating arc length of the third gear 323 is (X*B)/A, and a rotating radian of the third gear 323 is (2X*B)/(A*C). Finally, since the third gear 323 and the screw 40 rotate coaxially, a rotating radian of the screw 40 is equal to the rotating radian of the third gear 323. A corresponding rotating arc length of the second gear 322 is (X*B)/A. The screw pitch of the screw 40 is L. A moving distance of the sliding block fixed to and connected to the screw 40 is (X*B*L)/(π*A*C) when the radian is (2X*B)/(A*C). Since the relationship of the first gear 321, the second gear 322, the third gear 323 is C, and the screw 40 is B*L=π*A*C, a moving distance of the sliding block 50 fixed to and connected to the screw 40 is X which is equal to the moving distance of the second case body 12. As such, pull tension of a display panel 201 in the display device 100 can be minimum, and a usage span of the display device 100 can be increased.
Please refer to
In the present embodiment, the flexible display screen 20 further includes a third part 23 fixed to and connected to the sliding block 50. The third part 23 of the flexible display screen 20 is fixed to and connected to the sliding block 50. The third part 23 of the flexible display screen 20 is a non-functional area, that is, an invalid display area.
In the present embodiment, the display panel 201 may be an LCD display screen or an OLED display area. The display panel 201 may be bent to any one shape.
In the present embodiment, an area of the display panel 201 is smaller than an area of the tensile layer 203.
In the present embodiment, the adhesive layer 202 may be a viscous layer such as an optical adhesive.
In the present embodiment, a material of the tensile layer 203 may be a tensible material, for example, a sus metallic material or an amorphous material. When the material of the tensile layer 203 is a sus metallic material, a thickness of the tensile layer 203 may be ranged from 25 micrometers to 35 micrometers.
Please refer to
In the present embodiment, the first supporting plate 131 and the second supporting component 141 may be, but is not limited to, comb-shaped structures.
Please refer to
Please refer to
Please refer to
A first gap is formed between the first bottom plate 132 and the first supporting plate 131. The first gap is configured to contain the second bottom plate 142. Alternatively, a second gap is formed between the second bottom plate 142 and the second supporting plate 141. The second gap is configured to contain the first bottom plate 132. The present disclosure is not limited thereto.
In the display device 100 of the present disclosure, the display device 100 further includes an elevating mechanism configured to adjust the first bottom plate 132 or/and the second bottom plate 142.
When the display device 100 implements the large-screen display, the elevating mechanism is configured to drive the first bottom plate 132 or/and the second bottom plate 142 to move in a direction close to the flexible display screen 20, so that the first bottom plate 132 or/and the second bottom plate 142 contacts with the corresponding supporting plate. When the display device 100 implements the small-screen display, the elevating mechanism is configured to drive the first bottom plate 132 or/and the second bottom plate 142 to move in a direction far away from the flexible display screen 20, so that the first bottom plate 132 is contained between the second bottom plate 142 and the second supporting plate 141 or the second bottom plate 142 is contained between the first bottom plate 132 and the first supporting plate 131.
In the display device 100 of the present disclosure, the case assembly 10 may further include a processor, a driving chip, a power assembly and so on. The present disclosure is not limited thereto.
In the display device 100 of the present disclosure, the case assembly 10 may further include a motor driving device disposed therein. The motor driving device is capable of controlling the transmission mechanism via electrical signals. Predetermined electrical signals are provided for the motor driving device via buttons or gesture operations on the screen to drive the transmission mechanism to work, so that the display device 100 implements the switching of the large-screen display and the small-screen display.
The present disclosure provides a display device including: a case assembly, a first supporting component disposed to be fixed to the case assembly, a second supporting component disposed to be slidable relative to the first supporting component, and a transmission mechanism disposed in the case assembly and connected to the second supporting component; and a flexible display screen laying on one side of the first supporting component and one side of the second supporting component, a first end of the flexible display screen connected to one end of the second supporting component far away from the first supporting component, and a second end of the flexible display screen connected to the transmission mechanism. In the present disclosure, the transmission mechanism is disposed in the display device, so that the first supporting component slides relative to the second supporting component and the two ends of the flexible display screen move with the same distance in the same time. As such, a pull tension applied to the display device is not large when the display device is stretched or folded. Damage of the flexible display screen can be avoided, and the usage life of the display device can be extended. Furthermore, the display device can implement a large-screen display or a small-screen display without increasing a size thereof.
It should be understood that the present disclosure is not limited to the exemplary examples. Those skilled in the art may achieve equivalent improvements or replacements according to the above description. The equivalent improvements and replacements should be considered to belong to the protection scope of the present disclosure.
Number | Date | Country | Kind |
---|---|---|---|
202010455196.9 | May 2020 | CN | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/CN2020/098117 | 6/24/2020 | WO |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2021/237853 | 12/2/2021 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
10082833 | Chen | Sep 2018 | B2 |
10152086 | Choi | Dec 2018 | B2 |
10430923 | Lu | Oct 2019 | B2 |
10488959 | Aurongzeb | Nov 2019 | B2 |
10817022 | Cho | Oct 2020 | B2 |
10881009 | Jiang | Dec 2020 | B2 |
11112826 | Ko | Sep 2021 | B2 |
11632452 | Delaporte | Apr 2023 | B2 |
11662771 | Kim | May 2023 | B2 |
20120314400 | Bohn et al. | Dec 2012 | A1 |
20180081473 | Seo | Mar 2018 | A1 |
20180181164 | Chen | Jun 2018 | A1 |
20190146558 | Ohata | May 2019 | A1 |
20200152095 | Lee | May 2020 | A1 |
20200264660 | Song | Aug 2020 | A1 |
20210328160 | Feng | Oct 2021 | A1 |
20210383727 | Han | Dec 2021 | A1 |
Number | Date | Country |
---|---|---|
105518769 | Apr 2016 | CN |
106875846 | Jun 2017 | CN |
110491289 | Nov 2019 | CN |
110782783 | Feb 2020 | CN |
Entry |
---|
International Search Report in International application No. PCT/CN2020/098117, dated Mar. 1, 2021. |
Written Opinion of the International Search Authority in International application No. PCT/CN2020/098117, dated Mar. 1, 2021. |
Number | Date | Country | |
---|---|---|---|
20230156105 A1 | May 2023 | US |