CN219360956U - Display screen assembly and vehicle - Google Patents
Display screen assembly and vehicle Download PDFInfo
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- CN219360956U CN219360956U CN202223014436.5U CN202223014436U CN219360956U CN 219360956 U CN219360956 U CN 219360956U CN 202223014436 U CN202223014436 U CN 202223014436U CN 219360956 U CN219360956 U CN 219360956U
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Abstract
The utility model relates to a display screen assembly and vehicle, the display screen assembly includes display screen (1), translation mechanism (2) and first rotary mechanism (3), first rotary mechanism (3) connect in translation mechanism (2), display screen (1) connect in first rotary mechanism (3), wherein, translation mechanism (2) can drive first rotary mechanism (3) translation, first rotary mechanism (3) can drive display screen (1), rotate around the axis of rotation that extends along the horizontal direction. The display screen assembly can meet the use requirement of passengers after lying down while realizing translation of the display screen.
Description
Technical Field
The disclosure relates to the technical field of vehicle equipment, in particular to a display screen assembly and a vehicle.
Background
In recent years, with the development of new energy automobiles, a central control large screen becomes a substitute of science and technology and trend, a multidimensional movement display screen is matched with an intelligent driving system to become a trend of future interior development, and in the present intelligent automobile era with higher and higher requirements on science and technology sense, the multidimensional movement display screen can grasp the heart of a user.
In the related art, most of the current vehicle-mounted display screens are fixed and some display screens can translate, but after passengers lie in the vehicle, the view field of the display screens is poor, so that the current display screens cannot meet the use requirements of the passengers after lying.
Disclosure of Invention
The utility model aims at providing a display screen assembly, this display screen assembly can be when realizing the display screen translation, satisfies the user demand after the passenger lies down.
In order to achieve the above-mentioned purpose, the present disclosure provides a display screen assembly, including display screen, translation mechanism and first rotary mechanism, first rotary mechanism connect in translation mechanism, the display screen connect in first rotary mechanism, wherein, translation mechanism can drive first rotary mechanism translates, first rotary mechanism can drive the display screen rotates around the axis of rotation that extends along the horizontal direction.
Optionally, the display screen assembly includes second rotary mechanism, second rotary mechanism connects the display screen with between the first rotary mechanism, second rotary mechanism can drive the display screen rotates about the axis of rotation that extends along vertical direction from top to bottom.
Optionally, the first rotary mechanism includes first support, first driving piece and first driving piece, translation mechanism can drive first support translation, first driving piece connect in first support, and first driving piece can drive through first driving piece the display screen rotates around the axis of rotation that extends along the horizontal direction.
Optionally, the second rotating mechanism includes a second bracket connected to the display screen and the first bracket, the second bracket is rotatably connected to the first bracket, the first transmission member is connected between the first driving member and the second bracket, and an elastic buffer member is connected between the first bracket and the second bracket.
Optionally, the first bracket has a first connecting arm, the second bracket has a second connecting arm, and the elastic buffer member is configured as a compression spring, one end of the compression spring is hung on the first connecting arm, and the other end of the compression spring is hung on the second connecting arm.
Optionally, the first transmission member has a first rotating shaft portion and a first gear portion coaxially disposed, the first rotating shaft portion is connected with the first driving member and extends in a horizontal direction, and the first gear portion is connected with the second bracket.
Optionally, the second rotating mechanism includes a second driving member and a second transmission member, the second driving member is connected to the second bracket, and the second transmission member is connected between the second driving member and the display screen.
Optionally, the display screen includes the display screen body and connect in the linking bridge at display screen body back, the second driving medium has coaxial second pivot portion and the second gear portion of setting, the second pivot portion with the second driving medium is connected and extends along vertical direction, the second gear portion connect in the linking bridge.
Optionally, the connecting bracket is provided with a V-shaped supporting arm, and two ends of the V-shaped supporting arm are respectively hinged to the display screen body through hinge shafts extending along the vertical direction.
Optionally, the first bracket comprises a first sub-bracket and a second sub-bracket which are detachably connected together, the translation mechanism is connected with the first sub-bracket, and the first driving piece and the second bracket are connected with the second sub-bracket.
Optionally, the translation mechanism includes slide rail, third driving piece and third driving piece, the slide rail extends along the horizontal direction, the third driving piece passes through the third driving piece, drive first rotary mechanism is followed the slide rail translation.
Optionally, the third transmission piece includes mutually supporting lead screw and nut, the lead screw with slide rail parallel arrangement and with third driving piece is connected, the nut with first rotary mechanism connects.
According to a second aspect of the present disclosure there is provided a vehicle comprising a display screen assembly as described above.
Through the technical scheme, in the display screen assembly provided by the disclosure, the translation mechanism can drive the first rotation mechanism to translate and further drive the display screen to translate, so that when the translation mechanism is arranged to drive the display screen to translate in the left-right direction of the vehicle, the display screen can be switched between the main driving position and the auxiliary driving position; the first rotary mechanism can drive the display screen to rotate around the rotation axis extending along the horizontal direction, so that the display screen can be nodded up and down, the adjustment of the pitch angle of the display screen is realized, after an occupant in the vehicle lies down, the occupant can clearly watch the display screen by adjusting the pitch angle of the display screen, and the use requirement of the occupant after lying down is further met. That is, the display screen assembly of the present disclosure can satisfy the use requirement of the occupant after lying down while realizing the translation of the display screen.
Additional features and advantages of the present disclosure will be set forth in the detailed description which follows.
Drawings
The accompanying drawings are included to provide a further understanding of the disclosure, and are incorporated in and constitute a part of this specification, illustrate the disclosure and together with the description serve to explain, but do not limit the disclosure. In the drawings:
FIG. 1 is a schematic diagram of a display screen assembly provided in accordance with an embodiment of the present disclosure;
FIG. 2 is a schematic view of a portion of a display screen assembly provided in accordance with an embodiment of the present disclosure;
fig. 3 is a schematic view of a portion of a display assembly from a top view perspective, according to an embodiment of the present disclosure.
Description of the reference numerals
1-display screen, 11-display screen body, 12-linking bridge, 121-V-shaped support arm, 13-articulated shaft, 2-translation mechanism, 21-slide rail, 22-third driving piece, 23-third driving piece, 231-lead screw, 232-nut, 3-first rotary mechanism, 31-first support, 310-first linking arm, 311-first sub-support, 312-second sub-support, 32-first driving piece, 33-first driving piece, 331-first pivot portion, 332-first gear portion, 4-second rotary mechanism, 41-second support, 410-second linking arm, 42-second driving piece, 43-second driving piece, 431-second pivot portion, 432-second gear portion, 5-elastic buffer.
Detailed Description
Specific embodiments of the present disclosure are described in detail below with reference to the accompanying drawings. It should be understood that the detailed description and specific examples, while indicating and illustrating the disclosure, are not intended to limit the disclosure.
In the present disclosure, terms such as "up, down, left, right" are used based on the definition of the vehicle, specifically, with one side of the roof as up, one side of the bottom as down, and the left-right direction corresponds to the width direction of the vehicle. The terms "first" and "second" are used herein to distinguish one element from another without sequence or importance. Moreover, the following description, when referring to the drawings, wherein like reference numerals designate identical or similar elements throughout the several views, the present disclosure is not repeated.
According to a specific embodiment of the present disclosure, there is provided a display screen assembly, as shown in fig. 1 and 3, including a display screen 1, a translation mechanism 2, and a first rotation mechanism 3, the first rotation mechanism 3 is connected to the translation mechanism 2, the display screen 1 is connected to the first rotation mechanism 3, wherein the translation mechanism 2 can drive the first rotation mechanism 3 to translate, and the first rotation mechanism 3 can drive the display screen 1 to rotate around a rotation axis extending in a horizontal direction.
Through the technical scheme, in the display screen assembly provided by the disclosure, the translation mechanism 2 can drive the first rotation mechanism 3 to translate, and then drive the display screen 1 to translate, so that when the translation mechanism 2 is arranged to drive the display screen 1 to translate in the left-right direction of the vehicle, the display screen 1 can be switched between the main driving position and the auxiliary driving position; the first rotary mechanism 3 can drive the display screen 1 to rotate around the rotation axis extending along the horizontal direction, so that the 'upper and lower nodding' of the display screen 1 is realized, the pitch angle of the display screen 1 is adjusted, after an occupant in a vehicle lies down, the occupant can clearly watch the display screen 1 by adjusting the pitch angle of the display screen 1, and the use requirement of the occupant after lying down is met. That is, the display screen assembly of the present disclosure can satisfy the use demand after the occupant lies down while realizing the translation of the display screen 1.
It should be noted that the specific structures of the translation mechanism 2 and the first rotation mechanism 3 are not limited by the present disclosure, and the present disclosure will be described in detail in the following embodiments.
In the embodiment of the present disclosure, referring to fig. 1 to 3, the display screen assembly may include a second rotation mechanism 4, the second rotation mechanism 4 being connected between the display screen 1 and the first rotation mechanism 3, the second rotation mechanism 4 being capable of driving the display screen 1 to rotate up and down around a rotation axis extending in a vertical direction. In this way, the second rotation mechanism 4 can realize the "swing head" of the display screen 1, that is, adjust the rotation angle of the display screen 1, where, when the display screen 1 is arranged to extend in the left-right direction of the vehicle, the second rotation mechanism 4 can realize the "swing head" of the display screen 1, thereby turning the display screen 1 to the main driving side or the co-driving side, and realizing the diversity of the use scenes of the display screen assembly.
In some embodiments of the present disclosure, referring to fig. 1 to 3, the first rotation mechanism 3 may include a first bracket 31, a first driving member 32, and a first transmission member 33, the translation mechanism 2 may be capable of driving the first bracket 31 to translate, and thus the display screen 1 to translate, the first driving member 32 is connected to the first bracket 31, and the first driving member 32 may be capable of driving the display screen 1 to rotate around a rotation axis extending in a horizontal direction through the first transmission member 33. Here, the first bracket 31 can provide a mounting base for the first driving member 32, and by the transmission of the first transmission member 33, smooth rotation of the display screen 1 about the rotation axis extending in the horizontal direction can be achieved.
In some embodiments of the present disclosure, in an embodiment in which the display screen assembly includes the first and second rotation mechanisms 3 and 4, referring to fig. 1 and 2, the second rotation mechanism 4 includes a second bracket 41 connecting the display screen 1 and the first bracket 31, the second bracket 41 is rotatably connected to the first bracket 31, and the first transmission member 33 is connected between the first and second driving members 32 and 41, wherein the elastic buffer member 5 is connected between the first and second brackets 31 and 41. In this way, the first driving member 32 can drive the second bracket 41 to rotate relative to the first bracket 31 through the first transmission member 33, and further drive the display screen 1 to "click up and down", where by providing the elastic buffer member 5 between the first bracket 31 and the second bracket 41, the display screen 1 can be prevented from accidentally and excessively rapidly "clicking up and down".
In some embodiments of the present disclosure, referring to fig. 2, the first bracket 31 may have a first connection arm 310, the second bracket 41 may have a second connection arm 410, and the elastic buffer 5 is configured as a compression spring having one end hooked to the first connection arm 310 and the other end hooked to the second connection arm 410. In this way, the disassembly of the compression spring, and the connection with the first and second connection arms 310 and 410 is facilitated. Of course, the elastic cushion 5 of the present disclosure may also be configured as an elastic rubber having one end connected to the first connection arm 310 and the other end connected to the second connection arm 410, which is not limited by the present disclosure.
In some embodiments of the present disclosure, referring to fig. 2 and 3, the first transmission member 33 may have a first rotation shaft portion 331 and a first gear portion 332 coaxially disposed, the first rotation shaft portion 331 being connected with the first driving member 32 and extending in a horizontal direction, the first gear portion 332 being connected to the second bracket 41. Thus, the first driving member 32 may drive the first gear portion 332 through the first rotation shaft portion 331 to rotate around the rotation axis extending in the horizontal direction, so that the first gear portion 332 drives the second bracket 41 to rotate, and further drives the display screen 1 to rotate, where by providing the first gear portion 332, a smooth rotation of the second bracket 41 may be achieved.
In some embodiments of the present disclosure, referring to fig. 1 to 3, the second rotation mechanism 4 may include a second driving member 42 and a second transmission member 43, the second driving member 42 being connected to the second bracket 41, the second transmission member 43 being connected between the second driving member 42 and the display screen 1. In this way, by the transmission of the second transmission member 43, a smooth rotation of the display screen 1 about the rotation axis extending in the vertical direction can be achieved.
Alternatively, referring to fig. 1 to 3, the display screen 1 may include a display screen body 11 and a connection bracket 12 connected to a rear portion of the display screen body 11, the second transmission member 43 has a second rotation shaft portion 431 and a second gear portion 432 coaxially disposed, the second rotation shaft portion 431 is connected to the second driving member 42 and extends in a vertical direction, and the second gear portion 432 is connected to the connection bracket 12. In this way, the second driving member 42 may drive the second gear portion 432 through the second rotating shaft portion 431 to rotate around the rotating axis extending in the vertical direction, so that the second gear portion 432 drives the connecting bracket 12 to rotate, and further drives the display screen 1 to rotate, where by providing the second gear portion 432, a smooth rotation of the connecting bracket 12 may be achieved.
Alternatively, referring to fig. 1, the connection bracket 12 has V-shaped support arms 121, both ends of the V-shaped support arms 121 are hinged to the display screen body 11 by hinge shafts 13 extending in a vertical direction, respectively. Here, the V-shaped support arm 121 can firmly support the display screen body 11, and the hinge of the V-shaped support arm 121 with the display screen body 11 can prevent the display screen body 11 from interfering with the V-shaped support arm 121 at the time of "head up and down" or "head swing".
In some embodiments of the present disclosure, referring to fig. 1 to 3, the first bracket 31 may include a first sub-bracket 311 and a second sub-bracket 312 detachably coupled together, the translation mechanism 2 is coupled to the first sub-bracket 311, and the first driving member 32 and the second bracket 41 are coupled to the second sub-bracket 312. Thus, the assembly and disassembly of the display screen assembly are convenient.
In the specific embodiment of the present disclosure, referring to fig. 1, the translation mechanism 2 includes a slide rail 21, a third driving member 22, and a third transmission member 23, the slide rail 21 extends in a horizontal direction, and the third driving member 22 drives the first rotation mechanism 3 to translate along the slide rail 21 through the third transmission member 23. Here, the slide rail 21 may guide the first rotation mechanism 3 to translate, prevent the first rotation mechanism 3 from being shifted and displaced, and smooth movement of the first rotation mechanism 3 may be achieved by the transmission of the third transmission member 23.
In some embodiments of the present disclosure, referring to fig. 1, the third transmission member 23 includes a screw 231 and a nut 232 that are engaged with each other, the screw 231 being disposed in parallel with the slide rail 21 and connected to the third driving member 22, the nut 232 being connected to the first rotation mechanism 3. In this way, by the cooperation of the screw 231 and the nut 232, the accuracy of the translation of the display screen 1 can be improved. Of course, in other embodiments of the present disclosure, the third transmission member 23 may include a gear and a rack that cooperate with each other, where the rack is parallel to the sliding rail 21, and the gear is connected to the first rotation mechanism 3, so that smooth movement of the first rotation mechanism 3 may also be achieved through cooperation of the gear and the rack, and the specific structure of the third transmission member 23 is not limited in this disclosure.
According to a second aspect of the present disclosure there is provided a vehicle comprising a display screen assembly as described above. The vehicle has all the beneficial effects of the display screen assembly, and the disclosure is not repeated here.
According to some embodiments, the sliding rail 21 of the translation mechanism 2 may extend in the left-right direction of the vehicle, so that the translation mechanism 2 may drive the display screen 1 to translate to the main driving position or the co-driving position.
The present disclosure will be described below in connection with the above embodiments, in which some application scenarios of the display screen assembly in a vehicle are described, wherein the slide rail 21 of the translating mechanism 2 is arranged to extend in the left-right direction of the vehicle. When the vehicle is running at a high speed (for example, the vehicle speed exceeds 60 km/h) or is in a sport mode, the second rotating mechanism 4 can drive the display screen 1 to rotate towards the main driving side, so that the display screen 1 faces the driver, and a concentrated driving atmosphere is provided for the driver. When the passenger on the co-driver side has entertainment demands such as watching movies and games, the vehicle is in an audio-visual entertainment mode, and at the moment, the second rotating mechanism 4 can drive the display screen 1 to rotate towards the side of the co-driver, so that the display screen 1 faces the passenger on the co-driver side and is used for the passenger on the co-driver to sing songs, watching dramas, working, and the like. In the above two application scenarios, the translation mechanism 2 can drive the display screen 1 to translate left and right according to the requirement. When the vehicle is in the welcome mode, the welcome mode is automatically started after the vehicle is started, and the display screen 1 slides from the copilot side to the driving side. When the vehicle is in a parking mode and an occupant in the vehicle lies down, the first rotating mechanism 3 can adjust the pitch angle of the display screen 1 to a man-machine comfort angle, so that the occupant can conveniently watch and entertain.
The preferred embodiments of the present disclosure have been described in detail above with reference to the accompanying drawings, but the present disclosure is not limited to the specific details of the above embodiments, and various simple modifications may be made to the technical solutions of the present disclosure within the scope of the technical concept of the present disclosure, and all the simple modifications belong to the protection scope of the present disclosure.
In addition, the specific features described in the foregoing embodiments may be combined in any suitable manner, and in order to avoid unnecessary repetition, the present disclosure does not further describe various possible combinations.
Moreover, any combination between the various embodiments of the present disclosure is possible as long as it does not depart from the spirit of the present disclosure, which should also be construed as the disclosure of the present disclosure.
Claims (13)
1. The utility model provides a display screen assembly, its characterized in that, includes display screen, translation mechanism and first rotary mechanism, first rotary mechanism connect in translation mechanism, the display screen connect in first rotary mechanism, wherein, translation mechanism can drive first rotary mechanism translates, first rotary mechanism can drive the display screen rotates around the axis of rotation that extends along the horizontal direction.
2. The display assembly of claim 1, wherein the display assembly includes a second rotation mechanism coupled between the display and the first rotation mechanism, the second rotation mechanism capable of driving the display to rotate up and down about a rotation axis extending in a vertical direction.
3. The display screen assembly of claim 1 or 2, wherein the first rotation mechanism comprises a first bracket, a first driving member and a first transmission member, the translation mechanism can drive the first bracket to translate, the first driving member is connected to the first bracket, and the first driving member can drive the display screen to rotate around a rotation axis extending in a horizontal direction through the first transmission member.
4. A display screen assembly according to claim 3, wherein the second rotation mechanism comprises a second bracket connecting the display screen and the first bracket, the second bracket being rotatably connected to the first bracket, the first transmission member being connected between the first driving member and the second bracket, wherein an elastic buffer member is connected between the first bracket and the second bracket.
5. The display assembly of claim 4, wherein the first bracket has a first connecting arm and the second bracket has a second connecting arm, and wherein the resilient buffer is configured as a compression spring having one end thereof hooked to the first connecting arm and the other end thereof hooked to the second connecting arm.
6. The display assembly of claim 4, wherein the first transmission member has a first rotating shaft portion and a first gear portion coaxially disposed, the first rotating shaft portion being connected to the first driving member and extending in a horizontal direction, the first gear portion being connected to the second bracket.
7. The display assembly of claim 4, wherein the second rotation mechanism comprises a second drive member and a second transmission member, the second drive member being coupled to the second bracket, the second transmission member being coupled between the second drive member and the display.
8. The display assembly of claim 7, wherein the display comprises a display body and a connection bracket connected to a back of the display body, the second transmission member has a second rotating shaft portion and a second gear portion coaxially disposed, the second rotating shaft portion is connected to the second driving member and extends in a vertical direction, and the second gear portion is connected to the connection bracket.
9. The display assembly of claim 8, wherein the connection bracket has V-shaped support arms, both ends of which are hinged to the display body by hinge shafts extending in a vertical direction, respectively.
10. The display assembly of claim 4, wherein the first bracket includes a first sub-bracket and a second sub-bracket removably coupled together, the translation mechanism coupled to the first sub-bracket, the first drive member and the second bracket coupled to the second sub-bracket.
11. The display screen assembly of claim 1, wherein the translation mechanism comprises a slide rail, a third driving member, and a third transmission member, the slide rail extending in a horizontal direction, the third driving member driving the first rotation mechanism to translate along the slide rail via the third transmission member.
12. The display screen assembly of claim 11, wherein the third transmission member includes a screw and a nut that cooperate with each other, the screw being disposed parallel to the slide rail and connected to the third driving member, the nut being connected to the first rotation mechanism.
13. A vehicle comprising a display assembly as claimed in any one of claims 1 to 12.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202223014436.5U CN219360956U (en) | 2022-11-11 | 2022-11-11 | Display screen assembly and vehicle |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202223014436.5U CN219360956U (en) | 2022-11-11 | 2022-11-11 | Display screen assembly and vehicle |
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Publication Number | Publication Date |
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CN219360956U true CN219360956U (en) | 2023-07-18 |
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CN202223014436.5U Active CN219360956U (en) | 2022-11-11 | 2022-11-11 | Display screen assembly and vehicle |
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CN (1) | CN219360956U (en) |
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- 2022-11-11 CN CN202223014436.5U patent/CN219360956U/en active Active
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