Vehicle-mounted screen assembly and vehicle
By designing stackable vehicle screen components, the problem of fixed size of existing vehicle display devices is solved, and the flexible adjustment of screen size and interactive functions in storage state are realized, improving user experience and vehicle performance.
Patent Information
- Application Number
- CN202421484945.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-26
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2034-06-26
AI Technical Summary
The existing vehicle display devices have fixed sizes, which are difficult to meet the user's experience needs of multiple sizes and multiple angles, and the interaction between the screen and the user cannot be achieved after complete storage.
A car-mounted screen component is designed, using a flexible screen to connect to the interior installation platform, and setting a stackable laminated area. Users can adjust the screen size by stacking or expanding the stacked area, and setting an interactive area in the storage position to achieve interaction between the screen and the user.
It realizes flexible adjustment of screen size, compact space in storage state, and can still interact with users in storage state, simplifying structural design, reducing the demand for physical buttons, and reducing costs.
Smart Images

Figure CN222832781U_ABST
Abstract
Description
Technical Field
[0001] The present disclosure relates to the field of vehicle engineering technology, and in particular to a vehicle-mounted screen assembly and a vehicle. Background Art
[0002] With the continuous advancement of science and technology and the continuous improvement of people's living standards, people have higher and higher requirements for convenience and entertainment experience when riding in vehicles. In order to meet these needs, the in-vehicle display device installed in front of the vehicle seat is becoming more and more a standard device in the car interior, allowing passengers to expect more content and services.
[0003] In existing vehicles, the on-board display devices are generally of fixed size and cannot be flexibly adjusted, making it difficult to meet users' needs for multi-size and multi-angle usage experience.
[0004] In the relevant patent documents, in order to achieve the adjustment of the size of the vehicle-mounted display device, a solution of combining a scroll and a flexible screen is adopted, that is, the scroll and the flexible screen are arranged in a shell, and the size adjustment of the vehicle-mounted display device is achieved by rotating the shell, and the display size is adjusted by rolling and unfolding the flexible screen by the scroll; however, the scroll is located inside the shell, and when the flexible screen is completely stored in the shell, the interaction between the screen and the user cannot be achieved. Utility Model Content
[0005] In order to solve the above technical problems or at least partially solve the above technical problems, the present disclosure provides a vehicle-mounted screen assembly and a vehicle.
[0006] The present application discloses a vehicle-mounted screen assembly, comprising: a flexible screen, connected to an in-vehicle mounting platform, and the flexible screen has a storage position and a use position relative to the in-vehicle mounting platform, the flexible screen has at least two stacked areas, in the storage position, all the stacked areas are stacked together, and the display surface of the flexible screen is at least partially exposed to the inside and outside of the vehicle, and the area of the display surface exposed to the inside and outside of the vehicle is the storage area, in the storage position, the display surface of the flexible screen exposed to the inside and outside of the vehicle has an interactive area; in the use position, two adjacent stacked areas can be unfolded, and the area of the display surface exposed to the inside and outside of the vehicle is the use area, and the use area is larger than the storage area.
[0007] Optionally, when the flexible screen is in a fully unfolded state, the flexible screen has a back surface on the side away from the display surface in the thickness direction of the flexible screen, and at least two of the stacking areas include adjacent first and second stacking areas, and the end of the flexible screen away from the in-vehicle mounting platform is a part of the first stacking area; in the storage position, in the thickness direction of the first stacking area, the display surface of the second stacking area faces the in-vehicle mounting platform, the back surface of the second stacking area faces the back surface of the first stacking area, the display surface of the first stacking area faces inside and outside the vehicle and is exposed, and the interactive area is a part of the display surface of the first stacking area.
[0008] Optionally, when the flexible screen is in a fully unfolded state, the flexible screen has a back surface on the side away from the display surface in the thickness direction thereof, at least two of the stacking regions include adjacent third stacking regions and fourth stacking regions, and the end of the flexible screen away from the in-vehicle mounting platform is a part of the third stacking region; in the storage position, the third stacking region is rolled up into a cylindrical shape, and the fourth stacking region is arranged on the radial outer peripheral side of the third stacking region, and in the radial direction of the third stacking region, the display surface of the third stacking region is located radially outside the back surface of the third stacking region, the display surface of the third stacking region faces the back surface of the fourth stacking region, the display surface of the fourth stacking region faces inside and outside the vehicle and is exposed, and the interaction region is a part of the display surface of the fourth stacking region.
[0009] Optionally, the flexible screen includes a hinged end and a rolling end arranged opposite to each other, and the hinged end is connected to the in-vehicle mounting platform; the vehicle-mounted screen assembly also includes a scroll, and the scroll is connected to the rolling end, and the scroll has a first movement position and a second movement position. In the first movement position, the display surface of the flexible screen is wound on the scroll facing outward, and the area where the flexible screen and the scroll are opposite to each other is an interaction area; in the second movement position, the flexible screen wound on the scroll is at least partially unfolded.
[0010] Optionally, the vehicle-mounted screen assembly also includes: a roof slide rail, which is arranged on the in-vehicle mounting platform and extends along the length direction of the vehicle, and in the direction in which the roof slide rail extends, the roof slide rail has multiple installation positions, and the flexible screen is connected to the installation position of the roof slide rail.
[0011] Optionally, a slider is provided on the roof slide rail, and the slider can slide along the extension direction of the roof slide rail. The flexible screen is connected to the slider. A rotation hole is opened on one of the flexible screen and the slider, and a rotation shaft is provided on the other, and the rotation shaft passes through the rotation hole.
[0012] Optionally, in the use position, a surface of the flexible screen facing away from the display surface is detachably connected to the roof rail.
[0013] Optionally, a first magnetic component is provided on the back surface, and the first magnetic component and the roof rail can attract each other; and / or, a surface of the flexible screen facing away from the display surface and one of the roof rails are provided with a hook piece of Velcro, and the other is provided with a fur piece of Velcro.
[0014] The present application also discloses a vehicle, comprising: an in-vehicle mounting platform and a vehicle-mounted screen assembly provided according to the above disclosure, wherein the vehicle-mounted screen assembly is connected to the in-vehicle mounting platform.
[0015] Optionally, the in-vehicle mounting platform is a roof of the vehicle.
[0016] Optionally, the in-vehicle mounting platform is provided with a receiving groove, and when the flexible screen is located at the storage position, the flexible screen is received in the receiving groove, and the interaction area is opposite to the opening of the receiving groove.
[0017] Compared with the prior art, the technical solution provided by the embodiments of the present disclosure has the following advantages:
[0018] According to the vehicle-mounted screen assembly provided by the embodiment of the present disclosure, by arranging stacking areas that can be stacked on the flexible screen, the user can adjust the size of the flexible screen by stacking or unfolding two adjacent stacking areas, so that the space occupied by the stored vehicle-mounted screen assembly is smaller, and the size of the vehicle-mounted screen assembly in the stored state is relatively compact; moreover, by exposing at least part of the display surface of the flexible screen to the inside and outside of the vehicle in the stored position, and arranging the interactive area on the part of the display surface exposed to the inside and outside of the vehicle, when the flexible screen is in the stored state, interaction between the screen and the user can be achieved, and the interaction can be achieved without opening the flexible screen, and the structure is simple and easy to use; at the same time, it is unnecessary to set physical buttons, thereby reducing the cost increase caused by setting physical buttons.
[0019] According to the vehicle provided by the embodiment of the present disclosure, by setting the above-mentioned vehicle-mounted screen assembly, the interaction between the vehicle-mounted screen assembly and the user can be more conveniently realized, the user's demand for the multi-size usage experience of the vehicle-mounted screen assembly can be met, and the overall performance of the vehicle can be improved. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the present disclosure and, together with the description, serve to explain the principles of the present disclosure.
[0021] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, for ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative labor.
[0022] Figure 1 It is a schematic diagram of the structure of some embodiments provided by the present disclosure, wherein the surface of the flexible screen facing away from the display surface is in contact with the roof rail;
[0023] Figure 2 A schematic diagram of the structure of some embodiments provided by the present disclosure, wherein the flexible screen is in a use position and is in a fully opened state;
[0024] Figure 3 This is a schematic diagram of the structures of some embodiments provided by the present disclosure, wherein the flexible screen is located in a storage position.
[0025] in,
[0026] 100. Vehicle screen assembly;
[0027] 1. Flexible screen; 11. Hinge end; 12. Roll-up end; 13. Interactive area; 14. Display surface; 2. Scroll; 3. Roof rail. DETAILED DESCRIPTION
[0028] In order to more clearly understand the above-mentioned objectives, features and advantages of the present disclosure, the scheme of the present disclosure will be further described below. It should be noted that the embodiments of the present disclosure and the features in the embodiments can be combined with each other without conflict.
[0029] In the following description, many specific details are set forth to facilitate a full understanding of the present disclosure, but the present disclosure may also be implemented in other ways different from those described herein; it is obvious that the embodiments in the specification are only part of the embodiments of the present disclosure, rather than all of the embodiments.
[0030] Reference Figure 1-Figure 3 The present application discloses a vehicle-mounted screen assembly 100, comprising: a flexible screen 1, the flexible screen 1 is connected to an in-vehicle mounting platform, and the flexible screen 1 has a storage position and a use position relative to the in-vehicle mounting platform, the flexible screen 1 has at least two stacking areas, and in the storage position, all the stacking areas are stacked together. For example, the flexible screen 1 can stack the stacking areas together by folding, and the flexible screen 1 can also stack the stacking areas together by winding. For example, the in-vehicle mounting platform can be the roof of the vehicle, the in-vehicle mounting platform can be the seat back of the front seat, and the in-vehicle mounting platform can also be the dashboard of the vehicle.
[0031] And the display surface 14 of the flexible screen 1 is at least partially exposed to the inside and outside of the vehicle, and the area of the display surface 14 exposed to the inside and outside of the vehicle is the storage area. In the storage position, the display surface 14 of the flexible screen 1 facing the inside and outside of the vehicle has an interactive area 13; for example, when the flexible screen 1 is in the storage position, the flexible screen 1 is in a screen-off state, and the user can wake up the flexible screen 1 by touching the flexible screen 1, or the user can wake up the flexible screen 1 through gestures to adjust the size of the flexible screen 1 or realize the functional display of the flexible screen 1.
[0032] In the use position, two adjacent stacking areas can be unfolded, and the area of the display surface 14 exposed to the inside and outside of the vehicle is the use area, which is larger than the storage area. By arranging stacking areas that can be stacked on the flexible screen 1, the user can adjust the size of the flexible screen 1 by stacking or unfolding two adjacent stacking areas.
[0033] By exposing at least part of the display surface 14 of the flexible screen 1 to the inside and outside of the vehicle in the storage position, and arranging the interactive area 13 on the part of the display surface 14 exposed to the inside and outside of the vehicle, when the flexible screen 1 is in the storage state, interaction between the screen and the user can be achieved, and the interaction can be achieved without opening the flexible screen 1, which has a simple structure and is easy to use. At the same time, it is unnecessary to set physical buttons, thereby reducing the cost increase caused by setting physical buttons.
[0034] Reference Figure 1-Figure 3 According to some embodiments provided by the present disclosure, when the flexible screen 1 is in a fully unfolded state, the flexible screen 1 has a back facing surface on a side away from the display surface 14 in the thickness direction thereof, the at least two stacking regions include adjacent first stacking regions and second stacking regions, and the end of the flexible screen 1 away from the in-vehicle installation platform is a part of the first stacking region;
[0035] In the storage position, in the thickness direction of the first stacking area, the display surface 14 of the second stacking area faces the in-vehicle installation platform, the back surface of the second stacking area faces the back surface of the first stacking area, the display surface 14 of the first stacking area is exposed inside and outside the vehicle, and the interactive area is a part of the display surface of the first stacking area, that is, the flexible screen 1 is foldable; this makes it easy to stack the stacking areas together, reduces the difficulty of stacking, and reduces production costs.
[0036] Reference Figure 1-Figure 3 According to some embodiments provided by the present disclosure, when the flexible screen 1 is in a fully unfolded state, the flexible screen 1 has a back facing surface on a side away from the display surface 14 in the thickness direction thereof, the at least two stacking regions include adjacent third stacking regions and fourth stacking regions, and the end of the flexible screen 1 away from the in-vehicle installation platform is a part of the third stacking region;
[0037] In the storage position, the third stacking region is rolled up into a cylindrical shape, and the fourth stacking region is arranged on the radial outer peripheral side of the third stacking region, that is, the flexible screen 1 can be rolled up.
[0038] In the radial direction of the third stacking area, the display surface 14 of the third stacking area is located radially outside the display surface 14 of the third stacking area, the display surface of the third stacking area faces the back surface of the fourth stacking area, the display surface of the fourth stacking area faces the inside and outside of the vehicle, and the interactive area is a part of the display surface of the fourth stacking area. That is, the flexible screen 1 is rolled up from the end away from the installation platform in the vehicle, and the flexible screen 1 is rolled up toward its back surface, so that the display surface 14 of the flexible screen 1 faces the inside and outside of the vehicle.
[0039] By rolling up the flexible screen 1, the space occupied by the flexible screen 1 in the storage state can be reduced, which facilitates the storage of the flexible screen 1. Moreover, the rolled-up flexible screen 1 is generally cylindrical, and when the flexible screen 1 is stored in the storage space or when the flexible screen 1 is taken out of the storage space, the risk of interference with the side wall of the storage space due to the right angle can be reduced, and the storage space does not need to be set larger to avoid interference between the flexible screen 1 and the side wall of the storage space, so that the storage space can be set smaller.
[0040] Reference Figure 1-Figure 3 According to some embodiments provided by the present disclosure, the vehicle-mounted screen assembly (100) further includes a reel 2, and the flexible screen 1 includes a hinged end 11 and a reeled end 12 arranged opposite to each other, the hinged end 11 is connected to the in-vehicle mounting platform, and the reel 2 is connected to the reeled end 12; for example, the vehicle-mounted screen assembly 100 can be arranged on the roof of the vehicle, and the vehicle-mounted screen assembly 100 can also be arranged on the seat back of the vehicle. When the vehicle-mounted screen assembly 100 is arranged on the roof of the vehicle, the hinged end 11 can be connected to the roof of the vehicle; when the vehicle-mounted screen assembly 100 is arranged on the seat back of the vehicle, the hinged end 11 can be connected to the seat back of the vehicle.
[0041] Specifically, the hinged end 11 is hinged to the in-vehicle installation platform, so that the flexible screen 1 can be rolled up from the rolling end 12 to adjust the screen size, and the angle of the flexible screen 1 can be adjusted through the hinged end 11.
[0042] The scroll 2 has a first movement position and a second movement position. In the first movement position, the flexible screen 1 is wound on the scroll 2, the display surface 14 of the flexible screen 1 faces outward, and the area where the display surface 14 of the flexible screen 1 faces the scroll 2 is the interactive area 13; in the second movement position, the flexible screen 1 wound on the scroll 2 is at least partially unfolded. For example, in the first movement position, the flexible screen 1 is in a screen-off state, and the user can wake up the flexible screen 1 by touching the flexible screen 1, or the user can adjust the size or angle of the flexible screen 1 through gestures.
[0043] By arranging the reel 2 at the retracted end 12 of the flexible screen 1, the flexible screen 1 can achieve angle adjustment of the flexible screen 1 through the hinged end 11, so that the vehicle-mounted screen assembly 100 does not need to be provided with a shell or a bracket structure to achieve angle adjustment of the flexible screen 1, so that the flexible screen 1 still has a partial area exposed after being fully retracted, so that the flexible screen 1 can use the exposed area as the interactive area 13 in the first movement position, and realize the interaction between the screen and the user in the retracted state, and the interaction can be realized without opening the flexible screen 1, which has a simple structure and is easy to use;
[0044] Moreover, there is no need to set up physical buttons, thereby reducing the cost increase caused by setting up physical buttons; compared with the solution of storing the flexible screen 1 in the shell in the prior art, there is no need to leave part of the flexible screen 1 outside the shell without storing it in order to reserve the interactive area 13, which can reduce the space occupied by the vehicle screen assembly 100 after storage, making the size of the vehicle screen assembly 100 in the stored state more compact.
[0045] For example, the reel 2 includes a driving member and a rotating shaft, the rotating shaft is connected to the reeling end 12, and the output end of the driving member is connected to the rotating shaft. In this way, the size of the flexible screen 1 can be electrically adjusted through the driving member, thereby improving the convenience of adjusting the size of the flexible screen 1.
[0046] Reference Figure 1-Figure 3 According to some embodiments provided by the present disclosure, the vehicle-mounted screen assembly 100 also includes: a roof slide rail 3, which is arranged on an in-vehicle mounting platform, and the roof slide rail 3 extends along the length direction of the vehicle. For example, the in-vehicle mounting platform can be the roof of the vehicle, and the in-vehicle mounting platform can also be a side beam for supporting the ceiling.
[0047] In the direction in which the roof rail 3 extends, the roof rail 3 has a plurality of installation positions, and the flexible screen 1 is connected to the installation position of the roof rail 3. For example, the flexible screen 1 includes a hinged end 11 and a retracted end 12 that are arranged opposite to each other, and the hinged end 11 is connected to the roof rail 3. When the user feels that the distance between the flexible screen 1 and himself is far, the user can connect the flexible screen 1 to the installation position on the roof rail 3 that is close to himself; when the user feels that the distance between the flexible screen 1 and himself is close, the user can connect the flexible screen 1 to the installation position on the roof rail 3 that is far away from himself. In this way, the flexible screen 1 can have a plurality of installation positions along the roof rail 3, so that the user can adjust the distance between the flexible screen 1 and the user's eyes by adjusting the installation position of the flexible screen 1 on the roof rail 3, so as to meet the user's demand for adjustable distance of the flexible screen 1.
[0048] For example, there may be a plurality of roof rails 3, and the plurality of roof rails 3 are spaced apart along the width direction of the vehicle. Specifically, there may be two, three or four roof rails 3. Each roof rail 3 is connected to a hinge end. In this way, the risk of the flexible screen 1 shaking relative to the roof rails 3 in the width direction of the vehicle can be reduced, the risk of the flexible screen 1 shaking relative to the roof of the vehicle in the width direction of the vehicle can be reduced, and the reliability of the vehicle-mounted screen assembly 100 can be improved.
[0049] For example, the vehicle has multiple rows of seats, and the roof rail 3 extends from the front windshield beam to the rear windshield beam along the length direction of the vehicle. Specifically, the vehicle can have two rows of seats, or the vehicle can have three rows of seats. The user can move the flexible screen 1 along the roof rail 3 so that users in multiple rows of seats can watch the content displayed on the flexible screen 1, thereby realizing the use demand of the in-vehicle home theater.
[0050] Reference Figure 1-Figure 3 According to some embodiments provided by the present disclosure, a slider is provided on the roof rail 3, and the slider can slide along the extension direction of the roof rail 3. The flexible screen 1 is connected to the slider, and a rotation hole is provided on one of the flexible screen 1 and the slider, and a rotation shaft is provided on the other of the flexible screen 1 and the slider, and the rotation shaft passes through the rotation hole. In this way, the rotation shaft can rotate along the central axis of the rotation hole. For example, a rotation hole can be provided on the slider, and the hinge end 11 of the flexible screen 1 has a rotation shaft.
[0051] In this way, the flexible screen 1 can rotate relative to the slider, so that the angle of the flexible screen 1 can be adjusted at any position of the roof slide rail 3, further meeting the user's diverse needs for the angle, size and distance of the flexible screen 1, and improving the overall performance of the vehicle-mounted screen assembly 100.
[0052] For example, the rotating shaft and the rotating hole can be interference fit, so that the force between the slider and the rotating shaft can be greater. After the screen is rotated a certain angle relative to the roof slide rail 3, the rotating shaft and the slider can be reliably connected, so that the slider can reliably position the flexible screen 1 relative to the roof slide rail 3 at any angle, thereby improving the reliability of the vehicle-mounted screen assembly 100.
[0053] Reference Figure 1-Figure 3According to some embodiments provided by the present disclosure, the vehicle-mounted screen assembly 100 further includes: a support member, a multi-link structure, two adjacent links can rotate relative to each other in a direction away from the display surface 14 of the flexible screen 1, and the two adjacent links are relatively locked when they rotate to coincide with the extension direction, one end of the support member is connected to the hinge end 11, and the other end of the support member extends toward the retracting end 12, and the support member can follow the flexible screen 1 to retract and extend. In this way, the support member can play a supporting role for the flexible screen 1, and when the flexible screen 1 is unfolded, the flexible screen 1 can be in a relatively straight state. When the display surface 14 of the flexible screen 1 rotates to intersect with the gravity direction, the support member can prevent the flexible screen 1 from bending and deforming in its own gravity direction to affect the user's viewing experience, thereby improving the reliability of the vehicle-mounted screen assembly 100.
[0054] Reference Figure 1-Figure 3 According to some embodiments provided by the present disclosure, in the use position, the surface of the flexible screen 1 facing away from the display surface 14 is detachably connected to the roof rail 3; that is, the back surface is detachably connected to the roof rail 3. For example, the flexible screen 1 and the roof rail 3 can be detachably attached together by Velcro. For another example, the flexible screen 1 and the roof rail 3 can also be detachably attracted together by a magnetic part. For another example, the flexible screen 1 and the roof rail 3 can also be detachably connected together by a buckle structure.
[0055] This allows the flexible screen 1 to have a larger range of viewing angles. When the user is lying in the car, the user can rotate the surface of the flexible screen 1 away from the display surface 14 until it is in contact with the roof rail 3 to achieve the maximum viewing angle, thereby improving the viewing effect and meeting the viewing angle requirements for lying down or in the car.
[0056] Reference Figure 1-Figure 3 According to some embodiments provided by the present disclosure, a first magnetic member is provided on the surface of the flexible screen 1 away from the display surface 14, and the first magnetic member and the roof rail 3 can attract each other, that is, a first magnetic member is provided on the back surface, for example, the first magnetic member can be a magnet, and the roof rail 3 can be an iron, cobalt or nickel member. For example, a second magnetic member can be provided on the surface of the roof rail 3 facing the flexible screen 1, and the first magnetic member and the second magnetic member can attract each other. Specifically, the first magnetic member can be a magnet, or the first magnetic member can be an iron, cobalt or nickel member; when the first magnetic member is a magnet, the second magnetic member can be a magnet, an iron, cobalt or nickel member; when the first magnetic member is an iron, cobalt or nickel member, the second magnetic member can be a magnet. When the surface of the flexible screen 1 away from the display surface 14 is rotated to fit the roof rail 3, the flexible screen 1 can be reliably connected to the rail, the load-bearing size of the junction end of the flexible screen 1 can be reduced, and the service life of the junction end can be extended.
[0057] The present application also discloses a vehicle, comprising: a vehicle-mounted screen assembly 100 provided according to the above disclosure. For example, the vehicle may be a car.
[0058] According to the vehicle provided by the embodiment of the present disclosure, by setting the above-mentioned vehicle-mounted screen assembly 100, the interaction between the vehicle-mounted screen assembly 100 and the user can be more conveniently realized, meeting the user's demand for multi-size and multi-angle usage experience and improving the overall performance of the vehicle.
[0059] Reference Figure 1-Figure 3 According to some embodiments provided by the present disclosure, the vehicle-mounted screen assembly 100 is disposed on the roof of the vehicle. In this way, a roof display can be realized. When the user lies in the vehicle, the user can rotate the surface of the flexible screen 1 away from the display surface 14 to fit with the roof rail 3 to achieve the maximum viewing angle, improve the viewing effect, and meet the viewing angle requirements when lying down and in the vehicle.
[0060] Reference Figure 1-Figure 3 According to some embodiments provided by the present disclosure, the ceiling is provided with a receiving groove, and when the flexible screen 1 is in the storage position, the flexible screen 1 is received in the receiving groove, and the interactive area 13 faces the opening of the receiving groove. This can further reduce the space occupied by the vehicle-mounted screen assembly 100 in the storage state, reduce or avoid the risk of the flexible screen 1 being damaged by collision, and improve the reliability of the vehicle-mounted screen assembly 100. By facing the interactive area 13 to the opening of the receiving groove, the vehicle-mounted screen assembly 100 can interact with the user in the storage state, which has a simple structure and is easy to use.
[0061] It should be noted that, in this article, relational terms such as "first" and "second" are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device. In the absence of further restrictions, the elements defined by the sentence "comprise a ..." do not exclude the existence of other identical elements in the process, method, article or device including the elements.
[0062] The above description is only a specific embodiment of the present disclosure, so that those skilled in the art can understand or implement the present disclosure. Various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present disclosure. Therefore, the present disclosure will not be limited to the embodiments described herein, but will conform to the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A vehicle-mounted screen assembly, characterized in that: include: A flexible screen is connected to the in-vehicle mounting platform, and the flexible screen has a storage position and a use position relative to the in-vehicle mounting platform, the flexible screen has at least two stacked areas, in the storage position, all the stacked areas are stacked, and the display surface of the flexible screen is at least partially exposed to the inside and outside of the vehicle, the area of the display surface exposed to the inside and outside of the vehicle is the storage area, and in the storage position, the display surface of the flexible screen exposed to the inside and outside of the vehicle has an interactive area; In the use position, two adjacent stacked areas can be unfolded, and the area of the display surface exposed to the inside and outside of the vehicle is the use area, which is larger than the storage area.
2. The vehicle-mounted screen assembly according to claim 1, characterized in that: When the flexible screen is in a fully unfolded state, the flexible screen has a back facing surface on a side away from the display surface in the thickness direction thereof, at least two of the stacking regions include adjacent first stacking regions and second stacking regions, and an end of the flexible screen away from the in-vehicle installation platform is a part of the first stacking region; In the storage position, in the thickness direction of the first stacking area, the display surface of the second stacking area faces the in-vehicle mounting platform, the back surface of the second stacking area faces the back surface of the first stacking area, the display surface of the first stacking area faces and is exposed inside and outside the vehicle, and the interactive area is a part of the display surface of the first stacking area.
3. The vehicle-mounted screen assembly according to claim 1, characterized in that: When the flexible screen is in a fully unfolded state, the flexible screen has a back facing surface on a side away from the display surface in the thickness direction thereof, at least two of the stacking regions include adjacent third stacking regions and fourth stacking regions, and an end of the flexible screen away from the in-vehicle installation platform is a part of the third stacking region; In the storage position, the third stacking area is rolled up into a cylindrical shape, and the fourth stacking area is arranged on the radially outer side of the third stacking area. In the radial direction of the third stacking area, the display surface of the third stacking area is located radially outside the back surface of the third stacking area, the display surface of the third stacking area faces the back surface of the fourth stacking area, the display surface of the fourth stacking area is exposed to the inside and outside of the vehicle, and the interactive area is a part of the display surface of the fourth stacking area.
4. The vehicle-mounted screen assembly according to claim 1, characterized in that: The flexible screen comprises a hinged end and a retracted end which are arranged opposite to each other, and the hinged end is connected to the in-vehicle installation platform; The vehicle-mounted screen assembly further includes a scroll, the scroll is connected to the reeling end, the scroll has a first movement position and a second movement position, in the first movement position, the display surface of the flexible screen is wound on the scroll facing outward, and the area where the flexible screen and the scroll are opposite is an interactive area; In the second movement position, the flexible screen wound on the reel is at least partially unfolded.
5. The vehicle-mounted screen assembly according to any one of claims 1 to 4, characterized in that: Also includes: A roof slide rail, wherein the roof slide rail is arranged on the in-vehicle mounting platform and extends along the length direction of the vehicle. In the direction in which the roof slide rail extends, the roof slide rail has multiple mounting positions, and the flexible screen is connected to the mounting position of the roof slide rail.
6. The vehicle-mounted screen assembly according to claim 5, characterized in that: A slider is provided on the roof slide rail, and the slider can slide along the extension direction of the roof slide rail. The flexible screen is connected to the slider. A rotating hole is opened on one of the flexible screen and the slider, and a rotating shaft is provided on the other, and the rotating shaft passes through the rotating hole.
7. The vehicle-mounted screen assembly according to claim 6, characterized in that: In the use position, the surface of the flexible screen facing away from the display surface is detachably connected to the roof rail.
8. The vehicle-mounted screen assembly according to claim 7, characterized in that: A first magnetic attraction component is provided on the surface of the flexible screen facing away from the display surface, and the first magnetic attraction component and the roof slide rail can attract each other.
9. A vehicle, characterized in that: include: An in-vehicle mounting platform and an in-vehicle screen assembly according to any one of claims 1-8, wherein the in-vehicle screen assembly is connected to the in-vehicle mounting platform.
10. The vehicle according to claim 9, characterized in that The in-vehicle installation platform is the roof of the vehicle.
11. The vehicle according to claim 9 or 10, characterized in that The in-vehicle installation platform is provided with a receiving groove. When the flexible screen is located at the storage position, the flexible screen is received in the receiving groove, and the interaction area is opposite to the opening of the receiving groove.
Citation Information
Cited By
Vehicle-mounted screen assembly and vehicle
WO2026002085A1