Vertical display
By using a one-piece molded aluminum strip to wrap the display components on the vertical display screen and designing an ultra-narrow bezel structure, the problem of the thick bezel of the vertical display screen is solved, and the visual effect and stability of multi-screen splicing are improved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GUANGDONG WOOLPAD ELECTRONIC TECH CO LTD
- Filing Date
- 2025-05-28
- Publication Date
- 2026-05-19
AI Technical Summary
The thick bezels of existing vertical displays cause noticeable image separation when multiple displays are spliced together, affecting the visual effect.
The display assembly is wrapped in a single piece of molded aluminum strip, featuring an ultra-narrow bezel structure. Combined with cushioning grooves and corner pads, this enhances structural stability and safety.
It achieves minimal obstruction of the image by the bezel when multiple displays are spliced together, improving the visual experience and the integrity of the spliced image.
Smart Images

Figure CN224265299U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of display technology, and in particular to a vertical display. Background Technology
[0002] Vertical displays are widely used in cinemas, hotel lobbies, subways, airports, hospitals, exhibition halls, banks, and car dealerships. They are devices that display electronic documents on a screen via specific transmission equipment. Because vertical displays need to be erected on the ground, most on the market are made quite large and heavy to ensure they stand upright. However, this bulky casing also results in particularly thick bezels. With continuous technological advancements and increasing display demands, it is sometimes necessary to splice multiple displays together to display the same theme or play the same advertisement. However, excessively thick bezels can clearly divide the spliced images, severely impacting the visual effect.
[0003] The technical content disclosed in the Chinese patent document (publication number: CN220647726U, patent name: a vertical display advertising machine) is: a vertical display advertising machine, including an advertising box, a base is provided at the bottom of the advertising box, a moving component is connected to the bottom of the base, a switch component is opened inside the advertising box, a box door is embedded inside the advertising box, and a full screen is embedded inside the box door.
[0004] As can be seen from the above implementation plan and the corresponding drawings, the advertising display screen is equipped with a base to connect the cabinet. The cabinet frame is relatively thick and heavy, which is not conducive to the splicing of the display screen. Utility Model Content
[0005] This utility model overcomes the shortcomings of existing technologies by providing a vertical display that utilizes a one-piece molded aluminum strip to wrap around the display assembly. The one-piece molding of the aluminum strip allows for further reduction and narrowing of its size, achieving an extremely narrow bezel effect. The aluminum strip edging around the screen's nesting panel not only enhances structural stability but also significantly reduces the bezel width, minimizing bezel obstruction of the image when multiple displays are spliced together. This results in a more complete and coherent image after splicing, significantly improving the visual experience.
[0006] To solve the above-mentioned technical problems, the utility model is implemented through the following technical solution:
[0007] A vertical display includes a base and a support heat sink inserted into the base, the support heat sink being connected to a back plate, and the back plate being connected to a display assembly and internal electrical components.
[0008] The display assembly includes a screen nesting panel, and tempered glass is fitted and connected to the screen nesting panel.
[0009] The screen nesting plate is surrounded by aluminum strips, and display slots and buffer anti-collision grooves are provided in the aluminum strip edging.
[0010] Furthermore, the aluminum strip includes a first aluminum strip, a second aluminum strip, a third aluminum strip, and a side aluminum strip;
[0011] The first aluminum strip is fitted into the upper end of the screen nesting plate, and the third aluminum strip is fitted into the lower end of the screen nesting plate. The first aluminum strip and the third aluminum strip have the same structure.
[0012] The second aluminum strip is disposed on the back side of the screen nesting plate; the side aluminum strips are fitted into both sides of the screen nesting plate.
[0013] Furthermore, the two ends of the first aluminum strip are connected to the side aluminum strip via buffer corner pads, the two ends of the second aluminum strip are connected to the side aluminum strip via buffer corner pads, and the two ends of the third aluminum strip are connected to the side aluminum strip via buffer corner pads.
[0014] The buffer corner pads are right-angled and made of silicone.
[0015] Furthermore, the first aluminum strip is provided with a first display screen slot, and a first back plate step is provided on the side away from the first display screen slot. A first buffer anti-collision groove and a first corner pad mounting groove are provided between the first display screen slot and the first back plate step.
[0016] Furthermore, the second aluminum strip is provided with a side plate, and a second back plate step is provided on the side away from the side plate. A second corner pad mounting groove is provided between the side plate and the second back plate step.
[0017] Furthermore, the upper and lower ends of the back plate are respectively engaged between the first back plate step and the second back plate step.
[0018] Furthermore, the side aluminum strip is provided with a third display screen slot, a third corner pad mounting groove is provided on the side away from the third display screen slot, and a third buffer anti-collision groove is provided between the third display screen slot and the third corner pad mounting groove.
[0019] Furthermore, the internal electrical components include a power supply, an Android board, a USB interface, a network interface, and a speaker;
[0020] A power supply protective cover is provided on one side of the power supply, and an Android board protective cover is provided on one side of the Android board.
[0021] Furthermore, the heat dissipation support frame is provided with a first heat dissipation hole, and a handle is also provided on the side of the heat dissipation support frame away from the display screen assembly.
[0022] Furthermore, the side of the heat dissipation support away from the display screen assembly is connected to an inspection door, which is provided with a second heat dissipation hole and a door lock.
[0023] Compared with existing technologies, the advantages of this utility model are:
[0024] By using a one-piece molded aluminum strip to wrap around the display assembly, the size of the strip can be further reduced and narrowed, achieving an ultra-narrow bezel effect. The aluminum strip edging around the screen nesting panel not only enhances structural stability but also significantly reduces bezel width, minimizing bezel obstruction of the image when multiple displays are spliced together. This results in a more complete and coherent image after splicing, significantly improving the visual experience. Attached Figure Description
[0025] The accompanying drawings are provided to further illustrate the utility model and, together with the embodiments of the utility model, are used to explain the utility model. They do not constitute a limitation on the utility model. In the drawings:
[0026] Figure 1 This is a schematic diagram of the overall structure of the display screen according to an embodiment of the present utility model;
[0027] Figure 2 This is a first exploded view of the display screen according to an embodiment of the present invention;
[0028] Figure 3 This is a second exploded view of the display screen according to an embodiment of the present invention;
[0029] Figure 4 This is an exploded view of the display screen assembly according to an embodiment of the present invention;
[0030] Figure 5 This is a partial exploded view of the display screen assembly according to an embodiment of the present invention;
[0031] Figure 6 This is a schematic diagram of the first aluminum strip structure according to an embodiment of the present invention;
[0032] Figure 7 This is a schematic diagram of the second aluminum strip structure according to an embodiment of the present invention.
[0033] In the diagram: 1. Display assembly; 101. Screen nesting plate; 102. Tempered glass; 103. First aluminum strip; 1031. First display slot; 1032. First back panel step; 1033. First corner pad mounting groove; 1034. First buffer anti-collision groove; 104. Second aluminum strip; 1041. Second corner pad mounting groove; 1042. Side plate; 1043. Second back panel step; 105. Third aluminum strip; 106. Side aluminum strip; 1061. Third display slot ; 1062, Third corner pad mounting slot; 1063, Third buffer anti-collision groove; 107, Buffer corner pad; 2, Back plate; 3, Support heat dissipation frame; 302, First heat dissipation hole; 4, Inspection door; 401, Door lock; 402, Second heat dissipation hole; 5, Base; 6, Internal electrical components; 601, Power supply; 6011, Power supply protective cover; 602, Android board; 6021, Android board protective cover; 603, USB interface; 604, Network interface; 605, Speaker; 7, Handle. Detailed Implementation
[0034] The preferred embodiments of the utility model are described below with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are for illustration and explanation only and are not intended to limit the utility model.
[0035] like Figures 1 to 7 As shown, a vertical display includes a base 5 and a support heat sink 3 inserted into the base 5. The support heat sink 3 is connected to a back plate 2, and the back plate 2 is connected to a display assembly 1 and internal electrical components 6.
[0036] Display assembly 1 includes a screen nesting plate 101, on which tempered glass 102 is fitted and connected;
[0037] The screen nesting panel 101 is surrounded by an aluminum strip, within which a display slot and a shock-absorbing groove are incorporated. The screen nesting panel 101 is inserted into the display slot. The shock-absorbing groove is located on the outer side of the aluminum strip, away from the screen nesting panel 101. Therefore, when the display is impacted, the shock-absorbing groove acts as a buffer, preventing damage to the screen nesting panel 101. The one-piece molding of the aluminum strip also allows it to be made narrow and small. The aluminum strip surrounding the screen nesting panel 101 effectively achieves an extremely narrow bezel effect. When multiple displays are spliced together, the bezel's obstruction of the image is reduced, resulting in a more complete and coherent spliced image, enhancing the visual experience. This is especially suitable for venues requiring large-area displays or multi-screen splicing displays, such as exhibition halls and conference rooms.
[0038] The aluminum strips include a first aluminum strip 103, a second aluminum strip 104, a third aluminum strip 105, and a side aluminum strip 106;
[0039] The first aluminum strip 103 is fitted into the upper end of the screen nesting plate 101, and the third aluminum strip 105 is fitted into the lower end of the screen nesting plate 101. The first aluminum strip 103 and the third aluminum strip 105 have the same structure.
[0040] The second aluminum strip 104 is disposed on the back side of the screen nesting plate 101; the side aluminum strip 106 is fitted into both sides of the screen nesting plate 101.
[0041] The first aluminum strip 103 is connected to the side aluminum strip 106 at both ends via buffer corner pads 107, the second aluminum strip 104 is connected to the side aluminum strip 106 at both ends via buffer corner pads 107, and the third aluminum strip 105 is connected to the side aluminum strip 106 at both ends via buffer corner pads 107. The buffer corner pads 107 are right-angled and made of silicone. In this embodiment, the buffer corner pads 107 are connected to the aluminum strips by plugging them in and then fixed with bolts, making the frame formed by the connected aluminum strips more stable. The silicone material also allows the frame to be cushioned when it is squeezed and impacted, without permanent deformation.
[0042] The first aluminum strip 103 is provided with a first display slot 1031, and a first back plate step 1032 is provided on the side away from the first display slot 1031. A first buffer anti-collision groove 1034 and a first corner pad mounting groove 1033 are provided between the first display slot 1031 and the first back plate step 1032.
[0043] The second aluminum strip 104 is provided with a side plate 1042, and a second back plate step 1043 is provided on the side away from the side plate 1042. A second corner pad mounting groove 1041 is provided between the side plate 1042 and the second back plate step 1043. Since the vertical display screen is relatively high, the second aluminum strip 104 provides support for the middle part of the display screen assembly 1, making the structure of the display screen assembly 1 more robust during use.
[0044] The upper and lower ends of the back plate 2 are respectively snapped between the first back plate step 1032 and the second back plate step 1043, and then connected to the aluminum strip by bolts, so that the back plate 2 can be fixed.
[0045] A third display slot 1061 is provided on the side aluminum strip 106, a third corner pad mounting groove 1062 is provided on the side away from the third display slot 1061, and a third buffer anti-collision groove 1063 is provided between the third display slot 1061 and the third corner pad mounting groove 1062.
[0046] The aluminum strip edging incorporates cushioning and anti-collision grooves, including a first cushioning groove 1034 and a third cushioning groove 1063. Since the first aluminum strip 103 and the third aluminum strip 105 have identical structures, this ensures that all four sides of the display assembly 1 have cushioning and anti-collision grooves, guaranteeing the safety and stability of the display assembly 1 during use. Silicone corner pads 107 are used at the aluminum strip connection points. These designs effectively absorb and disperse impact forces when the display is subjected to external impacts, protecting the display assembly 1 and internal electrical components 6, reducing the risk of damage due to collisions, and improving the durability and reliability of the display.
[0047] The backplate 2 is securely connected to the display assembly by engaging with the first backplate step 1032 and the second backplate step 1043. Simultaneously, the heat sink support 3 is inserted into the base 5, providing a stable support structure for the entire display, ensuring that the display will not easily shake or tip over during use, thus guaranteeing safety and stability. The heat sink support 3 is equipped with a first heat dissipation hole 302, and the access door 4 is equipped with a second heat dissipation hole 402. These heat dissipation holes form an effective airflow channel, promptly dissipating the heat generated by the internal electrical components, preventing performance degradation or damage due to overheating, and extending the lifespan of the display.
[0048] The internal electrical components 6 include a power supply 601, an Android board 602, a USB interface 603, a network interface 604, and a speaker 605.
[0049] A power supply protective cover 6011 is provided on one side of the power supply 601, and an Android board protective cover 6021 is provided on one side of the Android board 602. The power supply 601 and the Android board 602 are respectively equipped with power supply protective covers 6011 and Android board protective covers 6021, which can effectively prevent dust, moisture and other substances from corroding the electrical components, protect the normal operation of the electrical components, and improve the stability and reliability of the display screen.
[0050] The heat sink support 3 is equipped with a first heat dissipation hole 302, and a handle 7 is also provided on the side of the heat sink support 3 away from the display screen assembly 1. The side of the heat sink support 3 away from the display screen assembly 1 is connected to an inspection door 4, which is equipped with a second heat dissipation hole 402 and a door lock 401. The handle 7 on the heat sink support 3 facilitates the handling and movement of the display screen, improving operational convenience. The door lock 401 on the inspection door 4 ensures the safety of the internal electrical components and facilitates opening the inspection door for maintenance and repair when needed, reducing maintenance costs and difficulty.
[0051] This utility model's vertical display screen utilizes a one-piece molded aluminum strip to wrap around the display screen assembly 1. The one-piece molding characteristic of the aluminum strip allows for further reduction and narrowing of its size, thereby achieving an extremely narrow bezel effect. The screen nesting plate 101 is edged with aluminum strips, which not only enhances structural stability but also significantly reduces the bezel width, minimizing the obstruction of the image by the bezel when multiple displays are spliced together. This results in a more complete and coherent image after splicing, significantly improving the visual experience.
[0052] This ultra-narrow bezel design is particularly suitable for venues that require large-area displays or multi-screen splicing, such as exhibition halls and conference rooms, providing excellent display effects and user experience.
[0053] In addition, the design of the heat dissipation support bracket 3 not only provides support but also helps dissipate heat, ensuring stable operation of the display screen for a long time. In short, this vertical monitor combines aesthetics, durability, and functionality, making it suitable for various high-end display and application scenarios, and bringing users an excellent visual experience and ease of operation.
[0054] Finally, it should be noted that the above are merely preferred embodiments of the utility model and are not intended to limit the utility model. Although the utility model has been described in detail with reference to the embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. However, any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the utility model should be included within the protection scope of the utility model.
Claims
1. A vertical display, characterized in that, Includes a base (5) and a support heat sink (3) inserted into the base (5), the support heat sink (3) is connected to a back plate (2), and the back plate (2) is connected to a display assembly (1) and internal electrical components (6). The display assembly (1) includes a screen nesting plate (101), and tempered glass (102) is fitted and connected to the screen nesting plate (101). The screen nesting plate (101) is surrounded by aluminum strips, and display slots and buffer anti-collision grooves are provided in the aluminum strips.
2. The vertical display according to claim 1, characterized in that, The aluminum strip includes a first aluminum strip (103), a second aluminum strip (104), a third aluminum strip (105), and a side aluminum strip (106). The first aluminum strip (103) is fitted into the upper end of the screen nesting plate (101), and the third aluminum strip (105) is fitted into the lower end of the screen nesting plate (101). The first aluminum strip (103) and the third aluminum strip (105) have the same structure. The second aluminum strip (104) is disposed on the back side of the screen nesting plate (101); the side aluminum strip (106) is fitted into both sides of the screen nesting plate (101).
3. The vertical display according to claim 2, characterized in that, The first aluminum strip (103) is connected to the side aluminum strip (106) at both ends through buffer corner pads (107), the second aluminum strip (104) is connected to the side aluminum strip (106) at both ends through buffer corner pads (107), and the third aluminum strip (105) is connected to the side aluminum strip (106) at both ends through buffer corner pads (107). The buffer corner pad (107) is a right-angled shape and is made of silicone.
4. The vertical display according to claim 3, characterized in that, The first aluminum strip (103) is provided with a first display slot (1031), and a first back plate step (1032) is provided on the side away from the first display slot (1031). A first buffer anti-collision groove (1034) and a first corner pad mounting groove (1033) are provided between the first display slot (1031) and the first back plate step (1032).
5. The vertical display according to claim 4, characterized in that, The second aluminum strip (104) is provided with a side plate (1042), and a second back plate step (1043) is provided on the side away from the side plate (1042). A second corner pad mounting groove (1041) is provided between the side plate (1042) and the second back plate step (1043).
6. The vertical display according to claim 5, characterized in that, The upper and lower ends of the back plate (2) are respectively engaged between the first back plate step (1032) and the second back plate step (1043).
7. The vertical display according to claim 6, characterized in that, The side aluminum strip (106) is provided with a third display slot (1061), and a third corner pad mounting groove (1062) is provided on the side away from the third display slot (1061). A third buffer anti-collision groove (1063) is provided between the third display slot (1061) and the third corner pad mounting groove (1062).
8. The vertical display according to any one of claims 1 to 7, characterized in that, The internal electrical components (6) include a power supply (601), an Android board (602), a USB interface (603), a network interface (604), and a speaker (605). A power supply protective cover (6011) is provided on one side of the power supply (601), and an Android board protective cover (6021) is provided on one side of the Android board (602).
9. The vertical display according to any one of claims 1 to 7, characterized in that, The heat sink support (3) is provided with a first heat dissipation hole (302), and a handle (7) is also provided on the side of the heat sink support (3) away from the display screen assembly (1).
10. The vertical display according to claim 9, characterized in that, The support heat sink (3) is connected to the inspection door (4) on the side away from the display screen assembly (1). The inspection door (4) is provided with a second heat dissipation hole (402) and a door lock (401).