Bottle-shaped LED display screen with splicing structure
By designing a bottle-shaped LED display screen with a splicing structure, and adopting a detachable connection of levers and slots and a spring limiting design, the problem of complex installation of traditional displays is solved, enabling rapid installation and disassembly, improving construction efficiency, reducing costs, and enhancing the stability and convenience of the equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-16
- Publication Date
- 2026-03-31
AI Technical Summary
The installation and splicing process of traditional displays is complex, requiring specialized tools and time, resulting in low construction efficiency, increased project costs, and time delays.
A bottle-shaped LED display screen with a splicing structure was designed. It adopts a detachable connection of mounting blocks and mounting slots. By using the engagement of the locking rod and the slot, combined with the design of springs and limit rods, it can achieve quick installation and disassembly. The through slot provides heat dissipation channels and convenient wiring layout. It is equipped with a control circuit board, power module and multi-functional slot to enhance stability and convenience.
It significantly improves installation and maintenance efficiency, reduces labor and time costs, ensures the stability and reliability of the display screen, adapts to diverse signal inputs, extends equipment life, and enhances safety and convenience of use.
Smart Images

Figure CN224065133U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of LED displays, specifically a bottle-shaped LED display with a splicing structure. Background Technology
[0002] In today's commercial display and visual communication field, brands have extremely high demands for innovation and uniqueness in their product display formats in order to stand out from the fierce market competition. Bottle shapes, as iconic features of products such as wines and perfumes, possess high recognizability and unique aesthetic value.
[0003] Traditional displays often require complex tools and specialized technicians for installation and splicing, resulting in low installation efficiency, extended on-site construction time, impacted project progress, and increased project time costs. Utility Model Content
[0004] The present invention aims to provide a bottle-shaped LED display screen with a splicing structure to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, this utility model provides the following technical solution:
[0006] A bottle-shaped LED display screen with a splicing structure includes a base, a mounting frame connected to the base, a top cover threadedly connected to the mounting frame, a display screen detachably connected to the mounting frame, a mounting block connected to the display screen, a mounting slot provided on the mounting frame, the mounting block cooperating with the mounting slot, a sliding groove provided on the mounting frame, a locking rod slidably connected to the side wall of the sliding groove, a first spring connected to the locking rod, a locking slot provided on the mounting block, the locking rod cooperating with the locking slot, an operating rod connected to the locking rod, an operating groove provided on the mounting frame, the operating rod slidably connected to the operating groove, a limit rod slidably connected to the operating rod and the locking rod, a handle connected to the limit rod, and a limit groove provided on the mounting frame, the limit rod cooperating with the limit groove.
[0007] Preferably, the limiting rod is fitted with a second spring, and the two ends of the second spring are respectively connected to the handle and the operating rod.
[0008] Preferably, the mounting bracket has a through slot, and the display screen cooperates with the through slot.
[0009] Preferably, the base is connected to a control circuit board, a power module, and a signal processing module, and the power module, signal processing module, and display screen are electrically connected to the control circuit board.
[0010] Preferably, the base has slots that are electrically connected to the control circuit board and the power module, respectively.
[0011] Preferably, the base is connected to an anti-slip pad.
[0012] The beneficial effects of this technical solution compared to existing technologies are as follows:
[0013] (1) This solution significantly reduces installation difficulty by setting up mounting blocks and mounting slots, and then using the engagement of the clamp rod and the slot to achieve a detachable connection. Workers do not need to carry a large number of tools and can quickly complete the installation themselves, saving tool preparation time and costs, greatly improving installation efficiency, and reducing labor costs and installation barriers. When the display screen malfunctions or needs replacement, the engagement of the clamp rod and the slot can be quickly released, and the display screen can be removed from the mounting frame. When a part of the display screen exhibits abnormal display, the faulty display screen can be quickly located and replaced, reducing repair time. The rapid disassembly and replacement process ensures that the repair or replacement of the display screen will not significantly affect the overall project schedule. Secondly, the rapid installation and maintenance process saves a lot of time, reduces project time costs, ensures the display screen is put into use and maintained in a timely manner, and avoids losses due to time delays. Finally, the clamp rod is tightly locked in the slot under the action of the first spring, providing a stable connection between the display screen and the mounting frame, effectively resisting the effects of vibration, external impact, and other factors, ensuring that the display screen will not loosen during use, and significantly improving the stability after splicing.
[0014] (2) By setting a second spring, the position of the locking lever can be precisely controlled during disassembly through the cooperation of the second spring, the limiting rod, and the limiting groove. This prevents the locking lever from accidentally popping out and obstructing the disassembly of the display screen. This allows workers to quickly and smoothly release the locking lever from the mounting block each time the display screen is disassembled, saving a significant amount of time spent dealing with unexpected locking lever pop-out issues. This enables the disassembly of multiple display screens to be completed in a short time, improving overall work progress and reducing maintenance costs.
[0015] (3) By setting through slots, a good heat dissipation channel can be provided for the display screen, so that the heat generated by the display screen during operation can be dissipated in time, ensuring that the display screen works in a suitable temperature environment, extending the service life of the display screen, and also helping to maintain the display performance of the display screen and reduce problems such as color deviation and uneven brightness caused by overheating. Secondly, the display screen's cables can pass through, which facilitates the layout and organization of the cables and avoids messy cables.
[0016] (4) By setting up a control circuit board, a power supply module, and a signal processing module, the control circuit board is used to control the display content and display parameters of the display screen, the power supply module provides power support for the entire display screen, and the signal processing module is used to process the input display signals. This provides a stable power supply and accurate signal control for the display screen, ensuring that the display screen can normally display various images, text, and other information, thus guaranteeing the quality of the display effect.
[0017] (5) The device features two sets of slots. One set is for connecting external devices such as computers and video players, providing users with a wide range of signal source access possibilities. This diverse signal input method greatly satisfies the needs of displaying content on the screen in different scenarios. The other set of slots is specifically for charging the power module. This design greatly improves the convenience of using the device. In mobile or temporary use scenarios where power outlets are not readily available, such as outdoor exhibitions or temporary performance venues, users can easily charge the power module through this set of slots, ensuring that the display screen can work continuously and stably. Both sets of slots adopt a standard interface design. Users only need to insert the corresponding device plug into the slot to quickly connect the device or charge the power module, without complicated setup or wiring processes, thus improving the efficiency of device use.
[0018] (6) By installing anti-slip pads made of rubber with anti-slip textures, the friction between the base and the placement surface is increased, effectively preventing injury to surrounding personnel due to the display screen sliding or tipping over, thus reducing the probability of accidents. Secondly, it greatly improves the stability of the display screen, ensuring that it will not shift due to vibration or other factors during operation, maintaining the continuity and stability of the display effect. Finally, preventing sliding and tipping reduces hardware damage to the display screen caused by collisions, extends the equipment's lifespan, and reduces maintenance and replacement costs. Attached Figure Description
[0019] Figure 1 This is a front view of the present invention;
[0020] Figure 2 A front view of the mounting bracket provided by this utility model;
[0021] Figure 3 A top sectional view of the lever provided by this utility model;
[0022] Reference numerals: 1. Top cover; 2. Display screen; 3. Base; 4. Slot; 5. Mounting groove; 6. Mounting bracket; 7. Through groove; 8. Mounting block; 9. Operating lever; 10. Operating groove; 11. Handle; 12. Second spring; 13. Limiting rod; 14. Limiting groove; 15. First spring; 16. Locking rod; 17. Slide groove; 18. Locking groove. Detailed Implementation
[0023] The present invention will now be described in further detail with reference to the accompanying drawings and embodiments:
[0024] like Figure 1-3 The illustrated bottle-shaped LED display screen with a splicing structure includes a base 3, a mounting bracket 6 connected to the top of the base 3, and a top cover 1 threadedly connected to the top of the mounting bracket 6. This top cover 1 protects the internal structure of the display screen 2, preventing dust and debris from entering and affecting its normal operation. This threaded connection facilitates the installation and removal of the top cover 1, making it convenient for the installation, disassembly, maintenance, and repair of the display screen 2. The mounting bracket 6 can be detachably connected to several display screens 2, forming a unique bottle shape with aesthetic appeal and creativity. Several display screens 2 can be spliced together to display different content according to actual needs, meeting diverse display requirements. Each display screen 2 is connected to four mounting blocks 8, and the mounting bracket 6 has several mounting slots 5. Each mounting block 8 cooperates with its corresponding mounting slot 5 to achieve initial positioning of the display screen 2 and the mounting bracket 6. The mounting bracket 6 has several sliding grooves 17, each with a locking rod 16 slidably connected to its side wall. Each sliding groove 17 also has a first spring 15 connected to its side wall, with the other end of each first spring 15 connected to a locking rod 16. Each mounting block 8 has a locking slot 18, with each locking rod 16 engaging with its corresponding slot 18. The outer side of each locking rod 16 is angled, and the mounting block 8 has rounded corners. When the mounting block 8 is inserted into the mounting groove 5, the angled outer side of the locking rod 16 is pressed and moves to one side. The rounded corners of the mounting block 8 facilitate smooth insertion. Once the mounting block 8 is in place, the locking rod 16 springs into the locking slot 18 of the mounting block 8 under the action of the first spring 15, achieving a secure engagement between the display screen 2 and the mounting bracket 6. Each lever 16 is connected to an operating lever 9. The mounting bracket 6 has an operating groove 10 corresponding to the operating lever 9. Each operating lever 9 is slidably connected to its corresponding operating groove 10. The user can control the movement of the lever 16 by sliding the operating lever 9, thereby disassembling the display screen 2. Each operating lever 9 and its corresponding lever 16 are slidably connected to a limit rod 13. Each limit rod 13 is connected to a handle 11. The mounting bracket 6 has a limit groove 14, and the limit rod 13 and the limit groove 14 cooperate with each other.
[0025] like Figure 3As shown, each limiting rod 13 is fitted with a second spring 12 on its outer wall, and each second spring 12 is connected to the corresponding handle 11 and operating rod 9 at both ends. During normal use, the limiting rod 13 is housed inside the operating rod 9. When disassembling the display screen 2, the user slides the operating rod 9 to make it slide, until the limiting rod 13 is engaged in the limiting groove 14 under the action of the second spring 12, preventing the locking rod 16 from popping out accidentally, thus releasing the restriction on the mounting block 8, realizing the quick disassembly of the display screen 2, and precisely controlling the position of the locking rod 16 to avoid the locking rod 16 accidentally popping out and obstructing the disassembly of the display screen 2.
[0026] like Figure 2 As shown, the mounting bracket 6 has several through slots 7, and several display screens 2 cooperate with the corresponding through slots 7. The design of the through slots 7 provides a good heat dissipation channel for the display screens 2, which can dissipate the heat generated by the display screens 2 during operation in a timely manner, ensuring that the display screens 2 operate in a suitable temperature environment, extending the service life of the display screens 2, and also helping to maintain the display performance of the display screens 2, avoiding display abnormalities caused by overheating. Furthermore, the through slots 7 allow the display screens 2's wiring to pass through, facilitating wiring layout and organization, and avoiding messy wiring. The base 3 internally connects to a control circuit board, a power module, and a signal processing module. The power module, signal processing module, and display screens 2 are electrically connected to the control circuit board. The control circuit board is the core control component of the entire display screen 2, and it is electrically connected to the power module, signal processing module, and display screens 2. The power module is responsible for providing a stable power supply to the entire display screen 2 system, while the signal processing module processes various input signals, such as converting signals from external devices like computers and video players into a format that the display screens 2 can recognize and display, and then transmitting them to the display screens 2 for display via the control circuit board. The base 3 has two sets of slots 4 on its exterior, which are electrically connected to the control circuit board and the power module, respectively. One set of slots connects to the control circuit board, allowing users to connect various external devices such as computers and video players, enabling diverse signal inputs and meeting display needs in different scenarios. The other set of slots 4 connects to the power module, facilitating charging, which is particularly suitable for mobile or temporary use scenarios where a fixed power outlet cannot be readily available, such as outdoor exhibitions. The bottom of the base 3 is fitted with an anti-slip pad made of rubber with a textured surface, effectively increasing friction between the base 3 and the surface it rests on, preventing the display screen 2 from accidentally sliding or tipping over, ensuring the stability and safety of the device.
[0027] The specific implementation process is as follows:
[0028] In use, place the base 3 on a stable workbench, pick up a display screen 2, align the four mounting blocks 8 on the display screen 2 with the corresponding mounting slots 5, and slowly insert the display screen 2 into the mounting slot 5. At this time, the locking lever 16 is pressed and moves to one side. When the mounting block 8 is fully inserted into the mounting slot 5 and in place, the locking lever 16 is springed into the locking groove 18 under the action of the first spring 15, realizing a firm locking connection between the display screen 2 and the mounting frame 6. Repeat the above steps to install several display screens 2 onto the mounting frame 6 in sequence, completing the splicing installation of the display screens 2. Then align the top cover 1 with the threaded interface on the top of the mounting frame 6, and slowly rotate the top cover 1 to make it tightly fixed to the mounting frame 6 through the threaded connection. Ensure that the top cover 1 is installed in place, which protects the internal structure of the display screen 2 and prevents dust and debris from entering.
[0029] If you need to connect external devices (such as computers, video players, etc.) for signal input, insert the data cable of the corresponding device into slot 4, and perform the necessary settings and adjustments according to the device requirements to enable display screen 2 to display the content of the external device. If the power module needs to be charged, insert the plug of the charging device into another slot 4 to begin charging the power module.
[0030] When it is necessary to disassemble the display screen 2, unscrew the top cover 1, pull the operating lever 9, causing it to slide the limiting lever 13 until the limiting lever 13 slides out from inside the operating lever 9 and is engaged in the limiting groove 14. At this time, the operating lever 9 releases the limiting of the locking lever 16, and the user can gently remove the display screen 2 from the mounting bracket 6 to complete the disassembly operation of the display screen 2. When it is necessary to release the limiting of the locking lever 16, pull the handle 11 outward to overcome the elastic force of the second spring 12, causing the limiting lever 13 to disengage from the limiting groove 14. At this time, sliding the operating lever 9 will engage the limiting lever.
[0031] The above descriptions are merely embodiments of this utility model. Commonly known technical solutions and / or characteristics are not described in detail here. It should be noted that those skilled in the art can make various modifications and improvements without departing from the technical solution of this utility model. These modifications and improvements should also be considered within the scope of protection of this utility model, and will not affect the effectiveness of the implementation of this utility model or the practicality of the patent. The scope of protection claimed in this application should be determined by the content of its claims, and the specific embodiments described in the specification can be used to interpret the content of the claims.
Claims
1. A bottle-shaped LED display screen with a splicing structure, characterized in that: The base (3) is connected with the mounting frame (6), the mounting frame (6) is threadedly connected with the top cover (1), the mounting frame (6) is detachably connected with the display screen (2), the display screen (2) is connected with the mounting block (8), the mounting frame (6) is provided with the mounting groove (5), the mounting block (8) and the mounting groove (5) are matched with each other, the mounting frame (6) is provided with the sliding groove (17), the sliding groove (17) is slidably connected with the clamping rod (16), the sliding groove (17) is connected with the first spring (15), the first spring (15) is connected with the clamping rod (16), the mounting block (8) is provided with the clamping groove (18), the clamping rod (16) and the clamping groove (18) are matched with each other, the clamping rod (16) is connected with the operating rod (9), the mounting frame (6) is provided with the operating groove (10), the operating rod (9) and the operating groove (10) are slidably connected, the operating rod (9) and the clamping rod (16) are slidably connected with the limiting rod (13), the limiting rod (13) is connected with the handle (11), the mounting frame (6) is provided with the limiting groove (14), and the limiting rod (13) and the limiting groove (14) are matched with each other.
2. The bottle-shaped LED display screen with a splicing structure according to claim 1, characterized in that: The limiting rod (13) is sleeved with the second spring (12), and the second spring (12) is connected with the handle (11) and the operating rod (9) at two ends.
3. The bottle-shaped LED display screen with splicing structure according to claim 1, characterized in that: The mounting frame (6) is provided with the through groove (7), and the display screen (2) is matched with the through groove (7).
4. The bottle-shaped LED display screen with a splicing structure according to claim 1, characterized in that: The base (3) is connected with a control circuit board, a power module and a signal processing module, and the power module, the signal processing module and the display screen (2) are electrically connected with the control circuit board.
5. The bottle-shaped LED display screen with splicing structure according to claim 4, characterized in that: The base (3) is provided with the insertion slot (4), and the insertion slot (4) is electrically connected with the control circuit board and the power module.
6. The bottle-shaped LED display screen with a splicing structure according to claim 1, characterized in that: The base (3) is connected with a non-slip pad.