LED display screen mounting system

The design of the display screen installation frame and windproof frame connected by the arc lock component and the U-shaped lock component solves the problem of complex connection of the existing LED display box frame, realizes fast and safe installation and disassembly, and improves the connection strength and wind resistance.

CN223322298UActive Publication Date: 2025-09-09XIANGSHU TECH (SHENZHEN) CO LTD
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Patent Information

Application Number
CN202422391237.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2024-04-08
Filing Date
2024-09-29
Publication Date
2025-09-09
Estimated Expiration
2034-09-29

AI Technical Summary

Technical Problem

The existing LED display box frame connection structure is complex, resulting in a large assembly workload and the risk of high-altitude operations, making it difficult to achieve fast and safe installation and disassembly.

Method used

The display installation frame is connected with an arc lock assembly and a U-shaped lock assembly. It is designed as an identical unit module to simplify the installation and disassembly process. The windproof frame provides three-dimensional support to enhance wind resistance.

Benefits of technology

It realizes efficient and quick installation and removal of LED display screens, reduces the probability of misoperation, improves connection strength and stability, reduces the risk of high-altitude operations, and enhances wind resistance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an LED display screen mounting system. The device comprises display screen mounting frames, wherein an LED display screen can be mounted on each display screen mounting frame; the adjacent display screen mounting frames are matched and connected through the radian lock assemblies and the U-shaped lock assemblies; the third mounting side of each display screen mounting frame is provided with at least one buckling part, the fourth mounting side of each display screen mounting frame is provided with at least one second U-shaped lock assembly, and the adjacent display screen mounting frames are mounted or dismounted through the matching of the buckling parts and the second U-shaped lock assemblies; the multiple display screen mounting frames are connected left and right through the first mounting side and the second mounting side, the multiple display screen mounting frames are connected up and down through the third mounting side and the fourth mounting side, and a supporting frame of the large LED display screen is assembled. The display screen mounting system can be directly and sequentially spliced downwards on the suspension beam, so that efficient, rapid and safe mounting and dismounting of the large LED display screen are realized.
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Description

Technical Field

[0001] The utility model relates to an LED display screen installation system, belonging to the technical field of large-scale LED display screen assembly equipment. Background Art

[0002] Large LED display screens need to be formed by splicing and assembling multiple modular LED display modules. The LED display screen box frame of this solution is used to fix each LED display module and splice and assemble all LED display modules into a large LED display screen.

[0003] The connection structure of the existing LED display box frame usually uses conventional connection methods such as bolts, which makes the assembly of large LED displays extremely labor-intensive. Moreover, since the assembly work may also involve high-altitude operations, the huge workload also brings high risks to the assembly process. Therefore, the existing LED display box frame assembly method urgently needs to be improved. Summary of the Invention

[0004] In view of the above-mentioned deficiencies in the prior art, the purpose of the present invention is to provide an LED display screen installation system.

[0005] According to the implementation scheme of the present utility model, a first solution is provided: an LED display screen installation system, comprising a display screen installation frame, each display screen installation frame can be mounted on an LED display screen;

[0006] The display screen mounting frame includes a first mounting side and a second mounting side. The first mounting side of the display screen mounting frame is provided with at least one arc lock assembly, and the second mounting side of the display screen mounting frame is provided with at least one U-shaped lock assembly. Adjacent display screen mounting frames are connected through the arc lock assembly and the U-shaped lock assembly.

[0007] The display screen mounting frame further includes a third mounting side and a fourth mounting side, the third mounting side of the display screen mounting frame is provided with at least one buckling portion, and the fourth mounting side is provided with at least one second U-shaped lock assembly, and adjacent display screen mounting frames are mounted or disassembled by cooperating with the second U-shaped lock assembly through the buckling portion;

[0008] Multiple display screen mounting frames are connected left and right through the first mounting side and the second mounting side, and are connected up and down through the third mounting side and the fourth mounting side, and are assembled into a support frame for a large LED display screen.

[0009] Furthermore, an LED display box windproof frame is provided on the back of the display screen mounting frame. The LED display box windproof frame includes a main suspension frame in the same plane and an auxiliary bracket arranged on one side of the main suspension frame. The auxiliary bracket can be accommodated in the plane of the main suspension frame, or unfolded from the main suspension frame and fixed in an unfolded posture to form a three-dimensional support mechanism.

[0010] Furthermore, the display screen mounting frame can be installed on an LED display screen carrier, which includes a carrier body. A plurality of first positioning structures are provided on the bearing surface of the carrier body, and the first positioning structures are adapted to the second positioning structures of the modular bearing object. The first positioning structures and the second positioning structures are respectively provided on two opposite sides of the modular bearing object, and adjacent modular bearing objects are spliced ​​with each other through the first positioning structures and the second positioning structures.

[0011] Furthermore, it also includes:

[0012] A carrier body, wherein a plurality of first positioning structures are provided on the bearing surface of the carrier body, wherein the first positioning structures are adapted to the second positioning structures of the modular bearing object, and the first positioning structures and the second positioning structures are respectively provided on two opposite sides of the modular bearing object, and adjacent modular bearing objects are spliced ​​with each other through the first positioning structures and the second positioning structures.

[0013] According to the implementation scheme of the present utility model, using the LED display screen installation system in the first solution provided by the present utility model, a second solution is provided:

[0014] A method for installing an LED display screen includes the following steps:

[0015] Obtaining the position of the suspension beam, sequentially installing display screen mounting frames along a vertical direction below the suspension beam, wherein the display screen mounting frames can be mounted on the LED display screen, wherein the display screen mounting frames include a first mounting side and a second mounting side, wherein the first mounting side of the display screen mounting frame is provided with at least one arc lock assembly, and the second mounting side of the display screen mounting frame is provided with at least one U-shaped lock assembly, and adjacent display screen mounting frames are connected through the arc lock assembly and the U-shaped lock assembly;

[0016] The bottom of the suspension beam is provided with a radian lock assembly identical to the first mounting side of the display screen mounting frame, and the display screen mounting frame is connected to the radian lock assembly through a U-shaped lock assembly;

[0017] Alternatively, a U-shaped lock assembly identical to the second mounting side of the display screen mounting frame is provided at the bottom of the suspension beam, and the display screen mounting frame is connected to the U-shaped lock assembly through an arc lock assembly;

[0018] Each time a display screen mounting frame is installed, a hierarchical order of the display screen mounting frame is defined, and the display screen mounting frames at the same level are connected and fixed on the left and right sides. The display screen mounting frame further includes a third mounting side and a fourth mounting side. The third mounting side of the display screen mounting frame is provided with at least one buckling portion, and the fourth mounting side is provided with at least one second U-shaped lock assembly. Adjacent display screen mounting frames are installed or removed through the buckling portion and the second U-shaped lock assembly.

[0019] Connect all the display screen installation frames in sequence and assemble them into a support frame for a large LED display screen. If an LED display screen is installed on each display screen installation frame, it will be assembled into a large LED display screen.

[0020] Compared with the existing technology, the technical solution provided by this application has the following unique beneficial effects: this solution can directly splice the LED display screen modules one by one downward on the suspension beam. Since the bottom of the suspension beam is provided with a connection structure identical to the display screen mounting frame, the use of the same connection structure as the display screen mounting frame can save the design cost and production cost of the suspension beam, and the overall connection operation is consistent, avoiding errors, and ultimately realizing efficient, fast and safe installation and removal of large LED display screens.

[0021] The display cabinet frame where the LED display modules are installed is designed to be identical unit modules. This way, there is no need to distinguish between left and right positions or up and down positions. There is no need to classify them during installation, removal, and transportation, and there will be no misoperation caused by incorrect distinction.

[0022] Secondly, the display screen box frame of each unit module is divided into a first installation side and a second installation side. The first installation side and the second installation side cooperate with each other. When correctly divided into the connection surface facing the LED display screen, the first installation side of each unit module faces the second installation side of the adjacent unit module, and the second installation side of each unit module also faces the first installation side of another adjacent unit module. In the overall installation system of the LED display screen, the installation and removal operations of each unit module are the same, the efficiency of the operator's repeated operations can be guaranteed, and the consistency of operation can also reduce the probability of incorrect operation;

[0023] Secondly, the display screen cabinet frame of each unit module is divided into a third installation side and a fourth installation side. The third installation side and the fourth installation side cooperate with each other. When correctly divided into the connection surface facing the LED display screen, the third installation side of each unit module faces the fourth installation side of the adjacent unit module, and the third installation side of each unit module also faces the fourth installation side of another adjacent unit module. In the overall installation system of the LED display screen, the installation and removal operations of each unit module are the same, the efficiency of the operator's repeated operations can be guaranteed, and the consistency of operation can also reduce the probability of misoperation;

[0024] Secondly, the display screen mounting frames of adjacent unit modules are connected through the arc lock assembly and the U-lock assembly. The U-lock assembly and the arc lock assembly work together to ensure the connection strength, stability and installation / removal efficiency of the entire LED display screen installation system. The arc lock assembly adjusts the splicing angle between the adjacent LED display screen cabinet frames, thereby achieving the splicing curvature of the large LED display screen.

[0025] Secondly, the windproof frame can be set to a stowed state and an unfolded state. In the stowed state, it overlaps with the original display screen cabinet in height, does not take up too much space, and does not change the basic equipment for transportation, storage, and installation of the existing display screen cabinet; in the unfolded state, the windproof frame forms a three-dimensional support mechanism, which adds at least one layer of installation support structure to the original flat display screen and display screen installation frame system, and expands the surface support into a three-dimensional support, which greatly enhances the wind resistance and deformation resistance of the large LED display screen; the design concept of the windproof frame is consistent with that of the display screen installation frame, and both are the same unit modules, so there is no need to distinguish between left and right or left and right positions, and no classification is required during installation, removal and transportation, and there will be no misoperation caused by incorrect distinction; the setting of the windproof frame moves the center of gravity of the display screen support system as a whole to the main suspension frame, making the overall counterweight more balanced and reasonable; when the windproof frame is unfolded, a stable ladder structure is formed for staff to climb up and down, providing more operating space when needed. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0027] in:

[0028] Figure 1 A schematic diagram of the left and right structures of a display screen mounting frame in one embodiment;

[0029] Figure 2 A schematic diagram of the left and right connections of adjacent display screen mounting frames in one embodiment;

[0030] Figure 3 A schematic structural diagram of an arc lock assembly and a U-shaped lock assembly in one embodiment;

[0031] Figure 4 A schematic diagram of the connection and cooperation between the arc lock assembly and the U-shaped lock assembly in one embodiment;

[0032] Figure 5 A schematic diagram of the upper and lower structures of a display screen mounting frame in one embodiment;

[0033] Figure 6 A schematic diagram of the upper and lower connections of adjacent display screen mounting frames in one embodiment;

[0034] Figure 7 A schematic structural diagram of a buckling portion and a U-shaped lock assembly in one embodiment;

[0035] Figure 8 This is a structural diagram of the windproof frame of the LED display box in one embodiment;

[0036] Figure 9 A schematic diagram of a windproof frame in a storage state according to an embodiment;

[0037] Figure 10 Schematic diagram of the structure of an LED display screen carrier in one embodiment.

[0038] Reference numerals:

[0039] 100 - display screen mounting frame; 10 - arc lock assembly; 101 - first docking plate; 102 - locking buckle; 103 - locking slot; 20 - U-shaped lock assembly; 201 - second docking plate; 202 - lock body; 203 - U-shaped connecting rod; 204 - handle; 205 - safety buckle; 207 - first rotating shaft; 208 - second rotating shaft;

[0040] 30- buckle part; 301- buckle plate; 302- buckle groove; 40- U-shaped lock assembly; 401- lock body; 402- U-shaped connecting rod; 403- handle; 404- safety buckle;

[0041] 51 - first fixing rod; 52 - second fixing rod; 53 - upper assembly; 54 - lower assembly; 55 - latch block; 61 - support rod; 62 - connecting arm; 63 - sliding arm; 641 - knob sleeve; 642 - screw;

[0042] 500-Box windproof frame; 70-Carrier body; 71-Wheel assembly; 72-Loading plate; 73-Locking hole; 74-Reinforcement plate; 75-Side baffle; 76-Top bracket. DETAILED DESCRIPTION

[0043] In order to enable those skilled in the art to better understand the technical solutions in this application, the technical solutions in the embodiments of this application will be clearly and completely described below in conjunction with the drawings in the embodiments of this application. Obviously, the described embodiments are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by those skilled in the art without making any creative efforts shall fall within the scope of protection of this application.

[0044] Example 1

[0045] This solution involves an assembly and splicing device for a large LED display system. Large LED displays typically use multiple small modular LED display modules (small LED displays). Large LED displays require rapid assembly and disassembly in many scenarios. For example, concerts held in stadiums are rented on a time-based basis. During stage construction, the installation and dismantling time of the large LED display are included in the rental period. It is extremely difficult to quickly complete the installation or disassembly within a limited timeframe while ensuring the installation accuracy and stability of the large LED display. A relatively conservative and stable installation or disassembly process requires more venue rental time and results in higher costs.

[0046] In order to improve the installation or disassembly speed of large-scale LED display screens, the existing solution is to fix the small LED display modules of the large-scale LED display screen equipment on the display screen mounting frame 100 in advance, and then quickly splice the LED display modules by splicing the display screen mounting frame 100 on site. However, the splicing operation of the existing display screen mounting frame 100 is relatively complicated, resulting in insufficient installation efficiency. Due to the limited on-site operation time, not only does it cause great work pressure on the operators, but it is also easy to cause installation errors and high-altitude operation risks due to the difficulty of operation and the large workload.

[0047] In order to solve the above problems, this embodiment provides a left and right connecting device of an LED display screen box frame, including a display screen mounting frame 100, on which an LED display screen can be mounted. Figure 1-4 As shown, the display screen mounting frame 100 includes a first mounting side (F1 direction) and a second mounting side (F2 direction). The first mounting side of the display screen mounting frame 100 is provided with at least one arc lock assembly 10, and the second mounting side of the display screen mounting frame 100 is provided with at least one U-shaped lock assembly 20. Adjacent display screen mounting frames 100 are connected through the arc lock assembly 10 and the U-shaped lock assembly 20.

[0048] By means of the left and right connection devices of the LED display box frame of the present embodiment, the display box frame for installing the LED display module is designed to be completely identical unit modules, so that there is no need to distinguish the left and right positions, and there is no need to classify during installation, removal and transportation, and there will be no erroneous operation caused by incorrect distinction; the display box frame of each unit module is divided into a first installation side and a second installation side, and the first installation side and the second installation side cooperate with each other. When correctly distinguished as the connection surface facing the LED display, the first installation side of each unit module is facing the second installation side of the adjacent unit module, and the second installation side of each unit module is also facing the first installation side of another adjacent unit module. In the overall installation system of the LED display, the installation and removal operations of each unit module are the same, the efficiency of repeated operations by the operator can be guaranteed, and the consistency of operation can also reduce the probability of erroneous operation; the display mounting frames 100 of adjacent unit modules are connected by the arc lock assembly 10 and the U-lock assembly 20. The U-lock assembly 20 cooperates with the arc lock assembly 10 to ensure the connection strength, stability and installation / removal operation efficiency of the overall installation system of the LED display. The arc lock assembly 10 adjusts the adjacent LED The splicing angle between the display cabinet frames is used to achieve the splicing curvature of the large LED display.

[0049] Specifically, the arc lock assembly 10 includes a first docking plate 101, and the U-shaped lock assembly 20 includes a second docking plate 201 that cooperates with the first docking plate 101. The arc lock can adjust the angle of the first docking plate 101 relative to the display screen mounting frame 100. When the adjacent display screen mounting frames 100 are locked and connected, the first docking plate 101 and the second docking plate 201 fit tightly together.

[0050] Adjacent display screen mounting frames 100 are connected by arc lock assemblies 10 and U-shaped lock assemblies 20. Therefore, it is necessary to design new arc lock assemblies 10 and U-shaped lock assemblies 20 to simplify the disassembly and assembly process between the display screen mounting frames 100 while also increasing the connection strength between the display screen mounting frames 100 and realizing the angle connection between the display screen mounting frames 100. In addition, the arc-shaped LED display screens can be spliced ​​through the angle connection between the display screen mounting frames 100. This solution is extremely difficult to implement.

[0051] In order to achieve a quick connection between the arc lock assembly 10 and the U-shaped lock assembly 20, this embodiment is designed to design a U-shaped lock assembly 20 including a lock body 202, a U-shaped connecting rod 203, a handle 204, and a safety buckle 205. At the same time, the arc lock assembly 10 includes a locking groove 103 that cooperates with the U-shaped connecting rod 203, and the connection and disassembly between adjacent display screen mounting frames 100 are realized as a simple operation of buckling the U-shaped connecting rod 203 into the locking groove 103 and removing it from the locking groove 103. At the same time, when the arc lock adjusts the angle of the first docking plate 101 to adjust the connection angle of the adjacent display screen mounting frames 100, it does not affect the operation of buckling the U-shaped connecting rod 203 into and out of the locking groove 103.

[0052] Specifically, the second docking plate 201 can be connected to the lock body of the U-shaped lock assembly 20 , or the second docking plate 201 can be fixedly disposed on the display screen mounting frame 100 .

[0053] Specifically, the lock body 202 is connected to the display screen mounting frame 100 through the first rotating shaft 207, and the U-shaped connecting rod 203 is connected to the lock body 202 through the second rotating shaft 208. When the adjacent display screen mounting frames 100 are pre-spliced, the safety buckle 205 is opened, and the U-shaped connecting rod 203 of the U-shaped lock assembly 20 is rotated along the first rotation direction so that the U-shaped end is confined in the locking groove 103 of the arc lock assembly 10. The second rotating shaft 208 is driven by the handle 204 to rotate the U-shaped connecting rod 203 along the second rotation direction so that the second connecting shaft end is reversed and enters the locking position, forming a locked connection state of the adjacent display screen mounting frames 100, wherein the second rotation direction is opposite to the first rotation direction.

[0054] To ensure a strong connection between display screen mounting frames 100, the curved lock assembly 10 and the U-shaped lock assembly 20 are docked together, and the first docking plate 101 and the second docking plate 201 cooperate to achieve a stable connection between the brackets of adjacent display screen mounting frames 100. The curved lock assembly 10 includes a first docking plate 101, and the U-shaped lock assembly 20 includes a second docking plate 201 that mates with the first docking plate 101. The curved lock can adjust the angle of the first docking plate 101 relative to the display screen mounting frame 100. When the adjacent display screen mounting frames 100 are locked and connected, the first docking plate 101 and the second docking plate 201 are tightly fitted.

[0055] Furthermore, the first docking plate 101 is provided with at least one locating pin, and the second docking plate 201 is provided with locating slots that match the position and number of the locating pins. When adjacent display screen mounting frames 100 are pre-assembled, the locating pins are inserted into the locating slots to limit the relative displacement between the first docking plate 101 and the second docking plate 201. The coordinated structure of the locating pins and locating slots facilitates the correct assembly of adjacent display screen mounting frames 100 when they are pre-assembled.

[0056] To achieve an angled connection between the display screen mounting frames 100, this embodiment connects a first docking plate 101 to the arc lock, and sets a second docking plate 201 in the U-shaped lock assembly 20 provided on the second mounting side of the display screen mounting frame 100. The surface of the display screen mounting frame 100 facing the LED display screen is defined as the connection surface. The second docking plate 201 of the U-shaped lock assembly 20 is perpendicular to the connection surface. When the arc lock assembly 10 is adjusted to 0 degrees, the first docking plate 101 is perpendicular to the connection surface.

[0057] Specifically, the arc lock assembly 10 includes a locking buckle 102. When the locking buckle 102 is in the open state, the adjustment angle of the arc lock assembly 10 includes: -7.5°, -5°, -2.5°, 0°, 2.5°, -5°, and -7.5°. The arc lock is used to adjust the angle between the first docking plate 101 and the connecting surface to include: -7.5°, -5°, -2.5°, 0°, 2.5°, -5°, and -7.5°, thereby achieving the adjustment of the angle range between adjacent display modules of the large LED display screen including: -7.5°, -5°, -2.5°, 0°, 2.5°, -5°, and -7.5°. That is, the arc-shaped LED display screen is realized through preliminary calculations involving the arc adjustment of the arc lock assembly 10, and the arc adjustment is achieved through the positioning of the arc scale on the arc lock and the arc adjustment teeth of the arc lock. Finally, during the rapid installation of the display screen mounting frame 100, the operator can quickly realize the splicing of the arc-shaped LED display screen by adjusting the arc lock at the required position.

[0058] Specifically, the overall area of ​​the display screen mounting frame 100 is slightly smaller than the area of ​​the LED display screen. That is, after adjacent display screen mounting frames 100 are connected, there is a gap between the display screen mounting frames 100, but the front LED display screens are tightly spliced.

[0059] In order to achieve fast, accurate and convenient connection of adjacent display screen mounting frames 100, at least one positioning pin is provided on the first mounting side of the display screen mounting frame 100, and the second mounting side of the display screen mounting frame 100 is also provided with positioning grooves that match the number, position and structure of the positioning pins.

[0060] Example 2

[0061] like Figure 5-7As shown, a device for connecting the upper and lower frames of an LED display screen box includes a display screen mounting frame 100. Each display screen mounting frame 100 can be mounted on an LED display screen. The display screen mounting frame 100 includes a third mounting side and a fourth mounting side. The third mounting side of the display screen mounting frame 100 is provided with at least one buckling portion 30, and the fourth mounting side is provided with at least one U-shaped lock assembly 40. Adjacent display screen mounting frames 100 are connected by the buckling portion 30 and the U-shaped lock assembly 40.

[0062] The fastening portion 30 includes a fastening plate 301, which is integrally formed with the display mounting frame 100 or provided on the display mounting frame 100. When adjacent display mounting frames 100 are locked and connected, the U-shaped lock assembly 40 is fixedly connected to the fastening plate 301. The fastening plate 301 includes a fastening groove 302 that is adapted to fit within the U-shaped lock assembly 40.

[0063] The lock body 401 is connected to the display screen mounting frame 100 via a first rotating shaft, and the U-shaped connecting rod 402 is connected to the lock body 401 via a second rotating shaft. When the adjacent display screen mounting frames 100 are pre-assembled, the safety buckle 404 is opened, and the U-shaped connecting rod 402 of the U-shaped lock assembly 40 is rotated along a first rotation direction so that the U-shaped end is confined in the locking groove 302 of the locking portion 30. The second rotating shaft is driven by the handle 403 to rotate the U-shaped connecting rod 402 along a second rotation direction so that the second connecting shaft end is reversed and enters the locked position, thereby forming a locked connection state of the adjacent display screen mounting frames 100, wherein the second rotation direction is opposite to the first rotation direction.

[0064] The overall area of ​​the display screen mounting frame 100 is slightly smaller than the area of ​​the LED display screen.

[0065] First, the display cabinet frame where the LED display modules are installed is designed to be identical unit modules. This way, there is no need to distinguish between upper and lower positions, and there is no need to sort them during installation, removal, and transportation, which will also prevent misoperation due to incorrect distinction.

[0066] Secondly, the display screen cabinet frame of each unit module is divided into a third installation side and a fourth installation side. The third installation side and the fourth installation side cooperate with each other. When correctly divided into the connection surface facing the LED display screen, the third installation side of each unit module faces the fourth installation side of the adjacent unit module, and the third installation side of each unit module also faces the fourth installation side of another adjacent unit module. In the overall installation system of the LED display screen, the installation and removal operations of each unit module are the same, the efficiency of the operator's repeated operations can be guaranteed, and the consistency of operation can also reduce the probability of incorrect operation;

[0067] Secondly, the LED display box frames of adjacent unit modules are connected through the buckling part 30 and the U-shaped lock assembly 40. The U-shaped lock assembly 40 cooperates with the buckling part 30 to ensure the connection strength, stability and installation / removal operation efficiency of the overall installation system of the LED display.

[0068] Example 3

[0069] like Figure 8-9 As shown, this embodiment provides a windproof frame for an LED display box:

[0070] The LED display box windproof frame is arranged on the back of the display installation frame 100;

[0071] The LED display box windproof frame includes a main suspension frame in the same plane and an auxiliary bracket arranged on one side of the main suspension frame. The auxiliary bracket can be accommodated in the plane of the main suspension frame, or unfolded from the main suspension frame and fixed in an unfolded posture to form a three-dimensional support mechanism.

[0072] Furthermore, the display screen mounting frame 100 includes a mounting surface and a back surface, and the mounting surface of the display screen mounting frame 100 is detachably connected to the LED display screen.

[0073] Furthermore, the main suspension frame includes two longitudinally arranged fixing rods and a cross bar assembly arranged between the two fixing rods.

[0074] Furthermore, the cross bar assembly includes an upper assembly 53 and a lower assembly 54, the upper assembly 53 includes at least one pin block 55, and the lower assembly 54 includes at least one pin slot. The pin block 55 of the LED display box windproof frame can be adapted and fixedly connected to the pin slot of the upper adjacent LED display box windproof frame, and the pin slot of the LED display box windproof frame can be adapted and fixedly connected to the pin block 55 slot of the lower adjacent LED display box windproof frame.

[0075] Furthermore, the upper component 53 includes two latch blocks 55, and the lower component 54 includes two latch slots. The two latch blocks 55 are respectively concentrically arranged with the two fixing rods, and the two latch slots are respectively concentrically arranged with the two fixing rods.

[0076] Furthermore, the latch block 55 is provided with a latch hole for locking in the same direction as the crossbar assembly.

[0077] Furthermore, a switch assembly is provided on the lower assembly 54 , and the switch assembly is used to lock or release the latch block 55 inserted into the latch slot.

[0078] Furthermore, multiple LED display box windproof frames are connected through the cooperation of the upper component 53 and the lower component 54 to form a continuous display screen perpendicular to the bottom surface, and the pin block 55 of the uppermost LED display box windproof frame of the continuous display screen is connected to the hanging beam.

[0079] Furthermore, the auxiliary bracket includes a support rod 61, which is rotatably connected to one of the fixed rods through two connecting arms 62. A sliding arm assembly is further provided between the support rod 61 and the other fixed rod, and the sliding arm assembly includes a fixed end, a sliding arm rod 63 and a sliding sleeve.

[0080] When the auxiliary bracket is accommodated in the plane of the main suspension frame, the sliding sleeve slides upward along the support rod 61 and drives the sliding arm rod 63 from the vertical direction to the parallel direction to be accommodated to the side of the other fixed rod. When the auxiliary bracket is unfolded from the main suspension frame, the sliding sleeve slides downward along the support rod 61 and drives the sliding arm rod 63 from the parallel direction to the vertical direction to unfold to the side away from the main suspension frame. When the auxiliary bracket is fixed in the unfolded posture, the sliding sleeve moves down to the limit fixing part and makes the sliding arm rod 63 and the two connecting arms 62 in the same direction to form a support ladder allowing the user to crawl. At this time, the support rod 61 and the two fixed rods of the main suspension frame form a three-dimensional support mechanism arranged in a triangle.

[0081] Furthermore, a knob sleeve 641 is provided at the upper end of the support rod 61 , and a screw rod 642 is provided at the lower end of the support rod 61 to cooperate with the knob sleeve 641 of the adjacent support rod 61 .

[0082] In one embodiment, the fixing rod is configured as a first fixing rod 51 and a second fixing rod 52 , the support rod 61 is connected to the first fixing rod 51 via two connecting arms 62 , and the support rod 61 is connected to the second fixing rod 52 via a sliding arm assembly.

[0083] The unique beneficial effects of the technical solution provided by this application are:

[0084] First, the windproof frame can be set in a stowed state and an unfolded state. In the stowed state, it overlaps with the original display cabinet in height, does not take up too much space, and does not change the existing basic equipment for transportation, storage, and installation of the display cabinet. In the unfolded state, the windproof frame forms a three-dimensional support mechanism, adding at least one layer of installation support structure to the original flat display screen and display screen installation frame 100 system, expanding the planar support into a three-dimensional support, and greatly enhancing the wind resistance and deformation resistance of the large-scale LED display screen.

[0085] Secondly, the windproof frame and the display screen mounting frame 100 have the same design concept and are both the same unit modules, so there is no need to distinguish between left and right or left and right positions. There is no need to classify them during installation, removal and transportation, and there will be no erroneous operation due to incorrect distinction;

[0086] Secondly, the setting of the windproof frame moves the center of gravity of the display support system back to the main suspension frame, making the overall weight more balanced and reasonable;

[0087] Secondly, when the windbreak is unfolded, it forms a stable ladder structure for workers to climb up and down, providing more space for operation when needed.

[0088] Example 5

[0089] This embodiment provides an LED display carrier, specifically, a trolley that carries an LED display, a display mounting frame, and a display box windproof frame 500. The existing large-scale LED display assembly process uses a large number of display mounting frames or a large number of box windproof frames 500. These modular display mounting frames or box windproof frames 500 require a large amount of site space during storage, transportation, and on-site storage. In particular, the installation site has very high requirements for installation time, requiring a large amount of equipment to be installed quickly without installation errors. The existing display mounting frames or box windproof frames 500 are generally shelf structures that are not easy to stack and are prone to cross-interference with each other. Therefore, how to achieve the rapid storage, transportation, and installation of the display mounting frames or box windproof frames 500 is very difficult in practice.

[0090] In order to solve the above technical problems, this embodiment provides an LED display screen carrier, such as Figure 10 Shown, including:

[0091] The carrier body 70 has a plurality of first positioning structures arranged on its bearing surface, the first positioning structures being adapted to the second positioning structures of the modular bearing object, the first positioning structures and the second positioning structures being respectively arranged on two opposite sides of the modular bearing object, and adjacent modular bearing objects being spliced ​​with each other through the first positioning structures and the second positioning structures.

[0092] First, a first positioning structure is provided on the carrier body 70. By cooperating with the second positioning structure of the modular supported object, the modular supported object can be quickly positioned on the carrier body 70.

[0093] Secondly, the first positioning structure on the carrier body 70 is consistent with the positioning structure between the modular carrying objects, that is, the modular carrying objects themselves have mutually coordinated positioning structures, and the carrier body 70 also uses the same positioning structure. The carrier body 70 is equivalent to a modular carrying object, but only retains its first positioning structure.

[0094] By setting the above-mentioned first positioning structure, the modular carrier object can be directly fixed on the carrier body 70 without designing other positioning structures. Since the first positioning structure extends the positioning structure of the modular carrier object, the assembly or disassembly process of the modular carrier object is the same as the operation of loading it on the carrier body 70, which can also improve the overall assembly efficiency of the display screen and reduce operational errors.

[0095] Example 6:

[0096] This embodiment provides a method for installing an LED display screen, including the following steps:

[0097] Obtain the position of the suspension beam, and sequentially install display screen mounting frames 100 in a vertical direction below the suspension beam. The display screen mounting frames 100 can be mounted on the LED display screens. The display screen mounting frames 100 include a first mounting side and a second mounting side. The first mounting side of the display screen mounting frame 100 is provided with at least one arc lock assembly 10, and the second mounting side of the display screen mounting frame 100 is provided with at least one U-shaped lock assembly 20. Adjacent display screen mounting frames 100 are connected through the arc lock assembly 10 and the U-shaped lock assembly 20.

[0098] The bottom of the suspension beam is provided with an arc lock assembly 10 that is the same as the first installation side of the display screen mounting frame 100, and the display screen mounting frame 100 is connected to the arc lock assembly 10 through a U-shaped lock assembly 20;

[0099] Alternatively, a U-shaped lock assembly 20 identical to the second mounting side of the display screen mounting frame 100 is provided at the bottom of the suspension beam, and the display screen mounting frame 100 is connected to the U-shaped lock assembly 10 through the arc lock assembly 20;

[0100] Each time a display screen mounting frame 100 is installed, a hierarchical order of the display screen mounting frame is defined, and the display screen mounting frames 100 at the same level are connected and fixed to each other. The display screen mounting frame 100 further includes a third mounting side and a fourth mounting side. The third mounting side of the display screen mounting frame 100 is provided with at least one buckling portion 30, and the fourth mounting side is provided with at least one second U-shaped lock assembly 40. Adjacent display screen mounting frames 100 are installed or removed by cooperating with the buckling portion 30 and the second U-shaped lock assembly 40;

[0101] All the display screen installation frames 100 are sequentially connected and assembled into a support frame of a large LED display screen. If an LED display screen is installed on each display screen installation frame 100, a large LED display screen is assembled.

[0102] The technical features of the above embodiments can be combined arbitrarily. In order to make the description concise, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification. The above embodiments only express several implementation methods of the present application. The description is relatively specific and detailed, but it cannot be understood as limiting the scope of the patent of this application. It should be pointed out that for ordinary technicians in this field, without departing from the concept of this application, several variations and improvements can be made, which all fall within the scope of protection of this application.

[0103] It should be noted that when an element is referred to as being "fixed on" or "set on" another component, it may be directly on the other component or indirectly set on the other component; when a component is referred to as being "connected to" another component, it may be directly connected to the other component or indirectly connected to the other component. It should be understood that the terms "length", "width", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside" and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or component referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as limiting this application.

[0104] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be understood to indicate or imply relative importance or implicitly specify the number of the technical features indicated. Thus, a feature specified as "first" or "second" may explicitly or implicitly include one or more of the features. Throughout the description of this application, "plurality" or "several" means two or more, unless otherwise specifically defined.

[0105] It should be noted that the structures, proportions, sizes, etc. illustrated in the drawings of this specification are only used to match the contents disclosed in the specification for people familiar with this technology to understand and read, and are not used to limit the conditions under which this application can be implemented. Therefore, they have no substantive technical significance. Any structural modification, change in proportional relationship or adjustment of size should still fall within the scope of the technical content disclosed in this application without affecting the efficacy and purpose that can be achieved by this application.

Claims

1. An LED display screen installation system, characterized in that: Including display screen mounting frame, each display screen mounting frame can be installed with LED display screen; The display screen mounting frame includes a first mounting side and a second mounting side. The first mounting side of the display screen mounting frame is provided with at least one arc lock assembly, and the second mounting side of the display screen mounting frame is provided with at least one U-shaped lock assembly. Adjacent display screen mounting frames are connected through the arc lock assembly and the U-shaped lock assembly. The display screen mounting frame further includes a third mounting side and a fourth mounting side, the third mounting side of the display screen mounting frame is provided with at least one buckling portion, and the fourth mounting side is provided with at least one second U-shaped lock assembly, and adjacent display screen mounting frames are mounted or disassembled by cooperating with the second U-shaped lock assembly through the buckling portion; Multiple display screen mounting frames are connected left and right through the first mounting side and the second mounting side, and are connected up and down through the third mounting side and the fourth mounting side, and are assembled into a support frame for a large LED display screen.

2. The LED display installation system according to claim 1, characterized in that: An LED display box windproof frame is also provided on the back of the display screen mounting frame. The LED display box windproof frame includes a main suspension frame in the same plane and an auxiliary bracket arranged on one side of the main suspension frame. The auxiliary bracket can be accommodated in the plane of the main suspension frame, or unfolded from the main suspension frame and fixed in an unfolded posture to form a three-dimensional support mechanism.

3. The LED display screen installation system according to claim 1, characterized in that: The display screen mounting frame can be installed on an LED display screen carrier, which includes a carrier body. A plurality of first positioning structures are provided on the bearing surface of the carrier body. The first positioning structures are adapted to the second positioning structures of the modular bearing object. The first positioning structures and the second positioning structures are respectively provided on two opposite sides of the modular bearing object. Adjacent modular bearing objects are spliced ​​with each other through the first positioning structures and the second positioning structures.

4. The LED display screen installation system according to claim 1, characterized in that: Also includes: A carrier body, wherein a plurality of first positioning structures are provided on the bearing surface of the carrier body, wherein the first positioning structures are adapted to the second positioning structures of the modular bearing object, and the first positioning structures and the second positioning structures are respectively provided on two opposite sides of the modular bearing object, and adjacent modular bearing objects are spliced ​​with each other through the first positioning structures and the second positioning structures.