CN219389323U - Spliced supporting structure of multi-screen integrated display device - Google Patents

Spliced supporting structure of multi-screen integrated display device Download PDF

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Publication number
CN219389323U
CN219389323U CN202320234259.7U CN202320234259U CN219389323U CN 219389323 U CN219389323 U CN 219389323U CN 202320234259 U CN202320234259 U CN 202320234259U CN 219389323 U CN219389323 U CN 219389323U
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display device
support
screen integrated
wall
supporting
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CN202320234259.7U
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周雪松
李国壮
柯寅
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Jiangsu Oudi Electronic Technology Co ltd
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Jiangsu Oudi Electronic Technology Co ltd
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Abstract

The utility model relates to the technical field of display equipment, in particular to a splicing supporting structure of multi-screen integrated display equipment. The splicing support structure of the multi-screen integrated display device comprises a support body and a hanging frame, wherein the support body is used for being installed on a wall, and the hanging frame is used for being connected with the display device. The first support piece and the second support piece in the support body are provided with mounting end faces for being fixed with the wall. The tops of the first supporting piece and the second supporting piece are provided with lugs. An adjusting channel for embedding the hanging rack is formed between the protruding block and the wall. The first support is located at a splice of adjacent display devices. One end of the hanging frame is connected with the top frame of the display device. The other end of the hanging rack is provided with a clamping groove for matching the convex blocks. The splicing supporting structure of the multi-screen integrated display device is embedded on the supporting body fixed with the wall through the hanging frame connected with the display device, so that the assembling difficulty of splicing a plurality of display devices is reduced, and the accuracy of the installation position is improved.

Description

Spliced supporting structure of multi-screen integrated display device
Technical Field
The utility model relates to the technical field of display equipment, in particular to a splicing supporting structure of multi-screen integrated display equipment.
Background
In order to further improve the teaching quality and improve the teaching interactivity, a large number of intelligent blackboards are popular in the teaching environment at present. The intelligent blackboard is teaching equipment with a display function, a writing function and a touch control function. For example, chinese patent document CN214240168U discloses a smart blackboard. The intelligent blackboard comprises a main screen in the middle and auxiliary screens arranged on two sides of the main screen. The main screen is used for performing touch operation and displaying teaching contents, and the auxiliary screens on two sides are used for writing on a writing board.
However, the main screen in the intelligent blackboard is limited by the size, and the use requirement of the existing teaching is difficult to meet. In order to further improve the large-screen display effect of the intelligent blackboard, at present, a plurality of display devices are usually adopted for splicing and assembling a main screen of the intelligent blackboard to form a main display screen with a larger size. When the multiple screens are spliced, each screen is independently installed.
For another example, chinese patent document CN215776676U discloses a smart blackboard bracket and a smart blackboard. Wherein, the intelligent blackboard bracket body is provided with a hanging rack component for hanging and fixing a main blackboard screen and an auxiliary blackboard screen; the adjusting component comprises a fixing piece and an adjusting piece, the fixing piece is connected with the support body, and the adjusting piece is movably connected with the fixing piece and can be connected with the auxiliary screen of the blackboard so as to adjust the relative angle between the auxiliary screen of the blackboard and the main screen of the blackboard. Through above-mentioned wisdom blackboard support, the user can be according to the in-service use demand to the blackboard auxiliary screen with blackboard main screen between relative angle adjust, satisfied the different user demand of user.
However, when the bracket is applied to a use scene of multi-screen splicing, each screen is still independently installed. In the field assembly process, the support piece quantity is many, and the process of leveling is loaded down with trivial details between a plurality of display screens when the concatenation, has led to the installation accuracy low, and then has influenced the display effect of wisdom blackboard.
In summary, in the process of assembling the multi-screen integrated display device, how to design a splicing device to reduce the assembling difficulty of splicing multiple screens and improve the accuracy of the mounting position is a technical problem to be solved by those skilled in the art.
Disclosure of Invention
The utility model aims to provide a splicing device for reducing the assembling difficulty of splicing a plurality of screens and improving the accuracy of the installation position in the process of assembling a multi-screen integrated display device.
In order to achieve the above purpose, the present utility model adopts the following scheme: the spliced supporting structure of the multi-screen integrated display device comprises a supporting body and a hanging frame, wherein the supporting body is used for being installed on a wall, and the hanging frame is used for being connected with the display device;
the support body comprises a first support piece and a second support piece, the first support piece and the second support piece are respectively provided with an installation end face used for being fixed with a wall, the tops of the first support piece and the second support piece are respectively provided with a convex block, an adjusting channel used for embedding a hanging frame is formed between the convex blocks and the wall, and the first support piece is positioned at the splicing position of adjacent display equipment;
one end of the hanging frame is connected with the top frame of the display device, and the other end of the hanging frame is provided with a clamping groove for matching with the protruding block.
Preferably, the supporting bodies are arranged in a line along the wall, and each display device is provided with at least one second supporting piece. The support body that is the style of calligraphy and arranges like this forms the bearing structure to display device at wall surface, and a plurality of display devices of being convenient for are the style of calligraphy and arrange and hang on the wall, and then are favorable to reducing display device's installation degree of difficulty.
Preferably, the length of the first support is greater than the length of the second support. So set up, first support piece is used for accepting the load that two stores pylon applyed simultaneously, and longer first support piece is favorable to adjusting the relative position of two adjacent display device on the horizontal direction, and then is favorable to reducing the gap of display device concatenation department to further improved display device's mounted position precision.
Preferably, the mounting end face of the support body is provided with a mounting hole for passing through the expansion bolt, and the support body is fixed with the wall through the expansion bolt. So set up, through embedding expansion bolts on the wall, the supporter of being convenient for is fixed on the wall, is favorable to improving the joint strength between supporter and the wall, has guaranteed display device's installation steadiness.
Preferably, the hanger is connected to the top frame of the display device by fasteners. The hanging frame and the display equipment are connected by the fastening piece, so that a standard installation mode is formed, and the installation efficiency of the multi-screen integrated display equipment is improved.
Preferably, the hanging frame is provided with a threaded hole for leveling, and the threaded hole is positioned above the clamping groove. So set up, threaded hole is used for installing the leveling bolt, and the bottom of leveling bolt contacts with the boss on the supporter, through adjusting the leveling bolt, is favorable to realizing the position adjustment to display device in vertical orientation, and then has further improved display device's position installation accuracy to further promoted the display effect of wisdom blackboard.
Preferably, a connecting piece is arranged at the splicing position of the display device, spans the splicing position and connects the two adjacent hangers. The connecting piece is used for locking two adjacent display devices, so that the relative positions between the two adjacent display devices after leveling can be conveniently fixed.
Preferably, limiting plates are arranged on two sides of the supporting body. So set up, the limiting plate is used for forming spacing effect to the slip of stores pylon, at the gliding in-process of stores pylon along the adjustment passage, has avoided the stores pylon to drop from the supporter, is favorable to playing the guard action to display device.
Compared with the prior art, the splicing support structure of the multi-screen integrated display device provided by the utility model has the following substantial characteristics and improvements: this many screen integral type display equipment's concatenation bearing structure imbeds on the support body fixed mutually with the wall through the stores pylon of connecting display equipment, has reduced the assembly degree of difficulty of a plurality of display equipment concatenation, and first support piece in the support body is used for forming the support to the stores pylon of adjacent display equipment concatenation department, and the stores pylon of being convenient for realizes the position adjustment to display equipment through the regulation passageway in the horizontal direction, and then has improved the mounted position precision.
Drawings
Fig. 1 is a schematic diagram of an assembly structure of a spliced supporting structure of a multi-screen integrated display device according to an embodiment of the present utility model;
FIG. 2 is a front view of a tiled support structure of the multi-screen integrated display device of FIG. 1;
FIG. 3 is an enlarged schematic view of a portion of FIG. 1 at A;
FIG. 4 is an enlarged partial schematic view at B in FIG. 1;
fig. 5 is a schematic perspective view of the support body.
Reference numerals: 1. a display device; 2. a support body; 3. a hanging rack; 4. a splicing part; 5. a bump; 6. a clamping groove; 7. a mounting end face; 8. a mounting hole; 9. a threaded hole; 10. a limiting plate; 11. a connecting piece; 21. a first support; 22. and a second support.
Detailed Description
The following detailed description of specific embodiments of the utility model refers to the accompanying drawings.
As shown in fig. 1-5, the embodiment of the utility model provides a splicing support structure of a multi-screen integrated display device, which aims to reduce the assembling difficulty of splicing a plurality of screens and improve the accuracy of installation positions.
According to the spliced supporting structure of the multi-screen integrated display device, provided by the embodiment of the utility model, the hanging frame connected with the display device is embedded into the supporting body fixed with the wall, so that the assembling difficulty of splicing a plurality of display devices is reduced, the first supporting piece in the supporting body is used for supporting the hanging frame at the spliced position of the adjacent display device, the hanging frame can conveniently realize position adjustment on the display device in the horizontal direction through the adjusting channel, and the mounting position precision is further improved.
As shown in fig. 1, a splice support structure of a multi-screen integrated display device includes a support body 2 for mounting on a wall and a hanger 3 for connecting the display device 1.
As shown in fig. 2, the support body 2 includes a first support 21 and a second support 22. The first support 21 and the second support 22 each have a mounting end face 7 for fixing with a wall. The top of each of the first and second supports 21 and 22 is provided with a bump 5. An adjusting channel for embedding the hanging frame 3 is formed between the protruding block 5 and the wall. The first support 21 is located at the splice 4 of adjacent display devices 1.
As shown in fig. 3, one end of the hanger 3 is connected to the top frame of the display device 1. The other end of the hanger 3 is provided with a clamping groove 6 for matching with the convex block 5.
As shown in fig. 2, the supporting bodies 2 are arranged in a straight line along the wall. Each display device 1 is provided with at least one second support 22. So set up, be the supporter 2 that the line was arranged and form the bearing structure to display device 1 on the wall surface, be convenient for a plurality of display devices 1 be the line and arrange and hang on the wall, and then be favorable to reducing the installation degree of difficulty of display device 1. For example, as shown in fig. 2, 2 display devices 1 are arranged in a line, and are respectively hung on a support body 2 fixed on a wall through a hanging frame 3, and a first support piece 21 is arranged at a splicing position 4 of the 2 display devices 1. The number of the display devices 1 is selected to be proper according to the size requirement of the intelligent black board, and the number of the display devices 1 can be selected to be 2-5.
As shown in fig. 3 in combination with fig. 4, the length of the first support 21 is greater than the length of the second support 22. So arranged, the first support 21 is adapted to simultaneously take up the loads applied by the two hangers 3. The longer first supporting member 21 is beneficial to adjusting the relative positions of two adjacent display devices 1 in the horizontal direction, and is further beneficial to reducing the gap of the spliced part 4 of the display devices 1, so that the accuracy of the installation position of the display devices 1 is further improved.
As shown in fig. 3, the hanger 3 is connected to the top frame of the display device 1 by fasteners. So set up, hanger bracket 3 adopts the connected mode of fastener with display device 1, is favorable to forming standard mounting means, has improved many screen integral type display device's installation effectiveness.
In order to further reduce the difficulty in adjusting the height of the display device 1 in the vertical direction, as shown in fig. 3, the hanger 3 is provided with a screw hole 9 for leveling. The threaded hole 9 is located above the clamping groove 6. So set up, be used for installing the leveling bolt in the screw hole 9, the bottom of leveling bolt contacts with the boss on the support body 2, through adjusting the leveling bolt, is favorable to realizing the position adjustment to display device 1 in vertical orientation, and then has further improved display device 1's position installation accuracy to further promoted the display effect of wisdom blackboard.
After the leveling bolt is adjusted, the pushing resistance of the display equipment in the horizontal direction is favorably optimized, and the phenomenon that the collision force of glass on the splicing surface is overlarge and appearance flaws are formed due to glass edge collapse when the adjacent 2 display equipment are spliced is avoided.
As shown in fig. 3, the splice 4 of the display device 1 is provided with a connector 11. The connecting piece 11 spans the splicing position 4 and connects the two adjacent hangers 3. So set up, connecting piece 11 is used for forming the lock solid to two adjacent display device 1, is convenient for fix the relative position between two adjacent display device 1 after the leveling.
As shown in fig. 5, the mounting end surface 7 of the support body 2 is provided with mounting holes 8 for passing through expansion bolts. The support body 2 is fixed to the wall by expansion bolts. So set up, through embedding expansion bolts on the wall, support body 2 is fixed on the wall of being convenient for, is favorable to improving the joint strength between support body 2 and the wall, has guaranteed display device 1's installation steadiness.
As shown in fig. 5, both sides of the support body 2 are provided with limit plates 10. So set up, limiting plate 10 is used for forming spacing effect to the slip of stores pylon 3, at the gliding in-process of stores pylon 3 along the adjustment passage, has avoided stores pylon 3 to drop from support body 2, is favorable to playing the guard action to display device 1.
When the spliced supporting structure of the multi-screen integrated display device provided by the embodiment of the utility model is used, as shown in fig. 1 and fig. 2, in the assembly process of 2 display devices, at least 3 supporting bodies 2 are required to be fixed on a wall, wherein the spliced supporting structure comprises 2 second supporting pieces 22 and 1 first supporting piece 21, so that the assembly difficulty of splicing a plurality of display devices 1 is reduced. The first support piece 21 in the support body 2 is used for forming the support to the hanger 3 of the splice 4 of the adjacent display equipment 1, so that the hanger 3 can conveniently realize position adjustment to the display equipment 1 in the horizontal direction through the adjusting channel, and the installation position accuracy is further improved.
The present utility model is not limited to the specific technical solutions described in the above embodiments, and other embodiments may be provided in addition to the above embodiments. Any modifications, equivalent substitutions, improvements, etc. made by those skilled in the art, which are within the spirit and principles of the present utility model, are intended to be included within the scope of the present utility model.

Claims (8)

1. The spliced supporting structure of the multi-screen integrated display device is characterized by comprising a supporting body and a hanging frame, wherein the supporting body is used for being installed on a wall, and the hanging frame is used for being connected with the display device;
the support body comprises a first support piece and a second support piece, the first support piece and the second support piece are respectively provided with an installation end face used for being fixed with a wall, the tops of the first support piece and the second support piece are respectively provided with a convex block, an adjusting channel used for embedding a hanging frame is formed between the convex blocks and the wall, and the first support piece is positioned at the splicing position of adjacent display equipment;
one end of the hanging frame is connected with the top frame of the display device, and the other end of the hanging frame is provided with a clamping groove for matching with the protruding block.
2. The spliced supporting structure of a multi-screen integrated display device according to claim 1, wherein the supporting bodies are arranged in a straight line along the wall, and each display device is provided with at least one second supporting piece.
3. The tiled support structure of a multi-screen integrated display device according to claim 1 or 2, wherein the length of the first support is greater than the length of the second support.
4. A spliced supporting structure of a multi-screen integrated display device according to claim 3, wherein a mounting hole for passing through an expansion bolt is provided on a mounting end surface of the supporting body, and the supporting body is fixed to a wall by the expansion bolt.
5. The splice support structure of a multi-screen integrated display device of claim 1, wherein the hanger is connected to a top frame of the display device by fasteners.
6. The splicing support structure of a multi-screen integrated display device according to claim 1, wherein a threaded hole for leveling is formed in the hanger, and the threaded hole is located above the clamping groove.
7. The spliced supporting structure of a multi-screen integrated display device according to claim 1, wherein a connecting piece is arranged at a spliced position of the display device, spans the spliced position, and connects two adjacent hangers.
8. The spliced supporting structure of a multi-screen integrated display device according to claim 1, wherein limiting plates are arranged on both sides of the supporting body.
CN202320234259.7U 2023-02-16 2023-02-16 Spliced supporting structure of multi-screen integrated display device Active CN219389323U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320234259.7U CN219389323U (en) 2023-02-16 2023-02-16 Spliced supporting structure of multi-screen integrated display device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320234259.7U CN219389323U (en) 2023-02-16 2023-02-16 Spliced supporting structure of multi-screen integrated display device

Publications (1)

Publication Number Publication Date
CN219389323U true CN219389323U (en) 2023-07-21

Family

ID=87197177

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320234259.7U Active CN219389323U (en) 2023-02-16 2023-02-16 Spliced supporting structure of multi-screen integrated display device

Country Status (1)

Country Link
CN (1) CN219389323U (en)

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