CN215679907U - Combined multi-screen display device based on big data - Google Patents

Combined multi-screen display device based on big data Download PDF

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Publication number
CN215679907U
CN215679907U CN202122043561.8U CN202122043561U CN215679907U CN 215679907 U CN215679907 U CN 215679907U CN 202122043561 U CN202122043561 U CN 202122043561U CN 215679907 U CN215679907 U CN 215679907U
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device frame
big data
display device
combined multi
display screen
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杨江海
娄德涵
邓海生
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Xijing University
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Xijing University
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Abstract

The utility model discloses a combined multi-screen display device based on big data, which relates to the technical field of multi-screen display and comprises a device frame, wherein a single display screen is movably arranged at the inner side of the device frame, an open slot is formed in the outer surface of the device frame, a dismounting structure is movably arranged at one corner of the device frame and comprises a connecting block movably arranged at one corner of the device frame, a connecting hole is formed in one end of the device frame, a threaded hole is formed in the other end of the device frame, a connecting column is fixedly arranged on the outer surface of one end of the connecting block, a connecting screw is rotatably arranged on the outer surface of the connecting block, a falling-preventing assembly is movably arranged on the outer surface of the inner side of the device frame and comprises a limiting groove arranged on the outer surface of the device frame, and the combined multi-screen display device based on big data solves the problems that the display screen of the traditional combined multi-screen display device based on big data is troublesome to combine, and the device based on big data is inconvenient to use, And meanwhile, the local display screen can fall off.

Description

Combined multi-screen display device based on big data
Technical Field
The utility model relates to the technical field of multi-screen display, in particular to a combined multi-screen display device based on big data.
Background
At present, combined multi-screen display devices are usually arranged on the outer facades of some malls or commercial buildings and are used for attracting people to visit streets, and the combined multi-screen display device based on big data is the display device based on the big data; however, the single display screen of the existing combined multi-screen display device based on big data is not convenient to assemble, and meanwhile, the problem that the local single display screen falls off exists, and therefore, a combined multi-screen display device based on big data is provided by the technical staff in the field.
SUMMERY OF THE UTILITY MODEL
Aiming at the defects of the prior art, the utility model provides a combined multi-screen display device based on big data, and solves the problems that the display screens of the existing combined multi-screen display device based on big data are troublesome to combine, and the local display screens can fall off.
In order to achieve the purpose, the utility model is realized by the following technical scheme: a combined multi-screen display device based on big data comprises a device frame, wherein a single display screen is movably mounted on the inner side of the device frame, an open slot is formed in the outer surface of the device frame, and a dismounting structure is movably mounted at one corner of the device frame;
the dismouting structure includes movable mounting in the connecting block of device frame one corner, the connecting hole has been seted up to the one end of device frame, the other end of device frame sets up threaded hole, the one end external surface fixed mounting of connecting block has the spliced pole, the surface of connecting block is rotated and is installed the connecting screw, the external surface fixed mounting of connecting block has the right angle sand grip, the inboard surface movable mounting of device frame has anti-drop subassembly.
As a further technical scheme, an embedded groove is formed in the outer surface of the single display screen, an L-shaped convex strip is fixedly mounted on the outer surface of the single display screen, the vertical front sections of the embedded groove and the L-shaped convex strip are both L-shaped, and the thickness and the width of the L-shaped convex strip are matched with those of the embedded groove.
As a further technical scheme, the anti-falling assembly comprises a limiting groove formed in the outer surface of the device frame, a connecting spring is fixedly installed inside the limiting groove, and a convex strip is movably installed at one end of the connecting spring.
As a further technical scheme of the utility model, the connecting block is in a quadrangular shape bent at a right angle, and the connecting hole is matched with the connecting column.
As a further technical scheme, the connecting screw penetrates through the connecting block and is in rotary connection with the connecting block through threads, the threaded hole is matched with the connecting screw, and the right-angle raised strip is matched with the embedded groove.
As a further technical scheme of the utility model, the number of the limiting grooves is two, the limiting grooves are respectively positioned on two adjacent frame sides of the device frame, the number of the connecting springs is a plurality of groups, and the distances between two adjacent groups of connecting springs in the same limiting groove are equal.
As a further technical scheme, the convex strip is long and can move back and forth in the limiting groove along the direction of the connecting spring, and the vertical side section of the convex strip is inverted and is in a convex shape.
Advantageous effects
The utility model provides a combined multi-screen display device based on big data. Compared with the prior art, the method has the following beneficial effects:
1. a combined multi-screen display device based on big data is disclosed, a connecting hole is arranged at one end of a device frame through a connecting block movably arranged at one corner of the device frame, a threaded hole is arranged at the other end of the device frame, a connecting column is fixedly arranged on the outer surface of one end of the connecting block, a connecting screw is rotatably arranged on the outer surface of the connecting block, a right-angle convex strip is fixedly arranged on the outer surface of the connecting block, an anti-falling component is movably arranged on the outer surface of the inner side of the device frame, when the device is installed, the assembly of a single display screen can be conveniently completed through the matching effect of an L-shaped convex strip, an open slot and an embedded slot, when the device is installed to a single display screen at a corner, a user can put in the last single display screen, then the connecting column on the connecting block is inserted into the connecting hole, then the connecting screw is screwed until the root of the connecting screw is rotated and screwed into the threaded hole to complete the installation, is more convenient.
2. The utility model provides a many screen display of combination formula device based on big data, through seting up the spacing groove in device frame surface, the inside fixed mounting of spacing groove has coupling spring, coupling spring's one end movable mounting has the convex strip, at the in-process of monolithic display screen of installation one by one, when monolithic display screen installs to the top of device frame, the user upwards presses down the convex strip, make the prominent part of convex strip keep the level with the device frame, later put into the monolithic display screen of top again, the convex strip blocks into the monolithic display screen of top under coupling spring's effect, thereby make the connection between the monolithic display screen comparatively inseparable, and then can avoid the monolithic display screen problem that drops that probably takes place at the in-process that the display screen used, stability effect is better.
Drawings
FIG. 1 is a schematic diagram illustrating an overall structure of a big data based multi-panel display device;
FIG. 2 is a schematic diagram illustrating an overall structure of a device frame of a big data based multi-panel display device;
FIG. 3 is a partial structural view illustrating disassembly and assembly of a connection block of a combined multi-panel display device based on big data;
FIG. 4 is a partial front sectional view of a connection block of a combined multi-display device based on big data;
fig. 5 is a partial side sectional view of a device frame of a combined multi-display device based on big data.
In the figure: 1. a device frame; 2. a single display screen; 3. an open slot; 4. a disassembly and assembly structure; 41. connecting blocks; 42. connecting holes; 43. a threaded hole; 44. connecting columns; 45. a connecting screw; 46. a right-angle convex strip; 47. an anti-drop assembly; 471. a limiting groove; 472. a connecting spring; 473. a convex strip; 5. l-shaped convex strips; 6. and a groove is embedded.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-5, the present invention provides a combined multi-panel display device based on big data, comprising: the device comprises a device frame 1, a single display screen 2 is movably arranged on the inner side of the device frame 1, an open slot 3 is formed in the outer surface of the device frame 1, a dismounting structure 4 is movably arranged at one corner of the device frame 1, the dismounting structure 4 comprises a connecting block 41 which is movably arranged at one corner of the device frame 1, a connecting hole 42 is formed in one end of the device frame 1, a threaded hole 43 is formed in the other end of the device frame 1, a connecting column 44 is fixedly arranged on the outer surface of one end of the connecting block 41, a connecting screw 45 is rotatably arranged on the outer surface of the connecting block 41, a right-angle convex strip 46 is fixedly arranged on the outer surface of the connecting block 41, an anti-falling assembly 47 is movably arranged on the outer surface of the inner side of the device frame 1, the anti-falling assembly 47 comprises a limiting groove 471 which is formed in the outer surface of the device frame 1, a connecting spring 472 is fixedly arranged in the limiting groove 471, and is beneficial to uniformly exerting the function of the connecting spring 472, one end movable mounting of coupling spring 472 has convex strip 473, embedded groove 6 has been seted up to monolithic display screen 2's surface, monolithic display screen 2's surface fixed mounting has L shape sand grip 5, embedded groove 6 and L shape sand grip 5 vertical front cross-section are the L shape, the thickness and the width of L shape sand grip 5 all with embedded groove 6 phase-match, be favorable to the connection matching effect between the partial component of device and then can make things convenient for the connection between the monolithic display screen 2.
As shown in fig. 4, the connecting block 41 is a rectangular prism bent at a right angle, the connecting hole 42 is matched with the connecting column 44, the connecting screw 45 penetrates through the connecting block 41 and the two are rotatably connected through a thread, the threaded hole 43 is matched with the connecting screw 45, the right-angle convex strip 46 is matched with the embedded groove 6, during the installation process, a user can conveniently assemble the single display screen 2 through the matching effect of the L-shaped convex strip 5, the open groove 3 and the embedded groove 6, and when the single display screen 2 is installed at a corner, the user can put the last single display screen 2 into the connecting hole 42, then the connecting column 44 on the connecting block 41 is inserted into the connecting hole 42, and then the connecting screw 45 is screwed by rotating until the root of the connecting screw 45 is rotated and screwed into the threaded hole 43, which is worth mentioning, the connecting block 41 can be detached during detachment, is more convenient.
As shown in fig. 3 and 5, the two sets of limiting grooves 471 are located on two adjacent frame sides of the device frame 1, the sets of connecting springs 472 are located on the two adjacent frame sides of the device frame 1, the distance between the two sets of connecting springs 472 in the same limiting groove 471 is equal, the convex bar 473 is long and can move back and forth in the limiting groove 471 along the direction of the connecting springs 472, the vertical side section of the convex bar 473 is in an inverted "convex" shape, during the process of installing the single display 2, when the single display 2 is installed on the uppermost end of the device frame 1, a user presses the convex bar 473 upwards to keep the protruding part of the convex bar 473 horizontal with the device frame 1, then the single display 2 on the uppermost end is put in, the convex bar 473 is clamped into the single display 2 on the uppermost end under the action of the connecting springs 472, so that the connection between the single displays 2 is tight, and then can avoid the monolithic display screen 2 that probably takes place to drop the problem in the in-process that the display screen used to can make the stability effect of display screen better.
The working principle of the utility model is as follows: when the device is installed, a user can place a first single display screen 2 at a corner of an open slot 3 of a device frame 1, and make an L-shaped convex strip 5 position on the first single display screen 2 correspond to the open slot 3 position, then place a second single display screen 2 at the upper end of the first single display screen 2, and make the L-shaped convex strip 5 of the second single display screen 2 correspond to the open slot 3 and an embedded slot 6 of the first single display screen 2, respectively, the assembly of the single display screens 2 can be conveniently completed through the matching effect of the L-shaped convex strip 5, the open slot 3 and the embedded slot 6, when the single display screen 2 is installed at the uppermost end of the device frame 1, the user presses a convex strip 473 upwards to make the protruding position of the convex strip 473 keep horizontal with the device frame 1, then place the uppermost single display screen 2, the convex strip 473 is clamped into the uppermost single display screen 2 under the action of a connecting spring 472, therefore, the connection between the single display screens 2 is tight, the single display screens 2 are prevented from falling off, when the display device is installed on the single display screens 2 at the corners, a user can put the last single display screen 2 into the display device, then insert the connecting column 44 on the connecting block 41 into the connecting hole 42, and then rotate and screw the connecting screw 45 until the root of the connecting screw 45 is rotated and screwed into the threaded hole 43, so that the installation of the whole multi-flat display device can be completed.
It should be noted that, in the use process, when a user needs to dismantle the single display screen 2 due to the change of the screen size or the maintenance, the user can turn and unscrew the connecting screw 45 and then take down the connecting block 41, so that the single display screen 2 can be taken down from top to bottom individually, and then the screen size is maintained or the single display screen 2 is maintained.

Claims (7)

1. A combined multi-screen display device based on big data comprises a device frame (1) and is characterized in that a single display screen (2) is movably mounted on the inner side of the device frame (1), an open slot (3) is formed in the outer surface of the device frame (1), and a dismounting structure (4) is movably mounted at one corner of the device frame (1);
dismouting structure (4) are including movable mounting in connecting block (41) of device frame (1) one corner, connecting hole (42) have been seted up to the one end of device frame (1), threaded hole (43) have been seted up to the other end of device frame (1), the one end external surface fixed mounting of connecting block (41) has spliced pole (44), the surface of connecting block (41) is rotated and is installed connecting screw (45), the external surface fixed mounting of connecting block (41) has right angle sand grip (46), the inboard external surface movable mounting of device frame (1) has anti-drop subassembly (47).
2. The combined type multi-screen display device based on the big data is characterized in that an embedded groove (6) is formed in the outer surface of the single display screen (2), an L-shaped convex strip (5) is fixedly installed on the outer surface of the single display screen (2), the vertical front-view cross sections of the embedded groove (6) and the L-shaped convex strip (5) are both L-shaped, and the thickness and the width of the L-shaped convex strip (5) are matched with those of the embedded groove (6).
3. A combined multi-display device based on big data according to claim 1, wherein the fall prevention assembly (47) comprises a limiting groove (471) opened on the outer surface of the device frame (1), a connection spring (472) is fixedly installed inside the limiting groove (471), and a convex bar (473) is movably installed at one end of the connection spring (472).
4. A combined multi-display device according to claim 1, wherein the connection block (41) is a rectangular prism bent at a right angle, and the connection holes (42) are matched with the connection posts (44).
5. The combined multi-display device based on big data of claim 1, wherein the connection screw (45) penetrates the connection block (41) and forms a rotational connection with the connection block through a thread, the threaded hole (43) is matched with the connection screw (45), and the right-angle protrusion (46) is matched with the insertion groove (6).
6. The combined multi-panel display device according to claim 3, wherein the number of the limiting grooves (471) is two, and the limiting grooves are respectively located on two adjacent frame sides of the device frame (1), the number of the connecting springs (472) is several, and the distance between two adjacent sets of the connecting springs (472) in the same limiting groove (471) is equal.
7. A combined multi-display device according to claim 3, wherein the convex bar (473) is elongated and can move back and forth in the direction of the connecting spring (472) within the limiting groove (471), and the vertical side section of the convex bar (473) is inverted "convex".
CN202122043561.8U 2021-08-27 2021-08-27 Combined multi-screen display device based on big data Active CN215679907U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122043561.8U CN215679907U (en) 2021-08-27 2021-08-27 Combined multi-screen display device based on big data

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122043561.8U CN215679907U (en) 2021-08-27 2021-08-27 Combined multi-screen display device based on big data

Publications (1)

Publication Number Publication Date
CN215679907U true CN215679907U (en) 2022-01-28

Family

ID=79956782

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122043561.8U Active CN215679907U (en) 2021-08-27 2021-08-27 Combined multi-screen display device based on big data

Country Status (1)

Country Link
CN (1) CN215679907U (en)

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