Spliced screen hanger
By using the snap-fit design of the first mounting component and the hanging component, combined with the use of the adjustment component, the problem of cumbersome disassembly and assembly of splicing screens is solved, enabling rapid installation and adaptation to display cabinets of different sizes, and improving the safety and compatibility of installation.
Patent Information
- Application Number
- CN202520831725.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-28
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-04-28
AI Technical Summary
The existing splicing screen installation structure has a cumbersome assembly and disassembly process, making it difficult to achieve rapid assembly, disassembly, and maintenance.
The design employs a first mounting component and a hanging component, achieving a detachable connection through the snap-fit method of the hanging rod, the locking hook, and the snap-fit groove. Combined with the use of the adjusting component and the locking component, it enables quick installation and convenient disassembly.
It enables rapid installation and convenient disassembly of splicing screens, improves installation safety and compatibility, and adapts to display cabinets of different sizes and thicknesses.
Smart Images

Figure CN223924464U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of display device installation, and in particular to a splicing screen bracket. Background Technology
[0002] Video wall technology is a technology that combines multiple display units (such as LCD screens and LED screens) into a large-size display system, widely used in command and control, advertising displays, and conference systems. Currently, video wall systems mainly include LCD video walls and LED video walls. Most wall-mounted video wall systems use a socket-type bracket system, meaning the installation structure includes a bracket and a crossbar, with the bracket for hanging the display cabinet being attached to the crossbar. This makes the assembly and disassembly process cumbersome. Utility Model Content
[0003] To address this issue, this application proposes a splicing screen mounting bracket that enables quick assembly and disassembly of the display screen cabinet, thereby resolving the aforementioned technical problems.
[0004] This application provides a video wall mounting bracket, including a first mounting component and a hanging component. The first mounting component extends horizontally and has a snap-fit groove. The hanging component includes a hanging rod and a locking hook. The hanging rod is used to connect to the display cabinet of the video wall and is hung on the first mounting component. The locking hook is connected to the hanging rod. When the locking hook is engaged with the snap-fit groove, the hanging component is in a locked state. When the locking hook is separated from the snap-fit groove, the hanging component is in an unlocked state.
[0005] Therefore, in this application, the display screen cabinet is suspended on the first mounting component by a hanging rod, and the hanging rod is locked on the first mounting component by a locking hook engaging with the locking groove of the first mounting component, thereby achieving a detachable connection, enabling quick installation and convenient disassembly and maintenance.
[0006] In some embodiments of this application, the first mounting member has a first surface and a second surface disposed opposite to each other;
[0007] The hanging rod includes a hanging strip and a hook. The hanging strip is used to connect to the display screen cabinet, the hook is connected to one side of the hanging strip, the hanging strip abuts against the second surface, and the snap-fit groove is provided on the first surface.
[0008] Therefore, in this application, the snap-fit groove is located on the first end face of the first mounting component away from the hanging strip, making the locking more secure and reliable, and improving the load-bearing capacity.
[0009] In some embodiments of this application, the first mounting member has a first end face and a second end face disposed opposite to each other, the snap-fit groove extends in a horizontal direction and penetrates the first end face and the second end face in a horizontal direction.
[0010] Therefore, in this application, the snap-fit groove extends horizontally through the first end face and the second end face, and the locking hook can snap into the snap-fit groove at any position in the horizontal direction, which facilitates the adjustment of the position of the display cabinet to be compatible with display cabinets of different lengths.
[0011] In some embodiments of this application, the cross-section of the snap-fit groove is C-shaped, the snap-fit interface of the snap-fit groove is disposed on the first surface, the snap-fit groove forms a snap-fit part on one side of the snap-fit interface, and the locking hook can enter the interior of the snap-fit groove from the snap-fit interface and snap-fit with the snap-fit part.
[0012] Therefore, in this application, the cross-section of the snap-fit groove is C-shaped, and the snap-fit groove forms a snap-fit part on one side of its snap-fit interface, so it can have a better snap-fit effect with the lock hook, and it is easier to unlock when it needs to be unlocked, and it is not easy to get stuck.
[0013] In some embodiments of this application, the locking hook includes a locking hook member and a lever member. The lever member has a first connection point and a second connection point. The second connection point is located above the first connection point. The first connection point is rotatably connected to the hook member, and the second connection point is rotatably connected to the locking hook member. When the lever member is in the first position, the locking hook member is engaged with the locking groove, and the hanging member is in a locked state. When the lever member is in the second position, the locking hook member is separated from the locking groove, and the hanging member is in an unlocked state.
[0014] Therefore, in this application, since the snap-fit groove is located on the first end face of the first mounting member opposite to the hanging strip, the locking hook can be engaged or unlocked by the lever linking the locking hook, making operation more convenient. Moreover, the lever is connected to the hook, resulting in a more compact structure and avoiding interference with the hanging strip.
[0015] In some embodiments of this application, the lever includes a first connecting wall, and the first connection point and the second connection point are respectively located at different positions on the first connecting wall; the locking hook includes a locking hook plate and a connecting part, one end of the connecting part is connected to one end of the locking hook plate, and the other end of the connecting part is rotatably connected to the second connection point of the lever; the locking hook plate has a locking hook block on the side facing the first mounting member, and the locking hook block is used to engage with the locking groove.
[0016] Therefore, in this application, the first connection point and the second connection point are respectively located at different positions on the first connecting wall, which is simple in structure. One end of the connecting part is connected to one end of the locking hook plate, and the other end of the connecting part is connected to the second connection point of the lever. The locking hook plate has a locking hook block on the side facing the first mounting part. The locking hook block is used to engage with the locking groove. The structure is compact and the connection is stable and reliable.
[0017] In some embodiments of this application, the angle between the locking hook block and the locking hook plate is an acute angle, and the locking interface of the angle between the locking hook block and the locking hook plate faces the connecting part.
[0018] Therefore, in this application, pushing the lever backward can drive the locking hook to unlock from the locking slot, and conversely, pulling the lever forward can drive the locking hook to lock from the locking slot, resulting in a simple and reliable structure.
[0019] In some embodiments of this application, the lever further includes a lever portion connected to the top end of the first connecting wall; the lever portion extends from the top end of the hanging strip.
[0020] Thus, the lever extends from the top of the hanging bar, making it convenient for the user to operate.
[0021] In some embodiments of this application, the lever further includes a first body, two first connecting walls connected to opposite sides of the first body to form a first U-shaped structure, and a lever part connected to the top of the first U-shaped structure; the hanging strip includes a second body and two second connecting walls, the two second connecting walls connected to opposite sides of the second body to form a second U-shaped structure, the first U-shaped structure being fitted into the second U-shaped structure, the lever part extending from the top of the second U-shaped structure, and a hook connected to the second connecting wall.
[0022] Thus, the lever is fitted into the hanging strip, resulting in a compact structure that allows for a thinner splicing screen bracket.
[0023] In some embodiments of this application, the video wall bracket further includes a second mounting member for mounting on a wall, and a first mounting member is cross-connected to the side of the second mounting member facing away from the wall. The video wall bracket further includes a first adjusting member connected between the first mounting member and the second mounting member, and the first adjusting member adjusts the position of the first mounting member relative to the second mounting member in the vertical direction.
[0024] Therefore, in this application, the second mounting component can be used to connect to the wall, and a first adjusting component can be provided between the first and second mounting components to adjust the position of the first mounting component relative to the second mounting component in the vertical direction, thus making it compatible with display cabinets of different heights.
[0025] In some embodiments of this application, the second mounting member has a third surface and a fourth surface that are disposed opposite to each other;
[0026] The third surface is provided with a first sliding groove, which extends vertically. The first adjusting member includes a first sliding block, a first locking member, and a first adapter. The first sliding block is disposed in the first sliding groove. The first locking member is used to lock the first sliding block in a preset position in the first sliding groove. The first adapter is connected to the first sliding block. The first mounting member is connected to the card interface of the first adapter.
[0027] Therefore, in this application, the position of the first mounting component in the vertical direction can be adjusted by the cooperation of the first sliding block, the first locking component and the first sliding groove. In turn, the position of the display cabinet in the vertical direction can be adjusted according to the size and spacing of two adjacent display cabinets, so that it can be compatible with display cabinets with different heights.
[0028] In some embodiments of this application, the splicing screen bracket further includes a second adjusting member, which is connected between the first adjusting member and the first mounting member, and the second adjusting member adjusts the position of the first mounting member in the front-back direction.
[0029] Therefore, in this application, the position of the first mounting member in the front-rear direction can be adjusted by the second adjusting member, so that the display planes of different display cabinets suspended on the first mounting member are coplanar, so as to be compatible with display cabinets with different thicknesses.
[0030] In some embodiments of this application, the first adapter includes a connecting arm, and a strip hole is provided on the connecting wall. The length direction of the strip hole extends along the front-back direction of the splicing screen bracket. The second adjusting member includes an abutment block and a second locking member. The abutment block is disposed inside the first adapter and is used to abut against the first mounting member. The second locking member passes through the strip hole and is connected to the abutment block. When the second locking member is locked at different positions in the strip hole, it can lock the first mounting member at different positions inside the first adapter.
[0031] Therefore, in this application, the front and rear positions of the first mounting component can be adjusted by the strip hole provided on the connecting wall of the first adapter, as well as the abutment block and the second locking component, so that the display planes of different display cabinets suspended on the first mounting component are coplanar, and the structure is simple, easy to operate, and low in cost.
[0032] In some embodiments of this application, the second mounting member has a third side and a fourth side that are disposed opposite to each other. A second sliding groove is provided on the third side or the fourth side. The second sliding groove extends in a vertical direction. The splicing screen bracket also includes a third adjusting member. One side of the third adjusting member is slidably connected to the second sliding groove, and the other side of the third adjusting member is used to fix it to the wall. The third adjusting member is used to adjust the position of the second mounting member in the horizontal and / or vertical directions.
[0033] Therefore, in this application, the third adjusting member enables the horizontal and / or vertical position adjustment of the second mounting member. After drilling mounting holes in the wall, the position of the third adjusting member relative to the mounting holes is adjusted to ensure the accuracy of the installation position of the second mounting member. Furthermore, the drilling position can be selected within a certain range in the horizontal and / or vertical directions based on the position of the third adjusting member. Thus, it can be ensured that the mounting holes can be drilled into load-bearing wooden columns, making it more suitable for wooden column walls.
[0034] In some embodiments of this application, the third adjusting member includes a second sliding block, a third locking member, and a second adapter. The second sliding block is disposed in the second slide groove, and the third locking member is used to lock the second sliding block in a preset position in the second slide groove. One side of the second adapter is connected to the second sliding block, and the other side of the second adapter is provided with an adjusting hole. When the third locking member is locked in different positions of the adjusting hole, the second mounting member is located in different positions in the horizontal direction and / or vertical direction.
[0035] Therefore, in this application, the adjustment hole, due to its own structure, determines that the third locking member installed in the adjustment hole has a certain range of motion in the left and right directions and / or vertical directions, which facilitates the adjustment of the position of the second mounting member and also facilitates drilling the mounting hole onto a wooden column with load-bearing capacity, thus making it more suitable for wooden column walls.
[0036] In some embodiments of this application, the first mounting member and the second mounting member have the same structure. The first mounting member has a first surface and a second surface disposed opposite to each other, as well as a first side surface and a second side surface disposed opposite to each other. The first mounting member has a first through groove on the first surface, a second through groove on the first side surface, and a third through groove on the second side surface. The first through groove is a snap-fit groove. The second mounting member has a fourth through groove on the third surface, a fifth through groove on the third side surface, and a sixth through groove on the fourth side surface. The fourth through groove is a first sliding groove, and the fifth or sixth through groove is a second sliding groove. The first through groove corresponds to the fourth through groove, the second through groove corresponds to the fifth through groove, and the third through groove corresponds to the sixth through groove.
[0037] Therefore, in this application, the second mounting part and the first mounting part have the same structure, the first through groove corresponds to the fourth through groove, the second through groove corresponds to the fifth through groove, and the third through groove corresponds to the sixth through groove. Thus, the second mounting part and the first mounting part are interchangeable, which facilitates production and assembly.
[0038] In some embodiments of this application, the second mounting member and / or the first mounting member are profiles.
[0039] Therefore, in this application, the second mounting component and / or the first mounting component are profiles, which are easy to process and have good structural stability and high strength.
[0040] In some embodiments of this application, the hanging strip includes a first hanging strip portion and a second hanging strip portion, the first hanging strip portion and the second hanging strip portion are detachably connected, and the total length of the first hanging strip portion and the second hanging strip portion after connection is adjustable and is greater than the length of the first hanging strip portion.
[0041] Therefore, in this application, the length of the hanging strip is adjustable, making it compatible with display cabinets of different heights. Attached Figure Description
[0042] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0043] Figure 1 This is a three-dimensional structural diagram of the splicing screen bracket in the embodiments of this application;
[0044] Figure 2 This is a three-dimensional structural diagram of the splicing screen mounted on the splicing screen bracket in the embodiments of this application;
[0045] Figure 3 for Figure 1 Decomposition and magnification of region A in the image;
[0046] Figure 4 for Figure 3 Enlarged view at point B;
[0047] Figure 5 This is a schematic diagram showing the installation status of the hanger and the first mounting component;
[0048] Figure 6 for Figure 1 An enlarged front view of region B in the middle;
[0049] Figure 7 for Figure 6 Top view;
[0050] Figure 8 for Figure 6 Exploded view;
[0051] Figure 9 Front view of the second mounting component and the third adjusting component;
[0052] Figure 10 for Figure 9 Top view;
[0053] Figure 11 for Figure 10 Exploded view;
[0054] Figure 12 A schematic diagram of a video wall mounting bracket installed on a wooden column wall;
[0055] Figure 13 This is a schematic diagram of a video wall mounting bracket installed on a cement wall.
[0056] Figure 14 This is to extend the display intent of the pendant. Detailed Implementation
[0057] The embodiments of this application are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain this application, and should not be construed as limiting this application.
[0058] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this application, "multiple" means two or more, unless otherwise explicitly specified.
[0059] In this application, unless otherwise expressly specified and limited, the terms "connection," "fixed," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.
[0060] Please refer to Figure 1 , Figure 1 This is a three-dimensional structural diagram of the video wall bracket 100 in this embodiment of the application. For ease of description, the following definitions are provided. Figure 1 The front-to-back direction of the splicing screen bracket 100 shown is the Y-axis direction, i.e., the thickness direction and front-to-back direction; the left-to-right direction is the X-axis direction, i.e., the length direction and horizontal direction; and the vertical and height directions are the Z-axis directions. The directional terms such as "top," "bottom," "left," and "right" mentioned in the description of the splicing screen bracket 100 in this application are based on the accompanying drawings. Figure 1 The description of the orientation shown uses the positive direction of the Z-axis as "top", the negative direction of the Z-axis as "bottom", the negative direction of the X-axis as "left", the positive direction of the X-axis as "right", the negative direction of the Y-axis as "back", and the positive direction of the Y-axis as "front". It does not constitute a limitation on the actual application scenario of the splicing screen bracket 100.
[0061] Please refer to Figure 2 , Figure 2This is a three-dimensional structural diagram of the splicing screen 200 mounted on the splicing screen bracket 100 in this embodiment of the application. The splicing screen 200 includes multiple display cabinets 201. The splicing screen 200 has a large display area, and each display cabinet 201 has a small display area. The small display areas of the multiple display cabinets 201 can be spliced together to form the large display area of the splicing screen 200. It is understood that "large" and "small" are relative concepts. The splicing screen bracket 100 has multiple bracket sub-areas 101, each bracket sub-area 101 for mounting one display cabinet 201. When the multiple display cabinets 201 are respectively mounted on the multiple bracket sub-areas 101 and adjacent display cabinets 201 abut against each other, the multiple display cabinets 201 are spliced together to form the large display area of the splicing screen 200. The splicing screen 200 can be used to display content as a whole or to display content in sections.
[0062] In some embodiments, the video wall 200 can be an LED display screen, an LCD display screen, etc. Each display screen cabinet 201 is a display unit of the video wall 200. For example, when the video wall 200 is an LED display screen, each display screen cabinet 201 is one of the display units of the LED display screen, and this display unit may include a display screen, a main control board, etc. When the video wall 200 is an LCD display screen, each display screen cabinet 201 is one of the display units of the LCD display screen, and this display unit may include a display screen, a main control board, etc. It is understood that the video wall bracket 100 can also be extended to install one or more video walls 200, which is not limited here.
[0063] In some embodiments, each display cabinet 201 may also be a spliced display screen formed by splicing multiple sub-display units, which is not limited here.
[0064] Please refer to Figure 3 , Figure 3 for Figure 1 The exploded and enlarged view of area A is shown in the figure. The splicing screen bracket 100 includes a first mounting component 2 and a hanging component 3. The first mounting component 2 extends horizontally and has a snap-fit groove 210. The hanging component 3 includes a hanging rod 31 and a locking hook 32. The hanging rod 31 is used to connect the display cabinet 201 of the splicing screen 200 and is hung on the first mounting component 2. The locking hook 32 is connected to the hanging rod 31. When the locking hook 32 is engaged with the snap-fit groove 210, the hanging component 3 is in a locked state. When the locking hook 32 is separated from the snap-fit groove 210, the hanging component 3 is in an unlocked state.
[0065] Therefore, the first mounting component 2 can be used to form a hanging bracket area 101, and each hanging bracket area 101 is used to set at least one hanging member 3 to hang a display screen cabinet 201, thereby realizing the hanging and installation of the display screen cabinet 201. In addition, the display screen cabinet 201 is suspended on the first mounting component 2 by the hanging rod 31, and the hanging rod 31 is locked to the first mounting component 2 by the locking hook 32 engaging with the locking groove 210 of the first mounting component 2, thereby realizing a detachable connection, enabling quick installation and convenient disassembly and maintenance.
[0066] In some embodiments, the horizontal extension of the first mounting member 2 means that the length extension direction of the first mounting member 2 is approximately parallel to the X-axis direction, including a state where the length extension direction of the first mounting member 2 is completely parallel to the X-axis direction or a state where the angle between the length extension direction of the first mounting member 2 and the X-axis direction is less than a preset angle, for example, 10 degrees. It is understood that ideally, the length extension direction of the first mounting member 2 is completely parallel to the X-axis direction. However, in actual drilling of mounting holes, errors may occur. Therefore, when there is an angle between the length extension direction of the first mounting member 2 and the X-axis direction, it can be adjusted using a horizontal adjustment mechanism or the like.
[0067] In some embodiments, the first mounting member 2 can be used to attach different hanging members 3 at different positions in the X-axis direction.
[0068] In some embodiments, the first mounting member 2 can be one or more, with the multiple first mounting members 2 arranged at intervals along the Z-axis. In this embodiment, there are four first mounting members 2. The four first mounting members 2 are arranged along the Z-axis. In other embodiments, the number of first mounting members 2 is not limited to four, but depends on the size of the splicing screen 200.
[0069] Depend on Figure 1 As can be seen, in this application, each first mounting member 2 can be used to hang four mounting members 3, and each pair of mounting members 3 is used to install one display screen cabinet 201. Since there are four first mounting members 2, a total of eight display screen cabinets 201 can be hung from the four first mounting members 2. It is understood that in other embodiments, the length and number of first mounting members 2 can be adjusted according to actual needs.
[0070] In some embodiments, the first mounting member 2 is a profile. On the one hand, the profile has good structural stability and high dimensional accuracy. On the other hand, the snap-fit groove 210 provided on the profile can extend through the profile along its length. Therefore, it is convenient to adjust the position of the first mounting member 2 and the mounting position of the hanger 3 on the first mounting member 2. Therefore, it is easier to be compatible with display cabinets 201 of different sizes.
[0071] Please refer to Figure 4 , Figure 4 for Figure 3 Enlarged view at point B. In some embodiments, the first mounting member 2 has a first surface 21 and a second surface 22 disposed opposite to each other, and a first side surface 23 and a second side surface 24 disposed opposite to each other; the hanging rod 31 includes a hanging strip 311 and a hook 312, the hanging strip 311 is used to connect to the display screen housing 201, the hook 312 is connected to one side of the hanging strip 311, the hanging rod 31 abuts against the second surface 22, and a snap-fit groove 210 is provided on the first surface 21.
[0072] Therefore, in this application, the snap-fit groove 210 is located on the second surface 22 of the first mounting member 2 away from the hanging strip 311, making the locking safer and more reliable, and the load-bearing capacity better.
[0073] In some embodiments, the first mounting member 2 has a first end face 25 and a second end face (not shown) disposed opposite to each other, and the snap-fit groove 210 extends horizontally and penetrates the first end face 25 and the second end face horizontally.
[0074] Thus, the snap-fit groove 210 extends horizontally through the first end face 25 and the second end face, and the locking hook 32 can snap into the snap-fit groove 210 at any position in the horizontal direction, making it convenient to adjust the position of the display cabinet 201 to be compatible with display cabinets 201 of different lengths.
[0075] Please refer to Figure 4 In some embodiments, the cross-section of the snap-fit groove 210 is C-shaped, and the snap-fit interface of the snap-fit groove is provided on the first surface 21. The height dimension of the snap-fit interface 211 on the first surface 21 of the first mounting member 210 is smaller than the height dimension inside the snap-fit groove 210. That is, the height dimension of the snap-fit groove 210 is different at different positions from front to back. Therefore, the snap-fit groove 210 forms a snap-fit interface 211 and a snap-fit portion 212 located above the snap-fit interface 211. The hook is attached to the top surface, i.e., the first side surface 23, of the first mounting member 2. The locking hook 32 extends downward relative to the locking hook 32 and can enter the interior of the snap-fit groove 210 from the snap-fit interface 211 and engage with the snap-fit portion 212 of the snap-fit groove 210. The snap-fit groove 210 forms a snap-fit portion 212 on one side of its snap-fit interface 211, and the locking hook 32 can enter the interior of the snap-fit groove 210 from the snap-fit interface 211 and engage with the snap-fit portion 212.
[0076] Therefore, in this application, the cross-section of the snap-fit groove 210 is C-shaped, and the snap-fit groove 210 forms a snap-fit part 212 on one side of its snap-fit interface 211. Thus, it can have a better snap-fit effect with the lock hook 32, and it is easier to unlock when it needs to be unlocked, and it is not easy to get stuck.
[0077] It is understood that in other embodiments, the snap-fit groove 210 is not limited to a C-shape, but can also be other shapes.
[0078] In some embodiments, the locking hook 32 includes a locking hook member 321 and a lever member 322. The lever member 322 has a first connection point 322a and a second connection point 322b. The second connection point 322b is located above the first connection point 322a. The first connection point 322a is rotatably connected to the hook member 312, and the second connection point 322b is rotatably connected to the locking hook member 321. When the lever member 322 is in the first position, the locking hook member 321 is engaged with the locking groove 210, and the hanging member 3 is in a locked state. When the lever member 322 is in the second position, the locking hook member 321 is separated from the locking groove 210, and the hanging member 3 is in an unlocked state.
[0079] Therefore, in this application, with the first connection point 322a as the center, the lever 322 can rotate the locking hook 321 in two directions, thereby causing the locking hook 321 to loosen or lock in the engagement groove 210 of the first mounting member 2. Moreover, since the engagement groove 210 is located on the side of the first mounting member 2 facing the second mounting member 1, the lever 322, in conjunction with the locking hook 321, enables the locking hook 321 to engage or unlock with the engagement groove 210, making operation more convenient. Furthermore, the lever 322 is connected to the hook member 312, resulting in a more compact structure and avoiding interference with the hanging strip 311.
[0080] In some embodiments, the lever 322 includes a first connecting wall 3221, and a first connecting point 322a and a second connecting point 322b are respectively located at different positions on the first connecting wall 3221; the locking hook 321 includes a locking hook plate 321a and a connecting part 321b, one end of the connecting part 321b is connected to one end of the locking hook plate 321a, and the other end of the connecting part 321b is connected to the second connecting point 322b of the lever 322. A locking hook block 321a1 is provided on the side of the locking hook plate 321a facing the first mounting member 2, and the locking hook block 321a1 is used to engage with the locking groove 210.
[0081] Therefore, in this application, the first connection point 322a and the second connection point 322b are respectively located at different positions on the first connecting wall 3221. One end of the connecting part 321b is connected to one end of the locking hook plate 321a, and the other end of the connecting part 321b is connected to the second connection point 322b of the lever 322. The side of the locking hook plate 321a facing the first mounting member 2 is provided with a locking hook block 321a1, which is used to engage with the locking groove 210. The structure is compact and the connection is stable and reliable.
[0082] In some embodiments, the angle between the locking hook block 321a1 and the locking hook plate 321a is an acute angle, and the locking interface 211 of the angle between the locking hook block 321a1 and the locking hook plate 321a faces the connecting part 321b.
[0083] Therefore, in this application, pushing the lever 322 backward can drive the locking hook 321 to unlock from the locking groove 210, and conversely, pulling the lever 322 forward can drive the locking hook 321 to lock from the locking groove 210. The structure is simple and reliable.
[0084] In some embodiments, the lever 322 further includes a lever portion 3222 connected to the top end of the first connecting wall 3221; the lever portion 3222 extends from the top end of the hanging rod 31.
[0085] Thus, the lever 3222 extends from the top of the hook 31 for easy operation.
[0086] In some embodiments, the hanging strip 311 and the hook 312 are integrally formed, which can increase the structural strength of the hanging rod 31. In other embodiments, the hanging strip 311 and the hook 312 can be welded together or connected by other means, which is not limited here.
[0087] In some embodiments, the lever 322 further includes a first body 3223, two first connecting walls 3221 connected to opposite sides of the first body 3223 to form a first U-shaped structure 3224, and a lever portion 3222 connected to the top of the first U-shaped structure 3224; the hanging strip 311 includes a second body 311a and two second connecting walls 311b, the two second connecting walls 311b connected to opposite sides of the second body 311a to form a second U-shaped structure 311c, the first U-shaped structure 3224 being fitted into the second U-shaped structure 311c, the lever portion 3222 extending from the top of the second U-shaped structure 311c, and a hook 312 connected to the second connecting wall 311b.
[0088] Thus, the lever 322 is fitted into the hanging strip 311, resulting in a compact structure that allows the splicing screen bracket 100 to be made thinner.
[0089] In some embodiments, the first connection point 322a and the second connection point 322b are respectively provided with through holes. The connecting portion 321b is provided with a first connecting hole 321b1, and the first connecting hole 321b1 and the second connection point 322b are rotatably connected by a first connecting member L1. Figure 3As can be seen, the side of the connecting part 321b facing the lever 322 has a U-shaped groove. Therefore, the connecting part 321b has two connecting arms 321b2, each of which has a first connecting hole 321b1. The first connecting member L1 passes through the first connecting hole 321b1 and the through hole on the second connecting point 322b, rotatably connecting the second connecting point 322b of the lever 322 and the connecting part 321b of the locking hook 321. The hook 312 has a second connecting hole 312a, and the second connecting point 322b and the second connecting hole 312a are rotatably connected by the second connecting member L2. It can be understood that the aforementioned first connecting member L1 and second connecting member L2 can be, but are not limited to, rivets, etc.
[0090] Therefore, in this application, the U-shaped groove can make way for the operation of the user's operating lever 3222, and the rivet connection structure is simple, safe and reliable.
[0091] It is understood that in other embodiments, the locking hook 321 and the lever 322 are not limited to the above structure, but may be other linkage structures, which are not limited here.
[0092] Please refer to Figure 5 , Figure 5 This is a schematic diagram showing the installation status of the hanger 3 and the first mounting component 2. Wherein, Figure 5 In (a), the hanger 3 is locked onto the first mounting piece 2. Figure 5 In (b) of the above, the pendant 3 is in the unlocked state and can be separated from the first mounting piece 2.
[0093] like Figure 5 As shown in (a), when the hanger 3 is in the locked state, the lever 322 is in the second position, that is, the first body 3223 of the lever 322 is parallel to the second body 311a of the hanger 311. Figure 5 As shown in (b), when the locking hook 321 is separated from the locking groove 210, the hanging part 3 is in the unlocked state, that is, the first body 3223 of the lever 322 and the second body 311a of the hanging strip 311 are in a relatively inclined state and the locking hook block 321a1 of the locking hook 321 is separated from the locking part 212.
[0094] Among them, Figure 5 In the state shown in (a), according to Figure 5 Operate lever 322 in the direction of the arrow shown in (a), lever 322 will switch to Figure 5 The state shown in (b) indicates the transition from the locked state to the unlocked state; conversely, in... Figure 5 In the state shown in (b), according to Figure 5 Operate lever 322 in the direction of the arrow shown in (b) in the diagram. Lever 322 will switch to Figure 5The state shown in (a) is the state that switches from the unlocked state to the locked state.
[0095] Please refer to Figure 6 , Figure 7 ,and Figure 8 , Figure 6 for Figure 1 An enlarged front view of region B in the middle. Figure 7 for Figure 6 Top view, Figure 8 for Figure 6 The exploded diagram.
[0096] In some embodiments, the video wall bracket 100 further includes a second mounting member 1 for mounting on a wall, and a first mounting member 2 is cross-connected to the side of the second mounting member 1 facing away from the wall. The video wall bracket 100 also includes a first adjusting member 5 connected between the first mounting member 2 and the second mounting member 1, and the first adjusting member 5 adjusts the position of the first mounting member 2 relative to the second mounting member 1 in the vertical direction.
[0097] Therefore, in this application, the second mounting component 1 can be used to connect to the wall, and a first adjusting component 5 can be provided between the first mounting component 2 and the second mounting component 1 to adjust the position of the first mounting component 2 relative to the second mounting component 1 in the vertical direction, so as to be compatible with display screen cabinets 201 of different sizes.
[0098] The vertical direction refers to the direction parallel to the Z-axis, or the direction whose angle with the Z-axis is less than a preset angle.
[0099] In some embodiments, the length extension direction of the second mounting member 1 is parallel to the Z-axis direction. In other embodiments, the length extension direction of the second mounting member 1 has an angle smaller than a preset angle with the Z-axis direction, that is, it is approximately parallel to the Z-axis direction.
[0100] In some embodiments, the second mounting member 1 can be one or more. If the second mounting member 1 is relatively wide, providing sufficient contact area between the second mounting member 1 and the first mounting member 2, the second mounting member 1 can be a single piece. In other embodiments, the second mounting member 1 can be two or more pieces, arranged along the X-axis to provide sufficiently stable support for the installation of the first mounting member 2. In this embodiment, there are two second mounting members 1, arranged along the X-axis to provide sufficiently stable support for the installation of the first mounting member 2.
[0101] In some embodiments, the two second mounting members 1 are arranged in parallel. In other embodiments, the two second mounting members 1 may not be parallel, which is not limited here.
[0102] In some embodiments, the second mounting component 1 is a profile, which has good structural stability and high dimensional accuracy.
[0103] In some embodiments, such as Figure 8 As shown, the second mounting member 1 has a third surface 11 and a fourth surface 12 arranged opposite to each other, a third side surface 13 and a fourth side surface 14 arranged opposite to each other, and a third end face and a fourth end face arranged opposite to each other; a first sliding groove 111 is provided on the third surface 11, the first sliding groove 111 extends along the vertical direction, and the vertical direction is parallel to the length direction of the second mounting member 1. The splicing screen bracket 100 includes a first adjusting member 5, the first adjusting member 5 includes a first sliding block 51, a first locking member 52 and a first adapter 53, the first sliding block 51 is disposed in the first sliding groove 111, the first locking member 52 is used to lock the first sliding block 51 in a preset position in the first sliding groove 111, the first adapter 53 is connected to the first sliding block 51, and the first mounting member 2 is connected to the opening 530 of the first adapter 53.
[0104] Therefore, in this application, the first mounting member 2 is slidably connected to the first groove 111 of the second mounting member 1 by the first sliding block 51, the first locking member 52 and the first adapter 53, thereby achieving the purpose of adjusting the position of the first mounting member 2 in the vertical direction, and further achieving the purpose of adjusting the position of the display screen housing 201 in the vertical direction, thus being compatible with display screen housings 201 with different height dimensions.
[0105] In some embodiments, the first groove 111 extending in the vertical direction means that the length extension direction of the first groove 111 is approximately parallel to the Z-axis direction, including the state in which the length extension direction of the first groove 111 is completely parallel to the Z-axis direction or the state in which the length extension direction of the first groove 111 is less than a preset angle, for example, 10 degrees.
[0106] In some embodiments, when it is necessary to adjust the position of the first sliding block 51 in the first slide groove 111, the first locking member 52 is loosened, and the first sliding block 51 can slide in the first slide groove 111. When the first sliding block 51 slides to the predetermined position in the first slide groove 111, the first locking member 52 can be tightened again. The adjustment method is simple and can adapt to different display screen housing 201 sizes.
[0107] In some embodiments, the shape and structure of the first sliding block 51 are adapted to the shape and structure of the first sliding groove 111. The first sliding groove 111 is C-shaped, and the first sliding block 51 is also C-shaped. Therefore, the first sliding block 51 can be nested in the first sliding groove 111, and a part of the structure of the first sliding block 51 can be exposed from the opening on the third surface 11 of the first sliding groove 111. The threaded hole on the first sliding block 51 is provided on the part of the first sliding block 51 exposed from the opening on the third surface 11 of the first sliding groove 111. Moreover, the first locking member 52 can be threaded into the threaded hole on the first sliding block 51 and pass through the threaded hole to abut against the bottom surface of the first sliding groove 111. Therefore, by rotating the first locking member 52, the friction between the first locking member 52 and the bottom surface of the first slide groove 111 can be adjusted. When the friction between the first locking member 52 and the bottom surface of the first slide groove 111 is relatively small, the first sliding block 51 can slide relative to the bottom surface of the first slide groove 111 under the action of external thrust. Conversely, when the friction between the first locking member 52 and the bottom surface of the first slide groove 111 is relatively large, the first sliding block 51 will not slide relative to the bottom surface of the first slide groove 111 under the action of external thrust.
[0108] It is understood that in other embodiments, the first groove 111 and the first sliding block 51 may also be of other shapes, which are not limited here.
[0109] In some embodiments, two first locking elements 52 and one first adapter 53 are distributed on one side of the first sliding block 51 in the form of one first locking element 52, one first adapter 53 and another first locking element 52.
[0110] Therefore, the structure of the first adjusting member 5 is more compact, which helps to achieve a thinner design.
[0111] In some embodiments, the video wall bracket 100 further includes a second adjusting member 6, which is connected between the first adjusting member 5 and the first mounting member 2. The second adjusting member 6 adjusts the position of the first mounting member 2 in the front-back direction. Here, the front-back direction refers to the direction parallel to the Y-axis.
[0112] Therefore, in this application, the position of the first mounting member 2 in the front-to-back direction can be adjusted by the second adjusting member 6, so that the display planes of the different display cabinets 201 suspended on the first mounting member 2 are coplanar.
[0113] In some embodiments, the first adapter 53 includes a connecting arm 531 with a strip hole 531a extending along the front-rear direction. The second adjusting member 6 includes an abutment block 61 and a second locking member 62. The abutment block 61 is disposed in the opening 530 of the first adapter 53 and abuts against the first mounting member 2. The second locking member 62 passes through the strip hole 531a and is connected to the abutment block 61. When the second locking member 62 is locked at different positions in the strip hole 531a, the first mounting member 2 can be locked at different positions in the first adapter 53.
[0114] When it is necessary to adjust the front-to-back position of the first mounting component 2, loosen the second locking component 62, manually adjust the front-to-back position of the first mounting component 2 within the first adapter 53, and then tighten the second locking component 62 again to complete the operation.
[0115] Therefore, in this application, the front and rear positions of the first mounting member 2 are adjusted by means of the strip hole 531a provided on the connecting wall of the first adapter 53, the abutment block 61 and the second locking member 62, so that the display planes of different display cabinets 201 suspended on the first mounting member 2 are coplanar, so as to be compatible with display cabinets 201 with different thicknesses and dimensions, and the structure is simple, easy to operate and low in cost.
[0116] In some embodiments, the first adapter 53 is U-shaped, and there are two connecting arms 531 arranged in the vertical direction. There are two abutment blocks 61 and two locking members 62. The two abutment blocks 61 are respectively disposed on the inner surfaces of the two connecting arms 531, and the two locking members 62 pass through the corresponding strip holes 531a from the outer surfaces of the two connecting arms 531 and are connected to the corresponding abutment blocks 61.
[0117] This improves the connection stability of the first adapter 53.
[0118] In some embodiments, please refer to Figure 9 , Figure 10 and Figure 11 The third side 13 or the fourth side 14 is provided with a second slide groove 15, which extends in the vertical direction. The splicing screen bracket 100 also includes a third adjusting member 7. One side of the third adjusting member 7 is slidably connected to the second slide groove 15, and the other side of the third adjusting member 7 is used to fix it to the wall. The third adjusting member 7 is used to adjust the position of the second mounting member 1 in the horizontal and / or vertical directions.
[0119] Therefore, in this application, the third adjusting member 7 is used to adjust the horizontal and / or vertical position of the second mounting member 1. After drilling mounting holes in the wall, the position of the third adjusting member 7 relative to the mounting holes is adjusted to ensure the accuracy of the installation position of the second mounting member 1. Furthermore, the drilling position can be selected within a certain range in the horizontal and / or vertical directions based on the position of the third adjusting member 7. Therefore, it can be ensured that the mounting holes can be drilled into the load-bearing wooden columns, making it more suitable for wooden column walls.
[0120] In some embodiments, such as Figure 11 As shown, the third adjusting member 7 includes a second sliding block 71, a third locking member 72, and a second adapter 73. The second sliding block 71 is disposed in the second slide groove 15. The third locking member 72 is used to lock the second sliding block 71 in a preset position in the second slide groove 15. One side of the second adapter 73 is connected to the second sliding block 71, and the other side of the second adapter 73 is provided with an adjusting hole 731. When the third locking member 72 is locked in different positions of the adjusting hole 731, the second mounting member 1 is located in different positions in the horizontal direction and / or vertical direction.
[0121] Therefore, in this application, the adjustment hole 731, due to its own structure, determines that the third locking member 72 installed in the adjustment hole 731 has a certain range of motion in the left and right directions and / or the vertical direction, which facilitates the adjustment of the position of the second mounting member 1 and also facilitates drilling the mounting hole onto a wooden column with load-bearing capacity, thus making it more suitable for wooden column walls.
[0122] In some embodiments, please refer to Figure 11 The shape and structure of the second sliding block 71 are adapted to the shape and structure of the second sliding groove 15. The second sliding groove 15 is C-shaped, and the second sliding block 71 is also C-shaped. Therefore, the second sliding block 71 can be nested in the second sliding groove 15. Moreover, the second sliding block 71 has a partial structure that can be exposed from the opening on the fourth side 14 of the second sliding groove 15. The threaded hole on the second sliding block 71 is provided on the surface of the second sliding block 71 exposed from the opening on the fourth side 14 of the second sliding groove 15. Furthermore, the third locking member 72 can be threaded into the threaded hole on the second sliding block 71 and pass through the threaded hole to abut against the bottom surface of the second sliding groove 15. Therefore, by rotating the third locking member 72, the friction between the third locking member 72 and the bottom surface of the second slide groove 15 can be adjusted. When the friction between the third locking member 72 and the bottom surface of the second slide groove 15 is relatively small, the second sliding block 71 can slide relative to the bottom surface of the second slide groove 15 under the action of external thrust. Conversely, when the friction between the third locking member 72 and the bottom surface of the second slide groove 15 is relatively large, the second sliding block 71 will not slide relative to the bottom surface of the second slide groove 15 under the action of external thrust.
[0123] In some embodiments, the second adapter 73 includes a first connecting portion 732 and a second connecting portion 733, which are connected in an L-shape. An adjustment hole 731, in a cross shape, is provided on the surface of the second connecting portion 733, thus allowing for position adjustment in both the horizontal and / or vertical directions. Furthermore, the second connecting portion 733 is U-shaped, which can improve structural strength.
[0124] In other embodiments, the second adapter 73 is not limited to an L-shape, and the adjustment hole 731 is not limited to a cross shape.
[0125] In some embodiments, please refer to Figure 4 The second mounting component 1 and the first mounting component 2 have the same structure. The first mounting component 2 has a first through groove 21a on the first surface 21, a second through groove 23a on the first side 23, and a third through groove 24a on the second side 24; the first through groove 21a is a snap-fit groove 210; please refer to... Figure 10 The second mounting component 1 has a fourth through groove 11a on the third surface 11, a fifth through groove 13a on the third side 13, and a sixth through groove 14a on the fourth side 14; the fourth through groove 11a is a first sliding groove 111, and the fifth through groove 13a or the sixth through groove 14a is a second sliding groove 15. The first through groove 21a corresponds to the fourth through groove 11a, the second through groove 23a corresponds to the fifth through groove 13a, and the third through groove 24a corresponds to the sixth through groove 14a.
[0126] Therefore, in this application, the second mounting component 1 and the first mounting component 2 have the same structure, are interchangeable, and are convenient for production and assembly.
[0127] In some embodiments, the second mounting member 1 and / or the first mounting member 2 are profiles.
[0128] Therefore, in this application, the second mounting component 1 and / or the first mounting component 2 are profiles, which are easy to process and have good structural stability and high strength. In addition, the installation of multiple display screen cabinets 201 can be achieved by replacing profiles of different lengths or by splicing profiles, allowing for unlimited expansion and giving consumers more choices.
[0129] Please refer to Figure 12 For wooden pillar walls, the distance between two adjacent first mounting pieces 2 can be adjusted by adjusting the position of the third locking piece 72 in the adjustment hole 731, so that the third locking piece 72 can be reliably locked onto the wooden pillar, thereby improving the load-bearing strength of the splicing screen bracket 100.
[0130] Please refer to Figure 13For cement walls, the distance between two adjacent first mounting pieces 2 and the verticality of each first mounting piece 2 can be adjusted by adjusting the position of the third locking piece 72 in the adjustment hole 731.
[0131] Therefore, the splicing screen bracket 100 in this application can adapt to different types of walls, giving consumers more options for wall installation.
[0132] Please refer to Figure 14 The length of the hanging part 3 is adjustable. Specifically, the length of the hanging strip 311 of the hanging part 3 can be extended. Specifically, it can be extended by means of threaded connection. Specifically, the hanging strip 311 includes a first hanging strip part 311e and a second hanging strip part 311f. The hook part 312 is provided on the first hanging strip part 311e. The first hanging strip part 311e and the second hanging strip part 311f are detachably connected. The total length of the first hanging strip part 311e and the second hanging strip part 311f after connection is adjustable and is greater than the length of the first hanging strip part 311e.
[0133] Therefore, in this application, the length of the hanging strip 311 is adjustable, and it can be compatible with display cabinets 201 with different heights.
[0134] The above describes the subject matter technical solution of this utility model and its corresponding details. It is understood that the above description is only some implementation schemes of the subject matter technical solution of this utility model, and some details may be omitted in the specific implementation.
[0135] Furthermore, in some embodiments of the above utility model, multiple embodiments may be combined. Due to space limitations, all such combinations will not be listed here. Those skilled in the art can freely combine the above embodiments according to their needs to obtain a better application experience.
[0136] In summary, this application possesses the aforementioned superior characteristics, enabling it to achieve unprecedented performance in use and thus become a highly practical product.
[0137] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of this application should be included within the protection scope of this application.
Claims
1. A splicing screen mounting bracket, characterized in that, The device includes a first mounting component and a hanging component. The first mounting component extends horizontally and has a snap-fit groove. The hanging component includes a hanging rod and a locking hook. The hanging rod is used to connect to the display cabinet of the splicing screen and is hung on the first mounting component. The locking hook is connected to the hanging rod. When the locking hook is engaged with the snap-fit groove, the hanging component is in a locked state. When the locking hook is separated from the snap-fit groove, the hanging component is in an unlocked state.
2. The splicing screen mounting bracket according to claim 1, characterized in that, The first mounting component has a first surface and a second surface that are disposed opposite to each other; The hanging rod includes a hanging strip and a hook. The hanging strip is used to connect to the display screen cabinet, the hook is connected to one side of the hanging strip, the hanging strip abuts against the second surface, and the snap-fit groove is provided on the first surface.
3. The splicing screen mounting bracket according to claim 2, characterized in that, The first mounting member has a first end face and a second end face disposed opposite to each other, the snap-fit groove extends along the horizontal direction and penetrates through the first end face and the second end face along the horizontal direction.
4. The splicing screen mounting bracket according to claim 2 or 3, characterized in that, The cross-section of the snap-fit groove is C-shaped, the snap-fit interface of the snap-fit groove is provided on the first surface, the snap-fit groove forms a snap-fit part on one side of the snap-fit interface, and the locking hook can enter the interior of the snap-fit groove from the snap-fit interface and snap-fit with the snap-fit part.
5. The splicing screen mounting bracket according to claim 2, characterized in that, The locking hook includes a locking hook component and a lever component. The lever component has a first connection point and a second connection point. The second connection point is located above the first connection point. The first connection point is rotatably connected to the hook component, and the second connection point is rotatably connected to the locking hook component. When the lever component is in the first position, the locking hook component is engaged with the locking groove, and the hanging component is in a locked state. When the lever component is in the second position, the locking hook component is disengaged from the locking groove, and the hanging component is in an unlocked state.
6. The splicing screen mounting bracket according to claim 5, characterized in that, The lever includes a first connecting wall, with the first connection point and the second connection point respectively located at different positions on the first connecting wall; the locking hook includes a locking hook plate and a connecting part, with one end of the connecting part connected to one end of the locking hook plate, and the other end of the connecting part rotatably connected to the second connection point of the lever; the locking hook plate has a locking hook block on the side facing the first mounting member, and the locking hook block is used to engage with the locking groove.
7. The splicing screen mounting bracket according to claim 6, characterized in that, The angle between the locking hook block and the locking hook plate is an acute angle, and the locking interface of the angle between the locking hook block and the locking hook plate faces the connecting part.
8. The splicing screen mounting bracket according to claim 6, characterized in that, The lever also includes a lever part connected to the top end of the first connecting wall; the lever part extends from the top end of the hanging strip.
9. The splicing screen mounting bracket according to claim 8, characterized in that, The lever also includes a first body, with two first connecting walls connected to opposite sides of the first body to form a first U-shaped structure, and the lever part connected to the top of the first U-shaped structure; the hanging strip includes a second body and two second connecting walls, with the two second connecting walls connected to opposite sides of the second body to form a second U-shaped structure, the first U-shaped structure being fitted into the second U-shaped structure, the lever part extending from the top of the second U-shaped structure, and the hook connected to the second connecting wall.
10. The splicing screen mounting bracket according to claim 1, characterized in that, The video wall bracket also includes a second mounting component for mounting on a wall. The first mounting component is cross-connected to the side of the second mounting component facing away from the wall. The video wall bracket also includes a first adjusting component connected between the first mounting component and the second mounting component. The first adjusting component adjusts the vertical position of the first mounting component relative to the second mounting component.
11. The splicing screen mounting bracket according to claim 10, characterized in that, The second mounting member has a third surface and a fourth surface that are disposed opposite to each other; The third surface is provided with a first sliding groove, which extends vertically. The first adjusting member includes a first sliding block, a first locking member, and a first adapter. The first sliding block is disposed in the first sliding groove. The first locking member is used to lock the first sliding block in a preset position in the first sliding groove. The first adapter is connected to the first sliding block. The first mounting member is connected to the card interface of the first adapter.
12. The splicing screen mounting bracket according to claim 11, characterized in that, The splicing screen bracket also includes a second adjusting member, which is connected between the first adjusting member and the first mounting member. The second adjusting member adjusts the position of the first mounting member in the front-back direction.
13. The splicing screen mounting bracket according to claim 12, characterized in that, The first adapter includes a connecting arm with a strip-shaped hole. The length of the strip-shaped hole extends along the front-back direction of the splicing screen bracket. The second adjusting component includes an abutment block and a second locking component. The abutment block is located inside the first adapter and is used to abut against the first mounting component. The second locking component passes through the strip-shaped hole and is connected to the abutment block. When the second locking component is locked at different positions in the strip-shaped hole, it can lock the first mounting component at different positions within the first adapter.
14. The splicing screen mounting bracket according to claim 11, characterized in that, The second mounting component has a third side and a fourth side that are arranged opposite to each other. A second sliding groove is provided on the third side or the fourth side. The second sliding groove extends along the vertical direction. The splicing screen bracket also includes a third adjusting component. One side of the third adjusting component is slidably connected to the second sliding groove, and the other side of the third adjusting component is used to fix it to the wall. The third adjusting component is used to adjust the position of the second mounting component in the horizontal and / or vertical directions.
15. The splicing screen mounting bracket according to claim 14, characterized in that, The third adjusting component includes a second sliding block, a third locking component, and a second adapter. The second sliding block is disposed in the second slide groove. The third locking component is used to lock the second sliding block in a preset position in the second slide groove. One side of the second adapter is connected to the second sliding block, and the other side of the second adapter is provided with an adjusting hole. When the third locking component is locked in different positions of the adjusting hole, the second mounting component is located in different positions in the horizontal direction and / or vertical direction.
16. The splicing screen mounting bracket according to claim 14, characterized in that, The first mounting member and the second mounting member have the same structure. The first mounting member has a first surface and a second surface disposed opposite to each other, as well as a first side surface and a second side surface disposed opposite to each other. The first mounting member has a first through groove on the first surface, a second through groove on the first side surface, and a third through groove on the second side surface. The first through groove is the snap-fit groove. The second mounting member has a fourth through groove on the third surface, a fifth through groove on the third side surface, and a sixth through groove on the fourth side surface. The fourth through groove is the first sliding groove, and the fifth or sixth through groove is the second sliding groove. The first through groove corresponds to the fourth through groove, the second through groove corresponds to the fifth through groove, and the third through groove corresponds to the sixth through groove.
17. The splicing screen mounting bracket according to claim 16, characterized in that, The second mounting component and / or the first mounting component is a profile.
18. The splicing screen mounting bracket according to claim 2, characterized in that, The hanging strip includes a first hanging strip part and a second hanging strip part, which are detachably connected. The total length of the first hanging strip part and the second hanging strip part after connection is adjustable and is greater than the length of the first hanging strip part.