Display support and display system
By designing a display bracket with support plates and mounting components, combined with adsorption and sliding groove structures, the problem of electronic table signs being unable to achieve multi-faceted display was solved, enabling the rapid installation and replacement of multiple display panels, thus improving user convenience and stability.
Patent Information
- Application Number
- PCT/CN2025/081037
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-04-25
- Filing Date
- 2025-03-06
- Publication Date
- 2025-10-30
AI Technical Summary
In existing technologies, electronic nameplates lack multifunctionality, cannot simultaneously achieve display and operation functions, and cannot meet users' needs for multi-faceted display.
A display bracket is provided, including a support plate and a mounting component. The mounting component consists of first and second mounting plates. A first display panel is mounted through a first connecting structure, and a second connecting structure is detachably connected to a second display panel. Combined with an adsorption component and a sliding groove design, it enables multi-faceted display and quick replacement.
It enables the installation and quick replacement of multiple display panels on different surfaces, meeting users' needs for multi-sided display and improving ease of use and stability.
Smart Images

Figure CN2025081037_30102025_PF_FP_ABST
Abstract
Description
Display bracket and display system
[0001] This disclosure claims priority to Chinese Patent Application No. 202410509418.9, filed on April 25, 2024, entitled “Display Stand and Display System”, the entire contents of which are incorporated herein by reference. Technical Field
[0002] This disclosure relates to the field of display technology, and in particular to a display bracket and a display system. Background Technology
[0003] With the development of display technology, a variety of display panels have emerged, such as EPD (Electrophoretic Phoresis Display) panels, OLED (Organic Light-Emitting Diode) panels, and LCD (Liquid Crystal Display) panels. These different display panels can offer varying display quality and functions.
[0004] In related technologies, users may need multiple display panels simultaneously for various activities in certain scenarios. For example, in large conferences, users may need both an EPD panel and an LCD panel, one for display and the other for operation, such as recording meeting minutes, adjusting the meeting schedule, and sharing content. Therefore, it is necessary to ensure that users can conveniently and quickly use multiple display panels.
[0005] Overview
[0006] Based on the background art, this disclosure proposes a display bracket and a display system.
[0007] First, a display stand is provided, comprising:
[0008] Support plate;
[0009] At least one set of mounting components is connected to a first surface of the support plate, the mounting components including a first mounting plate and a second mounting plate disposed opposite to the first mounting plate;
[0010] A first connection structure is disposed on the first mounting plate and configured to mount a first display panel on the first mounting plate;
[0011] A second connection structure is detachably connected to the second mounting plate, and the second connection structure is configured to connect the second display panel to the second mounting plate.
[0012] For example, the first connection structure includes at least one mounting hole that penetrates the first mounting plate;
[0013] The second mounting plate has at least one first cutout area extending through it, and the orthographic projection of the first cutout area onto the first mounting plate covers the mounting hole.
[0014] For example, the size of the first hollow area is 1.5 to 2.5 times the diameter of the mounting hole.
[0015] For example, the second connection structure includes:
[0016] An adsorption member is provided with at least one adsorption part on the side near the second mounting plate, the adsorption part being configured to adsorb the second display panel onto the second mounting plate.
[0017] For example, the second mounting plate further includes:
[0018] A chute is provided to accommodate the adsorption member, which is capable of sliding within the chute.
[0019] For example, the groove is disposed on the side of the second mounting plate close to the first mounting plate; or, it is disposed on the side of the second mounting plate away from the first mounting plate.
[0020] For example, the first connection structure includes at least one mounting hole that penetrates the first mounting plate;
[0021] The second mounting plate has at least one first cutout area through it, and the orthographic projection of the first cutout area on the first mounting plate covers the mounting hole;
[0022] The first hollow area is located within the groove.
[0023] For example, the adsorption component is provided with a second hollow area corresponding to the first hollow area; wherein the first hollow area and the second hollow area overlap.
[0024] For example, the first dimension of the chute in the target direction is larger than the second dimension of the adsorption member in the target direction, and the difference between the first dimension and the second dimension is greater than or equal to 0.3 mm;
[0025] The target direction includes the sliding direction of the adsorption member within the chute and a direction orthogonal to the sliding direction.
[0026] For example, the second mounting plate further includes:
[0027] Anti-slip strips are attached to the side of the second mounting plate opposite to the first mounting plate;
[0028] The anti-slip strip covers the groove and the first hollow area.
[0029] For example, the anti-slip strip has at least one positioning shallow groove on the side opposite to the first mounting plate, and the orthographic projection of the positioning shallow groove on the second mounting plate overlaps with the orthographic projection of the adsorption part on the second mounting plate.
[0030] For example, an auxiliary support strip is connected to the side where the target mounting plate connects to the support plate; the target mounting plate includes the first mounting plate and / or the second mounting plate;
[0031] The auxiliary support strip extends away from the support plate and has a preset angle with the target mounting plate. The preset angle is greater than the angle between the support plate and the target mounting plate, but less than the maximum angle between the surface of the support plate and the target mounting plate.
[0032] For example, the auxiliary support bar bends toward the target mounting plate from the edge away from the support plate.
[0033] For example, the auxiliary support strip includes a metal base plate and an anti-slip pad stacked on the side of the metal base plate near the target mounting plate.
[0034] For example, the first mounting plate, the second mounting plate, and the support plate form a triangle; wherein the first mounting plate and the support plate form a first target angle, and the second mounting plate and the support plate form a second target angle;
[0035] The included angle of the first target is different from that of the second target.
[0036] For example, the size of the first mounting plate is different from the size of the second mounting plate.
[0037] For example, the adsorption part includes a magnet; wherein the thickness of the magnet is 1.5 mm to 3 mm.
[0038] For example, the adsorption component further includes a mounting plate, on which the magnet is fixed; wherein the magnet has any of the following structural features:
[0039] The thickness of the magnet is 1.5mm to 2mm, and it occupies the first area of the mounting plate.
[0040] The magnet has a thickness greater than 2mm and occupies the second area of the mounting plate.
[0041] The first area is larger than the second area.
[0042] A display system is also provided, the display system including any of the aforementioned display brackets and a plurality of display panels, the plurality of display panels being respectively located on a first mounting plate and a second mounting plate in at least one mounting member.
[0043] The display bracket provided in this disclosure can include a support plate and at least one set of mounting members connected to a first surface of the support plate. Each mounting member includes a first mounting plate and a second mounting plate facing away from the first mounting plate. A first connecting structure is provided on the first mounting plate, and a second connecting structure is detachably connected to the second mounting plate. The second connecting structure is used to mount a second display panel. In this embodiment, each mounting member can include two mounting plates. The first connecting structure on one mounting plate can be used to mount the first display panel, and the second connecting structure on the second mounting plate can be detachably connected to the second mounting plate. This allows for multi-faceted display on a single display bracket and facilitates quick replacement of the display panel between the first and second mounting plates, improving user convenience and ease of use.
[0044] The above description is merely an overview of the technical solution disclosed herein. In order to better understand the technical means of this disclosure and to implement it in accordance with the contents of the specification, and to make the above and other objects, features and advantages of this disclosure more apparent and understandable, specific embodiments of this disclosure are described below.
[0045] Brief description of the attached diagram
[0046] To more clearly illustrate the technical solutions in the embodiments or related technologies of this disclosure, the accompanying drawings used in the description of the embodiments or related technologies will be briefly introduced below. Obviously, the accompanying drawings described below are some embodiments of this disclosure. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort. It should be noted that the scale in the drawings is for illustration only and does not represent the actual scale.
[0047] Figure 1 shows a three-dimensional structural schematic diagram of a display bracket according to an embodiment of the present disclosure;
[0048] Figure 2 shows a front view of the display bracket in an embodiment of this disclosure;
[0049] Figure 3 shows a side view of the support structure in an embodiment of this disclosure;
[0050] Figure 4 shows a bottom view of the display bracket in an embodiment of this disclosure;
[0051] Figure 5 shows a side view of yet another display bracket according to an embodiment of the present disclosure;
[0052] Figure 6 shows an exploded view of a display bracket according to an embodiment of the present disclosure;
[0053] Figure 7 shows a front view of the display bracket shown in Figure 6 in an embodiment of this disclosure;
[0054] Figure 8 shows a three-dimensional structural schematic diagram of another display bracket according to an embodiment of the present disclosure;
[0055] Figure 9 shows a three-dimensional structural diagram of a display bracket with anti-slip strips installed in an embodiment of this disclosure;
[0056] Figure 10 shows an exploded view of bracket A in an embodiment of this disclosure;
[0057] Figure 11 shows a three-dimensional structural diagram of the display bracket after the display panel is installed in an embodiment of the present disclosure;
[0058] Figure 12 shows a side view of the display bracket after the display panel is mounted in an embodiment of this disclosure;
[0059] Figure 13 shows a schematic diagram of the process of installing the display panel on the display bracket B in an embodiment of this disclosure.
[0060] Explanation of reference numerals in the attached drawings: 100, display bracket; 200, first display panel; 300, second display panel; 10, support plate; 20, first mounting plate; 30, second mounting plate; 40, auxiliary support strip; 50, anti-slip part; 60, counterweight; 70, end cap; 21, mounting hole; 31, second connecting structure; 32, first hollow area; 33, sliding groove; 34, anti-slip strip; 35, groove; 36, threaded hole; 311, mounting bracket; 312, adsorption part; 313, second hollow area; 341, positioning shallow groove.
[0061] Detailed description
[0062] To make the objectives, technical solutions, and advantages of the embodiments of this disclosure clearer, the technical solutions of the embodiments of this disclosure will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this disclosure, and not all embodiments. Based on the embodiments of this disclosure, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this disclosure.
[0063] In this specification, "parallel" refers to the state where the angle formed by two straight lines is greater than or equal to -10° and less than 10°, and therefore also includes the state where the angle is greater than or equal to -5° and less than 5°. Similarly, "perpendicular" refers to the state where the angle formed by two straight lines is greater than or equal to 80° and less than 100°, and therefore also includes the state where the angle is greater than or equal to 85° and less than 95°.
[0064] Unless the context otherwise requires, throughout the specification and claims, the term "comprising" is interpreted as open and encompassing, that is, "including, but not limited to".
[0065] In related technologies, electronic table signs on the market only have a single display function and no interactive function. In some special scenarios, electronic table signs need to achieve more functions, that is, display on one side and operate on the other side, so as to meet users' requirements for electronic table signs with dual-sided display.
[0066] In view of this, the present disclosure proposes a display bracket that can be used as an electronic table sign. That is, an existing electronic table sign can be improved into the display bracket proposed in this disclosure. The display bracket can quickly install multiple display panels, and different display panels can provide users with different functions, thereby meeting users' requirements for multi-sided electronic table signs.
[0067] Among them, multi-faceted display means that the display bracket has a display panel installed on different surfaces. The display images presented by the multiple display panels can be located on multiple surfaces in three-dimensional space. The display images displayed on the display panels on different surfaces can be different, or the display panels on different surfaces can have different functions.
[0068] Referring to Figures 1-3, Figure 1 shows a three-dimensional structural schematic diagram of the display bracket 100 in this embodiment, Figure 2 shows a front view of the display bracket 100 in this embodiment, and Figure 3 shows a side view of the display bracket 100 in this embodiment. As shown in Figures 1-3, the display bracket 100 in this embodiment includes:
[0069] Support plate 10;
[0070] At least one set of mounting components is connected to the first surface of the support plate 10, the mounting components including a first mounting plate 20 and a second mounting plate 30 disposed opposite to the first mounting plate 20;
[0071] A first connection structure is disposed on the first mounting plate 20 and configured to mount the first display panel on the second mounting plate 30;
[0072] The second connection structure 31 is detachably connected to the second mounting plate 30, and the first connection structure is configured to connect the second display panel 300 to the second mounting plate 30.
[0073] In this embodiment, the support plate 10 can be made of metal or non-metal. A metal support plate 10 increases the weight of the display bracket 100, providing a higher counterweight. This improves the stability of the display panel when mounted on the first mounting plate 20 and the second mounting plate 30. Furthermore, a metal support plate 10 provides heat dissipation for the display panel mounted on the display bracket 100, facilitating heat dissipation. In other examples, the support plate 10 can be made of non-metal. A non-metallic support plate 10 improves insulation performance. In this case, to increase the counterweight of the display bracket 100, a counterweight block 60, such as an iron block, can be connected to the support plate 10. The orthographic projection of the iron block on the support plate 10 can be covered by the support plate 10, and the iron block can be located between the first mounting plate 20 and the second mounting plate 30.
[0074] In this embodiment, multiple mounting components can be connected to the support plate 10, such as one or two mounting components. Each mounting component has a first mounting plate 20 and a second mounting plate 30 arranged opposite to each other. Referring to Figure 1, assuming that another mounting component can be connected to both sides of the mounting component in Figure 1, then the two mounting components will include four mounting plates. The four mounting plates can be distributed around the support plate 10, thereby allowing the display bracket 100 to mount four display panels. Figures 1-3 are only examples of one set of mounting components for illustration.
[0075] In this configuration, the first mounting plate 20 and the second mounting plate 30 can be parallel to each other. In this case, both the first mounting plate 20 and the second mounting plate 30 can be orthogonally connected to the support plate 10, that is, the first mounting plate 20 is perpendicular to the support plate 10, and the second mounting plate 30 is also perpendicular to the support plate 10. Therefore, the display surface of the first display panel mounted on the first mounting plate 20 can be perpendicular to the support plate 10, and the display surface of the second display panel 300 mounted on the second mounting plate 30 can also be perpendicular to the support plate 10.
[0076] Of course, the first mounting plate 20 and the second mounting plate 30 may not be parallel to each other. They and the support plate 10 can form a triangle, as shown in Figures 1, 2 and 3. The first mounting plate 20 and the second mounting plate 30 form a certain angle with each other and form a triangle with the support plate 10, which can improve the stability of the entire display bracket 100. In this case, the first mounting plate 20 is tilted relative to the support plate 10, and the second mounting plate 30 is also tilted relative to the support plate 10. Thus, the first display panel mounted on the first mounting plate 20 and the second display panel 300 mounted on the second mounting plate 30 can have a certain tilt, which can facilitate the user's viewing.
[0077] The dimensions of the first mounting plate 20 and the second mounting plate 30 can be the same, or the dimensions of the first mounting plate 20 and the second mounting plate 30 can be different. In the case of inconsistency, the dimensional difference between the first mounting plate 20 and the second mounting plate 30 can be reflected in the difference in dimensions in a first direction and the difference in dimensions in a second direction. As shown in Figure 1, the first direction can be the x-direction in the figure, and the second direction can be the y-direction in the figure. Specifically, the size of the first mounting plate 20 can be smaller than the size of the second mounting plate 30. Therefore, the first mounting plate 20 can mount a smaller first display panel, and the second mounting plate 30 can mount a larger second display panel 300.
[0078] In this embodiment, a first connecting structure can be provided on the first mounting plate 20. This first connecting structure can be a threaded connection structure, including a bolt and a threaded hole; or it can be an openable clamp structure that can clamp or release the first display panel. Thus, the first display panel can be detachably mounted onto the second mounting plate 30 through the first connecting structure. Specifically, referring to FIG1, a case where the connecting structure is a threaded connection structure is shown. In this case, the threaded hole can be located on the first mounting plate 20, and the bolt can be located on the first display panel; or, the threaded hole can be located on the first display panel, and the bolt can be located on the first mounting plate 20.
[0079] In this embodiment, a second connecting structure 31 is detachably connected to the second mounting plate 30. The detachable connection method may include: snap-on detachment, adhesive detachment, and detachment using a sliding groove 33 and a sliding strip. The second connecting structure 31 can connect to the second display panel 300 and firmly fix the second display panel 300 to the mounting surface of the second mounting plate 30.
[0080] The second connecting structure 31 can be configured as an adsorption-type connecting structure, which can adsorb the second display panel 300 onto the second mounting plate 30; or, the second connecting structure 31 can be configured as a snap-fit-type connecting structure, which is used to snap the second display panel 300 onto the second mounting plate 30; or, the second connecting structure 31 can be configured as an adhesive-type connecting structure, which is used to adhesively attach the second display panel 300 to the second mounting plate 30, that is, the second display panel 300 is attached to the second mounting plate 30 through an adhesive-type connecting structure.
[0081] In this embodiment, the side of the first mounting plate 20 that faces away from the second mounting plate 30 is called the first mounting surface, and the side of the second mounting plate 30 that faces away from the first mounting plate 20 is called the second mounting surface; wherein, the first display panel is mounted on the first mounting surface, and the second mounting plate 30 is mounted on the second mounting surface.
[0082] The display bracket 100 of this embodiment can include two mounting plates in each mounting component. A first connecting structure on one mounting plate can be used to mount a first display panel, and a second connecting structure 31 on the second mounting plate 30 can be detachably connected to the second mounting plate 30. Thus, on the one hand, a single display bracket 100 can achieve multi-faceted display, and on the other hand, it is convenient to quickly replace the display panel on the first mounting plate 20 and the second mounting plate 30 in the mounting component, thereby facilitating user access and use and greatly improving user convenience.
[0083] In a further example of this embodiment, in order to improve the structural stability of the display bracket 100 and to manufacture the display bracket 100 in one piece, the first mounting plate 20, the second mounting plate 30 and the support plate 10 in this embodiment can form a triangle; wherein, the first mounting plate 20 and the support plate 10 form a first target angle, and the second mounting plate 30 and the support plate 10 form a second target angle; wherein, the first target angle is different from the second target angle.
[0084] Specifically, as shown in Figure 1, the first target angle formed between the first mounting plate 20 and the support plate 10 is close to 90°, and the second target angle formed between the second mounting plate 30 and the support plate 10 can be smaller than the angle formed between the first mounting plate 20 and the support plate 10. As a result, the tilt angle of the first mounting plate 20 can be smaller than the tilt angle of the second mounting plate 30. This makes the tilt degrees of the display surfaces of the first display panel and the second display panel 300 different, thereby making it convenient for users to view and use display panels of different sizes.
[0085] Of course, the first target angle can also be smaller than the second target angle formed between the first mounting plate 20 and the support plate 10.
[0086] In practice, in a further example of this embodiment, when the size of the first mounting plate 20 is larger than the size of the second mounting plate 30, the first target angle can be smaller than the second target angle formed between the first mounting plate 20 and the support plate 10; in a further example of this embodiment, when the size of the first mounting plate 20 is smaller than the size of the second mounting plate 30, the first target angle can be larger than the second target angle formed between the first mounting plate 20 and the support plate 10. This allows larger display panels to be displayed with a greater degree of tilt, facilitating user operation, while smaller display panels can be displayed with a lesser degree of tilt, thereby reducing the footprint of the entire display bracket 100, i.e., reducing the space occupied by the display bracket 100.
[0087] In some examples, please continue to refer to Figures 1 and 4. Figure 4 shows a bottom view of the display bracket. As shown in Figures 4 and 1, the display bracket 100 also includes at least one anti-slip part 50, which is connected to the second surface of the support plate 10, opposite to the first surface. The anti-slip part 50 may be made of silicone. Specifically, the anti-slip part 50 may have multiple micro-protrusions or multiple micro-suction cups to prevent the display bracket 100 from sliding when the user picks up or puts down the display panel. When multiple anti-slip parts 50 are included, they may be arranged crosswise, parallel, or irregularly distributed; no limitation is made here. Figure 4 shows the case of parallel arrangement.
[0088] In some examples, continuing to refer to Figures 1 and 2, the first connecting structure can be configured as a threaded connection structure, which allows the first display panel to be threaded onto the first mounting surface. Specifically, in this example, to facilitate quick installation and replacement of the first display panel, a cutout area can be provided on one side of the second mounting plate 30 to facilitate the installation and replacement of the first display panel. Specifically, the first connecting structure includes at least one mounting hole 21 that penetrates the first mounting plate 20;
[0089] The second mounting plate 30 has at least one first hollow area 32 extending through it, and the orthographic projection of the first hollow area 32 on the first mounting plate 20 covers the mounting hole 21.
[0090] In this embodiment, one or more mounting holes 21 can be provided, which penetrate the first mounting plate 20. Specifically, the mounting hole 21 can be a threaded hole or a non-threaded hole. The mounting hole 21 can be located in the edge region of the first mounting plate 20, for example, in the upper edge of the first mounting plate 20 away from the support plate 10, as shown in Figure 1, or in the left and right edge regions of the first mounting plate 20. In the case of multiple mounting holes 21, the multiple mounting holes 21 can be located in the same edge region of the first mounting plate 20, for example, all in the upper edge; or in different edge regions of the first mounting plate 20, for example, one mounting hole 21 can be located in the upper edge of the first mounting plate 20, and another mounting hole 21 can be located in the lower edge, left edge, or right edge of the first mounting plate 20.
[0091] The mounting hole 21 is mainly used to mount the first display panel onto the second mounting plate 30, and the mounting method can be threaded mounting.
[0092] In this embodiment, at least one first cutout area 32 extends through the second mounting plate 30. The number of first cutout areas 32 may be the same as or at least greater than the number of mounting holes 21. The first cutout area 32 can expose the mounting holes 21. For example, as shown in FIG1, the orthographic projection of the first cutout area 32 on the first mounting plate 20 covers the mounting holes 21. Thus, during installation, bolts and thread cutters can be inserted into the first cutout area 32 to mount the first display panel onto the second mounting plate 30.
[0093] In this embodiment, the size of the first cutout area 32 is larger than the diameter of the mounting hole 21 because the mounting hole 21 needs to be fully exposed.
[0094] More specifically, in one example of this embodiment, the size of the first cutout area 32 can be 1.5 to 2.5 times the diameter of the mounting hole 21. For example, it can be 1.5 times, 1.6 times, 2.0 times, 2.1 times, 2.2 times, and 2.5 times.
[0095] The shape of the first hollow area 32 may be the same as or different from the shape of the mounting hole 21.
[0096] Under similar circumstances, for example, if the mounting hole 21 is circular, then the first cutout area 32 can also be circular. In this case, the diameter of the first cutout area 32 can be 1.5 to 2.5 times the diameter of the mounting hole 21. Alternatively, for example, if the mounting hole 21 is a rounded rectangle, then the first cutout area 32 can also be a rounded rectangle. In this case, the length of the long side of the first cutout area 32 can be 1.5 to 2.5 times the length of the long side of the mounting hole 21, and / or the length of the short side of the first cutout area 32 can be... The length of the mounting hole 21 is 1.5 to 2.5 times the length of the mounting hole 21; when the length of the first hollow area 32 is 1.5 to 2.5 times the length of the mounting hole 21, and the length of the first hollow area 32 is 1.5 to 2.5 times the length of the mounting hole 21, the ratio between the length of the first hollow area 32 and the length of the mounting hole 21 can be the same as or different from the ratio between the length of the first hollow area 32 and the length of the mounting hole 21.
[0097] When the shape of the first hollow area 32 is different from the shape of the mounting hole 21, if the mounting hole 21 is circular, then the first hollow area 32 can be a rounded rectangle, and the length of the long side and the length of the short side of the first hollow area 32 can both be 1.5 to 2.5 times the diameter of the mounting hole 21; or, if the mounting hole 21 is a rounded rectangle, then the first hollow area 32 can be circular, and the diameter of the first hollow area 32 can be 1.5 to 2.5 times the length of the long side of the mounting hole 21.
[0098] With this embodiment, since the first cutout area 32's orthogonal projection on the first mounting plate 20 covers the mounting hole 21, the user can insert the threaded rod into the first cutout area 32 when installing the first display panel, thereby enabling threaded and bolted connections with the support of the first cutout area 32. This makes it easier to quickly assemble and disassemble the first display panel.
[0099] In some embodiments, the second connecting structure 31 can be configured as an adsorption-type connecting structure, which can directly adsorb the second display panel 300 onto the second mounting surface. Specifically, the second connecting structure 31 may include an adsorption member, which has at least one adsorption part 312 on the side near the second mounting plate 30. The adsorption part 312 is configured to adsorb the second display panel 300 onto the second mounting plate 30. Referring to Figures 5 and 6, Figure 5 shows a side view of the display bracket 100 in another embodiment, and Figure 6 shows an exploded view of the display bracket 100 in another embodiment. As shown in Figures 5 and 6, the second connecting structure 31 includes an adsorption member. Specifically, the adsorption member may include a mounting bracket 311, and the adsorption part 312 is fixed on the mounting bracket 311. The adsorption part 312 may be one or more. When multiple adsorption parts 312 are included, they may be spaced apart on the mounting bracket 311.
[0100] In this embodiment, the adsorption component can be located in the edge region of the second mounting plate 30, such as the upper edge region of the second mounting plate 30 away from the support plate 10, or the left and right edge regions of the second mounting plate 30. Of course, to improve the fixation effect of the second display panel 300 on the second mounting surface, the adsorption component can be located in the upper edge region of the second mounting plate 30. In this case, multiple adsorption portions 312 can be arranged at intervals along the extending direction of the edge of the second mounting plate 30, thereby ensuring uniform adsorption of the second display panel 300 when it is mounted on the second mounting plate 30, thus improving stability.
[0101] In some embodiments, the adsorption part 312 may include a magnet. Since the second display panel 300 is made of metal, the magnet can firmly adsorb the second display panel 300 onto the second mounting surface.
[0102] In a further example of this embodiment, the thickness of the magnet is 1.5mm to 3mm. Specifically, the thickness of the magnet can be 1.5mm, 1.8mm, 2mm, 2.5mm, 2.8mm, or 3mm. A greater magnet thickness results in a stronger attraction between the magnet and the second display panel 300, leading to better stability of the second display panel 300 on the second mounting surface. A smaller magnet thickness results in a smaller distance between the magnet and the second display panel 300, thereby reducing the gap between the second display panel 300 and the second mounting surface. This allows the second display panel 300 to be positioned more flatly on the second mounting surface, resulting in better aesthetics.
[0103] The attraction force of the magnet to the second display panel 300 can be related to the thickness of the magnet and the area occupied by the magnet on the mounting bracket 311. The greater the thickness and / or the larger the area occupied by the magnet on the mounting bracket 311, the stronger the attraction force of the magnet to the second display panel 300. In a further example of this embodiment, in order to ensure the attraction force of the adsorption component to the second display panel 300 and to minimize uneven installation of the second display panel 300 on the second mounting surface, the thickness of the magnet and the area occupied by the magnet on the mounting bracket 311 can be set accordingly.
[0104] Specifically, a magnet has any of the following structural features:
[0105] Structural feature A: The thickness of the magnet is 1.5mm to 2mm, and it occupies the first area of the mounting bracket 311;
[0106] Structural feature B: The thickness of the magnet is greater than 2mm, and it occupies the second area of the mounting bracket 311;
[0107] The first area is larger than the second area.
[0108] In this example, the thickness of the magnet in structural feature A can be 1.5mm to 2mm, for example, 1.5mm, 1.6mm, 1.7mm, 1.8mm, 1.9mm, or 2mm. When the magnet thickness is 1.5mm to 2mm, the area occupied by the magnet in the mounting bracket 311 is a first area, for example, 50% to 80% of the area. This first area can be understood as the sum of the areas occupied by each magnet in the mounting bracket 311, and the area occupied by each magnet in the mounting bracket 311 can be the surface area of the surface to which the magnet is attached to the mounting bracket 311. This increases the area occupied by the magnet in the mounting bracket 311, increasing the adsorption force on the second display panel 300, thus ensuring the adsorption force on the second display panel 300. Furthermore, by reducing the magnet thickness, the distance between the second display panel 300 and the second mounting surface is reduced, ensuring that the second display panel 300 is flatly positioned on the second mounting surface, i.e., the second display panel 300 and the second mounting surface are nearly parallel.
[0109] The thickness of the magnet in structural feature B can be greater than 2mm, for example, it can be 2.1mm, 2.2mm, 2.4mm, 2.5mm, 2.8mm, or 3mm. However, it needs to be less than 3.1mm. When the magnet thickness is greater than 2mm, the area occupied by the magnet in the mounting bracket 311 is a second area, for example, it can be 50% or less of the area. This second area can be understood as the sum of the areas occupied by each magnet in the mounting bracket 311, and the area occupied by each magnet in the mounting bracket 311 can be the surface area of the surface on which the magnet is attached to the mounting bracket 311. In this way, the area occupied by the magnet in the mounting bracket 311 can be reduced, thereby reducing the size of the magnet, and the adhesion force to the second display panel 300 can be maintained while increasing the thickness.
[0110] The detachable connection between the adsorption component and the second mounting plate 30 can be a sliding groove 33 or a sliding rail connection. In this case, a sliding bar can be provided on the adsorption component 31, and a sliding groove 33 that cooperates with the sliding bar can be provided on the second mounting plate 30; or, the adsorption component as a whole can be regarded as a sliding rail, and a sliding groove 33 that cooperates with the adsorption component can be provided on the second mounting plate 30. In this way, the structural complexity of the adsorption component can be reduced, and the installation and manufacturing can be facilitated.
[0111] Please refer to Figures 5 and 6. The second mounting plate 30 has a groove 33, which can accommodate the adsorption component and allow the adsorption component to slide within the groove 33.
[0112] As shown in Figure 6, the slide groove 33 allows the adsorption component to slide within it. When the adsorption component slides into the slide groove 33, it exerts an adsorption force on the second display panel 300, causing the second display panel 300 to adhere to the second mounting surface, thereby achieving the installation of the second display panel 300. When the adsorption component slides out of the slide groove 33, it releases the adsorption force on the second display panel 300, causing the second display panel 300 to separate from the second mounting surface. Of course, in some examples, the second display panel 300 can also directly overcome the adsorption force of the adsorption component under a larger force, thereby detaching from the second mounting plate 30.
[0113] The size of the chute 33 is slightly larger than the size of the adsorption member. This size can include the size of the adsorption member in the sliding direction and the size in the orthogonal direction of the sliding direction. Specifically, the size of the chute 33 in the orthogonal direction must be larger than the size of the adsorption member in the orthogonal direction. As shown in Figure 6, the sliding direction is the x-direction, and the orthogonal direction is the y-direction. Therefore, the size of the chute 33 in the y-direction is larger than the size of the adsorption member in the y-direction. In a further example, the size of the chute 33 in the x-direction can also be larger than the size of the adsorption member in the x-direction.
[0114] Of course, in some examples, the dimension of the chute 33 in the orthogonal direction is greater than the dimension of the adsorption member in the orthogonal direction, and the dimension of the chute 33 in the sliding direction may be smaller than the dimension of the adsorption member in the sliding direction.
[0115] In a further example of this embodiment, the dimensional setting between the chute 33 and the adsorption member can be: the size of the chute 33 is 0.3 mm larger than the size of one side of the adsorption member. Specifically, the first dimension of the chute 33 in the target direction can be larger than the second dimension of the adsorption member in the target direction, and the difference between the first dimension and the second dimension is greater than or equal to 0.3 mm;
[0116] The target direction includes the sliding direction of the adsorption component within the groove 33 and the direction orthogonal to the sliding direction.
[0117] The size difference can be 0.3mm, 0.35mm, 0.35mm, 0.35mm or 0.35mm, but it needs to be less than 0.50mm to avoid the size difference being too large, which would result in a large blank area in the slide groove 33 and the adsorption component easily falling out of the slide groove 33.
[0118] Specifically, as shown in Figure 6, since the adsorption component includes a mounting bracket 311, the second dimension of the adsorption component in the target direction can be the second dimension of the mounting bracket 311 in the target direction.
[0119] In some embodiments, when the adsorption member can slide within the groove 33, in order to ensure adsorption stability when the adsorption member is located within the groove 33 and adsorbs the second display panel 300, that is, to prevent the adsorption member from shifting within the groove 33, a threaded hole 36 can be provided on the second mounting plate 30. Referring to FIG7, a front view of another display bracket 100 is shown. As shown in FIG7, the threaded hole 36 can thread the adsorption member to the second mounting plate 30. Specifically, the threaded hole 36 can be located outside the first hollow area 32. There can be two threaded holes 36, and the diameter of the threaded hole 36 is smaller than the diameter of the first hollow area 32.
[0120] In some embodiments, the slide groove 33 may be located on the second mounting surface or on the side of the second mounting plate 30 near the first mounting plate 20. Referring to Figures 1, 6, and 8, Figure 8 shows a perspective view of another display bracket 100. As shown in Figures 5 and 6, the slide groove 33 may be disposed on the side of the second mounting plate 30 near the first mounting plate 20; or, as shown in Figure 8, disposed on the side of the second mounting plate 30 away from the first mounting plate 20.
[0121] The side of the second mounting plate 30 closest to the first mounting plate 20 is called the second mounting surface, which is the surface where the second display panel 300 is located. The side of the second mounting plate 30 away from the first mounting plate 20 can be called the third mounting surface, which is opposite to the surface where the second display panel 300 is located.
[0122] For example, as shown in Figures 1 and 6, the groove 33 is located on the side of the second mounting plate 30 near the first mounting plate 20. In this case, the second mounting surface of the second mounting plate 30 may not have a slotted area, thereby improving the flatness of the second mounting surface and the aesthetics of the second mounting plate 30. Alternatively, the second mounting surface of the second mounting plate 30 may also have a slotted area corresponding to the position of the groove 33, so as to accommodate the metal strip on the second display panel 300 corresponding to the magnet, so that the metal strip is located in the slotted area, reducing the distance between the second display panel 300 and the second mounting surface, allowing the second display panel 300 to be flatly located on the second mounting surface.
[0123] For example, as shown in Figure 8, the groove 33 is provided on the side of the second mounting plate 30 away from the first mounting plate 20, that is, the groove 33 can be provided on one side of the second mounting surface. In this way, the adsorption part 312 on the adsorption member can be in direct contact with the second display panel 300, thereby improving the adsorption force.
[0124] In some embodiments, referring to Figures 1 and 8, when the first connecting structure includes at least one mounting hole 21 and at least one first hollow area 32 extends through the second mounting plate 30, the first hollow area 32 can also be located within the groove 33. Specifically, the first hollow area 32 can be located at opposite ends of the groove 33 in the sliding direction. When the adsorption member slides into the groove 33, the orthographic projection of the adsorption part 312 on the second mounting plate 30 can be located between the two first hollow areas 32. This allows the first hollow area 32 and the groove 33 to be integrally arranged, saving space and avoiding excessive occupation of the space of the first mounting plate 20.
[0125] In a further example of this embodiment, the size of the adsorption member in the sliding direction can be smaller than the size of the groove 33 in the sliding direction. Thus, when the adsorption member is located in the groove 33, it can avoid the first hollow area 32. That is, the orthographic projection of the adsorption member on the second mounting plate 30 can be located between the two first hollow areas 32. In this way, it is possible to avoid making a hole in the adsorption member to avoid the first hollow area 32.
[0126] In a further example of this embodiment, the adsorption member may also have an opening to expose the first hollow area 32. In this case, the dimension of the adsorption member in the sliding direction may be greater than or less than the dimension of the groove 33 in the sliding direction. Regardless of whether it is greater or less, the orthogonal projection of the adsorption part 312 on the second mounting plate 30 can avoid the first hollow area 32. Referring to Figures 6 and 8, the adsorption member may be provided with a second hollow area 313 corresponding to the first hollow area 32; wherein the first hollow area 32 and the second hollow area 313 overlap.
[0127] In this embodiment, the shape of the second hollow area 313 can be the same as that of the first hollow area 32, and the size of the second hollow area 313 can be the same as or different from that of the first hollow area 32. In different cases, the size of the second hollow area 313 can be slightly larger than that of the first hollow area 32, thereby providing sufficient clearance for the first hollow area 32. When the adsorption component is located in the groove 33, the orthographic projection of the second hollow area 313 on the second mounting plate 30 can cover the orthographic projection of the first hollow area 32 on the second mounting plate 30, thereby ensuring that the first hollow area 32 is not obstructed by the mounting bracket 311 in the adsorption component and thus does not affect the visible field of view of the mounting hole 21.
[0128] The statement that the size of the second cutout area 313 is slightly larger than that of the first cutout area 32 can mean that the diameter of the hole in the second cutout area 313 is larger than that in the first cutout area 32. For example, if the first cutout area 32 and the second cutout area 313 are circular, the diameter of the first cutout area 32 is smaller than the diameter of the second cutout area 313, and the difference between their diameters can be greater than 0.4 mm and less than 0.6 mm. As another example, if the first cutout area 32 and the second cutout area 313 are rounded rectangles, the longer side of the first cutout area 32 is smaller than the longer side of the second cutout area 313, and the difference between their longer side dimensions can be greater than 0.4 mm and less than 0.6 mm, and the shorter side of the first cutout area is smaller than the shorter side of the second cutout area 313, and the difference between their shorter side dimensions can be greater than 0.3 mm and less than 0.5 mm.
[0129] Please refer to Figures 6 and 8. In some examples, since the second mounting plate 30 has a groove 33, to improve the aesthetics of the second mounting plate 30, an anti-slip strip 34 can be added to the groove 33, at least covering the groove 33. Specifically, the second mounting plate 30 also includes an anti-slip strip 34, which is adhered to the side of the second mounting plate 30 facing away from the first mounting plate 20; wherein the anti-slip strip 34 covers the groove 33 and the first hollow area 32.
[0130] In this example, the anti-slip strip 34 can be adhered to the second mounting surface of the second mounting plate 30, which can cover the groove 33, thereby achieving the function of shielding the groove 33 and the adsorption component within the groove 33. Referring to FIG9, a three-dimensional decoupling diagram is shown when the anti-slip strip 34 is adhered to the second mounting plate 30. As shown in FIG9, the side of the anti-slip strip 34 facing away from the second mounting plate 30 is set as an anti-slip surface. For example, burrs are designed on this surface to increase the friction between it and the second display panel 300, thereby preventing the second display panel 300 from slipping off.
[0131] In addition to covering the groove 33, the anti-slip strip 34 can also cover the first hollow area 32 in the groove 33, thereby improving the aesthetics of the second mounting plate 30.
[0132] As shown in Figure 9, in addition to covering the sliding groove 33 and the first hollow area 32, the anti-slip strip 34 also covers the threaded hole 36 for fixing the adsorption component in the second mounting plate 30, thereby improving the aesthetics of the second mounting plate 30.
[0133] In a further example of this embodiment, since the second display panel 300 can directly contact the anti-slip strip 34 after it is provided, in order to improve the adsorption force between the second display panel 300 and the adsorption member, and also to improve the installation accuracy between the second display panel 300 and the second mounting surface, for example, to ensure that the metal part provided on the second display panel 300 that is attracted to the adsorption part 312 is precisely aligned with the adsorption part 312, a positioning shallow groove 341 can be provided on the anti-slip strip 34. Specifically, as shown in FIG5, the orthographic projection of the positioning shallow groove 341 on the second mounting plate 30 can overlap with the orthographic projection of the adsorption part 312 on the second mounting plate 30.
[0134] The anti-slip strip 34 at the positioning shallow groove 341 has a thickness less than the thickness of other areas of the anti-slip strip 34, and can accommodate the metal strip on the second display panel 300. The depth of the positioning shallow groove 341 can be about 0.2mm. Specifically, it can include multiple positioning shallow grooves 341, or it can include one positioning shallow groove 341. When it includes one positioning shallow groove 341, the positioning shallow groove 341 can correspond to any one of the multiple adsorption parts 312. When it includes multiple positioning shallow grooves 341, the multiple positioning shallow grooves 341 can correspond to the multiple adsorption parts 312 respectively. Here, the correspondence is that the orthographic projection of the positioning shallow groove 341 on the second mounting plate 30 overlaps with the orthographic projection of the adsorption part 312 on the second mounting plate 30.
[0135] In some embodiments, since the second connecting structure 31 is detachably connected to the second mounting plate 30, and the second connecting structure 31 can be configured as an adsorption-type connecting structure, in order to prevent the second display panel 300 from slipping off the second mounting plate 30, an auxiliary support structure can be provided on the side where the second mounting plate 30 connects to the support plate 10 to assist in supporting the second display panel 300. Of course, this auxiliary support structure can also be provided on the first mounting plate 20 to assist in supporting the first display panel.
[0136] Specifically, referring to Figures 1 and 6, an auxiliary support strip 40 is connected to the side where the target mounting plate connects to the support plate 10; the target mounting plate includes the first mounting plate 20 and / or the second mounting plate 30.
[0137] The auxiliary support bar 40 extends away from the support plate 10 and has a preset angle with the target mounting plate. This preset angle is greater than the angle between the support plate 10 and the target mounting plate and less than the maximum angle between the surface of the support plate 10 and the target mounting plate.
[0138] In this embodiment, auxiliary support bars 40 can be provided on either the first mounting plate 20 or the second mounting plate 30, or on both the first mounting plate 20 and the second mounting plate 30. The mounting plate with the auxiliary support bars 40 is referred to as the target mounting plate. The auxiliary support bars 40 can be connected to the connection point between the target mounting plate and the support plate 10, extending along the connection point in the length direction and extending away from the support plate 10 in the width direction. In practice, the auxiliary support bars 40 can be integrally formed with the support plate 10. For example, if the support plate 10 is made of metal, the metal material can be molded to extend the connection point between the support plate 10 and the mounting plate outwards.
[0139] The auxiliary support bar 40 has a preset angle with the target mounting plate. In other words, the angle between the auxiliary support bar 40 and the target mounting plate is different from the angle between the target mounting plate and the support plate 10. That is to say, the target mounting plate and the support plate 10 also have a certain angle.
[0140] In this embodiment, the preset angle can be greater than the angle between the support plate 10 and the target mounting plate, and less than the maximum angle between the surface of the support plate 10 and the target mounting plate, as shown in Figure 3. In order to ensure that the display panel (first display panel and second display panel 300) does not affect the installation position and display on the mounting plate when it is installed on the mounting plate, and to ensure that the display panel does not fall off the mounting plate, its auxiliary support bar 40 can be appropriately tilted towards the target mounting plate, thereby forming a block on the side of the display panel close to the support plate 10 to prevent the display panel from falling off the mounting plate.
[0141] Referring to Figure 3, in this embodiment, the included angle between the target mounting plate and the support plate 10 is the first included angle β. This first included angle can be an angle less than 90° and greater than 0°. Then, the included angle between the target mounting plate and the auxiliary support strip 40 can be the second included angle θ. This second included angle θ can be greater than the first included angle β. The maximum included angle between the surface where the support plate 10 is located and the target mounting plate is called the third included angle α. This third included angle α is an obtuse angle, that is, the sum of the third included angle α and the first included angle β is 180°. Therefore, the second included angle θ is an angle in the third included angle α.
[0142] Specifically, the value of the second included angle θ can be greater than 90° and less than the third included angle α, thereby enabling the auxiliary support bar 40 to form a block on the side of the display panel close to the support plate 10, and the block ensures that the display panel is removed from the mounting plate.
[0143] In a further example of this embodiment, the edge of the auxiliary support bar 40 away from the support plate 10 can be bent toward the target mounting plate. Referring again to Figures 1 and 3, the edge of the auxiliary support bar 40 away from the support plate 10 can be an arc-shaped edge, and the bent portion toward the target mounting plate can be an arc-shaped bend. Thus, the arc-shaped edge can further obstruct the display panel, thereby ensuring that the display panel will not slip off the target mounting plate and fixing the position of the display panel, so that the display panel can be firmly placed on the target mounting plate and its position will not shift due to user use.
[0144] Specifically, the curvature of the curved edge of the auxiliary support bar 40 bent toward the target mounting plate can be set according to requirements, and no special limitation is made here.
[0145] In a further example of this embodiment, the auxiliary support strip 40 may be made of plastic or metal, the same material as the support plate 10. If it is made of metal, the metal material can ensure sturdiness and make the auxiliary support strip 40 durable. If it is made of plastic, the plastic material can increase the friction between the display panel and the display panel, improve the blocking ability, and prevent wear on the display panel.
[0146] In practice, in this example, the auxiliary support strip 40 can be a layered structure of metal and plastic materials, such as the auxiliary support strip 40 including a metal base plate and an anti-slip pad stacked on the side of the metal base plate near the second mounting plate 30.
[0147] In this embodiment, the metal base plate can be made of materials such as aluminum or stainless steel, which may be the same as or different from the material of the support plate 10. Of course, under the same conditions, it can be integrally formed with the support plate 10, thereby reducing process steps and improving manufacturing efficiency.
[0148] The anti-slip pad is independent of the metal base plate; that is, the anti-slip pad may not be connected to the metal base plate, or the anti-slip pad and the metal base plate may be detachably connected. The anti-slip pad can be made of silicone or other types of plastic. It can be fitted onto the metal base plate to cover the surface of the metal base plate near the target mounting plate, thereby improving its blocking effect on the display panel without abrading the metal casing of the display panel. Alternatively, the anti-slip pad can be laid on the metal base plate to form an anti-slip layer on the surface of the metal base plate near the target mounting plate, also improving its blocking effect on the display panel without abrading the metal casing of the display panel.
[0149] In this embodiment, multiple micro-protrusions can be formed on the surface of the anti-slip pad near the target mounting plate. The diameter of the micro-protrusions can be less than 0.3mm, and they can be formed in the shape of circles, ellipses, polygons, etc. They can be used to increase the friction between the anti-slip pad and the display panel, so that the display panel can be more stably placed on the target mounting plate. This not only prevents the display panel from falling off the target mounting plate, but also prevents the display panel from shifting on the target mounting plate, such as left-right or up-down displacement.
[0150] In a further example of this embodiment, referring to FIG6, a perspective view of another display bracket 100 is shown. As shown in FIG6, at least one groove 35 can be provided on the side of the auxiliary support strip 40 near the target mounting plate. The groove 35 can cooperate with the positioning post provided on the display panel, so that the installation position of the display panel on the target mounting plate does not change. Here, the positioning post can refer to a strip block adhered to the frame of the display panel. When the display panel is installed on the target mounting plate, the strip block can be inserted into the groove 35, which can both position the installation position and prevent the display panel from shifting left or right.
[0151] The groove 35 has a depth of 0.5mm to 1mm. It can be made on a metal base plate or on an anti-slip pad. Specifically, it can be made on an anti-slip pad to reduce the difficulty of making grooves on a metal base plate.
[0152] In the above embodiments, the size of the first mounting plate 20 may differ from the size of the second mounting plate 30. More specifically, since the first connecting structure of the first mounting plate 20 can be a threaded and bolted connection structure, and the second connecting structure 31 of the second mounting plate 30 can be an adsorption-type connection structure, in some embodiments, the size of the first mounting plate 20 can be smaller than the size of the second mounting plate 30. In this case, the first mounting plate 20 can mount an EPD display panel, and the second mounting plate 30 can mount a flat panel display panel, such as an LCD panel or an OLED display panel. When the size of the first mounting plate 20 is smaller than the size of the second mounting plate 30, on the one hand, for smaller display panels, the space occupied by the first mounting plate 20 for mounting the display panel can be reduced; and on the other hand, the development of the first connecting structure and the space occupied by the first mounting plate 20 can be reduced through the threaded and bolted connection, enabling the installation of smaller display panels within a limited installation space. For larger display panels, the second connection structure 31 can reduce installation difficulty. For example, the larger the size of the display panel, the heavier it is. Using threaded and bolted connections makes installation more difficult, while using an adsorption-type connection simplifies the installation. At the same time, due to the larger size of the second mounting plate 30, it not only provides more installation space for the adsorption-type second connection structure 31 to improve the adsorption force between it and the display panel, but also adapts to larger display panels, allowing the second mounting plate 30 to provide stronger support for larger display panels.
[0153] The display bracket 100 of this disclosure will be illustrated below with two specific examples:
[0154] Example A provides a display stand A. Referring to Figures 5 and 10, Figure 10 shows an exploded view of the display stand A. As shown in Figures 5 and 10, the display stand A may include:
[0155] Support plate 10 is made of aluminum;
[0156] The mounting components, connected to the first surface of the support plate 10, include a first mounting plate 20 and a second mounting plate 30. Both the first mounting plate 20 and the second mounting plate 30 are made of aluminum and integrally formed with the support plate 10, such as through aluminum profile extrusion. The first mounting plate 20, the second mounting plate 30, and the support plate 10 form a triangle to improve stability. It should be noted that the formed triangle is a rounded triangle, meaning that a plate with a certain curvature connects the first mounting plate 20 and the second mounting plate 30, and also connects the first mounting plate 20 to the support plate 10, and the second mounting plate 30 to the support plate 10, with plates of a certain curvature. Specifically, the first target angle between the first mounting plate 20 and the support plate 10 is greater than the second target angle between the second mounting plate 30 and the support plate 10, resulting in a lesser inclination of the first mounting plate 20 on the support plate 10 than the lesser inclination of the second mounting plate 30 on the support plate 10.
[0157] The size of the first mounting plate 20 is smaller than the size of the second mounting plate 30;
[0158] Two mounting holes 21 are provided on the first mounting plate 20. The mounting holes 21 are circular threaded holes.
[0159] The second mounting plate 30 has two first cutout areas 32. The first cutout area 32 is circular and the diameter of the hole is twice that of the mounting hole 21. The orthographic projection of the first cutout area 32 on the first mounting plate 20 covers the mounting hole 21 to expose the mounting hole 21.
[0160] Meanwhile, a groove 33 is provided on the side of the second mounting plate 30 near the first mounting plate 20. The second mounting plate 30 is also equipped with an adsorption component, which includes a mounting bracket 311 and multiple adsorption parts 312 located on one side of the mounting bracket 311. The adsorption parts 312 are magnets, such as three magnets, which are spaced apart. The thickness of the magnet is 2mm. The adsorption component can slide in the groove 33. The length of the adsorption component is smaller than the length of the mounting bracket 311, and the length of the adsorption component is smaller than the length of the mounting bracket 311. The difference between the length of the adsorption component and the length of the mounting bracket 311 is 0.3mm.
[0161] Two circular second hollow areas 313 are provided on the mounting bracket 311. When the adsorption component is located in the slide groove 33, the positions of the two second hollow areas 313 and the two first hollow areas 32 correspond, and the orthographic projection of the second hollow area 313 on the second mounting plate 30 covers the orthographic projection of the first hollow area 32 on the second mounting plate 30.
[0162] A counterweight 60, such as an iron sheet, is pre-installed on the support plate 10. The iron sheet can be located on the first side of the support plate 10 near the mounting component. The iron sheet is used to increase the counterweight of the display bracket 100, which can prevent the suction force of the adsorption component from being too large and causing the entire display bracket 100 to be lifted when the second display panel 300 is picked up or put down.
[0163] Specifically, two end caps 70 can be added to the two sides of the display bracket 100 that are different from the mounting parts to cover the internal structural components of the display bracket 100, thereby improving the overall aesthetic effect of the display bracket 100.
[0164] An auxiliary support strip 40 is provided at the connection between the second mounting plate 30 and the support plate 10. The auxiliary support strip 40 includes a metal base plate and an anti-slip pad located on the side of the metal base plate near the second mounting plate 30. The metal base plate is made of the same material as the support plate 10 and can be integrally formed with the support plate 10. For example, the aluminum extruded display bracket 100 body can be processed to obtain the metal base plate, and then the anti-slip pad is fitted on the metal base plate. The anti-slip pad is made of silicone. The edge of the auxiliary support strip 40 can be bent into an arc shape toward the second mounting plate 30 to prevent the second display panel 300 from coming off.
[0165] Two anti-slip parts 50 are connected to the second surface of the support plate 10 away from the first surface. The anti-slip parts 50 are strip-shaped and arranged in parallel. The material of the anti-slip parts 50 can be silicone. The anti-slip parts 50 can prevent the side of the display panel from making direct hard contact with the display bracket 100 body, avoid scratches on the appearance and increase the friction of the display panel on the display bracket 100 body.
[0166] The second mounting plate 30 is also equipped with an anti-slip strip 34, which is pasted to the area where the slide groove 33 is located and covers the first hollow area 32. The orthographic projection of the slide groove 33 on the second mounting plate 30 covers the orthographic projection of the slide groove 33 on the second mounting plate 30.
[0167] When using this display bracket A to install the display panel, the first display panel can be an EPD panel, and the second display panel 300 can be an LCD display panel or an OLED display panel. The process can be as follows:
[0168] First, using a screwdriver, insert it into the first cutout area 32 to reach the mounting hole 21 and thread the EPD panel. After installation, align the metal plate on the back of the second display panel 300 with the anti-slip strip 34, so that the metal plate attracts the magnet on the back of the second mounting plate 30, thereby attaching the second display panel 300 to the second mounting plate 30. The display bracket 100 after the first and second display panels 300 are installed can be seen in Figures 11 and 12. It can be seen that the size of the first mounting plate 20 is smaller than that of the second mounting plate 30, and their tilt and overlap are also slightly different.
[0169] When the first display panel needs to be replaced, the second display panel 300 can be removed first. This is done by forcefully removing the second display panel 300 from the magnet's attraction. Then, the anti-slip strip 34 is peeled off, exposing the first cutout area 32. A screwdriver is then inserted into the first cutout area 32 to reach the mounting hole 21, allowing the first display panel to be removed. This facilitates the removal and installation of the display panel.
[0170] Example B provides a display bracket B, as shown in FIG8. Unlike the display bracket A, the slide groove 33 is formed on the side of the second mounting plate 30 away from the first mounting plate 20; the anti-slip strip 34 is provided with a positioning shallow groove 341, the depth of which is mm.
[0171] When using this display bracket B to install the display panel, the first display panel can be an EPD panel, and the second display panel 300 can be an LCD display panel or an OLED display panel. The process can be as follows:
[0172] First, using a screwdriver, insert it into the first cutout area 32 to reach the mounting hole 21 and thread the EPD panel. After installation, attach the anti-slip strip 34. Align the metal piece on the back of the second display panel 300 with the positioning groove 341 on the anti-slip strip 34, so that the metal piece attracts the magnet on the back of the second mounting plate 30, thereby attaching the second display panel 300 to the second mounting plate 30. The installation process can be seen in Figure 13.
[0173] In this display bracket B, the magnet is closer to the second display panel 300, and the thickness of the decorative cover is only 1mm, resulting in a better magnetic attraction effect. A shallow positioning groove 341 is added to the anti-slip strip 34, which has a centering positioning function when the second display panel 300 is placed on the display bracket 100.
[0174] Example C provides a display bracket 100C, which, unlike the display bracket A, has a rotating wheel on the second side of the support plate 10 away from the mounting member. This wheel can support the rotation of the display bracket 100, thereby allowing the display bracket 100 to rotate and facilitating switching between the first display panel and the second display panel 300.
[0175] Based on the same inventive concept, a display system is also provided, which may include a table sign and multiple display panels. The table sign may be the aforementioned display bracket, which includes a first mounting plate and a second mounting plate. The multiple display panels may be respectively located on the first mounting plate and the second mounting plate, and its structure may be referred to Figures 11, 12 and 13 above.
[0176] The various embodiments in this specification are described in a progressive manner, with each embodiment focusing on the differences from other embodiments. The same or similar parts between the various embodiments can be referred to each other.
[0177] Finally, it should be noted that in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.
[0178] The above provides a detailed description of a display bracket and display system provided by this disclosure. Specific examples have been used to illustrate the principles and implementation methods of this disclosure. The description of the above embodiments is only for the purpose of helping to understand the method and core ideas of this disclosure. At the same time, for those skilled in the art, there will be changes in the specific implementation methods and application scope based on the ideas of this disclosure. Therefore, the content of this specification should not be construed as a limitation of this disclosure.
[0179] Other embodiments of this disclosure will readily occur to those skilled in the art upon consideration of the specification and practice of the invention disclosed herein. This disclosure is intended to cover any variations, uses, or adaptations of this disclosure that follow the general principles of this disclosure and include common knowledge or customary techniques in the art not disclosed herein. The specification and examples are to be considered exemplary only, and the true scope and spirit of this disclosure are indicated by the following claims.
[0180] It should be understood that this disclosure is not limited to the precise structures described above and shown in the accompanying drawings, and various modifications and changes can be made without departing from its scope. The scope of this disclosure is limited only by the appended claims.
[0181] The terms "an embodiment," "embodiment," or "one or more embodiments" as used herein mean that a particular feature, structure, or characteristic described in connection with an embodiment is included in at least one embodiment of this disclosure. Furthermore, please note that the examples of the phrase "in one embodiment" do not necessarily all refer to the same embodiment.
[0182] Numerous specific details are set forth in the specification provided herein. However, it will be understood that embodiments of this disclosure may be practiced without these specific details. In some instances, well-known methods, structures, and techniques have not been shown in detail so as not to obscure the understanding of this specification.
[0183] In the claims, any reference signs placed between parentheses should not be construed as limiting the claims. The word "comprising" does not exclude the presence of elements or steps not listed in the claims. The word "a" or "an" preceding an element does not exclude the presence of a plurality of such elements. This disclosure can be implemented by means of hardware comprising a plurality of different elements and by means of a suitably programmed computer. In a unit claim enumerating a plurality of means, several of these means may be embodied by the same item of hardware. The use of the words first, second, and third, etc., does not indicate any order. These words may be interpreted as names.
[0184] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this disclosure, and are not intended to limit them. Although this disclosure has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this disclosure.
Claims
1. A display stand, characterized in that, include: Support plate; At least one set of mounting components is connected to a first surface of the support plate, the mounting components including a first mounting plate and a second mounting plate disposed opposite to the first mounting plate; A first connection structure is disposed on the first mounting plate and configured to mount a first display panel on the first mounting plate; A second connection structure is detachably connected to the second mounting plate, and the second connection structure is configured to connect the second display panel to the second mounting plate.
2. The display bracket according to claim 1, characterized in that, The first connection structure includes at least one mounting hole, which penetrates the first mounting plate; The second mounting plate has at least one first cutout area extending through it, and the orthographic projection of the first cutout area onto the first mounting plate covers the mounting hole.
3. The display bracket according to claim 2, characterized in that, The size of the first hollow area is 1.5 to 2.5 times the diameter of the mounting hole.
4. The display bracket according to claim 1, characterized in that, The second connection structure includes: An adsorption member is provided with at least one adsorption part on the side near the second mounting plate, the adsorption part being configured to adsorb the second display panel onto the second mounting plate.
5. The display bracket according to claim 4, characterized in that, The second mounting plate also includes: A chute is provided to accommodate the adsorption member, which is capable of sliding within the chute.
6. The display bracket according to claim 5, characterized in that, The groove is disposed on the side of the second mounting plate close to the first mounting plate; or, disposed on the side of the second mounting plate away from the first mounting plate.
7. The display bracket according to claim 5, characterized in that, The first connection structure includes at least one mounting hole, which penetrates the first mounting plate; The second mounting plate has at least one first cutout area through it, and the orthographic projection of the first cutout area on the first mounting plate covers the mounting hole; The first hollow area is located within the groove.
8. The display bracket according to claim 7, characterized in that, The adsorption component is provided with a second hollow area corresponding to the first hollow area; wherein the first hollow area and the second hollow area overlap.
9. The display bracket according to claim 5, characterized in that, The first dimension of the chute in the target direction is larger than the second dimension of the adsorption member in the target direction, and the difference between the first dimension and the second dimension is greater than or equal to 0.3 mm; The target direction includes the sliding direction of the adsorption member within the chute and a direction orthogonal to the sliding direction.
10. The display bracket according to claim 7, characterized in that, The second mounting plate also includes: Anti-slip strips are attached to the side of the second mounting plate opposite to the first mounting plate; The anti-slip strip covers the groove and the first hollow area.
11. The display bracket according to claim 9, characterized in that, The anti-slip strip has at least one positioning shallow groove on the side opposite to the first mounting plate. The orthographic projection of the positioning shallow groove on the second mounting plate overlaps with the orthographic projection of the adsorption part on the second mounting plate.
12. The display bracket according to claim 1, characterized in that, An auxiliary support strip is connected to the side where the target mounting plate connects to the support plate; the target mounting plate includes the first mounting plate and / or the second mounting plate. The auxiliary support strip extends away from the support plate and has a preset angle with the target mounting plate. The preset angle is greater than the angle between the support plate and the target mounting plate and less than the maximum angle between the surface of the support plate and the target mounting plate.
13. The display bracket according to claim 11, characterized in that, The auxiliary support bar bends toward the target mounting plate from the edge away from the support plate.
14. The display bracket according to claim 11, characterized in that, The auxiliary support strip includes a metal base plate and an anti-slip pad stacked on the side of the metal base plate closest to the target mounting plate.
15. The display bracket according to claim 1, characterized in that, The first mounting plate, the second mounting plate, and the support plate form a triangle; wherein the first mounting plate and the support plate form a first target angle, and the second mounting plate and the support plate form a second target angle; The first target angle is different from the second target angle.
16. The display bracket according to claim 1, characterized in that, The dimensions of the first mounting plate are different from those of the second mounting plate.
17. The display bracket according to claim 4, characterized in that, The adsorption part includes a magnet; wherein the thickness of the magnet is 1.5mm to 3mm.
18. The display bracket according to claim 17, characterized in that, The adsorption component further includes a mounting bracket, and the magnet is fixed on the mounting bracket; wherein the magnet has any of the following structural features: The thickness of the magnet is 1.5mm to 2mm, and it occupies the first area of the mounting bracket. The magnet has a thickness greater than 2mm and occupies the second area of the mounting bracket. Wherein, the first area is larger than the second area.
19. A display system, characterized in that, The display system includes a display bracket as described in any one of claims 1-19, and a plurality of display panels, the plurality of display panels being respectively located on a first mounting plate and a second mounting plate in at least one mounting member.
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