Adjustable mounting structure for mounting a solid state lighting display module
Patent Information
- Application Number
- CN202522071335.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-26
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2035-09-26
AI Technical Summary
任何细微的累积误差都可能给最终安装带来困难,影响安装效率,甚至可能因强行安装导致箱体或连接件承受不必要的应力
本实用新型的固装LED显示模块的调节安装结构,通过其特定的设计,展现出多方面的积极效果。
Smart Images

Figure CN224775150U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of LED display equipment installation technology, and in particular to an adjustable installation structure for fixing and installing LED display modules. Background Technology
[0002] In engineering practice involving the fixed installation of large LED displays, especially in upgrade and replacement projects of existing display systems, a common technical challenge lies in the size and positional mismatch between the newly provided LED display module housing and the pre-embedded or existing installation support structures. These support structures, such as mounting frames made of channel steel or I-beams, may vary in beam and column spacing, facade location, and profile specifications due to differences in construction year, standards, or initial design.
[0003] To address this mismatch, traditional solutions are often highly customized. One approach is to design and manufacture custom-fit installation connectors for the specific project environment and scaffold dimensions. This inevitably leads to extended project preparation periods, increased production costs, and the resulting custom-designed parts lack versatility and are difficult to use in other projects. Another approach is to adapt the existing steel structure on-site, such as drilling positioning holes and welding auxiliary connectors. These on-site modifications not only increase construction complexity and time, and require highly skilled operators, but more importantly, they may affect the integrity and load-bearing capacity of the original supporting structure.
[0004] Furthermore, traditional installation and connection methods typically have limited adjustability. Once the connection points are determined, there is little room for subsequent fine-tuning, which places high demands on the accuracy of preliminary measurements and on-site positioning during the installation process. Any minute cumulative error can cause difficulties in the final installation, affect installation efficiency, and may even cause unnecessary stress on the enclosure or connectors due to forced installation.
[0005] Therefore, there is a need in the field for an installation solution that is more adaptable, easier to install, and reduces reliance on or damage to existing structures. Utility Model Content
[0006] In view of this, the present invention provides an adjustable mounting structure for a fixed LED display module to improve the adaptability of the installation process to mounting brackets of different specifications and to simplify the installation operation.
[0007] The objective of this utility model is achieved through the following technical solution: An adjustable mounting structure for a fixed LED display module includes a housing and a connecting component for connecting a mounting bracket. The housing is provided with a horizontal bar. The adjustable mounting structure also includes a mounting base, which is slidably disposed on the horizontal bar and can be fixed at a selected position by fasteners. The connecting component is disposed on the mounting base.
[0008] The modular design concept achieves high versatility and adaptability. The key innovation lies in decomposing the installation function into a sliding mounting base on the crossbars of the enclosure and connecting components mounted on the base. The sliding mounting base along the crossbars provides the first degree of freedom of adjustment, allowing the installation position of the connecting components relative to the enclosure to be flexibly and continuously adjusted according to the actual spacing of the mounting racks on site, thus overcoming alignment problems caused by inconsistent mounting rack specifications. This structure constitutes a universal installation platform, allowing adaptation to various mounting racks of different structures or sizes, significantly reducing the need for customized enclosure or mounting component designs for specific installation environments, and lowering inventory management and production costs. Simultaneously, this design simplifies the installation process; installers no longer need to perform complex measurements and precise positioning. They only need to move the mounting base to a roughly suitable position, initially fix it, and then make fine adjustments, improving installation efficiency and reducing operational difficulty. This core structure lays the foundation for subsequent expansion into various specific connection methods, ensuring that the entire technical solution, while maintaining a unified basic principle, possesses strong functional extensibility and can cope with diverse practical installation challenges.
[0009] Preferably, the mounting base is a C-shaped mounting groove, which is snapped onto the crossbar.
[0010] Further specifying the mounting base as a C-shaped mounting groove, this design brings multiple positive effects. The C-shaped cross-section allows for convenient snap-fit fitting onto the crossbar, enabling rapid pre-assembly between the mounting base and the box crossbar, simplifying the assembly process. The inner wall of the groove matches the shape of the crossbar, ensuring smooth and stable sliding, avoiding jamming or misalignment. Simultaneously, the C-shaped opening facilitates the insertion and operation of fasteners such as bolts. Once slid to the target position, the fasteners can be easily tightened, firmly locking the groove onto the crossbar, ensuring the stability and reliability of the final installation. This C-shaped groove structure is simple, easy to produce and manufacture, and has excellent process feasibility.
[0011] Preferably, the connecting component is a pipe clamping fastener, which includes a pair of clamping arms for gripping the mounting frame.
[0012] This invention defines a specific implementation method for the connecting components, namely, using clamp-on fasteners. Its advantage lies in providing a non-invasive, quick, and secure connection solution. The design of a pair of clamping arms allows them to encircle and clamp the mounting frame, such as square tubes, round tubes, or structural steel, from both sides, forming a strong clamping force. This method completely avoids destructive operations such as drilling and welding on the existing mounting frame, making it particularly suitable for replacement projects or upgrade scenarios where modifying the existing steel structure is not permitted or inconvenient, thus protecting the structural integrity of the mounting frame. The installation process is very simple; simply place the clamping arms in the target position and tighten the bolts to complete the fixation, greatly shortening the installation time and improving construction efficiency. This clamping method has a certain tolerance for the shape and size of the mounting frame, enhancing the adaptability of this adjustable mounting structure to mounting frames of different specifications.
[0013] Preferably, the clamping fastener can be installed on the mounting base in either the forward or reverse orientation.
[0014] This further enhances the flexibility of the clamp fastener for both forward and reverse installation. This feature solves practical problems when installation space is limited or obstructions are present. For example, when there is architectural trim or other equipment at the top of the screen, reversing the installation of the clamp fastener allows necessary clearance above the screen, ensuring smooth installation. This variability in installation direction expands the application scenarios of this adjustable installation structure, enabling it to cope with more complex and demanding installation environments. Installers can choose the optimal installation orientation based on the specific site conditions, providing greater freedom in installation scheme design and enhancing the overall system's problem-solving capabilities and practicality.
[0015] Preferably, the connecting component is an adjustable connecting piece, which is used to connect the mounting base and the mounting frame.
[0016] An alternative implementation of the connecting component is proposed: an adjustable connecting piece. Its core advantage lies in providing another dimension of adjustment capability, particularly fine-tuning in the front-to-back direction. After the mounting base is adjusted to its left-to-right position on the crossbar, the adjustable connecting piece can compensate for any deviation in depth between the mounting frame and the housing plane. This design effectively absorbs dimensional errors and cumulative tolerances at the installation site, ensuring a reliable connection even when the mounting frame's facade is uneven or has a distance difference from the ideal mounting surface of the housing. It enhances the overall installation system's tolerance to irregular installation foundations and simplifies the on-site commissioning process. The connecting piece structure is typically flat, facilitating a compact installation layout and reducing the occupation of external space.
[0017] Preferably, the adjustable connecting piece includes two parts connected by an elongated hole and a bolt, the two parts being a first connecting piece and a second connecting piece, respectively, and the relative positions of the first connecting piece and the second connecting piece can be adjusted by loosening the bolt.
[0018] The mechanism of the adjustable connecting piece is specifically revealed: it employs a two-part structure with elongated holes connected by bolts. The elongated hole design provides the physical basis for stepless adjustment, allowing the two parts to slide relative to each other along the length of the hole after the bolts are loosened, thus continuously changing the effective length of the connecting piece or the position of the connection point. This adjustment method is simple, intuitive, and reliable; operators can complete it using only conventional tools, requiring no special skills or equipment. After adjustment, tightening the bolts securely locks the two parts in the desired position using friction, ensuring connection strength. The elongated holes are easy to manufacture and inexpensive, enabling this precise adjustment function to be implemented economically, improving the product's cost-effectiveness.
[0019] Preferably, the mounting base is a double C-groove mounting aluminum strip disposed on the housing, and the C-groove of the double C-groove mounting aluminum strip is provided with a movable mounting point that can be fixed by fasteners.
[0020] This design defines a second mounting base option: a double C-slot mounting aluminum strip integrated into the enclosure. A significant advantage of this design is its versatility, providing additional and flexible mounting interfaces. The double C-slot structure is essentially two independent sliding tracks, allowing for movable mounting points within them. This enables linear vertical adjustment of the mounting point not only within a single slot, but also provides options for different vertical mounting positions due to the parallel design of the two slots. This structure is particularly suitable for scenarios requiring precise vertical alignment or lateral installation. Integrating some connection functions directly into the enclosure structure reduces the number of external components and, in some cases, simplifies the overall structure. The movable mounting points also enable quick positioning and secure fixation.
[0021] Preferably, the mounting points on the double C-groove mounting aluminum strip are for lateral mounting.
[0022] A key application of double C-slot aluminum strips has been identified: lateral mounting. This feature addresses the specific needs when the mounting bracket is located on the side of the enclosure, or when the installation space is deep enough to require side connection. By utilizing the mounting points within the C-slots, connectors (such as bolts or specialized side-mounting clamps) can be easily led out from the side of the enclosure and secured to the adjacent mounting bracket. This method expands the enclosure's mounting orientation, moving beyond traditional front or rear mounting and providing an effective technical means to handle complex installation layouts. It enhances the adaptability of the mounting structure to various spatial relationships, making it a comprehensive solution for multi-directional installation challenges.
[0023] Preferably, the mounting frame is a channel steel or an I-beam.
[0024] The type of mounting frame that this adjustable mounting structure is compatible with has been clearly defined, namely typical channel steel or I-beams. This directly addresses standard structural components widely used in industrial and engineering fields. Channel steel and I-beams have specific cross-sectional shapes and structural strengths. The design of this adjustable mounting structure, especially connecting components such as pipe clamps, can well match the flange or web shapes of these steel sections, achieving effective clamping or connection. This indicates that the structure is not an abstract solution, but rather a specific optimization for commonly existing mounting foundations in the real world, ensuring its effectiveness and reliability in common application scenarios and solving the practical problem of rapid and flexible installation on standard steel structures.
[0025] The advantages of this utility model compared to the prior art are: The adjustable mounting structure of the fixed LED display module of this utility model exhibits many positive effects through its specific design.
[0026] Firstly, the core of this structure lies in the introduction of a mounting base that can slide along the crossbars of the enclosure. This design provides significant positional flexibility during installation. Installers no longer need to perform extremely precise measurements and positioning before construction; instead, they can move the mounting base to a roughly suitable position on-site for initial fixation. This greatly reduces the precision requirements of the preliminary preparation work and facilitates on-site installation. This sliding adjustment mechanism effectively compensates for any potential lateral spacing deviations between the mounting frame and the enclosure.
[0027] Secondly, the structure adopts a modular design approach, separating the functions of the "mounting base" and "connecting components." This separation allows the same mounting platform (i.e., the sliding mounting base) to accommodate various types of connecting components. For example, components can be fixed using clamping methods to adapt to installation scenarios without drilling; adjustable connecting plates can be used to compensate for deviations in the depth direction; and multi-directional adjustable aluminum strips integrated into the housing can be used to address special needs such as lateral installation. This modularity enhances adaptability to different installation environments and rack types, helps reduce the number of specialized parts, and thus has a positive impact on project management and cost control.
[0028] Furthermore, some of the various connection methods offered by this structure reduce or eliminate the need for permanent modifications to the mounting frame, such as drilling and welding. This not only simplifies installation and shortens construction time, but more importantly, it helps maintain the integrity and mechanical properties of the original support structure, which is of positive significance for projects upgrading existing building structures.
[0029] Finally, the arrangement of horizontal bars around the cabinet provides more possibilities for the selection of installation points, helps to achieve a uniform distribution of connection force, and is beneficial to maintaining the structural stability of large cabinets and the flatness of the display surface after installation.
[0030] In summary, the structure of this utility model, by providing an adjustable mounting base and diverse connecting components, demonstrates its positive technical value in terms of improving installation flexibility, enhancing versatility, simplifying construction processes, and protecting existing structures. Attached Figure Description
[0031] To more clearly illustrate the technical solutions of the embodiments of this application, the accompanying drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this application and should not be regarded as a limitation of the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.
[0032] Figure 1 This is a structural diagram of the adjustment and installation structure of the fixed LED display module in Embodiment 1 of this utility model.
[0033] Figure 2 for Figure 1 A magnified view of region A in the middle.
[0034] Figure 3 This is a structural diagram of the adjustment and installation structure of the fixed LED display module in Embodiment 2 of this utility model.
[0035] Figure 4 for Figure 3 A magnified view of region B in the middle.
[0036] Labeling Explanation: 1. Box Body, 2. Horizontal Bar, 3. C-type Mounting Slide, 4. Pipe Clamp Fixing Piece, 41. Clamp Arm, 5. Adjustable Connecting Plate, 51. First Connecting Plate, 52. Second Connecting Plate, 6. Double C-slot Mounting Aluminum Strip, 01. Mounting Frame. Detailed Implementation
[0037] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. The components of the embodiments of this application described and shown in the accompanying drawings can generally be arranged and designed in various different configurations.
[0038] Therefore, the following detailed description of the embodiments of this application provided in the accompanying drawings is not intended to limit the scope of the claimed application, but merely to illustrate selected embodiments of the application. All other embodiments obtained by those skilled in the art based on the embodiments of this application without inventive effort are within the scope of protection of this application.
[0039] It should be noted that similar reference numerals and letters in the following figures indicate similar items. Therefore, once an item is defined in one figure, it does not need to be further defined and explained in subsequent figures. In the description of the embodiments of this application, it should be understood that the terms "upper," "lower," "left," "right," "vertical," "horizontal," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the figures, or the orientation or positional relationship commonly used when the product of this application is in use, or the orientation or positional relationship commonly understood by those skilled in the art. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.
[0040] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other.
[0041] The technical solutions in this application will now be described with reference to the accompanying drawings. Example 1
[0042] This embodiment provides an adjustable mounting structure for a fixed LED display module, including a housing 1 and a connecting component for connecting a mounting bracket 01. A horizontal bar 2 is provided on the housing 1. The adjustable mounting structure also includes a mounting base, which is slidably mounted on the horizontal bar 2 and can be fixed at a selected position by fasteners. The connecting component is disposed on the mounting base. The mounting base is slidably mounted on the horizontal bar 2 through a groove-protrusion fit or a guide rail-slider fit, etc.
[0043] The modular design concept achieves high versatility and adaptability. The installation function is decomposed into a sliding mounting base on the horizontal bar 2 of the housing 1, and connecting components mounted on the base. This separate design is the key to the innovation. The sliding mounting base along the horizontal bar 2 provides the first degree of freedom of adjustment, allowing the installation position of the connecting components relative to the housing 1 to be flexibly and continuously adjusted according to the actual spacing of the mounting racks on site, thus overcoming the alignment problems caused by inconsistent mounting rack specifications. This structure constitutes a universal installation platform, allowing adaptation to various mounting racks of different structures or sizes, significantly reducing the need for customized design of the housing 1 or mounting components for specific installation environments, and lowering inventory management and production costs. At the same time, this design simplifies the installation process; installers do not need to perform complex measurements and precise positioning. They only need to move the mounting base to a roughly suitable position, initially fix it, and then make fine adjustments, improving installation efficiency and reducing operational difficulty. This core structure lays the foundation for subsequent expansion to various specific connection methods, ensuring that the entire technical solution, while maintaining a unified basic principle, possesses strong functional extensibility and can cope with diverse practical installation challenges.
[0044] In this embodiment, the mounting base is a C-shaped mounting groove 3, which is snapped onto the horizontal bar 2.
[0045] The mounting base is further specified as a C-shaped mounting groove 3, a design that brings multiple positive effects. The C-shaped cross-section allows for easy snap-fit fitting onto the crossbar 2, enabling rapid pre-assembly between the mounting base and the crossbar 2 of the housing 1, simplifying the assembly process. The inner wall of the groove matches the shape of the crossbar 2, ensuring smooth and stable sliding, preventing jamming or misalignment. Simultaneously, the C-shaped opening facilitates the insertion and operation of fasteners such as bolts. Once slid to the target position, the fasteners can be easily tightened, firmly locking the groove onto the crossbar 2, ensuring the stability and reliability of the final installation. This C-shaped groove structure is simple, easy to produce and manufacture, and has excellent process feasibility.
[0046] In this embodiment, the connecting component is a pipe clamping fastener 4, which includes a pair of clamping arms 41 for gripping the mounting frame.
[0047] One specific implementation of the connecting component is defined, namely, the use of clamping fastener 4. Its advantage lies in providing a non-invasive, quick, and secure connection solution. The design of a pair of clamping arms 41 allows them to encircle and clamp the mounting frame, such as square tubes, round tubes, or structural steel, from both sides, forming a strong clamping force. This method completely avoids destructive operations such as drilling and welding on the existing mounting frame, making it particularly suitable for replacement projects or upgrade scenarios where modification of the existing steel structure is not permitted or inconvenient, thus protecting the structural integrity of the mounting frame. The installation process is very simple; simply place the clamping arms 41 in the target position and tighten the bolts to complete the fixation, greatly shortening the installation time and improving construction efficiency. This clamping method has a certain tolerance for the shape and size of the mounting frame, enhancing the adaptability of this adjustable mounting structure to mounting frames of different specifications.
[0048] In this embodiment, the clamping fixing member 4 can be installed on the mounting base in either the forward or reverse direction.
[0049] This further enhances the flexibility of the clamp fastener 4 for both forward and reverse installation. This feature solves practical problems when installation space is limited or obstructions are present. For example, when there is architectural trim or other equipment at the top of the screen, reversing the installation of the clamp fastener 4 allows for necessary clearance above the screen, ensuring smooth installation. This variability in installation direction expands the application scenarios of this adjustable installation structure, enabling it to cope with more complex and demanding installation environments. Installers can choose the optimal installation orientation based on the specific site conditions, providing greater freedom in installation scheme design and enhancing the overall system's problem-solving capabilities and practicality.
[0050] In this embodiment, the mounting frame is a channel steel or an I-beam.
[0051] The type of mounting frame that this adjustable mounting structure is compatible with has been clearly defined, namely typical channel steel or I-beams. This directly addresses standard structural components widely used in industrial and engineering fields. Channel steel and I-beams have specific cross-sectional shapes and structural strengths. The design of this adjustable mounting structure, especially connecting components such as the pipe clamp fastener 4, can well match the flange or web shapes of these steel sections, achieving effective clamping or connection. This indicates that the structure is not an abstract solution, but rather a specific optimization for commonly existing mounting foundations in the real world, ensuring its effectiveness and reliability in common application scenarios and solving the practical problem of rapid and flexible installation on standard steel structures. Example 2
[0052] This embodiment provides an adjustable mounting structure for a fixed LED display module, including a housing 1 and a connecting component for connecting a mounting bracket 01. A horizontal bar 2 is provided on the housing 1. The adjustable mounting structure also includes a mounting base, which is slidably disposed on the horizontal bar 2 and can be fixed at a selected position by fasteners. The connecting component is disposed on the mounting base.
[0053] The modular design concept achieves high versatility and adaptability. The installation function is decomposed into a sliding mounting base on the horizontal bar 2 of the housing 1, and connecting components mounted on the base. This separate design is the key to the innovation. The sliding mounting base along the horizontal bar 2 provides the first degree of freedom of adjustment, allowing the installation position of the connecting components relative to the housing 1 to be flexibly and continuously adjusted according to the actual spacing of the mounting racks on site, thus overcoming the alignment problems caused by inconsistent mounting rack specifications. This structure constitutes a universal installation platform, allowing adaptation to various mounting racks of different structures or sizes, significantly reducing the need for customized design of the housing 1 or mounting components for specific installation environments, and lowering inventory management and production costs. At the same time, this design simplifies the installation process; installers do not need to perform complex measurements and precise positioning. They only need to move the mounting base to a roughly suitable position, initially fix it, and then make fine adjustments, improving installation efficiency and reducing operational difficulty. This core structure lays the foundation for subsequent expansion to various specific connection methods, ensuring that the entire technical solution, while maintaining a unified basic principle, possesses strong functional extensibility and can cope with diverse practical installation challenges.
[0054] In this embodiment, the connecting component is an adjustable connecting piece 5, which is used to connect the mounting base and the mounting frame.
[0055] Its core advantage lies in providing another dimension of adjustability, particularly fine-tuning in the front-to-back direction. Once the mounting base is adjusted to its left-to-right position on the horizontal bar 2, the adjustable connecting piece 5 can compensate for any deviation in depth between the mounting frame and the plane of the housing 1. This design effectively absorbs dimensional errors and cumulative tolerances at the installation site, ensuring a reliable connection even when the mounting frame's facade is uneven or has a distance difference from the ideal mounting surface of the housing 1. It enhances the overall installation system's tolerance to irregular installation foundations and simplifies the on-site commissioning process. The connecting piece structure is typically flat, which facilitates a compact installation layout and reduces the occupation of external space.
[0056] In this embodiment, the adjustable connecting piece 5 includes two parts connected by an elongated hole and a bolt, namely a first connecting piece 51 and a second connecting piece 52. The relative positions of the first connecting piece 51 and the second connecting piece 52 can be adjusted by loosening the bolt.
[0057] The mechanism of the adjustable connecting piece 5 is specifically revealed: it employs a two-part structure with elongated holes connected by bolts. The elongated hole design provides the physical basis for stepless adjustment, allowing the two parts to slide relative to each other along the length of the hole after the bolts are loosened, thereby continuously changing the effective length of the connecting piece or the position of the connection point. This adjustment method is simple, intuitive, and reliable; operators can complete it using only conventional tools, requiring no special skills or equipment. After adjustment, tightening the bolts securely locks the two parts in the desired position using friction, ensuring connection strength. The elongated hole is easy to manufacture and inexpensive, enabling this precise adjustment function to be implemented economically, improving the product's cost-effectiveness.
[0058] In this embodiment, the mounting base is a double C-groove mounting aluminum strip 6 set on the housing 1. The C-groove of the double C-groove mounting aluminum strip 6 is provided with movable mounting points that can be fixed by fasteners.
[0059] The significant advantage of this design lies in its integrated versatility, providing additional and flexible mounting interfaces. The double C-slot structure is essentially two independent sliding tracks, allowing for movable mounting points within them. This enables linear vertical adjustment of the mounting points not only within a single slot, but also provides options for different vertical mounting positions through the parallel design of the two slots. This structure is particularly suitable for scenarios requiring precise vertical alignment or lateral installation. It integrates some connection functions directly into the housing structure, reducing the number of external components and, in some cases, simplifying the overall structure. The movable mounting points also enable quick positioning and secure fixation.
[0060] In this embodiment, the mounting points on the double C-groove mounting aluminum strip 6 are used for lateral mounting.
[0061] A key application of the double C-slot mounting aluminum strip 6 was identified: lateral mounting. This feature addresses the specific needs when the mounting bracket is located on the side of the enclosure 1, or when the installation space is deep enough to require side connection. By utilizing the mounting points within the C-slots, connectors (such as bolts or specialized side-mounting clamps) can be easily led out from the side of the enclosure 1 and secured to the adjacent mounting bracket. This method expands the mounting orientation of the enclosure 1, freeing it from the traditional front or rear mounting, and provides an effective technical means to address complex installation layouts. It enhances the adaptability of the mounting structure to various spatial relationships, making it a comprehensive solution for multi-directional installation challenges.
[0062] In this embodiment, there are four horizontal bars 2, which are respectively arranged around the perimeter of the box body 1.
[0063] The arrangement of the horizontal bars 2 has been optimized, with four bars distributed around the perimeter of the cabinet 1. This layout greatly enhances the flexibility of mounting point selection and the overall balance and stability of the cabinet 1 installation. By providing sliding tracks for the mounting bases on the top, bottom, left, and right sides of the cabinet 1, installers can choose the most suitable and convenient side for connection operations based on the actual structure of the mounting frame. For example, they can choose to suspend from the top and bottom, or side-mount from the left and right sides. This symmetrical and comprehensive distribution ensures that the connection force is evenly transmitted to the entire frame of the cabinet 1, avoiding the risk of excessive local stress or cabinet 1 deformation that may result from overly concentrated mounting points. This helps maintain the flatness of the display surface, which is especially important for large-sized cabinets 1.
[0064] In this embodiment, the mounting frame is a channel steel or an I-beam.
[0065] The type of mounting frame that this adjustable mounting structure is compatible with has been clearly defined, namely typical channel steel or I-beams. This directly addresses standard structural components widely used in industrial and engineering fields. Channel steel and I-beams have specific cross-sectional shapes and structural strengths. The design of this adjustable mounting structure, especially connecting components such as the pipe clamp fastener 4, can well match the flange or web shapes of these steel sections, achieving effective clamping or connection. This indicates that the structure is not an abstract solution, but rather a specific optimization for commonly existing mounting foundations in the real world, ensuring its effectiveness and reliability in common application scenarios and solving the practical problem of rapid and flexible installation on standard steel structures.
[0066] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. An adjustable mounting structure for mounting a fixed LED display module, comprising a box (1) and a connecting member for connecting a mounting rack (01), characterized in that, The housing (1) is provided with a horizontal bar (2), and the adjustment and installation structure also includes an installation base. The installation base is slidably disposed on the horizontal bar (2) and can be fixed at a selected position by fasteners. The connecting component is disposed on the installation base.
2. The adjustment mounting structure according to claim 1, characterized by The mounting base is a C-shaped mounting groove (3), which is snapped onto the horizontal bar (2).
3. The adjustment mounting structure according to claim 2, characterized by The connecting component is a pipe clamp (4), which includes a pair of clamp arms (41) for clamping the mounting frame (01).
4. The adjustable installation structure according to claim 3, characterized in that, The clamping fastener (4) can be installed on the mounting base in either the forward or reverse direction.
5. The adjustment mounting structure according to claim 1, characterized by The connecting component is an adjustable connecting piece (5), which is used to connect the mounting base and the mounting frame (01).
6. The adjustable installation structure according to claim 5, characterized in that, The adjustable connecting piece (5) includes two parts connected by a long hole and a bolt. The two parts are a first connecting piece (51) and a second connecting piece (52). The relative positions of the first connecting piece (51) and the second connecting piece (52) can be adjusted by loosening the bolt.
7. The adjustable installation structure according to claim 1, characterized in that, The mounting base is a double C-groove mounting aluminum strip (6) set on the housing (1). The C-groove of the double C-groove mounting aluminum strip (6) has a movable mounting point that can be fixed by fasteners.
8. The adjustment mounting structure according to claim 7, characterized by The mounting points on the double C-groove mounting aluminum strip (6) are used for lateral mounting.
9. The adjustment mounting structure according to claim 1, characterized by The mounting frame is made of channel steel or I-beam steel.