An electromechanical device integrated mounting rack for structural columns
Patent Information
- Application Number
- CN202521893648.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-03
- Publication Date
- 2026-08-21
- Estimated Expiration
- 2035-09-03
AI Technical Summary
[0004]本实用新型的目的是:提供一种用于结构柱的机电设备集成安装架,以解决现有技术中在结构柱上安装机电设备时存在的安装方式零散、施工复杂、布局杂乱、以及后期维护不便的技术问题
[0017]By setting up support frames and load-bearing rings, a unified, integrated installation platform is formed. During installation, only several support frames need to be fixed to the structural column at once, and then the load-bearing ring is inserted into the mounting holes of its connecting block. All subsequent electromechanical equipment is installed on this load-bearing ring, simplifying the equipment installation process and saving labor costs and time. The load-bearing ring has mounting grooves extending along its length and connecting end to end, providing a continuous circular track for the installation of electromechanical equipment. The equipment can not only be installed at any position on the load-bearing ring, but its specific position can also be easily adjusted by sliding along the mounting grooves. When new equipment needs to be added, it can simply be installed directly into the mounting groove, providing flexibility and scalability. Furthermore, it achieves a standardized layout of electromechanical equipment, reduces the number of openings in the column, and effectively protects the integrity of the structural column.
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Figure CN224665778U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of equipment mounting rack technology, and in particular to an integrated mounting rack for electromechanical equipment used in structural columns. Background Technology
[0002] In modern buildings, such as large shopping malls and factory workshops, structural columns are key load-bearing components that support the building structure. They are widely distributed and located in fixed positions. To achieve functions such as security monitoring, information dissemination, and ventilation, various electromechanical equipment, such as surveillance cameras, speakers, indicator lights, fans, and other related equipment, are typically installed on these structural columns.
[0003] In existing technologies, the conventional practice for installing the aforementioned electromechanical equipment on structural columns is to fix an independent mounting bracket at a predetermined location for each piece of equipment by drilling, pre-embedding bolts, or using clamps, and then install the equipment onto that bracket. This decentralized installation method, with one device per bracket, is complex, incompatible, and requires independent positioning, drilling, and fixing for each type of equipment, making the process cumbersome. Furthermore, different equipment has different installation interfaces and dimensions, requiring various bracket specifications, resulting in poor versatility and compatibility. Moreover, the disorderly distribution of multiple devices and their respective brackets at different heights and orientations on the structural column lacks overall cohesion and makes it difficult to form a unified management platform, causing numerous inconveniences for later equipment maintenance, repair, and wiring management. Utility Model Content
[0004] The purpose of this utility model is to provide an integrated mounting bracket for electromechanical equipment on structural columns, so as to solve the technical problems of scattered installation methods, complex construction, messy layout, and inconvenient maintenance in the prior art when installing electromechanical equipment on structural columns.
[0005] To achieve the above objectives, this utility model provides an integrated mounting bracket for electromechanical equipment in structural columns, comprising:
[0006] At least two support frames are arranged at intervals around the structural column. One end of each support frame is connected to the structural column, and the other end of each support frame is provided with a connecting block. The connecting block has an installation hole, and the extension direction of the installation hole is parallel to the circumference of the structural column.
[0007] A bearing ring passes sequentially through the mounting holes of the connecting block. The bearing ring has a mounting groove that extends along the length of the bearing ring and is connected end to end. The mounting groove is used to install electromechanical equipment.
[0008] Furthermore, the bearing ring has two mounting grooves, one of which is located on the upper end face of the bearing ring, and the other is located on the lower end face of the bearing ring.
[0009] Furthermore, the bearing ring has a load-reducing cavity extending along its length.
[0010] Furthermore, multiple support rods are spaced apart along the length of the bearing ring inside the load-reducing cavity, and the two ends of the support rods are respectively connected to the bottom of the two mounting slots.
[0011] Furthermore, a wiring cavity is provided inside the support frame, a wiring hole is provided on the side of the support frame near the structural column, and a wiring groove is provided on the side of the support frame near the bearing ring. The wiring cavity, the wiring hole and the wiring groove are connected, and a wiring socket is provided in the wiring groove.
[0012] Furthermore, the electromechanical equipment integrated mounting bracket for the structural column also includes a first fastener. The support frame body adopts a steel structure. A first mounting plate is provided at one end of the support frame body near the connecting block. The first mounting plate is adapted to the shape of the connecting block. The first mounting plate and the connecting block are detachably connected by the first fastener.
[0013] Furthermore, the first fastener includes at least three fastening bolts, which are spaced apart in a vertical direction, and the fastening bolts pass through the first mounting plate and engage with the connecting block.
[0014] Furthermore, the electromechanical equipment integrated mounting bracket for the structural column also includes a second fastener. The support frame body is provided with a second mounting plate at one end near the structural column. The second mounting plate is adapted to the shape of the structural column, and the second mounting plate is detachably connected to the structural column through the second fastener.
[0015] Furthermore, the second fastener includes at least two chemical anchors spaced apart from the support frame, the chemical anchors passing through the second mounting plate and inserted into the structural column.
[0016] Compared with the prior art, the electromechanical equipment integrated mounting bracket for structural columns according to this utility model embodiment has the following advantages:
[0017] By setting up support frames and load-bearing rings, a unified, integrated installation platform is formed. During installation, only several support frames need to be fixed to the structural column at once, and then the load-bearing ring is inserted into the mounting holes of its connecting block. All subsequent electromechanical equipment is installed on this load-bearing ring, simplifying the equipment installation process and saving labor costs and time. The load-bearing ring has mounting grooves extending along its length and connecting end to end, providing a continuous circular track for the installation of electromechanical equipment. The equipment can not only be installed at any position on the load-bearing ring, but its specific position can also be easily adjusted by sliding along the mounting grooves. When new equipment needs to be added, it can simply be installed directly into the mounting groove, providing flexibility and scalability. Furthermore, it achieves a standardized layout of electromechanical equipment, reduces the number of openings in the column, and effectively protects the integrity of the structural column. Attached Figure Description
[0018] Figure 1 This is a structural schematic diagram of the electromechanical equipment integrated mounting frame for structural columns according to an embodiment of this utility model;
[0019] Figure 2 This is a structural schematic diagram of the electromechanical equipment integrated mounting bracket for structural columns from another angle, according to an embodiment of this utility model.
[0020] Figure 3 This is a partial structural diagram of the bearing ring of the electromechanical equipment integrated mounting frame for structural columns according to this utility model;
[0021] In the diagram, 1 is a structural column;
[0022] 2. Support frame; 21. Wiring cavity; 22. Wiring hole; 23. Wiring groove; 24. First mounting plate; 25. Second mounting plate;
[0023] 3. Connecting block; 31. Mounting hole;
[0024] 4. Load-bearing ring; 41. Mounting groove; 42. Load-reducing cavity; 43. Support rod;
[0025] 5. Wiring socket;
[0026] 6. First fastener; 61. Fastening bolt;
[0027] 7. Second fastener; 71. Chemical anchor;
[0028] 8. T-bolts. Detailed Implementation
[0029] The specific embodiments of this utility model will be further described in detail below with reference to the accompanying drawings and examples. The following examples are used to illustrate this utility model, but are not intended to limit the scope of this utility model.
[0030] In this description of the utility model, the terms "upper," "lower," "left," "right," "front," "rear," "inner," "outer," "lateral," and "longitudinal," etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings. They are used solely for the convenience of describing the utility model and for simplifying the description, and are not intended to limit the indicated device, element, or component to having a specific orientation, or to be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the utility model. Those skilled in the art can understand the specific meaning of these terms in this utility model according to the specific circumstances.
[0031] In this description of the utility model, the terms "provided with," "set up," "connected," and "placed" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral structure; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium, or an internal connection between two devices, components, or components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0032] Furthermore, the terms "first," "second," etc., are primarily used to distinguish different devices, elements, or components (which may be the same or different in specific type and construction), and are not intended to indicate or imply the relative importance or quantity of the indicated devices, elements, or components. Unless otherwise stated, "a plurality of" means two or more.
[0033] The technical solution of this utility model will be further described below with reference to the embodiments and accompanying drawings.
[0034] like Figure 1-2 As shown, an embodiment of the present invention provides an integrated mounting bracket for electromechanical equipment in a structural column, comprising:
[0035] At least two support frames 2 are arranged at intervals around the structural column 1. One end of the support frame 2 is connected to the structural column 1, and the other end of the support frame 2 is provided with a connecting block 3. The connecting block 3 is provided with an installation hole 31, and the extension direction of the installation hole 31 is parallel to the circumference of the structural column 1.
[0036] The bearing ring 4 passes through the mounting holes 31 of the connecting block 3 in sequence. The bearing ring 4 has a mounting groove 41 that extends along the length of the bearing ring 4. The mounting groove 41 is connected end to end and is used to install electromechanical equipment.
[0037] Based on the above technical solution, a support frame 2 and a load-bearing ring 4 are set up to form a unified, integrated installation platform. During installation, several support frames 2 only need to be fixed to the structural column 1 at once, and then the load-bearing ring 4 is inserted into the mounting hole 31 of its connecting block 3. All subsequent electromechanical equipment is installed on this load-bearing ring 4, simplifying the equipment installation process and saving labor costs and time. The load-bearing ring 4 has mounting grooves 41 extending along its length and connected end to end, providing a continuous circular track for the installation of electromechanical equipment. Electromechanical equipment can not only be installed at any position on the load-bearing ring 4, but its specific position can also be easily adjusted by sliding along the mounting grooves 41. When new equipment needs to be added, it can simply be installed directly into the mounting grooves 41, which has flexibility and scalability, and realizes the standardized layout of electromechanical equipment, reduces the number of openings on the column, and effectively protects the integrity of the structural column 1.
[0038] In one specific embodiment, in order to facilitate the installation and fixation of equipment, the cross-section of the mounting groove 41 is preferably T-shaped. This structure can be used with standard T-bolts 8, slider nuts and other locking structures on the market to conveniently fix the mounting base of various equipment such as fans, surveillance cameras, and speakers onto the bearing ring 4.
[0039] Preferably, the bearing ring 4 has two mounting grooves 41, one mounting groove 41 is located on the upper end face of the bearing ring 4, and the other mounting groove 41 is located on the lower end face of the bearing ring 4.
[0040] Mounting slots 41 are respectively opened on the upper and lower end faces of the bearing ring 4, which directly doubles the equipment installation capacity without increasing the overall structural space occupation, and allows for classified and zoned management of different types of equipment, making the layout of electromechanical equipment more organized. Moreover, this structure provides optimized installation postures for different equipment. The mounting slot 41 on the lower end face is suitable for installing downward-hanging equipment such as monitoring equipment and speakers, while the mounting slot 41 on the upper end face can meet the needs of upward-mounted equipment such as uplighting lamps and antennas, enhancing functional adaptability. In addition, the double-slot structure provides physical separation for cable laying, which facilitates line separation and line management, and improves the convenience of later maintenance of the entire structure.
[0041] More preferably, the bearing ring 4 has a load-reducing cavity 42 extending along the length direction of the bearing ring 4 inside.
[0042] More preferably, a plurality of support rods 43 are provided at intervals along the length of the bearing ring 4 inside the unloading cavity 42, and the two ends of the support rods 43 are respectively connected to the bottom of the two mounting grooves 41.
[0043] A support rod 43 is added inside the load-reducing cavity 42 to connect the bottom of the upper and lower mounting slots 41, transforming the load-reducing cavity 42 into an internal truss structure. The support rod 43 enhances the cross-sectional stiffness and deformation resistance of the load-bearing ring 4, effectively preventing the electrical equipment from being crushed or deformed when the mounting slot 41 is under load. Moreover, it makes the stress distribution more uniform, thus achieving sufficient structural strength and stability with a small material cost while significantly reducing its own weight.
[0044] Preferably, the support frame 2 has a wiring cavity 21, a wiring hole 22 is provided on the side of the support frame 2 near the structural column 1, and a wiring groove 23 is provided on the side of the support frame 2 near the bearing ring 4. The wiring cavity 21, the wiring hole 22 and the wiring groove 23 are connected, and a wiring socket 5 is provided in the wiring groove 23.
[0045] Within the support frame 2, interconnected wiring cavities 21, wiring holes 22, wiring grooves 23, and wiring sockets 5 are provided, constructing a pipeline channel from the structural column 1, wiring holes 22, wiring cavities 21, wiring grooves 23 to wiring sockets 5. This ensures that the entire mounting frame is free of cluttered pipelines, maintaining a clean appearance and preventing accidental damage to pipelines caused by construction, environmental, or human factors. Furthermore, wiring sockets 5 provide a standardized electrical interface, transforming the complex wiring connections after the installation of electromechanical equipment into simple plug-and-play operations, enabling rapid installation of electromechanical equipment and improving the convenience and safety of subsequent maintenance.
[0046] Preferably, the electromechanical equipment integrated mounting frame for the structural column further includes a first fastener 6. The support frame body 2 adopts a steel structure. A first mounting plate 24 is provided at one end of the support frame body 2 near the connecting block 3. The first mounting plate 24 is adapted to the shape of the connecting block 3. The first mounting plate 24 and the connecting block 3 are detachably connected by the first fastener 6.
[0047] More preferably, the first fastener 6 includes at least three fastening bolts 61, which are spaced apart in a vertical direction, and pass through the first mounting plate 24 and engage with the connecting block 3.
[0048] The use of at least three vertically spaced fastening bolts 61 enhances the rigidity and reliability of the connection between the support frame 2 and the connecting block 3. This effectively resists bending moments generated by equipment loads, preventing the connecting block 3 from deflecting or sagging, and ensuring the stable horizontal posture of the bearing ring 4. Simultaneously, the multiple fastening bolts 61 introduce safety redundancy, ensuring structural safety and improving overall reliability even if individual bolts loosen.
[0049] Preferably, the electromechanical equipment integrated mounting bracket for the structural column further includes a second fastener 7. The support frame 2 is provided with a second mounting plate 25 at one end near the structural column 1. The second mounting plate 25 is adapted to the shape of the structural column 1, and the second mounting plate 25 is detachably connected to the structural column 1 by the second fastener 7.
[0050] More preferably, the second fastener 7 includes at least two chemical anchors 71, which are spaced apart from the support frame 2 and pass through the second mounting plate 25 and are inserted into the structural column 1.
[0051] Chemical anchors 71, installed at least twice in spaced support frames 2, serve as the second fasteners 7, providing a stable and reliable foundation for the entire mounting frame. The strong adhesion and pull-out resistance of the chemical anchors 71 ensure that their connection points have sufficient load-bearing capacity and vibration resistance, effectively counteracting the overturning moment generated by the cantilever load, and ensuring the long-term horizontal stability and safety of the support frame 2. Combined with the stress-dispersing effect of the second mounting plate 25, while ensuring connection strength, it also effectively protects the structural column 1 from additional damage, achieving a combination of safety, reliability and durability.
[0052] In summary, this utility model embodiment provides an integrated mounting bracket for electromechanical equipment on structural columns. By setting up support frames 2 and bearing rings 4, it forms a unified, integral mounting platform. During installation, only several support frames 2 need to be fixed to the structural column 1 at once, and then the bearing rings 4 are inserted into the mounting holes 31 of their connecting blocks 3. All subsequent electromechanical equipment is installed on these bearing rings 4, simplifying the equipment installation process and saving labor costs and time. The bearing rings 4 have mounting grooves 41 extending along their length and connected end-to-end, providing a continuous circular track for the installation of electromechanical equipment. The equipment can not only be installed at any position on the bearing rings 4, but its specific position can also be easily adjusted by sliding along the mounting grooves 41. When new equipment needs to be added, it can simply be installed directly into the mounting grooves 41, providing flexibility and scalability. Furthermore, it achieves a standardized layout of electromechanical equipment, reduces the number of openings on the column, and effectively protects the integrity of the structural column 1.
[0053] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and substitutions can be made without departing from the technical principles of the present utility model, and these improvements and substitutions should also be considered within the protection scope of the present utility model.
Claims
1. An integrated mounting bracket for electromechanical equipment in structural columns, characterized in that, include: At least two support frames (2) are arranged circumferentially around the structural column (1). One end of the support frame (2) is connected to the structural column (1), and the other end of the support frame (2) is provided with a connecting block (3). The connecting block (3) is provided with a mounting hole (31), and the extension direction of the mounting hole (31) is parallel to the circumferential direction of the structural column (1). The bearing ring (4) passes through the mounting hole (31) of the connecting block (3) in sequence. The bearing ring (4) has a mounting groove (41) which extends along the length of the bearing ring (4). The mounting groove (41) is connected end to end and is used to install electromechanical equipment.
2. The electromechanical equipment integrated mounting bracket for structural columns according to claim 1, characterized in that, The bearing ring (4) has two mounting grooves (41), one mounting groove (41) is located on the upper end face of the bearing ring (4), and the other mounting groove (41) is located on the lower end face of the bearing ring (4).
3. The electromechanical equipment integrated mounting bracket for structural columns according to claim 2, characterized in that, The bearing ring (4) has a load-reducing cavity (42) extending along the length direction of the bearing ring (4).
4. The electromechanical equipment integrated mounting bracket for structural columns according to claim 3, characterized in that, Multiple support rods (43) are spaced apart along the length of the bearing ring (4) inside the load reduction cavity (42), and the two ends of the support rods (43) are respectively connected to the bottom of the two mounting grooves (41).
5. The electromechanical equipment integrated mounting bracket for structural columns according to claim 1, characterized in that, The support frame (2) has a wiring cavity (21) inside, and a wiring hole (22) is provided on the side of the support frame (2) near the structural column (1). A wiring groove (23) is provided on the side of the support frame (2) near the bearing ring (4). The wiring cavity (21), the wiring hole (22) and the wiring groove (23) are connected. A wiring socket (5) is provided in the wiring groove (23).
6. The electromechanical equipment integrated mounting bracket for structural columns according to claim 1, characterized in that, It also includes a first fastener (6). The support frame (2) adopts a steel structure. The support frame (2) has a first mounting plate (24) at one end near the connecting block (3). The first mounting plate (24) is adapted to the shape of the connecting block (3). The first mounting plate (24) and the connecting block (3) are detachably connected by the first fastener (6).
7. The electromechanical equipment integrated mounting bracket for structural columns according to claim 6, characterized in that, The first fastener (6) includes at least three fastening bolts (61) which are spaced apart in a vertical direction. The fastening bolts (61) pass through the first mounting plate (24) and engage with the connecting block (3).
8. The electromechanical equipment integrated mounting bracket for structural columns according to claim 1, characterized in that, It also includes a second fastener (7). The support frame (2) is provided with a second mounting plate (25) at one end near the structural column (1). The second mounting plate (25) is adapted to the shape of the structural column (1). The second mounting plate (25) and the structural column (1) are detachably connected by the second fastener (7).
9. The electromechanical equipment integrated mounting bracket for structural columns according to claim 8, characterized in that, The second fastener (7) includes at least two chemical anchors (71) spaced apart from the support frame (2), the chemical anchors (71) passing through the second mounting plate (25) and inserted into the structural column (1).