Modularized indoor suspended ceiling assembly part
The modular design of the ceiling components solves the problem of insufficient ceiling stability, achieving high stability and convenient installation and maintenance. It is suitable for modular prefabrication and individual replacement and repair.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-16
- Publication Date
- 2026-03-31
AI Technical Summary
Existing indoor ceiling fittings lack stability when dealing with water and wiring on the ceiling, which may lead to the risk of ceiling deformation and collapse.
The modular design of the main frame module, main fixing module, auxiliary longitudinal beams and guard plate assembly frame, combined with components such as angle steel, crossbeams, stabilizing limit blocks and reinforcing rods, forms a stable ceiling frame system.
It improves the stability and operational efficiency of the suspended ceiling, facilitates ceiling wiring and daily maintenance, and supports modular prefabrication and individual replacement and repair.
Smart Images

Figure CN224063770U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of indoor ceiling fittings, and in particular to a modular indoor ceiling fitting. Background Technology
[0002] An interior ceiling is an architectural decorative structure installed on the top of a room, typically composed of a ceiling frame, panels, lighting fixtures, and ventilation systems. It not only beautifies the interior space but also provides sound insulation, heat preservation, concealment of pipes, and decorative lighting. The design and materials of the ceiling can be selected according to different spatial needs and decorative styles. The assembly of an interior ceiling requires various accessories, such as interlocking rings, joists, hangers, and hanging plates. However, in current interior decoration, situations sometimes arise where water and wiring are run along the ceiling. These processes increase the stress on the ceiling, and the conventional interlocking rings, joists, hangers, and hanging plates used in existing technology result in insufficient ceiling stability, which may lead to deformation and collapse over time. Therefore, we propose a modular interior ceiling assembly. Utility Model Content
[0003] The purpose of this utility model is to address the problems existing in the background technology by proposing a modular indoor ceiling assembly.
[0004] The technical solution of this utility model is as follows: A modular indoor ceiling assembly includes a main frame module, which includes multiple sets of rectangular angle steels. Multiple sets of main fixing modules are arranged horizontally within the main frame module. Each set of main fixing modules includes a crossbeam. Multiple sets of fixing and mounting brackets are arranged above the crossbeam, and multiple sets of stabilizing and limiting blocks are arranged below the crossbeam. Limiting slots are formed on both sides of the stabilizing and limiting blocks on the crossbeam. Multiple sets of auxiliary longitudinal beams are arranged longitudinally within the main frame module. Multiple sets of reinforcing connecting rods are arranged between each set of auxiliary longitudinal beams. A protective plate assembly frame is arranged below the auxiliary longitudinal beams. The protective plate assembly frame includes multiple sets of rectangular square steel I, with square steel II correspondingly arranged below each set of square steel I. Multiple sets of connecting rods are arranged between each set of square steel I and square steel II, and reinforcing lugs are provided on both sides of each set of connecting rods on the square steel II.
[0005] Preferably, each group of angle steels is arranged in an "L" shape, and the ends of each group of angle steels that are close to each other are installed accordingly.
[0006] Preferably, the two ends of the crossbeam are installed corresponding to the inner walls of the two sets of angle steels, and the two ends of the crossbeam are each provided with a fixing frame on the angle steel, and the mounting end of the fixing frame is installed corresponding to the angle steel.
[0007] Preferably, the mounting end of the fixed assembly bracket is installed corresponding to one side of the crossbeam, and the top end of the fixed assembly bracket is assembled corresponding to the roof.
[0008] Preferably, the mounting end of the stabilizing limiting block is installed corresponding to one side below the crossbeam, and the stabilizing limiting block fits into the inner cavity of the auxiliary longitudinal beam.
[0009] Preferably, the auxiliary longitudinal beams are arranged in a "U" shape, and the two ends of each set of auxiliary longitudinal beams are respectively installed corresponding to the inner walls of the other two sets of angle steels. The mounting end of the reinforcing connecting rod is installed corresponding to the two adjacent sets of auxiliary longitudinal beams on one side close to each other.
[0010] Preferably, each set of auxiliary longitudinal beams has two sides near the main fixing module that are bent, and the limiting slot is "L" shaped. When the auxiliary longitudinal beams and the main fixing module are assembled, the bends and the limiting slots are installed correspondingly.
[0011] Preferably, the mounting end of the first square steel is installed corresponding to the lower side of the auxiliary longitudinal beam, and the two ends of the connecting rod are respectively installed corresponding to the sides of the first and second square steels that are close to each other.
[0012] Preferably, one end of the reinforcing lug is installed corresponding to one side of the connecting rod, and the other end of the reinforcing lug is installed corresponding to one side of the square steel.
[0013] Compared with the prior art, the present invention has the following beneficial technical effects:
[0014] This utility model has a simple overall structure. The coordinated arrangement of the main frame module, main fixing module, auxiliary longitudinal beams, and protective panel assembly frame makes the indoor ceiling more stable when it is in the assembled state. At the same time, the modular arrangement of the main frame module, main fixing module, auxiliary longitudinal beams, and protective panel assembly frame facilitates quick assembly by the operator, improving work efficiency and ceiling stability. In addition, the high stability of the ceiling facilitates the operator's wiring on the ceiling, making daily maintenance and inspection easier. It also facilitates the manufacturer to prefabricate the ceiling components in a modular manner, allowing for individual replacement and repair of the components. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0016] Figure 2 This is a schematic diagram of the structure of this utility model from another perspective;
[0017] Figure 3 This is a schematic diagram of the main fixing module in this utility model;
[0018] Figure 4 This is a schematic diagram of the auxiliary longitudinal beam in this utility model;
[0019] Figure 5 This is a structural schematic diagram of the protective plate assembly frame in this utility model.
[0020] Reference numerals: 1. Main frame module; 11. Angle steel; 2. Main fixing module; 21. Crossbeam; 22. Fixing assembly bracket; 23. Stabilizing limit block; 24. Limiting slot; 3. Auxiliary longitudinal beam; 31. Reinforcing connecting rod; 32. Bending; 4. Guard plate assembly frame; 41. Square steel one; 42. Square steel two; 43. Connecting rod; 44. Reinforcing lug; 5. Fixing frame. Detailed Implementation
[0021] The technical solution of this utility model will be further described below with reference to the accompanying drawings and specific embodiments. Example
[0022] like Figure 1-5 As shown, the present invention proposes a modular indoor ceiling assembly, including a main frame module 1. The main frame module 1 includes multiple sets of angle steels 11 arranged in a rectangular shape. Each set of angle steels 11 is arranged in an "L" shape. The ends of each set of angle steels 11 that are close to each other are installed accordingly. The ends of the multiple sets of angle steels 11 that are close to each other are fixedly connected. The angle steels 11 can be prefabricated individually. The rectangular shape of the main frame module 1 facilitates quick assembly with the corner of the indoor ceiling.
[0023] Multiple sets of main fixing modules 2 are arranged horizontally within the main frame module 1. Each set of main fixing modules 2 includes a crossbeam 21. The two ends of the crossbeam 21 are installed correspondingly to the inner walls of two sets of angle steels 11. The mounting ends of the crossbeam 21 are fixedly connected to the angle steels 11. Fixing brackets 5 are installed on the angle steels 11 at both ends of the crossbeam 21. The mounting ends of the fixing brackets 5 are correspondingly installed to the angle steels 11. The fixing brackets 5 are U-shaped and fixedly connected to the inner side of the angle steels 11. The fixing brackets 5 make the crossbeam 21 and angle steels 11 more stable when assembled, thereby improving the stability of the ceiling when assembled with the roof. Multiple sets of fixed assembly brackets 22 are installed above the crossbeam 21. The mounting ends of the fixed assembly brackets 22 are connected to the crossbeam 21. 1. One side is correspondingly installed. The lower installation end of the fixed assembly bracket 22 is set in an inverted "V" shape. The installation end of the fixed assembly bracket 22 is fixedly connected to the crossbeam 21. The top of the fixed assembly bracket 22 is installed corresponding to the roof. The top of the fixed assembly bracket 22 is rotatably expandable. Multiple sets of fixed assembly brackets 22 can stably hoist the crossbeam 21. The setting of multiple sets of fixed assembly brackets 22 can make the crossbeam 21 more evenly stressed when hoisted, thus ensuring the stability of the crossbeam 21. Multiple sets of auxiliary longitudinal beams 3 are arranged longitudinally on the inner periphery of the main frame module 1. The auxiliary longitudinal beams 3 are set in a "U" shape. The two ends of each set of auxiliary longitudinal beams 3 are respectively installed corresponding to the inner walls of two other sets of angle steel 11. 11. Fixed connection: At this time, the auxiliary longitudinal beams 3 and crossbeams 21 are arranged in a crisscross pattern on the inner periphery of the main frame module 1. Multiple sets of stabilizing limit blocks 23 are provided below the crossbeams 21. The mounting ends of the stabilizing limit blocks 23 are installed corresponding to one side of the crossbeams 21 below, and the stabilizing limit blocks 23 are fixedly connected to the crossbeams 21. Limit slots 24 are provided on both sides of the crossbeams 21 near the stabilizing limit blocks 23. Each set of auxiliary longitudinal beams 3 has bends 32 on both sides near the main fixed module 2. The bends 32 on the auxiliary longitudinal beams 3 allow for better assembly of the auxiliary longitudinal beams 3 and crossbeams 21. The limit slots 24 are "L"-shaped. When the auxiliary longitudinal beams 3 and the main fixed module 2 are assembled, the bends 32 and limit slots 24 are installed correspondingly, ensuring stable positioning. The inner cavity of block 23 fits into each other. The setting of the stabilizing limit block 23 can stabilize the auxiliary longitudinal beam 3 when it is in the assembly state by cooperating with the limit slot 24 and the bend 32. Multiple sets of reinforcing rods 31 are set between each set of auxiliary longitudinal beams 3. The mounting end of the reinforcing rod 31 is installed on the side close to the two adjacent sets of auxiliary longitudinal beams 3. The mounting end of the reinforcing rod 31 is fixedly connected to the auxiliary longitudinal beam 3. The setting of the reinforcing rod 31 can improve the stability of the auxiliary longitudinal beam 3 when it is in the assembly state. The cooperation between the main fixing module 2 and the auxiliary longitudinal beam 3 can keep the main frame module 1 stably rectangular, thereby avoiding the deformation of the main frame module 1 due to long-term hoisting and ensuring the stability of the indoor ceiling.
[0024] Below the auxiliary longitudinal beam 3, a guard plate assembly frame 4 is provided. The guard plate assembly frame 4 includes multiple sets of rectangular square steel bars 41. The mounting ends of the square steel bars 41 are installed corresponding to one side of the lower part of the auxiliary longitudinal beam 3, and the mounting ends of the square steel bars 41 are fixedly connected to the auxiliary longitudinal beam 3. Below each set of square steel bars 41, a square steel bar 42 is correspondingly provided. Between each set of square steel bars 41 and square steel bars 42, multiple sets of connecting rods 43 are provided. The two ends of the connecting rods 43 are respectively installed corresponding to the side of square steel bars 41 and square steel bars 42 that are close to each other. The mounting ends of the connecting rods 43 are fixedly connected to square steel bars 41 and square steel bars 42 respectively. Both sides of the connecting rod 43 are provided with reinforcing lugs 44 on the square steel 42. One end of the reinforcing lug 44 is installed corresponding to one side of the connecting rod 43, and the other end of the reinforcing lug 44 is installed corresponding to one side of the square steel 42. Both ends of the reinforcing lug 44 are fixedly connected to the square steel 42 and the connecting rod 43 respectively. The setting of the reinforcing lug 44 can further improve the strength of the square steel 42 and the connecting rod 43 when they are assembled, so that the ceiling can be better hoisted. The setting of the protective plate assembly frame 4 facilitates the operator to install the indoor ceiling protective plate, and at the same time ensures the stability of the ceiling protective plate when it is assembled.
[0025] In this embodiment, when the operator needs to perform indoor ceiling work, the operator first marks and drills holes at the top of the fixed mounting bracket 22 on the corresponding part of the ceiling. Then, the operator fixes and assembles four sets of angle steel 11 in a rectangular shape. Next, the operator assembles multiple sets of auxiliary longitudinal beams 3 with reinforcing connecting rods 31 with the crossbeams 21 through the limiting slots 24. At this time, the stabilizing limiting blocks 23 are in contact with the inner walls of the auxiliary longitudinal beams 3. Then, the multiple sets of crossbeams 21 are evenly fixed to the inner sides of the angle steel 11. Then, the fixing brackets 5 are fixed and installed to the inner sides of the angle steel 11 at both ends of the crossbeams 21. At this time, the assembly of the main frame module 1, the main fixing module 2, and the auxiliary longitudinal beams 3 is completed. Then, the operator fixes and assembles multiple sets of square steel 1 41 and square steel 2 42 in a rectangular shape. Then, the assembly is connected by the connecting rods 43. Rectangular square steel 41 and square steel 42 are fixedly connected, and then reinforced and fixed at the positions of square steel 42 and connecting rod 43 by reinforcing lugs 44, thereby completing the assembly of the guard plate assembly frame 4. Then, the assembled guard plate assembly frame 4 is fixedly assembled with the main frame module 1, the main fixing module 2 and the auxiliary longitudinal beam 3, so that square steel 41 is fixedly welded to the auxiliary longitudinal beam 3, thereby completing the assembly of the main frame module 1, the main fixing module 2, the auxiliary longitudinal beam 3 and the guard plate assembly frame 4. Finally, the operator lifts the device with a jacking device so that the top of the fixed assembly bracket 22 corresponds to the pre-drilled hole position in the indoor ceiling. Then, the top of the fixed assembly bracket 22 is rotated so that the top of the fixed assembly bracket 22 is fixedly assembled in the hole position in the indoor ceiling, thereby completing the installation of the indoor ceiling accessories.
[0026] The above-described specific embodiments are merely preferred embodiments of the present invention. Based on the technical solution of the present invention and the relevant teachings of the above embodiments, those skilled in the art can make various alternative improvements and combinations to the above-described specific embodiments.
Claims
1. A modular indoor ceiling assembly comprising a main frame module (1), characterized in that: The main frame module (1) comprises a plurality of sets of angle steels (11) arranged in a rectangular manner, a plurality of sets of main fixing modules (2) are arranged transversely in the main frame module (1), each set of the main fixing modules (2) comprises a crossbeam (21), a plurality of sets of fixing assembly supports (22) are arranged above the crossbeam (21), a plurality of sets of stable limiting blocks (23) are arranged below the crossbeam (21), limiting clamping grooves (24) are formed on both sides of the crossbeam (21) above the stable limiting blocks (23), a plurality of sets of auxiliary longitudinal beams (3) are arranged circumferentially and longitudinally in the main frame module (1), a plurality of sets of reinforcing connecting rods (31) are arranged between each set of the auxiliary longitudinal beams (3), a guard plate assembly frame (4) is arranged below the auxiliary longitudinal beam (3), the guard plate assembly frame (4) comprises a plurality of sets of square steels (41) arranged in a rectangular manner, a square steel (42) is correspondingly arranged below each set of the square steels (41), a plurality of sets of connecting rods (43) are arranged between each set of the square steels (41) and the square steel (42), and reinforcing lugs (44) are arranged on both sides of each set of the connecting rods (43) above the square steel (42).
2. A modular ceiling assembly according to claim 1, wherein, Each set of the angle steels (11) is arranged in an "L" shape, and one end of each set of the angle steels (11) is correspondingly mounted.
3. A modular ceiling suspension assembly according to claim 1, wherein, Both ends of the crossbeam (21) are correspondingly mounted with the inner walls of two sets of the angle steels (11), and the fixing frames (5) are arranged on the angle steels (11) at both ends of the crossbeam (21).
4. A modular ceiling suspension assembly according to claim 1, wherein, The mounting end of the fixing assembly support (22) is correspondingly mounted with one side of the crossbeam (21), and the top end of the fixing assembly support (22) is correspondingly assembled with the roof.
5. A modular ceiling assembly according to claim 1, wherein, The mounting end of the stable limiting block (23) is correspondingly mounted with one side below the crossbeam (21), and the stable limiting block (23) is in close contact with the inner cavity of the auxiliary longitudinal beam (3).
6. A modular ceiling assembly according to claim 1, wherein, The auxiliary longitudinal beam (3) is arranged in a "U" shape, and both ends of each set of the auxiliary longitudinal beam (3) are correspondingly mounted with the inner walls of the other two sets of the angle steels (11), and the mounting end of the reinforcing connecting rod (31) is correspondingly mounted with the sides of the two adjacent sets of the auxiliary longitudinal beams (3) close to each other.
7. A modular ceiling assembly according to claim 1, wherein, Both sides of each set of the auxiliary longitudinal beam (3) close to the main fixing module (2) are arranged in a bent (32) shape, the limiting clamping groove (24) is in an "L" shape, and the bent (32) is correspondingly mounted with the limiting clamping groove (24) when the auxiliary longitudinal beam (3) and the main fixing module (2) are in an assembled state.
8. A modular ceiling assembly according to claim 1, wherein, The mounting end of the square steel (41) is correspondingly mounted with one side below the auxiliary longitudinal beam (3), and both ends of the connecting rod (43) are correspondingly mounted with the sides of the square steel (41) and the square steel (42) close to each other.
9. A modular ceiling assembly according to claim 1, wherein, One end of the reinforcing lug (44) is correspondingly mounted with one side of the connecting rod (43), and the other end of the reinforcing lug (44) is correspondingly mounted with one side of the square steel (42).