Modularized assembly type integrated ceiling structure

By installing protective shields and edge buffer mechanisms on the outside of the ceiling structure, the problem of foreign objects and small animals intruding is solved, improving the stability of the ceiling structure and user experience, and adapting to various usage scenarios.

CN121161968AActive Publication Date: 2025-12-19THE NINTH ENGINEERING CO LTD OF THE FIRST HIGHWAY ENGINEERING BUREAU OF CCCC +1
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Patent Information

Application Number
CN202511538822.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-10-27
Publication Date
2025-12-19
Estimated Expiration
2045-10-27

AI Technical Summary

Technical Problem

Existing modular prefabricated integrated ceiling structures lack effective protective measures, making it easy for foreign objects and small animals to enter the ceiling cavity, endangering structural stability and causing disturbance to users.

Method used

A protective shielding mechanism, including protective baffles, sliding baffles, and limiting strips, is installed on the outside of the suspended ceiling structure to form an adjustable protective system that prevents foreign objects and small animals from intruding. At the same time, an edge-shrinking buffer mechanism is installed to absorb external forces and enhance structural stability.

Benefits of technology

It effectively prevents damage to the ceiling structure, improves stability and safety, optimizes user experience, and ensures the adaptability and aesthetics of the ceiling structure in different environments.

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Abstract

The invention discloses a modular assembly type integrated ceiling structure, which relates to the technical field of building decoration and comprises a main keel mechanism and a suspender mechanism arranged at the top of the main keel mechanism, the auxiliary keel mechanism is arranged at the bottom of the main keel mechanism; the decoration panel mechanism is arranged at the bottom of the auxiliary keel mechanism; the frame sealing mechanism is arranged on the outer side of the auxiliary keel mechanism; the protective shielding mechanism is arranged in the frame sealing mechanism; the edge closing buffer mechanism is arranged in the frame sealing mechanism; the protective shielding mechanism comprises four protective baffles, and the four protective baffles are all inserted into the frame sealing mechanism. By arranging the protective shielding mechanism, a protective structure capable of being flexibly adjusted is formed outside the suspended ceiling structure body, foreign matter and small animals such as insects and rats are effectively prevented from invading an inner cavity of a suspended ceiling, and the safety of the suspended ceiling structure is improved. The suspended ceiling structure is effectively prevented from being damaged, and the using stability of the suspended ceiling structure is guaranteed.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of building decoration, in particular to a modular assembly type integrated ceiling structure. BACKGROUND

[0002] Building industrialization is the development trend of the construction industry, and assembly type decoration technology has important application value and broad application prospects for improving the engineering quality of the construction industry and promoting the upgrading and modernization of the construction industry. Integrated ceiling is widely used in kitchens, commercial offices, public buildings and other occasions, and is currently a very popular decorative ceiling method.

[0003] The existing integrated ceiling structure is usually composed of multiple roof beams and clamping pieces to form a complete ceiling structure, and then the ceiling structure is installed on the roof using a suspender to meet the normal building decoration requirements.

[0004] However, the existing modular assembly type integrated ceiling structure has the following disadvantages:

[0005] The existing modular assembly type integrated ceiling structure lacks effective protection measures. Since there is a large cavity inside the ceiling structure, foreign matter and small animals such as insects and mice can easily invade the inside of the ceiling cavity, causing damage to the ceiling structure, posing a certain safety hazard, easily damaging the stability of the ceiling structure, and easily interfering with the daily life of the user, making it difficult to meet the actual use requirements.

[0006] Therefore, we propose a modular assembly type integrated ceiling structure to solve the problems mentioned above. SUMMARY

[0007] The purpose of the present application is to provide a modular assembly type integrated ceiling structure, which forms a flexible adjustable protection structure outside the main body of the ceiling structure by setting up a protection shielding mechanism, effectively prevents foreign matter and small animals such as insects and mice from invading the inside cavity of the ceiling, effectively prevents the ceiling structure from being damaged, and ensures the stability of the ceiling structure during use, to solve the problems mentioned in the background art.

[0008] To achieve the above purpose, the present application provides the following technical scheme: a modular assembly type integrated ceiling structure, comprising a main roof beam mechanism,

[0009] a suspender mechanism arranged at the top of the main roof beam mechanism;

[0010] a secondary roof beam mechanism arranged at the bottom of the main roof beam mechanism;

[0011] a decorative panel mechanism arranged at the bottom of the secondary roof beam mechanism;

[0012] a frame sealing mechanism arranged on the outer side of the secondary roof beam mechanism;

[0013] A protective shielding mechanism is arranged inside the frame sealing mechanism;

[0014] An edge collecting and buffering mechanism is arranged inside the frame sealing mechanism;

[0015] The protective shielding mechanism comprises four protective baffles, each of which is inserted into the frame sealing mechanism, the bottom of each protective baffle is provided with a limiting strip, and the two ends of each protective baffle are provided with guide rods, the outer sides of every two adjacent guide rods are slidably provided with sliding baffles, and the protective baffles and the sliding baffles form an adjustable protective layer, thereby preventing damage caused by invasion of foreign matters or small animals into the ceiling cavity.

[0016] Preferably, the edge collecting and buffering mechanism comprises a plurality of fixed rods, each of which is arranged in the frame sealing mechanism, the outer side of each fixed rod is provided with a spring, the outer side of each fixed rod is slidably provided with a second sliding ring, one side of each second sliding ring is provided with two second connecting frames, and one end of every four second connecting frames is movably penetrated into the frame sealing mechanism and connected with an edge collecting strip.

[0017] Preferably, the protective shielding mechanism further comprises four first connecting frames, one end of each first connecting frame is rotatably connected with a corresponding protective baffle, the other end of each first connecting frame is rotatably connected with a first sliding ring, the inner side of the first sliding ring is provided with a limiting column, the bottom of the limiting column is provided with a mounting base, the top of both ends of the mounting base is provided with two mounting bolts, and the outer side of each mounting bolt is provided with an anti-skid washer.

[0018] Preferably, the main keel mechanism comprises three light steel keels, the top of each light steel keel is provided with three mounting hoops, and the top of both ends of each mounting hoop is provided with two first fastening bolts.

[0019] Preferably, the suspender mechanism comprises four hooking frames, every two hooking frames are hooked on the outer side of a corresponding light steel keel, one side of the hooking frame is provided with a second fastening bolt, the top of the hooking frame is provided with a full toothed lead screw, the top of the full toothed lead screw is provided with a ceiling bracket, and the top of the ceiling bracket is provided with an expansion bolt.

[0020] Preferably, the auxiliary keel mechanism comprises two cross support keels, the inside of each cross support keel is provided with three auxiliary keels, the two sides of the connection between each cross support keel and auxiliary keel are provided with inner lining frames, and one side of each inner lining frame is provided with two third fastening bolts.

[0021] Preferably, the decorative panel mechanism comprises three aluminum buckle decorative plates, each of which is provided with a mounting slot at the top, and both ends of the three aluminum buckle decorative plates are provided with a first hidden notch, and a connecting strip is installed in the first hidden notch.

[0022] Preferably, the bottom of the two cross bracing keels is provided with three L-shaped insertion supports, each of which is matched with a corresponding mounting slot.

[0023] Preferably, the frame sealing mechanism comprises a protective frame, which is fixedly installed at the end of the cross bracing keel and the auxiliary keel, and the top of the protective frame is provided with four limiting through grooves, and the bottom of the protective frame is provided with four second hidden notches.

[0024] Preferably, the four protective baffle plates are respectively matched with the four limiting through grooves, and the four limiting strips are respectively matched with the four second hidden notches.

[0025] Compared with the prior art, the present application has the following advantages:

[0026] 1、The protective shielding mechanism is provided, so that a highly flexible and adjustable protective system can be constructed around the main body of the suspended ceiling structure, and the protective structure has strong adaptability and can be flexibly adjusted according to actual needs, thereby effectively blocking foreign matter such as dust, impurities, insects, mice and other small animals outside, preventing them from invading the cavity of the suspended ceiling structure, which can greatly avoid damage to the suspended ceiling structure caused by the invasion of foreign matter or small animals, prevent the suspended ceiling structure from being bitten, corroded or blocked, etc., which not only helps to maintain the stability of the suspended ceiling structure during use and ensure the normal function of the suspended ceiling structure, but also completely eliminates the safety hazards that may exist during use of the suspended ceiling structure, so that the user can use the suspended ceiling structure more comfortably and confidently, and this design fully considers the user's experience, greatly optimizes the user's experience, makes it more convenient and comfortable, and fully meets various use requirements in actual application scenarios, whether in a family residence, an office or a commercial space, etc. Environment, it shows high practical value and reliability.

[0027] 2. This invention effectively adds a layer of edge protection to the exterior of the main ceiling structure by setting an edge-receiving buffer mechanism. This design not only allows for flexible adjustment of the walls surrounding the ceiling structure but also better adapts to different usage scenarios and needs. The mechanism can make appropriate changes to the connection between the ceiling and the wall according to changes in the actual environment to ensure the coordination and aesthetics of the overall structure. At the same time, the edge-receiving buffer mechanism also has the function of absorbing and buffering external forces. When external forces are applied to the ceiling structure, the mechanism can effectively disperse and reduce the impact of these forces on the ceiling structure itself, thereby further enhancing the stability and safety of the ceiling structure during use and providing users with a more reliable user experience.

[0028] 3. By setting up the remaining components of the protective shielding mechanism, this invention achieves the purpose of further assembling and integrating the protective shielding mechanism with the ceiling structure. This design can effectively and precisely limit the main components of the protective shielding mechanism, avoiding unnecessary displacement or loosening. At the same time, this setting method can also make the center of gravity of the protective shielding mechanism more concentrated. After the center of gravity is concentrated, it can greatly improve the overall stability of the ceiling structure, making the ceiling structure less prone to shaking or falling off during use. This stable structural state is also very beneficial for later maintenance and repair work. Workers can carry out various maintenance and repair operations in a relatively safe and stable environment, improving work efficiency and ensuring the safety of the work process. Attached Figure Description

[0029] Figure 1 This is a perspective view of the main structure of a modular prefabricated integrated ceiling structure according to the present invention;

[0030] Figure 2 This is a side view perspective of a modular prefabricated integrated ceiling structure according to the present invention;

[0031] Figure 3 This is a partial three-dimensional view of a modular prefabricated integrated ceiling structure according to the present invention;

[0032] Figure 4 This is an enlarged perspective view of the suspension rod mechanism in a modular prefabricated integrated ceiling structure according to the present invention;

[0033] Figure 5 This is an enlarged perspective view of the secondary keel mechanism in a modular prefabricated integrated ceiling structure according to the present invention;

[0034] Figure 6 This is an enlarged perspective view of the decorative panel mechanism in a modular prefabricated integrated ceiling structure according to the present invention;

[0035] Figure 7This is an enlarged perspective view of the protective shielding mechanism in a modular prefabricated integrated ceiling structure according to the present invention;

[0036] Figure 8 This is an enlarged perspective view of the frame sealing mechanism of a modular prefabricated integrated ceiling structure according to the present invention;

[0037] Figure 9 for Figure 8 Enlarged structural diagram at point A in the middle.

[0038] In the diagram: 1. Main keel mechanism; 101. Light steel keel; 102. Mounting hoop; 103. First fastening bolt; 2. Hanger mechanism; 201. Hook frame; 202. Second fastening bolt; 203. Fully threaded rod; 204. Ceiling frame; 205. Expansion bolt; 3. Secondary keel mechanism; 301. Cross brace keel; 302. Secondary keel; 303. Inner lining frame; 304. Third fastening bolt; 4. L-shaped insert; 5. Decorative panel mechanism; 501. Aluminum decorative panel; 502. Mounting slot; 503. First concealed groove; 504. Connecting strip; 505 6. Countersunk bolts; 7. Frame sealing mechanism; 8. Protective frame; 9. Limiting through groove; 10. Second concealed groove; 11. Protective shielding mechanism; 12. Protective baffle; 13. Limiting strip; 14. Guide rod; 15. Sliding baffle; 16. First connecting frame; 17. First sliding ring; 18. Limiting post; 19. Mounting base; 10. Mounting bolts; 11. Anti-slip pads; 20. Edge finishing buffer mechanism; 12. Fixing rod; 13. Spring; 14. Second sliding ring; 15. Second connecting frame; 16. Edge finishing strip. Detailed Implementation

[0039] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0040] Please see the appendix Figure 1 - Appendix Figure 9 As shown, the present invention provides a technical solution: a modular prefabricated integrated ceiling structure, including a main keel mechanism 1,

[0041] The suspension rod mechanism 2 is located on top of the main keel mechanism 1;

[0042] The secondary keel mechanism 3 is located at the bottom of the main keel mechanism 1;

[0043] Decorative panel mechanism 5 is located at the bottom of secondary keel mechanism 3;

[0044] The frame sealing mechanism 6 is located on the outside of the secondary keel mechanism 3;

[0045] The protective shielding mechanism 7 is located inside the frame sealing mechanism 6;

[0046] The edge-receiving buffer mechanism 8 is located inside the edge sealing mechanism 6;

[0047] The protective shielding mechanism 7 includes four protective baffles 701, all of which are inserted inside the frame sealing mechanism 6. Each protective baffle 701 has a limit strip 702 installed at its bottom, and guide rods 703 installed at both ends of each baffle 701. A sliding baffle 704 is slidably installed on the outer side of every two adjacent guide rods 703. The protective baffles 701 and sliding baffles 704 form an adjustable protective layer, thereby preventing foreign objects or small animals from entering the ceiling cavity and causing damage. Through the main components of the protective shielding mechanism 7, a flexible and adjustable protective system can be built around the main ceiling structure. This protective system can be adjusted according to actual needs, effectively preventing foreign objects, such as dust and debris, as well as insects, from entering the ceiling cavity. Small animals like mice are kept out, preventing them from entering the cavities of the ceiling structure. This greatly reduces the risk of damage caused by foreign objects or small animals, effectively preventing structural loosening due to insect infestation and safety risks caused by mice gnawing on electrical wires. This not only helps maintain the stability of the ceiling structure during use and ensures its proper functioning, but also completely eliminates potential safety hazards, giving users greater peace of mind. Furthermore, this design, from the user's perspective, fully considers the actual user experience, greatly optimizing the user experience and ensuring that the ceiling structure's performance indicators better meet the diverse needs of practical use.

[0048] according to Figure 1 , Figure 2 , Figure 3 , Figure 8 and Figure 9As shown, the edge-receiving buffer mechanism 8 includes multiple fixed rods 801, all of which are installed inside the frame sealing mechanism 6. A spring 802 is sleeved on the outer side of each fixed rod 801, and a second sliding ring 803 is slidably installed on the outer side of each fixed rod 801. Two second connecting brackets 804 are installed on one side of each second sliding ring 803. One end of every four second connecting brackets 804 is movably inserted through the frame sealing mechanism 6 and connected to an edge-receiving strip 805. Through the setting of the edge-receiving buffer mechanism 8, edge protection can be added to the outside of the main body of the ceiling structure. It can make flexible adjustments to the walls around the ceiling structure to meet different usage needs. At the same time, it can absorb and buffer the impact of external forces on the ceiling structure, further improving the stability of the ceiling structure during use.

[0049] according to Figure 1 , Figure 2 , Figure 3 and Figure 7 As shown, the protective shielding mechanism 7 also includes four first connecting frames 705. One end of each first connecting frame 705 is rotatably connected to a corresponding protective baffle 701. The other end of the four first connecting frames 705 is rotatably connected to a first sliding ring 706. A limit post 707 is provided on the inner side of the first sliding ring 706. An installation base 708 is installed at the bottom of the limit post 707. Two installation bolts 709 are installed at the top of both ends of the installation base 708. An anti-slip pad 710 is sleeved on the outer side of each installation bolt 709. Through the setting of the remaining components of the protective shielding mechanism 7, the protective shielding mechanism 7 can be further assembled and integrated with the ceiling structure. This can effectively limit the main components of the protective shielding mechanism 7, and at the same time concentrate the center of gravity of the protective shielding mechanism 7, thereby improving the stability of the ceiling structure and making it less prone to shaking and falling off, which is conducive to later maintenance and repair.

[0050] according to Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown, the main keel mechanism 1 includes three light steel keels 101. Each light steel keel 101 has three mounting brackets 102 on its top. Each mounting bracket 102 has two first fastening bolts 103 installed at both ends of its top. By setting up the main keel mechanism 1, a solid and stable foundation can be provided for the ceiling structure while reducing the overall weight of the ceiling structure. This effectively avoids the ceiling structure from shaking and falling off, and improves the safety of the ceiling structure during use.

[0051] according to Figure 1 , Figure 2 , Figure 3 and Figure 4As shown, the suspension mechanism 2 includes four hook frames 201. Each pair of hook frames 201 is hooked onto the outside of a corresponding light steel keel 101. A second fastening bolt 202 is installed on one side of the hook frame 201. A threaded rod 203 is installed on the top of the hook frame 201. A ceiling frame 204 is installed on the top of the threaded rod 203. An expansion bolt 205 is installed on the top of the ceiling frame 204. Through the setting of the suspension mechanism 2, the ceiling can be quickly installed on the roof and the ceiling load can be stably transferred to the building structure such as the floor slab or beam to prevent the ceiling from sagging. Through its own threaded adjustment design, the height of the entire ceiling or part of it can be adjusted to ensure that the ceiling surface remains level and adapt to different floor heights or uneven ground.

[0052] according to Figure 1 , Figure 2 , Figure 3 and Figure 5 As shown, the secondary keel mechanism 3 includes two horizontal bracing keels 301. Three secondary keels 302 are installed inside the two horizontal bracing keels 301. An inner lining frame 303 is installed on both sides of the connection between each horizontal bracing keel 301 and the secondary keel 302. Two third fastening bolts 304 are installed on one side of each inner lining frame 303. Through the setting of the secondary keel mechanism 3, it can cooperate with the main keel mechanism 1 to form a solid and stable ceiling structure, effectively reducing the difficulty of ceiling structure installation and further improving its stability.

[0053] according to Figure 1 , Figure 2 , Figure 3 and Figure 9 As shown, the decorative panel mechanism 5 includes three aluminum buckle decorative panels 501. Each aluminum buckle decorative panel 501 has an installation slot 502 on its top and a first hidden groove 503 at both ends. A connecting strip 504 is installed inside the first hidden groove 503. Countersunk bolts 505 are installed on both ends of one side of each connecting strip 504. Through the setting of the decorative panel mechanism 5, it can be used as the exposed surface layer of the ceiling, directly determining the decoration style of the space. Through different colors, textures and shapes, it can match various design needs such as modern, minimalist and retro styles, improve the overall aesthetics of the space, and cover the internal structural components such as keel, hanger, and pipelines of the ceiling, preventing internal components from being exposed to the outside, preventing dust accumulation, oxidation and corrosion, and isolating external physical damage to the internal structure. It can also be integrated or adapted to other ceiling components and provide additional functions such as sound insulation, moisture resistance and fire resistance depending on the material.

[0054] according to Figure 1 , Figure 2 , Figure 3 , Figure 5 and Figure 6As shown, three L-shaped brackets 4 are installed at the bottom of the two cross bracing keels 301. Each L-shaped bracket 4 is adapted to a corresponding mounting slot 502. By setting the L-shaped brackets 4, the difficulty of installing and disassembling the decorative panel mechanism 5 can be effectively reduced, the overall work efficiency can be effectively improved, and subsequent maintenance and repair can be facilitated, saving a lot of labor and time costs.

[0055] according to Figure 1 , Figure 2 , Figure 3 , Figure 8 and Figure 9 As shown, the frame sealing mechanism 6 includes a protective frame 601, which is fixedly installed at the ends of the cross brace 301 and the secondary keel 302. The top of the protective frame 601 has four limiting through slots 602, and the bottom of the protective frame 601 has four second hidden slots 603. Through the setting of the frame sealing mechanism 6, the main keel mechanism 1 and the secondary keel mechanism 3 can be used to protect the main body of the ceiling structure from the outside, preventing the keel from hitting the wall and causing physical damage. By fixing the keel or panel at the edge of the ceiling, the stability of the ceiling edge is enhanced, reducing edge warping and loosening caused by temperature changes, vibration, etc., and extending the service life of the ceiling. At the same time, it fills the gap between the ceiling edge and the wall, pipes, beams and columns, avoiding the exposure of gaps caused by construction errors or structural deformation, so that the ceiling and the surrounding structure form a continuous and neat visual effect.

[0056] according to Figure 1 , Figure 2 , Figure 3 , Figure 7 , Figure 8 and Figure 9 As shown, the four protective baffles 701 correspond to the four limiting slots 602, and the four limiting strips 702 are adapted to the four second concealed slots 603. Through the mutual cooperation between the protective baffles 701, the limiting strips 702, the limiting slots 602, and the second concealed slots 603, the stability of the ceiling structure can be further improved. This design can effectively prevent the ceiling structure from shaking during use, thereby ensuring the safety of users. At the same time, the transition at the joints of the overall structure is relatively smooth. This feature not only improves the aesthetics of the ceiling but also significantly reduces the difficulty of operation during disassembly and maintenance. This design is particularly convenient for subsequent operation and maintenance work, saving a lot of time and energy, improving work efficiency, and reducing the accidental risks that may be caused by complex operation, thus laying a solid foundation for the stability and safety of long-term use.

[0057] Working principle: First, select appropriate sizes of light steel keel 101, cross brace keel 301 and secondary keel 302 according to the building area to be renovated. Then, use the inner lining frame 303 and the third fastening bolt 304 to assemble the cross brace keel 301 and secondary keel 302. By tightening the third fastening bolt 304, multiple secondary keels 302 are fixed in sequence inside multiple cross brace keels 301. Then, use the mounting bracket 102 and the first fastening bolt 103 to assemble multiple light steel keels 101 onto multiple cross brace keels 301 respectively. By tightening the first fastening bolt 103, the light steel keel 101 is installed and fixed.

[0058] During the assembly and debugging phase, firstly, multiple hook-and-connector frames 201 are hooked onto the outer side of the corresponding light steel keel 101. By tightening the second fastening bolt 202, the hook-and-connector frames 201 are completely fixed to the light steel keel 101. During the decoration process, the second fastening bolt 202 can be loosened according to actual usage needs to adjust the position of the hook-and-connector frames 201 on the light steel keel 101 to ensure that the ceiling load can be stably transferred to the roof or beam. Next, according to the decoration data of the building, multiple threaded rods 203 are tightened to make the overall height of the ceiling structure meet the actual decoration needs. At the same time, when facing decoration needs at different height levels, the threaded rods 203 in the corresponding positions need to be adjusted to keep the overall ceiling structure stable on the horizontal plane.

[0059] During the ceiling installation phase, firstly, after completing the assembly and leveling work, the installers use expansion bolts 205 to fix the main body of the ceiling structure to the roof or main beam of the house. Then, they use a level to measure whether the overall ceiling structure is level. If the ceiling structure is not level, they turn the threaded rod 203 on the corresponding side to raise or lower the unlevel side of the ceiling, so that the overall ceiling structure is level.

[0060] During the edge protection stage, firstly, after the ceiling structure is installed, there may be some gaps between it and the wall. At this time, the elastic force of the spring 802 pushes the second sliding ring 803 to slide on the fixed rod 801, causing the second connecting frame 804 to drive the edge strip 805 to fit against the wall. If there are still gaps, sealing strips can be added to completely fill and seal the gaps between the ceiling structure and the wall, thereby completing the edge protection work of the ceiling.

[0061] During the ceiling protection stage, firstly, the installation slots 502 are inserted along the L-shaped inserts 4 to install the three aluminum decorative panels 501. While the aluminum decorative panels 501 are being installed, the protective baffle 701 is subjected to pressure and slides upward within the limiting groove 602, forming a protective barrier outside the ceiling structure cavity. The first sliding ring 706 slides upward along the limiting post 707 and uses the first connecting bracket 705 to limit the protective baffle 701, preventing it from shaking or falling off. Then, the two connecting strips 504 are inserted into the installation slots 502 at both ends of the three aluminum decorative panels 501 in sequence, and the countersunk bolts 505 are tightened to further assemble and fix the three aluminum decorative panels 501, thus completing the overall installation of the ceiling structure.

[0062] By following the steps outlined above, you can complete the use of the modular prefabricated integrated ceiling structure.

[0063] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A modular assembly integrated suspended ceiling structure, characterized by: Including main keel mechanism (1), Hanger rod mechanism (2) is provided at the top of the main keel mechanism (1); Sub-keel mechanism (3) is provided at the bottom of the main keel mechanism (1); Decorative panel mechanism (5) is provided at the bottom of the sub-keel mechanism (3); Frame sealing mechanism (6) is provided at the outer side of the sub-keel mechanism (3); Protective shielding mechanism (7) is provided inside the frame sealing mechanism (6); Edge buffering mechanism (8) is provided inside the frame sealing mechanism (6); The protective shielding mechanism (7) includes four protective baffles (701), four protective baffles (701) are inserted inside the frame sealing mechanism (6), the bottom of each protective baffle (701) is provided with a limiting strip (702), both ends of each protective baffle (701) are provided with a guide rod (703), both sides of every two adjacent guide rods (703) are slidably provided with a sliding baffle (704), the adjustable protective layer is formed by the protective baffle (701) and the sliding baffle (704), thereby achieving the purpose of preventing damage caused by foreign matter or small animals invading the ceiling cavity.

2. The modular assembly integrated suspended ceiling structure according to claim 1, wherein: The edge buffering mechanism (8) includes a plurality of fixed rods (801), a plurality of fixed rods (801) are installed inside the frame sealing mechanism (6), the outer side of each fixed rod (801) is provided with a spring (802), the outer side of each fixed rod (801) is slidably provided with a second sliding ring (803), one side of each second sliding ring (803) is provided with two second connecting frames (804), one end of every four second connecting frames (804) is movably penetrated into the frame sealing mechanism (6) and connected with an edge collecting strip (805).

3. The modular assembly integrated suspended ceiling structure according to claim 2, wherein: The protective shielding mechanism (7) further includes four first connecting frames (705), one end of each first connecting frame (705) is rotatably connected with a corresponding protective baffle (701), the other end of the four first connecting frames (705) is rotatably connected with a first sliding ring (706), the inner side of the first sliding ring (706) is provided with a limiting column (707), the bottom of the limiting column (707) is provided with a mounting base (708), the top of both ends of the mounting base (708) is provided with two mounting bolts (709), the outer side of each mounting bolt (709) is provided with an anti-skid pad (710).

4. The modular assembly integrated suspended ceiling structure according to claim 3, wherein: The main keel mechanism (1) includes three light steel keels (101), the top of each light steel keel (101) is provided with three mounting hoop frames (102), the top of both ends of each mounting hoop frame (102) is provided with two first fastening bolts (103).

5. The modular assembly integrated suspended ceiling structure according to claim 4, wherein: The suspender mechanism (2) comprises four hooking racks (201), every two hooking racks (201) are hooked on the outer side of a corresponding light steel keel (101), one side of the hooking rack (201) is provided with a second fastening bolt (202), the top of the hooking rack (201) is provided with a full toothed lead screw (203), the top of the full toothed lead screw (203) is provided with a ceiling rack (204), the top of the ceiling rack (204) is provided with an expansion bolt (205).

6. The modular assembly integrated suspended ceiling structure according to claim 5, wherein: The sub-keel mechanism (3) comprises two cross support keels (301), the interiors of the two cross support keels (301) are provided with three sub-keels (302), the two sides of the cross support keel (301) and the sub-keel (302) are provided with lining racks (303), one side of the lining rack (303) is provided with two third fastening bolts (304).

7. The modular assembly integrated suspended ceiling structure according to claim 6, wherein: The decorative panel mechanism (5) comprises three aluminum buckle decorative panels (501), the top of each aluminum buckle decorative panel (501) is provided with a mounting slot (502), the two ends of the three aluminum buckle decorative panels (501) are provided with first hidden grooves (503), the interiors of the first hidden grooves (503) are provided with connecting strips (504), one side of each connecting strip (504) is provided with two countersunk head bolts (505).

8. The modular assembly integrated suspended ceiling structure according to claim 7, wherein: The bottoms of the two cross support keels (301) are provided with three L-shaped insertion racks (4), each L-shaped insertion rack (4) is matched with a corresponding mounting slot (502).

9. The modular assembly integrated suspended ceiling structure according to claim 8, wherein: The frame sealing mechanism (6) comprises a protective frame (601), the protective frame (601) is fixedly installed at the ends of the cross support keel (301) and the sub-keel (302), the top of the protective frame (601) is provided with four limiting through grooves (602), the bottom of the protective frame (601) is provided with four second hidden grooves (603).

10. The modular assembly integrated suspended ceiling structure according to claim 9, wherein: Four protective baffle plates (701) are matched with four limiting through grooves (602) respectively, four limiting strips (702) are matched with four second hidden grooves (603) respectively.

Citation Information

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