Assembly type integrated suspended ceiling rapid installation assembly

By connecting the detachable load-bearing plate with the main hanging adjustment support and the ceiling locking component design, the problems of adapting to uneven ceiling surfaces and difficult disassembly in traditional ceiling installation are solved, realizing rapid installation and efficient disassembly, and improving the stability and aesthetics of the ceiling system.

CN224063771UActive Publication Date: 2026-03-31SHANDONG GREEN CITY CONSTR CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-21
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

In existing ceiling installation technologies, the fixed length design of traditional hangers is difficult to adapt to uneven building ceilings, resulting in complex installation, low material reuse rate, and easy damage to the keel during disassembly, affecting construction efficiency and aesthetics.

Method used

The design incorporates a detachable support plate connected to the main hanging adjustment support, along with ceiling locking components for the ceiling joists and main joists, allowing for height adjustment and quick fixing. Stability is provided by sleeve-type threaded telescopic rods and auxiliary balancing braces, simplifying the installation process.

Benefits of technology

This system enables easy disassembly and maintenance of the ceiling system, improves installation efficiency and material reuse rate, ensures the horizontal installation and aesthetics of the ceiling system, and enhances the stability and overall strength of the structure.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of integrated suspended ceiling installation, and relates to an assembly type integrated suspended ceiling rapid installation assembly which comprises a main hanging adjusting support, a bearing plate is detachably installed below the main hanging adjusting support, the two ends of the bearing plate are connected with the main hanging adjusting support through auxiliary balance inclined struts, and a main keel is fixedly installed on the bearing plate through a pressing block. The integrated suspended ceiling is provided with a plurality of suspended ceiling keels, and the suspended ceiling keels are fixedly installed on the main keels through suspended ceiling locking pieces. The height is adjusted at any time through the main hanging adjusting support according to the actual condition of the top face of a building, horizontal installation of a suspended ceiling system is ensured, the attractiveness and the using effect of a suspended ceiling are improved, the stability of the bearing plate is effectively enhanced through the auxiliary balance inclined struts, and inclination or falling caused by uneven weight distribution or external force is prevented; the main keel can be rapidly fixed or disassembled by screwing the pressing block, the ceiling keel can be conveniently assembled and disassembled through the ceiling locking piece, complex operation or tools are not needed, and the repeated utilization rate of materials is increased.
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Description

Technical Field

[0001] This utility model relates to the field of integrated ceiling installation technology, and in particular to a prefabricated integrated ceiling quick installation component. Background Technology

[0002] Ceiling decoration is an important part of interior architectural decoration. Integrated ceiling is a combination of metal square panels and electrical appliances, integrating four major functions: heating, ventilation, lighting, and metal ceiling, and combining them into a whole in a matrix.

[0003] In existing ceiling installation technologies, the common practice is to fix the keel to the ceiling with hangers before installing decorative panels. The traditional fixed length design of the hangers is difficult to adapt to uneven building ceilings. The installation process requires repeated adjustments to the length of the screw rods and handling of limiting mechanisms. On-site cutting of the screw rods to different specifications is often necessary, resulting in low overall assembly efficiency and greatly increasing construction complexity and time costs. Conventional keels often use built-in protrusion structures for limiting. Although this design can achieve initial positioning, the protrusions can cause jamming during subsequent maintenance and disassembly, making it difficult to remove the keel. This often requires forceful disassembly, resulting in irreversible damage to the components and seriously affecting the reusability of materials. Utility Model Content

[0004] To address the aforementioned technical problems, this utility model provides a prefabricated integrated ceiling quick-installation component.

[0005] The technical solution of this utility model is achieved through the following scheme: a prefabricated integrated ceiling quick installation component, including a main hanging adjustment support, a load-bearing plate, a main keel, a ceiling keel and an integrated ceiling, wherein the load-bearing plate is detachably installed below the main hanging adjustment support, and the two ends of the load-bearing plate are connected to the main hanging adjustment support through auxiliary balancing diagonal braces, the main keel is fixedly installed on the load-bearing plate through clamping blocks, and the integrated ceiling is provided with a plurality of ceiling keels, the ceiling keels being fixedly installed on the main keel through ceiling locking components.

[0006] Through the above technical solutions, the detachable connection between the load-bearing plate and the main adjustable support, as well as the ceiling locking components on the ceiling keel and the main keel, makes the entire ceiling system easy to disassemble and maintain. The adjustable design of the main adjustable support allows for height adjustment according to the actual conditions of the building's ceiling, ensuring the horizontal installation of the ceiling system, improving aesthetics and usability. The auxiliary balancing brace effectively enhances the stability of the load-bearing plate, preventing tilting or detachment due to uneven weight distribution or external forces. Simply tightening the clamping block allows for quick fixing and disassembly of the main keel, improving installation efficiency. The ceiling locking components allow the ceiling keel to be easily attached to or detached from the main keel without complicated operations or tools, further accelerating installation and increasing material reuse.

[0007] Preferably, the main mounting adjustment support includes a mounting plate, a first sleeve-type threaded telescopic rod, and a rotating mounting arm. One end of the first sleeve-type threaded telescopic rod is fixedly mounted on the bottom surface of the mounting plate, and the rotating mounting arm is sleeved on the sleeve section of the first sleeve-type threaded telescopic rod. A bearing screw is fixedly mounted on the other end of the first sleeve-type threaded telescopic rod.

[0008] Preferably, one end of the auxiliary balancing brace is fixedly connected to the rotating mounting arm.

[0009] Through the above technical solutions, the first sleeve-type threaded telescopic rod allows for precise vertical adjustment, thereby adjusting the overall height of the main hanging adjustment support to adapt to uneven wall and ceiling installation environments. The rotating mounting arm provides horizontal flexibility, and the fixed connection with the auxiliary balancing diagonal brace provides additional support and stability to the entire structure. The diagonal brace helps to distribute the load and reduce single-point stress, thereby enhancing the load-bearing capacity of the entire support system.

[0010] Preferably, the auxiliary balancing brace includes a second sleeve-type threaded telescopic rod, a telescopic fixing rod, and a mounting base. The mounting base is hinged to both ends of the second sleeve-type threaded telescopic rod, and the telescopic fixing rod is hinged to the sleeve section of the second sleeve-type threaded telescopic rod.

[0011] Through the above technical solutions, the length of the diagonal bracing device is adjusted by the second sleeve-type threaded telescopic rod to adapt to different installation heights of the bearing plate; the telescopic fixing rod further increases the rigidity and stability of the diagonal bracing device, enabling it to withstand greater loads; both ends are hinged with mounting seats, which can be easily installed on the structure without complicated fixing devices, improving the ease of installation. The diagonal bracing device can provide support more effectively under different conditions, enhancing the stability of the structure.

[0012] Preferably, the main keel has a groove adapted to the ceiling keel, and ceiling locking components are installed on the top surface of the main keel on both sides of the groove.

[0013] Preferably, the ceiling locking component includes a locking block, a rotating plate, an adjusting handle, and a support body. The rotating plate is rotatably mounted in the support body. The adjusting handle passes through the rotating plate and is connected to the locking block. A return spring is provided between the locking block and the rotating plate. The return spring is sleeved on the adjusting handle. A through hole adapted to the locking block is opened at the end of the support body. The locking block is movably mounted in the support body through the adjusting handle.

[0014] Preferably, the ceiling joists have snap-fit ​​grooves that are compatible with the locking blocks.

[0015] Through the above technical solutions, the grooves opened on the main keel allow the ceiling keel to be accurately inserted into the main keel, achieving rapid positioning and improving installation efficiency. The grooves also enhance the connection stability between the ceiling keel and the main keel, ensuring the overall structural strength of the ceiling system. By rotating the adjustment handle, the locking block can be driven to move and pop out or retract within the load-bearing body, thereby locking or releasing the ceiling keel, which is simple and quick to operate. The snap-fit ​​grooves opened on the ceiling keel are compatible with the locking block, ensuring that the locking component can firmly lock the ceiling keel and prevent it from loosening or falling off during use.

[0016] In summary, this utility model has the following beneficial effects:

[0017] 1. This utility model, through the detachable connection between the load-bearing plate and the main hanging adjustment support, and the ceiling locking components on the ceiling keel and the main keel, makes the entire ceiling system easy to disassemble and maintain. The adjustable design of the main hanging adjustment support allows for height adjustment according to the actual conditions of the building's ceiling, ensuring the horizontal installation of the ceiling system, improving aesthetics and usability. The auxiliary balancing diagonal brace effectively enhances the stability of the load-bearing plate, preventing tilting or detachment due to uneven weight distribution or external forces. The main keel can be quickly fixed and disassembled simply by tightening the clamping block, improving installation efficiency. The ceiling locking components allow the ceiling keel to be easily attached to or detached from the main keel without complicated operations or tools, further accelerating installation and increasing material reuse.

[0018] 2. The first sleeve-type threaded telescopic rod allows for precise vertical adjustment, thereby adjusting the overall height of the main hanging adjustment support to adapt to uneven wall and ceiling installation environments. The rotating mounting arm provides horizontal flexibility, and the fixed connection with the auxiliary balancing diagonal brace provides additional support and stability to the entire structure. The diagonal brace helps to distribute the load and reduce single-point stress, thereby enhancing the load-bearing capacity of the entire support system.

[0019] 3. The length of the diagonal bracing device is adjusted by the second sleeve-type threaded telescopic rod to adapt to different installation heights of the bearing plate; the telescopic fixing rod further increases the rigidity and stability of the diagonal bracing device, enabling it to withstand greater loads; both ends are hinged with mounting seats, which can be easily installed on the structure without complicated fixing devices, improving the ease of installation. The diagonal bracing device can provide support more effectively under different conditions, enhancing the stability of the structure.

[0020] 4. The grooves on the main keel allow the ceiling keel to be accurately inserted into the main keel, enabling quick positioning and improving installation efficiency. The grooves also enhance the connection stability between the ceiling keel and the main keel, ensuring the overall structural strength of the ceiling system. By rotating the adjustment handle, the locking block can be moved and popped out or retracted within the load-bearing body, thereby locking or releasing the ceiling keel. The operation is simple and quick. The snap-fit ​​grooves on the ceiling keel are compatible with the locking block, ensuring that the locking components can firmly hold the ceiling keel in place, preventing it from loosening or falling off during use. Attached Figure Description

[0021] Figure 1 This is a schematic diagram of the assembled three-dimensional structure of this utility model;

[0022] Figure 2 This is a schematic diagram of the assembly of the main hanging adjustment support, auxiliary balance diagonal brace and bearing plate of this utility model;

[0023] Figure 3 This is a schematic cross-sectional view of the main hanging adjustment support structure of this utility model;

[0024] Figure 4 This is a schematic diagram of the three-dimensional structure of the auxiliary balancing diagonal brace of this utility model;

[0025] Figure 5 This is a cross-sectional schematic diagram of the three-dimensional structure of the ceiling locking component of this utility model;

[0026] Figure 6 This is a front-view sectional view of the ceiling locking component of this utility model;

[0027] Figure 7 yes Figure 1 Enlarged schematic diagram of the structure at point A;

[0028] Figure 8 This is a half-sectional schematic diagram of the carrier of this utility model.

[0029] Explanation of reference numerals in the attached drawings: 1. Main hanging adjustment support; 11. Mounting plate; 12. First sleeve-type threaded telescopic rod; 13. Rotating mounting arm; 2. Auxiliary balancing diagonal brace; 21. Second sleeve-type threaded telescopic rod; 22. Telescopic fixing rod; 23. Mounting seat; 3. Bearing plate; 4. Main keel; 5. Ceiling locking component; 51. Locking block; 52. Rotating plate; 53. Adjusting handle; 54. Bearing body; 6. Integrated ceiling; 7. Ceiling keel; 8. Pressing block; 9. Anti-slip layer; 10. Movable groove; 101. Through groove; 102. Limiting groove. Detailed Implementation

[0030] To better understand the above-mentioned objectives, features and advantages of this utility model, the present utility model will be further described below in conjunction with the accompanying drawings and embodiments.

[0031] Many specific details are set forth in the following description in order to provide a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Therefore, the present invention is not limited to the specific embodiments disclosed in the following specification. The present invention will be further described in detail below with reference to the accompanying drawings.

[0032] A prefabricated integrated ceiling quick-installation component, such as Figures 1-8 As shown, the system includes a main hanging adjustment support 1, a load-bearing plate 3, a main keel 4, a ceiling keel 7, and an integrated ceiling 6. The load-bearing plate 3 is detachably installed below the main hanging adjustment support 1. Both ends of the load-bearing plate 3 are connected to the main hanging adjustment support 1 via auxiliary balancing diagonal braces 2. The main keel 4 is fixedly installed on the load-bearing plate 3 via clamping blocks 8. The load-bearing plate 3 consists of a long flat plate and two U-shaped hanging plates. The long flat plate and two load-bearing ends are integrally constructed, with the load-bearing ends being U-shaped hanging plates. Both U-shaped hanging plates are side-mounted at both ends of the long flat plate to support and hang the two main keels 4. A clamping block 8 is located on the shorter side of the U-shaped hanging plate. The clamping block 8 consists of a screw clamp and a turning handle. Turning the handle causes the screw clamp to sink until it is tightly abutting against the main keel 4. The integrated ceiling 6... The ceiling system is equipped with several ceiling joists 7, which are fixedly installed on the main joists 4 by ceiling locking parts 5. The center of the long flat plate of the bearing plate 3 is fixed to the bearing screw protruding from the bottom of the main hanging adjustment support 1 by two nuts. The main joists 4 have grooves that match the ceiling joists 7. The ceiling locking parts 5 are installed on the top surface of the main joists 4 on both sides of the grooves. The main joists 4 have multiple grooves. The ceiling locking parts 5 are located on the side of the main joists 4 closest to the top of the wall. The ceiling joists 7 are T-shaped. The bearing plate 3, together with the auxiliary balance diagonal brace 2, stably hangs the two main joists 4. The ceiling joists 7 are then snapped between the two main joists 4. The T-shaped ceiling joists 7 can be stably snapped between the two main joists 4, which improves the overall stability and load-bearing capacity of the ceiling system.

[0033] like Figure 2 and Figure 3As shown, the main mounting adjustment support 1 includes a mounting plate 11, a first sleeve-type threaded telescopic rod 12, and a rotating mounting arm 13. One end of the first sleeve-type threaded telescopic rod 12 is fixedly mounted on the bottom surface of the mounting plate 11. The rotating mounting arm 13 is sleeved on the sleeve section of the first sleeve-type threaded telescopic rod 12. A bearing screw is fixedly mounted on the other end of the first sleeve-type threaded telescopic rod 12. An anti-slip layer 9 is provided on the first sleeve-type threaded telescopic rod 12. By gripping the anti-slip layer 9 and turning it, the sleeve can be lowered. The mounting plate 11 has screw holes adapted to expansion bolts, and multiple expansion bolts are used to fix it to the mounting plate 11. At the top of the wall, the first sleeve-type threaded telescopic rod 12 and the rotating mounting arm 13 are two independent entities. The rotating mounting arm 13 can rotate on the first sleeve-type threaded telescopic rod 12, and the rotating mounting arm 13 has a screw hole that matches the auxiliary balance brace 2. No matter how the first sleeve-type threaded telescopic rod 12 is selected to rise and shorten or fall and extend, one end of the auxiliary balance brace 2 is fixedly connected to the rotating mounting arm 13. The rotating mounting arm 13 can be easily screwed to align the screw hole on its surface with the screw hole on the auxiliary balance brace 2 for screw fixing.

[0034] The rotating mounting arm 13 has a screw hole and the side that is installed with the auxiliary balance brace 2 is flat. It is compatible with the mounting base 23 of the auxiliary balance brace 2 and fits tightly. The modular design makes the installation and disassembly process simpler and faster, and it is easy to assemble and disassemble, reducing the installation difficulty and time cost. The design of the rotating mounting arm 13 and the sleeve-type threaded telescopic rod allows for quick adjustments on site without complicated tools or additional parts, which improves work efficiency.

[0035] The bearing screw protrudes from the sleeve end face of the first sleeve-type threaded telescopic rod 12 and tightly clamps and fixes the bearing plate 3 with two nuts, one above and one below. The bearing plate 3 can also be finely adjusted by adjusting the position of the two nuts.

[0036] The auxiliary balancing brace 2 includes a second sleeve-type threaded telescopic rod 21, a telescopic fixing rod 22, and a mounting base 23. The second sleeve-type threaded telescopic rod 21 has mounting bases 23 hinged to both ends. The telescopic fixing rod 22 is hinged to the sleeve section of the second sleeve-type threaded telescopic rod 21. Both the outer and inner rods of the telescopic fixing rod 22 have multiple pin holes for fixation via fixing pins. First, the mounting base 23 at the sleeve end is screwed onto the bearing plate 3. When fine-tuning the bearing plate 3, the screw section is turned, causing the screw section to extend and retract within the sleeve. The mounting base 23 at the end of the screw section is aligned with the screw hole of the rotating mounting arm 13, forming a triangle to complete the angle positioning. The telescopic fixing rod 22 is then screwed onto the bearing plate 3. When the bearing plate 3 is installed onto the first sleeve-type threaded telescopic rod 12, the shape is an inverted "T". Then, auxiliary balance braces 2 are installed on the left and right sides of the first sleeve-type threaded telescopic rod 12. At this time, a stable triangular structure is formed between the inverted "T" shapes, dispersing the stress on the bearing plate 3 and improving its service life.

[0037] The ceiling locking component 5 includes a locking block 51, a rotating plate 52, an adjusting handle 53, and a support body 54. The rotating plate 52 is rotatably mounted in the support body 54. The adjusting handle 53 passes through the rotating plate 52 and is connected to the locking block 51. A return spring is provided between the locking block 51 and the rotating plate 52, and the return spring is sleeved on the adjusting handle 53. A through hole adapted to the locking block 51 is opened at one end of the support body 54. The through hole is a square hole, forming a cross shape with the limiting groove 102 of the inner cavity. A hole adapted to the adjusting handle 53 is opened at the other end of the support body 54. 51 is movably installed inside the carrier 54 by adjusting the handle 53. Pulling the handle 53 backward will pull the locking block 51 into the movable groove 10 in the carrier 54 and rotate it 90°. Releasing it will allow the locking block 51 to be stored in the carrier. Reversing the operation will allow the locking block 51 to pop out and fix the ceiling joist 7. One end of the return spring is fixedly connected to the locking block 51, and the other end is fixedly connected to the rotating plate 52. When the locking block 51 rotates, the spring and the rotating plate 52 will also rotate together to avoid the spring from generating torque and causing damage.

[0038] like Figure 6 and Figure 8As shown, the carrier 54 has a movable groove 10, a through groove 101, and a limiting groove 102. Both the movable groove 10 and the through groove 101 are cylindrical. The movable groove 10 provides a range of motion for the rotation of the locking block 51, while the limiting groove 102 is square. When the locking block 51 rotates 90° in the movable groove 10 (i.e., the adjusting handle 53 changes from vertical to horizontal), the locking block 51 changes from a vertical state to a horizontal state. When the adjusting handle 53 is released, the locking block 51 will be locked into the limiting groove 102 due to the elastic force of the return spring. At this time, the locking block 51 is retracted into the carrier 54 and becomes a non-locked state. The adjusting handle 53 passes through the through groove 101 and is connected to the locking block 51. The through groove 101 is the groove between the movable groove 10 and the rotating plate 52.

[0039] The ceiling joist 7 has a snap-fit ​​groove that matches the locking block 51.

[0040] Working principle: After the operator measures the distance, the two opposite main hanging adjustment supports 1 are fixed to the top of the wall with multiple expansion bolts. The horizontal position of the two opposite main hanging adjustment supports 1 is further measured. The sleeve of the first sleeve-type threaded telescopic rod 12 is turned to adjust the height until the two opposite main hanging adjustment supports 1 are at the same horizontal position. The bearing plate 3 is then installed on the bearing screw, and the auxiliary balance diagonal brace 2 is screwed on the main hanging adjustment support 1 and the bearing plate 3 to support and disperse the stress.

[0041] Next, the two main keels 4 are overlapped to the bearing end of the bearing plate 3, and the clamping block 8 is tightened for fixed connection. At this time, the workers pull the ceiling locking parts 5 to the unlocked state in turn, and then tilt the integrated ceiling 6. First, one end of the ceiling keel 7 is inserted between the two parallel main keels 4, and then the other end is also inserted. The ceiling keel 7 is raised so that both ends of the ceiling keel 7 are inserted into the groove between the main keels 4. Finally, the workers unlock the ceiling locking parts 5 from the unlocked state in turn to lock the ceiling keel 7, thus completing the installation of one ceiling piece.

[0042] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any other way. Any person skilled in the art may make changes or modifications to the above-disclosed technical content to create equivalent embodiments for application in other fields. However, any simple modifications or equivalent changes made to the above embodiments based on the technical essence of the present utility model without departing from the technical solution of the present utility model shall still fall within the protection scope of the technical solution of the present utility model.

Claims

1. A quick installation assembly for a fabricated integrated ceiling, characterized in that: The utility model provides a kind of integrated ceiling, including main hanging adjustment support (1), bearing plate (3), main keel (4), suspended ceiling keel (7) and integrated ceiling (6), detachable bearing plate (3) is installed below the main hanging adjustment support (1), the both ends of bearing plate (3) are connected with main hanging adjustment support (1) by auxiliary balance diagonal bracing (2), main keel (4) is fixedly installed on bearing plate (3) by pressing block (8), integrated ceiling (6) is equipped with several suspended ceiling keels (7), and suspended ceiling keel (7) is fixedly installed on main keel (4) by suspended ceiling locking piece (5).

2. The quick installation assembly of the fabricated integrated suspended ceiling according to claim 1, characterized in that: The main hanging adjustment support (1) includes a mounting plate (11), a first sleeve type threaded telescopic rod (12), and a rotating mounting arm (13). The first sleeve type threaded telescopic rod (12) is fixedly installed at one end on the bottom surface of the mounting plate (11). The rotating mounting arm (13) is sleeved on the sleeve segment of the first sleeve type threaded telescopic rod (12). The other end of the first sleeve type threaded telescopic rod (12) is fixedly installed with a bearing screw rod.

3. The quick installation assembly of the fabricated integrated suspended ceiling according to claim 2, characterized in that: The auxiliary balance diagonal bracing (2) is fixedly connected at one end with the rotating mounting arm (13).

4. The quick installation assembly of fabricated integrated suspended ceiling according to claim 1, characterized in that: The auxiliary balance diagonal bracing (2) includes a second sleeve type threaded telescopic rod (21), a telescopic fixed rod (22), and a mounting seat (23). The mounting seat (23) is hingedly connected at both ends of the second sleeve type threaded telescopic rod (21). The telescopic fixed rod (22) is hingedly connected to the sleeve segment of the second sleeve type threaded telescopic rod (21).

5. The quick installation assembly of fabricated integrated suspended ceiling according to claim 1, characterized in that: The main keel (4) is provided with a groove adapted to the suspended ceiling keel (7). The top surface of the main keel (4) on both sides of the groove is provided with oppositely arranged suspended ceiling locking pieces (5).

6. The quick installation assembly of the fabricated integrated suspended ceiling according to claim 5, characterized in that: The suspended ceiling locking piece (5) includes a locking block (51), a rotating plate (52), an adjusting handle (53), and a bearing body (54). The rotating plate (52) is rotatably installed in the bearing body (54). The adjusting handle (53) is connected with the locking block (51) through the rotating plate (52). A return spring is arranged between the locking block (51) and the rotating plate (52). The return spring is sleeved on the adjusting handle (53). The end of the bearing body (54) is provided with a through hole adapted to the locking block (51). The locking block (51) is movably installed in the bearing body (54) through the adjusting handle (53).

7. The quick installation assembly of the fabricated integrated suspended ceiling according to claim 6, characterized in that: The suspended ceiling keel (7) is provided with a clamping groove adapted to the locking block (51).