Aluminum plate spliced ceiling beam structure

By combining the bending of decorative aluminum panels with rollers and a limiting mechanism, the problem of needing to cut and adjust the size of aluminum panels on-site for suspended ceilings is solved. This enables the rapid adjustment and fixing of aluminum panels at any position on the beam frame, simplifies the construction process, increases installation speed, and reduces operational difficulty.

CN116498004BActive Publication Date: 2026-04-21FOSHAN TAI DECORATION MATERIAL CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
FOSHAN TAI DECORATION MATERIAL CO LTD
Filing Date
2023-05-16
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

In existing technologies, the current aluminum panel splicing ceiling requires on-site cutting and size adjustment, and it is difficult to quickly adjust and lock it in place during on-site installation, which increases the difficulty of construction.

Method used

It uses bent decorative aluminum plates and rollers to adjust the position at any point. Combined with a limiting mechanism and a clamping mechanism, it uses a locking kit to drive the support shaft for locking, simplifying the construction process.

Benefits of technology

It improves the installation speed of aluminum panel ceilings, reduces the operational difficulty for construction workers, and enables rapid adjustment and fixation of aluminum panels at any position on the beam frame.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses an aluminum plate spliced ceiling beam structure and belongs to the field of building decoration. The aluminum plate spliced ceiling beam structure comprises a plurality of beam frames with sliding rails. The beam frames are arranged horizontally and parallel to each other, and a plurality of decorative aluminum plates are arranged between the beam frames. The middle part of the decorative aluminum plate is bent, and a plurality of supporting lugs are welded on the two sides of the decorative aluminum plate. The beam frame is provided with a support plate for supporting and mounting the supporting lug. The support plate penetrates a supporting shaft, the supporting shaft is provided with a roller connected with the sliding rail in a rolling mode, and a limiting mechanism for locking and limiting the rotation of the roller is arranged on the supporting shaft. The aluminum plate is bent to replace on-site cutting and size adjustment. The roller is used to adjust the position of the decorative aluminum plate on the beam frame. The installation speed is improved, and the operation difficulty of personnel construction is reduced.
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Description

Technical Field

[0001] This invention discloses an architectural decoration, and in particular relates to an aluminum panel spliced ​​ceiling beam structure. Background Technology

[0002] Ceiling decoration, or suspended ceiling, is an important part of interior design. Depending on the material of the decorative panels used, there are various ceiling structures. Among them, aluminum panel ceiling structures are the most commonly chosen for interior decoration. Aluminum panels are lightweight and durable, have good moisture resistance, oil resistance, and flame retardant properties, are aesthetically pleasing, and are convenient to transport and use, making them widely used in decorative ceilings.

[0003] The existing aluminum panel splicing hanging panels need to be cut and adjusted according to the installation site. Furthermore, after the aluminum panels are installed on the beam frame as decorative panels and locked with bolts, it is difficult to quickly adjust and lock them to any position on the beam frame. It is necessary to re-drill holes on the beam frame and re-lock them with bolts, which is both time-consuming and increases the difficulty of operation for personnel. Summary of the Invention

[0004] The purpose of this invention is to provide an aluminum plate splicing ceiling beam structure in order to solve the above-mentioned problems.

[0005] To achieve the above objectives, the present invention provides the following technical solution: an aluminum plate splicing ceiling beam structure, comprising several beam frames with slide rails, the beam frames being arranged horizontally and parallel to each other, and several decorative aluminum plates being installed between the beam frames, the decorative aluminum plates being bent in the middle, and several lugs being welded to both sides of the decorative aluminum plates, the beam frames being equipped with bracket plates for supporting and installing the lugs, the bracket plates having a support shaft passing through them, and the support shaft being equipped with rollers that are rotatably connected to the slide rails, and a limiting mechanism for locking and limiting the rotation of the rollers being installed on the support shaft.

[0006] By adopting the above technical solution, the decorative aluminum panels are bent instead of cut and adjusted on-site, and rollers are used to adjust the decorative aluminum panels at any position on the beam frame, which improves the installation speed and reduces the difficulty of operation for workers.

[0007] Preferably, the limiting mechanism includes a locking assembly sleeved on the support shaft, a compression spring sleeved between the locking assembly and the roller, and a clamping mechanism. The support plate has several threaded holes, the locking assembly has countersunk holes at the corresponding threaded holes, and the locking assembly is equipped with bolts for locking the support plate. The clamping mechanism drives the limiting clamping of the support shaft through the locking assembly.

[0008] By adopting the above technical solution, the clamping mechanism drives the limit clamping of the support shaft through the locking kit. The bolt locks the locking kit, and the locking kit descends along the support shaft to push the compression spring to compress and press the roller against the limit, while driving the clamping mechanism to clamp and limit the support shaft.

[0009] Preferably, the clamping mechanism includes a support base that is split into two parts and sleeved on the support shaft, a rotating arm that is hinged to the support base, and a sliding member that is slidably connected to the support base. The locking assembly and the sliding member are both hinged to a connecting arm that is hinged to the rotating arm. The support shaft has a slot. The sliding members are symmetrically arranged and have an arc-shaped claw at the front end that can be spliced ​​and engaged with the slot.

[0010] By adopting the above technical solution, when the lock assembly moves downward, the connecting arm drives the hinged rotating arm to rotate, while the connecting arm at the other end pushes the sliding member to slide close to the support shaft and clamps the slot through the arc-shaped claw.

[0011] Preferably, the clamping mechanism includes a connecting rod hinged to the locking assembly and a connecting sleeve fixedly connected to the connecting rod. The connecting sleeve is provided with a fixing sleeve that can be inserted into a countersunk hole. The side of the connecting rod away from the connecting sleeve is provided with a claw that can engage with a slot. A torsion spring is provided at the hinge between the locking assembly and the connecting rod.

[0012] By adopting the above technical solution, when the lock assembly moves downward, the hinged connecting rod overcomes the resistance of the torsion spring and drives the claw to lock the slot.

[0013] Preferably, the mating surfaces of the sliding member and the support base are chamfered, and the mating surfaces of the support base are chamfered by bevel.

[0014] By adopting the above technical solution, the chamfering treatment of the support base ensures that the sliding part slides horizontally along the plane without tilting or misaligning, and prevents the arc-shaped claw from misaligning with the slot.

[0015] Preferably, the lug has a through hole, and the support plate is welded with a stud that can pass through the through hole, and the stud is locked to the lug by a nut.

[0016] By adopting the above technical solution, the studs provide support for the lugs, and the nuts on the studs of the lugs of the module can be removed according to the position of the decorative aluminum plate, so that the decorative aluminum plate can be quickly replaced and repaired.

[0017] Preferably, the top of the support shaft has a lifting hole for installing slings.

[0018] By adopting the above technical solution, the lifting hole makes it easy for installers to thread the cable and install the suspension cable onto the support shaft.

[0019] Compared with the prior art, the beneficial effects of the present invention are:

[0020] The decorative aluminum panels are bent instead of cut and adjusted on-site, and rollers are used to adjust the panels to any position on the beam frame, which improves the installation speed and reduces the difficulty of operation for workers. The clamping mechanism drives the limit clamping support shaft through the locking kit. The bolts lock the locking kit, and the locking kit descends along the support shaft to push the compression spring to compress and press the roller against the limit. This ensures that the decorative aluminum panels can be adjusted to the appropriate position for limit fixation. Attached Figure Description

[0021] Figure 1 A schematic diagram of an aluminum panel spliced ​​ceiling beam structure. Figure 1 ;

[0022] Figure 2 A schematic diagram of an aluminum panel spliced ​​ceiling beam structure. Figure 2 ;

[0023] Figure 3 This is a partial sectional view of Scheme 1;

[0024] Figure 4 The exploded view shows the clamping mechanism and the limiting mechanism in Scheme 1;

[0025] Figure 5 This is a schematic diagram of the clamping mechanism and the limiting mechanism in Scheme 2;

[0026] Figure 6 This is an exploded view of the clamping mechanism and the limiting mechanism in Scheme 2;

[0027] Reference numerals: 1. Sling; 2. Beam frame; 3. Decorative aluminum plate; 4. Compression spring; 5. Roller; 6. Support plate; 7. Stud; 8. Locking kit; 9. Clamping mechanism; 10. Lug; 11. Rotating arm; 12. Support base; 13. Support shaft; 14. Connecting arm; 15. Slot; 16. Arc-shaped claw; 17. Sliding component; 18. Connecting rod; 19. Connecting sleeve; 20. Fixing sleeve; 21. Claw component. Detailed Implementation

[0028] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. In this description, it should be understood that the terms "upper," "lower," "front," "rear," "left," "right," "top," "bottom," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the present invention. Obviously, the described embodiments are only some embodiments of the present invention, 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.

[0029] A type of aluminum panel spliced ​​ceiling beam structure, such as Figures 1-2 As shown, the system includes several beam frames 2 with slide rails. The beam frames 2 are arranged horizontally and parallel to each other. Several decorative aluminum plates 3 are installed between the beam frames 2. The decorative aluminum plates 3 are bent in the middle and several lugs 10 are welded on both sides of the decorative aluminum plates 3. The beam frames 2 are equipped with bracket plates 6 for supporting and installing the lugs 10. The bracket plates 6 have a support shaft 13 through them. The support shaft 13 is equipped with rollers 5 that are rotatably connected to the slide rails. The support shaft 13 is equipped with a limiting mechanism for locking and limiting the rotation of the rollers 5.

[0030] The limiting mechanism includes a locking kit 8 sleeved on the support shaft 13, a compression spring 4 sleeved between the locking kit 8 and the roller 5, and a clamping mechanism 9. The support plate 6 has several threaded holes, the locking kit 8 has countersunk holes at the corresponding threaded holes, and the locking kit 8 is equipped with bolts to lock the support plate 6. The clamping mechanism 9 drives the limiting clamping of the support shaft 13 through the locking kit 8. The bolt locks the locking kit 8. The locking kit 8 descends along the support shaft 13, pushing the compression spring 4 to compress and press the roller 5 against the limiting position. At the same time, it drives the clamping mechanism 9 to clamp and limit the support shaft 13.

[0031] The lug 10 has a through hole, and the bracket plate 6 is welded with a stud 7 that can pass through the through hole. The stud 7 is locked to the lug 10 by a nut. The stud 7 provides support for the lug 10. The nut on the stud 7 of the lug 10 of the module can be removed according to the position of the decorative aluminum plate 3, so that the decorative aluminum plate 3 can be quickly replaced and repaired.

[0032] The support shaft 13 has a lifting hole at the top for installing the sling 1. The lifting hole makes it easy for installers to thread the sling 1 onto the support shaft 13.

[0033] Option 1: As Figures 3-4As shown, the clamping mechanism 9 includes a support base 12 that is split into two parts and sleeved on the support shaft 13, a rotating arm 11 that is hinged to the support base 12, and a sliding member 17 that is slidably connected to the support base 12. The locking kit 8 and the sliding member 17 are both hinged to a connecting arm 14 that is hinged to the rotating arm 11. The support shaft 13 has a slot 15. The sliding member 17 is symmetrically arranged and has an arc-shaped claw 16 at its front end that can be spliced ​​and locked into the slot 15. When the locking kit 8 moves downward, it drives the hinged rotating arm 11 to rotate through the connecting arm 14. The connecting arm 14 at the other end pushes the sliding member 17 to slide close to the support shaft 13 and locks the slot 15 through the arc-shaped claw 16.

[0034] The sliding surfaces of the slider 17 and the support base 12 are chamfered, and the sliding surfaces of the support base 12 are chamfered. The chamfering of the support base 12 ensures that the slider 17 slides horizontally along the plane without tilting or misaligning, and prevents the arc-shaped claw 16 from misaligning with the slot 15.

[0035] Option 2: Figures 5-6 As shown, the clamping mechanism 9 includes a connecting rod 18 hinged to the locking assembly 8 and a connecting sleeve 19 fixedly connected to the connecting rod 18. The connecting sleeve 19 is provided with a fixed sleeve 20 that can be inserted into a countersunk hole. The side of the connecting rod 18 away from the connecting sleeve 19 is provided with a claw 21 that can engage with the slot 15. A torsion spring is provided at the hinge between the locking assembly 8 and the connecting rod 18. When the locking assembly 8 moves downward, it drives the hinged connecting rod 18 to overcome the resistance of the torsion spring and drive the claw 21 to clamp the slot 15.

[0036] Installation process: The decorative aluminum plate 3 and the limiting mechanism are installed in modules. First, the interval of the beam frame 2 is measured. The decorative aluminum plate 3 is bent and adjusted according to the interval distance. The support shaft 13 is then connected and installed with the compression spring 4, the bracket plate 6, and the locking kit 8 in sequence. Then, the connecting arm 14 and the rotating arm 11 are installed, and the components are hinged together by pins. Then, the sliding part 17 is slidably assembled along the support base 12. The bolts are screwed into the threaded holes of the bracket plate 6 through the countersunk part. The whole assembly is then assembled with the beam frame 2. The roller 5 is slidably installed along the slide rail, and the bracket plate 6 is slidably inserted into the beam frame 2. After the through hole of the bent and adjusted decorative aluminum plate 3 is fitted into the stud 7, it is locked with a nut. The roller 5 drives the whole assembly on the beam. The bolts are tightened after the slide rail of frame 2 is adjusted to a suitable position. When tightening, the locking assembly 8 is close to the bracket plate 6 along the support shaft 13. The compression spring 4 is compressed and transmits the force to the roller 5 to limit its rotation. In scheme one, at this time, the hinged connecting arm 14 drives the rotating arm 11 to rotate and drive the arc-shaped claw 16 of the sliding part 17 to approach the slot 15 of the support shaft 13 to lock and limit it, thus completing the installation. Then, the entire decorative ceiling beam can be hoisted by the sling 1. In scheme two, at this time, the hinged connecting rod 18 overcomes the resistance force generated by the torsion spring and drives the claw 21 to approach the slot 15 of the support shaft 13 to lock and limit it, thus completing the installation. Then, the entire decorative ceiling beam can be hoisted by the sling 1.

[0037] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

[0038] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. An aluminum plate spliced suspended beam structure, comprising a plurality of beam frames (2) with sliding rails, the beam frames (2) are arranged horizontally and parallel to each other, and a plurality of decorative aluminum plates (3) are installed between the beam frames (2), characterized in that: The decorative aluminum plate (3) is bent in the middle and several lugs (10) are welded on both sides of the decorative aluminum plate (3). The beam frame (2) is equipped with a bracket plate (6) for supporting and installing the lugs (10). The bracket plate (6) has a support shaft (13) through it. The support shaft (13) is equipped with a roller (5) that is tactilely connected to the slide rail. The support shaft (13) is equipped with a limiting mechanism for the rotation of the locking limiting roller (5). The limiting mechanism includes a locking kit (8) sleeved on the support shaft (13), a compression spring (4) sleeved between the locking kit (8) and the roller (5), and a clamping mechanism (9). The support plate (6) has several threaded holes, the locking kit (8) has countersunk holes at the corresponding threaded holes, and the locking kit (8) is equipped with bolts to lock the support plate (6). The clamping mechanism (9) drives the limiting clamping of the support shaft (13) through the locking kit (8).

2. The aluminum plate spliced ceiling beam structure according to claim 1, characterized in that: The clamping mechanism (9) includes a support base (12) that is split into two parts and sleeved on the support shaft (13), a rotating arm (11) that is hinged to the support base (12), and a sliding member (17) that is slidably connected to the support base (12). The locking kit (8) and the sliding member (17) are both hinged to a connecting arm (14) that is hinged to the rotating arm (11). The support shaft (13) has a slot (15). The sliding member (17) is symmetrically arranged and has an arc-shaped claw (16) at the front end that can be spliced ​​and engaged with the slot (15).

3. The aluminum plate spliced ceiling beam structure according to claim 1, characterized in that: The clamping mechanism (9) includes a connecting rod (18) hinged to the locking assembly (8) and a connecting sleeve (19) fixedly connected to the connecting rod (18). The connecting sleeve (19) is provided with a fixed sleeve (20) that can be inserted into a countersunk hole. The connecting rod (18) is provided with a claw (21) that can engage with a slot (15) on the side away from the connecting sleeve (19). A torsion spring is provided at the hinge between the locking assembly (8) and the connecting rod (18).

4. The aluminum plate spliced ceiling beam structure according to claim 2, characterized in that: The sliding surface of the sliding member (17) and the support base (12) is chamfered, and the sliding surface of the support base (12) is chamfered by a bevel.

5. The aluminum plate spliced ceiling beam structure according to claim 1, characterized in that: The lug (10) has a through hole, and the bracket plate (6) is welded with a stud (7) that can pass through the through hole, and the stud (7) is locked to the lug (10) by a nut.

6. The aluminum plate spliced ceiling beam structure according to any one of claims 1-5, characterized in that: The top of the support shaft (13) is provided with a lifting hole for installing the sling (1).

Citation Information

Patent Citations

  • Suspended ceiling assembly

    CA2333813A1

  • Suspended ceiling convenient to disassemble

    CN211447442U