Perforated aluminum plate suspended ceiling structure with lighting function

By introducing lifting and leveling components into the perforated aluminum ceiling structure, combined with the design of pins and elastic elements, multi-angle adjustment of the lamps can be achieved, solving the problem of fixed lamp positions that cannot be adjusted, and improving installation efficiency and the aesthetic effect of lighting.

CN223922484UActive Publication Date: 2026-02-17AIMAIOU(SHANGHAI) ARCHITECTURE DESIGN CONSULTATION CO LTD
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Patent Information

Application Number
CN202520366480.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-04
Publication Date
2026-02-17
Estimated Expiration
2035-03-04

AI Technical Summary

Technical Problem

In existing perforated aluminum panel ceiling structures, the position of lights cannot be flexibly adjusted, failing to meet the personalized adjustments required by different installation environments and customer needs.

Method used

The first adjustment component drives the first lamp to be raised and lowered, and the second adjustment component drives the second lamp to be leveled. Combined with the design of the pin and the elastic element, the lamp position can be precisely adjusted. Through the cooperation of the lifting sleeve and the rotating ring, the lamp can be moved and rotated at multiple angles.

Benefits of technology

It enables flexible adjustment of the light source position to meet different installation environments and customer needs, thereby improving installation efficiency and the artistic effect of light display.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a perforated aluminum plate suspended ceiling structure with a lighting function, and relates to the technical field of building decoration, the perforated aluminum plate suspended ceiling structure comprises a plurality of suspenders arranged at the bottom of a building floor, a keel frame is arranged at the bottoms of the suspenders, an aluminum plate is fixedly arranged at the bottom of the keel frame, and a plurality of through holes are formed in the aluminum plate; a plurality of first lamps are slidably arranged on the hanging rod in the vertical direction of the hanging rod, a first adjusting assembly is arranged on the hanging rod, a plurality of second lamps are slidably arranged on the keel frame in the horizontal direction of the keel frame, and a second adjusting assembly is arranged on the keel frame. Lifting adjustment of the first lamps is achieved through the first adjusting assemblies, horizontal adjustment of the second lamps is achieved through the second adjusting assemblies, so that the position of the lamp source can be adjusted according to different installation environments and requirements of different clients, workers can conveniently conduct installation and operation, and the lamp source shows different artistic effects.
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Description

Technical Field

[0001] This application relates to the field of architectural decoration technology, and in particular to a perforated aluminum panel ceiling structure with lighting function. Background Technology

[0002] Perforated aluminum panels are a new product that reduces noise and also serves a decorative purpose. Aluminum alloy perforated panels are lightweight, heat-resistant, corrosion-resistant, fire-resistant, moisture-proof, shock-resistant, and chemically stable, making them suitable for public buildings such as hotels, restaurants, cinemas, and broadcasting studios, as well as mid- to high-end residential buildings.

[0003] A perforated aluminum ceiling structure with lighting functionality includes steel rods, a frame, and perforated panels. The ceiling is installed under the building floor slab via the steel rods, with the frame fixed to the bottom of the rods and the perforated panels fixed to the bottom of the frame. Multiple round holes are cut into the perforated panels, and multiple lights are fixedly installed on the frame. Light shines through the perforated panels, creating illumination and enhancing the ceiling's aesthetics. However, in actual use, the light installation positions vary depending on the installation environment and customer needs, requiring adjustment. Current technology, however, fixes the fixed positions of the lights, thus preventing flexible adjustment and repositioning. Utility Model Content

[0004] To facilitate the adjustment of the light source position, this application provides a perforated aluminum panel ceiling structure with lighting function.

[0005] This application provides a perforated aluminum panel ceiling structure with lighting function, which adopts the following technical solution:

[0006] A perforated aluminum panel ceiling structure with lighting function includes multiple suspension rods installed at the bottom of a building floor slab. A frame is installed at the bottom of each suspension rod, and an aluminum plate is fixedly installed at the bottom of the frame. Multiple through holes are formed in the aluminum plate. Multiple first light fixtures are slidably mounted on each suspension rod along its vertical direction. A first adjustment component is installed on each suspension rod to adjust the height and movement of the first light fixtures. Multiple second light fixtures are slidably mounted on the frame along its horizontal direction. A second adjustment component is installed on the frame to adjust the horizontal movement of the second light fixtures.

[0007] By adopting the above technical solution, multiple first lamps can be adjusted in height through the first adjustment component, and multiple second lamps can be adjusted in level through the second adjustment component. This allows the position of the light source to be adjusted according to different installation environments and different customer needs, making it convenient for staff to install and operate, and enabling the light source to display different artistic effects.

[0008] Preferably, the first adjustment component includes a lifting sleeve and a pin. The lifting sleeve is fitted onto the rod, and the pin is slidably disposed within the lifting sleeve. The rod has multiple insertion holes spaced apart along its vertical direction, and the pin is inserted into the insertion holes. The first lamp is disposed on the lifting sleeve.

[0009] By adopting the above technical solution, both the pin and the first lamp can move their positions along the vertical direction of the boom through the lifting sleeve, which facilitates the adjustment of the position of the first lamp. The lifting sleeve can be fixed by inserting the pin into the socket, which makes it easier for the staff to operate and install.

[0010] Preferably, a sliding frame is provided on the side wall of the lifting sleeve, the pin is slidably disposed in the lifting sleeve, a baffle is provided on the pin, and an elastic element is provided in the sliding frame on the side of the baffle away from the insertion hole.

[0011] By adopting the above technical solution, when the pin is pulled away from the socket, the pin drives the baffle to squeeze the elastic element, and at the same time the pin disengages from the socket. After confirming the adjustment position, the pin is released. At this time, the spring pushes the baffle to move towards the socket, and the baffle drives the pin to insert into the socket. This makes it easy for the staff to quickly adjust the position of the pin and improves work efficiency.

[0012] Preferably, a lifting plate is fixedly provided on the bottom of the lifting sleeve, and a first rotating ring is rotatably provided on the outer side wall of the lifting plate, with a plurality of first lamps spaced apart on the first rotating ring.

[0013] By adopting the above technical solution, the lifting sleeve drives the lifting plate to move along the vertical direction of the suspension rod. The lifting plate drives the first lamp to move vertically through the first rotating ring. At the same time, the first rotating ring drives the lifting plate to rotate along its own circumference, so that the first lamp can be adjusted in the vertical direction and can also rotate with the lifting plate, which facilitates multi-angle illumination of the light source and ensures that the ceiling lights present an aesthetic effect.

[0014] Preferably, a plurality of the first lamps are rotatably mounted on the side wall of the first rotating ring, and the plurality of the first lamps are arranged at equal intervals along the circumference of the first rotating ring.

[0015] By adopting the above technical solution, multiple first lamps are rotatably installed on the side wall of the first rotating ring, so that while the first lamps rotate with the first rotating ring, they can also rotate at different angles, thereby further realizing the lighting design effect, conforming to decorative aesthetics, and having greater promotion and application value.

[0016] Preferably, the second adjustment component includes a slide rail and a slider. The slide rail is fixedly mounted on the keel frame, and the slider is slidably mounted on the slide rail in a horizontal direction. The second lamp is mounted on the slider.

[0017] By adopting the above technical solution, the slider moves horizontally on the slide rail, and the slider drives the second lamp to move horizontally, so as to realize the adjustment function of the second adjustment component.

[0018] Preferably, the slider is provided with a movable rod, the top end of the movable rod is fixedly provided with a mounting plate, a second rotating ring is rotatably mounted on the mounting plate, and the second lamp is rotatably mounted on the second rotating ring.

[0019] By adopting the above technical solution, the slider drives the moving rod to move horizontally on the slide rail, the moving rod drives the second lamp to move horizontally, and at the same time the second rotating ring drives the second lamp to rotate. Since the second lamp is rotatably installed, the second lamp itself can also achieve multi-angle rotation, so that the position of the light source can be adjusted according to different installation environments and different customer needs, which facilitates multi-angle illumination of the light source and ensures that the ceiling lighting presents an aesthetic effect.

[0020] In summary, this application includes at least one of the following beneficial technical effects:

[0021] 1. The first adjustment component drives multiple first lamps to adjust vertically, and the second adjustment component drives multiple second lamps to adjust horizontally, so that the position of the light source can be adjusted according to different installation environments and different customer needs, which facilitates the installation and operation of staff and realizes different artistic effects of the light source.

[0022] 2. With the help of the elastic element, when the pin is pulled away from the socket, the pin drives the baffle to squeeze the elastic element, and at the same time the pin is disengaged from the socket. After confirming the adjustment position, the pin is released. At this time, the spring pushes the baffle to move towards the socket, and the baffle drives the pin to insert into the socket. This makes it easy for the staff to quickly adjust the position of the pin and improve work efficiency.

[0023] 3. Through the first rotating ring, the lifting sleeve drives the lifting plate to move along the vertical direction of the suspension rod. The lifting plate drives the first lamp to move vertically through the first rotating ring. At the same time, the first rotating ring drives the lifting plate to rotate along its own circumference, so that the first lamp can be adjusted in the vertical direction and can also rotate with the lifting plate, which facilitates multi-angle illumination of the light source and ensures that the ceiling lights present an aesthetic effect. Attached Figure Description

[0024] Figure 1 This is a schematic diagram of the overall structure of the perforated aluminum panel ceiling structure with lighting function in this application.

[0025] Figure 2This is a partial structural diagram of the perforated aluminum panel ceiling structure with lighting function in this application, to highlight the first adjustment component;

[0026] Figure 3 This is a partial structural diagram of the perforated aluminum panel ceiling structure with lighting function in this application, highlighting the second adjustment component.

[0027] Reference numerals: 1. Building floor slab; 2. Hanging rod; 3. Keel frame; 4. Aluminum plate; 5. Through hole; 6. First light fixture; 7. Second light fixture; 8. First adjusting component; 81. Lifting sleeve; 82. Pin; 9. Second adjusting component; 91. Slide rail; 92. Slider; 10. Insertion hole; 11. Slide frame; 12. Baffle; 13. Elastic element; 14. Lifting plate; 15. First rotating ring; 16. Moving rod; 17. Mounting plate; 18. Second rotating ring. Detailed Implementation

[0028] The following is in conjunction with the appendix Figures 1-3 This application will be described in further detail.

[0029] This application discloses a perforated aluminum panel ceiling structure with lighting function.

[0030] Reference Figure 1 , Figure 2 and Figure 3 A perforated aluminum ceiling structure with lighting function includes a suspension rod 2 installed at the bottom of a building floor slab 1, a keel frame 3, multiple first adjustment components 8, second adjustment components 9, a first lamp 6 and a second lamp 7. The top ends of the multiple suspension rods 2 are fixedly installed on the bottom wall of the building floor slab 1, and the keel frame 3 is fixedly installed at the bottom ends of the multiple suspension rods 2.

[0031] Multiple first adjustment components 8 are installed on the hanging rod 2, and multiple first lamps 6 are slidably installed on the hanging rod 2 through the first adjustment components 8. The multiple first lamps 6 can move along the vertical direction of the hanging rod 2, and the first adjustment components 8 drive the multiple first lamps 6 to be raised and lowered along the vertical direction of the hanging rod 2 for adjustment.

[0032] Multiple second adjustment components 9 are installed on the keel frame 3, and multiple second lamps 7 are slidably installed on the keel frame 3 through the second adjustment components 9. The multiple second lamps 7 can move along the horizontal direction of the keel frame 3, and the multiple second lamps 7 can be adjusted left and right along the horizontal direction of the keel frame 3 by the second adjustment components 9.

[0033] The aluminum plate 4 is fixedly installed on the bottom wall of the keel frame 3. The aluminum plate 4 has multiple through holes 5, which are of different sizes and irregularly arranged. The positions of the first lamp 6 and the second lamp 7 can be adjusted, so that the position of the light source can be adjusted according to different installation environments and different customer needs, which is convenient for staff to install and operate, and the through holes 5 can realize different artistic effects of the light source.

[0034] Reference Figure 2 The first adjusting component 8 includes a lifting sleeve 81 and a pin 82. The lifting sleeve 81 is slidably mounted on the boom 2 in a vertical direction. Multiple insertion holes 10 are formed on the side wall of the boom 2 in a vertical direction, and these holes are evenly distributed at equal intervals. The pin 82 is slidably mounted inside the lifting sleeve 81. A sliding frame 11 is fixedly mounted on the outer side wall of the lifting sleeve 81, and a baffle 12 is fixedly mounted on the pin 82, located inside the sliding frame 11. An elastic element 13 is installed inside the sliding frame 11 on the side of the baffle 12 away from the lifting sleeve 81. The pin 82 passes through the sliding frame 11, the elastic element 13, and the lifting sleeve 81 and is inserted into the insertion hole 10 on the boom 2. In this application, the elastic element 13 can be a spring.

[0035] When the position of the first lamp 6 needs to be adjusted, the pin 82 is pulled away from the side away from the socket 10. The pin 82 drives the baffle 12 to clamp the elastic element 13 through the sliding frame 11. At this time, the pin 82 is disengaged from the socket 10 and moves along the vertical direction of the lifting sleeve 81 along the rod 2.

[0036] After confirming the adjustment position, release the pin 82. At this time, the elastic element 13 pushes the baffle 12 to move closer to the boom 2. The baffle 12 pushes the pin 82 to move towards the adjusted insertion hole 10, and finally completes the precise insertion of the pin 82 and the adjusted insertion hole 10. This makes it easier for the staff to quickly adjust the position of the pin 82 and improve work efficiency.

[0037] A lifting plate 14 is fixedly installed at the bottom of the lifting sleeve 81. A first rotating ring 15 is rotatably installed on the outer side wall of the lifting plate 14. A first lamp 6 is rotatably installed on the side wall of the first rotating ring 15 through a damping rotating shaft, and multiple first lamps 6 are arranged at equal intervals along the circumference of the first rotating ring 15.

[0038] When the first lamp 6 is adjusted, the lifting sleeve 81 drives the lifting plate 14 and the first rotating ring 15 to move along the vertical direction of the hanging rod 2. The first rotating ring 15 drives the first lamp 6 to move up and down. At this time, the first rotating ring 15 can rotate along its own circumference. The first rotating ring 15 drives the first lamp 6 to rotate along its own circumference.

[0039] At the same time, the first lamp 6 rotates at different angles, so that the first lamp 6 can not only move up and down, but also rotate with the first rotating ring 15, and can also rotate itself, which facilitates multi-angle illumination of the light source, thereby further realizing the design of decorative aesthetics and ensuring that the ceiling lights present a beautiful effect.

[0040] Reference Figure 3 The second adjustment component 9 includes a slide rail 91 and a slider 92. The slide rail 91 is fixedly installed on the side wall of the keel frame 3, and the slider 92 is slidably installed on the slide rail 91 in the horizontal direction. A moving rod 16 is fixedly installed on the side wall of the slider 92, and a mounting plate 17 is fixedly installed at the top of the moving rod 16. A second rotating ring 18 is rotatably installed on the outer side wall of the mounting plate 17. Multiple second lamps 7 are rotatably installed on the outer periphery of the second rotating ring 18 through a damping rotating shaft, and the multiple second lamps 7 are arranged at equal intervals along the circumference of the second rotating ring 18.

[0041] When adjusting the second lamp 7, the slider 92 drives the moving rod 16 to move horizontally on the slide rail 91. The moving rod 16 drives the second lamp 7 to move horizontally, and at the same time, the moving rod 16 can drive the second lamp 7 to rotate.

[0042] The slider 92 can drive the second lamp 7 to slide in the horizontal direction, and the second rotating ring 18 can drive the second lamp 7 to rotate. Since the second lamp 7 is rotatably mounted on the second rotating ring 18, the second lamp 7 itself can also achieve multi-angle rotation, so that the position of the light source can be adjusted according to different installation environments and different customer needs, which facilitates multi-angle illumination of the light source and ensures that the ceiling lights present an aesthetic effect.

[0043] The implementation principle of a perforated aluminum plate 4 ceiling structure with lighting function in this application embodiment is as follows: When the first lamp 6 is adjusted, the lifting plate 14 drives the lifting sleeve 81 and the first rotating ring 15 to move along the vertical direction of the hanging rod 2. The first rotating ring 15 drives the first lamp 6 to move up and down. At this time, the first rotating ring 15 rotates along its own circumference, and the first rotating ring 15 drives the first lamp 6 to rotate along its own circumference.

[0044] At the same time, the first lamp 6 rotates at different angles, so that the first lamp 6 can not only move up and down, but also rotate with the first rotating ring 15, and can also rotate itself, which facilitates multi-angle illumination of the light source, thereby further realizing the design of decorative aesthetics and ensuring that the ceiling lights present a beautiful effect.

[0045] When adjusting the second lamp 7, the slider 92 drives the moving rod 16 to move horizontally on the slide rail 91, the moving rod 16 drives the second lamp 7 to move horizontally, and at the same time the second rotating ring 18 drives the second lamp 7 to rotate.

[0046] Since the second light fixture 7 is rotatably installed, it can also rotate at multiple angles, allowing the position of the light source to be adjusted according to different installation environments and customer needs. This facilitates multi-angle illumination of the light source and ensures that the ceiling lighting presents an aesthetically pleasing effect.

[0047] The above are merely optional embodiments of this disclosure and are not intended to limit this disclosure. Various modifications and variations can be made to this disclosure by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this disclosure should be included within the scope of protection of this disclosure.

Claims

1. A perforated aluminum panel ceiling structure having a lighting function, characterized by: The utility model relates to a building floor (1) bottom is equipped with a plurality of hanger bar (2), a plurality of hanger bar (2) bottom is equipped with keel frame (3), keel frame (3) bottom is fixedly equipped with aluminum plate (4), aluminum plate (4) is equipped with a plurality of through -hole (5), hanger bar (2) is equipped with a plurality of first lamps and lanterns (6) along the vertical direction of itself sliding, hanger bar (2) is equipped with first adjusting assembly (8), first adjusting assembly (8) is used for driving first lamps and lanterns (6) and carries out the lifting movement adjustment, keel frame (3) is equipped with a plurality of second lamps and lanterns (7) along the horizontal direction of itself sliding, keel frame (3) is equipped with second adjusting assembly (9), and second adjusting assembly (9) is used for driving second lamps and lanterns (7) and carries out the horizontal direction adjustment.

2. The perforated aluminum panel ceiling structure with lighting function according to claim 1, characterized in that: The first adjusting assembly (8) includes a lifting sleeve (81) and a latch (82), the lifting sleeve (81) is sleeved on the hanger bar (2), the latch (82) is slidingly arranged in the lifting sleeve (81), the hanger bar (2) is spaced apart along the vertical direction of itself and is provided with a plurality of insertion holes (10), and the latch (82) is inserted into the insertion hole (10), and the first lamps and lanterns (6) are arranged on the lifting sleeve (81).

3. The perforated aluminum panel ceiling structure with lighting function according to claim 2, characterized in that: The sidewall of the lifting sleeve (81) is provided with a sliding frame (11), the latch (82) is slidingly arranged in the lifting sleeve (81), the latch (82) is provided with a baffle (12), and the sliding frame (11) is provided with an elastic member (13) on the side away from the insertion hole (10).

4. The perforated aluminum panel ceiling structure with lighting function according to claim 2, characterized in that: The bottom of the lifting sleeve (81) is fixedly provided with a lifting disc (14), a first swivel ring (15) is rotatably arranged on the outer sidewall of the lifting disc (14), and a plurality of first lamps and lanterns (6) are arranged on the first swivel ring (15).

5. The perforated aluminum panel ceiling structure with lighting function according to claim 4, characterized in that: A plurality of first lamps and lanterns (6) are rotatably arranged on the sidewall of the first swivel ring (15), and a plurality of first lamps and lanterns (6) are equidistantly arranged along the circumference of the first swivel ring (15).

6. The perforated aluminum panel ceiling structure with lighting function according to claim 1, characterized in that: The second adjusting assembly (9) includes a sliding rail (91) and a sliding block (92), the sliding rail (91) is fixedly arranged on the keel frame (3), the sliding block (92) is slidingly arranged on the sliding rail (91) along the horizontal direction, and the second lamps and lanterns (7) are arranged on the sliding block (92).

7. The perforated aluminum panel ceiling structure with lighting function according to claim 6, characterized in that: The sliding block (92) is provided with a moving rod (16), the top end of the moving rod (16) is fixedly provided with a mounting disc (17), a second swivel ring (18) is rotatably mounted on the mounting disc (17), and the second lamps and lanterns (7) are rotatably arranged on the second swivel ring (18).