A profile wing-shaped high-efficiency ceiling lamp

By designing adjustment devices and adjustable wing-shaped roof lamps in profile wing-shaped high-light-efficient ceiling lamps, automatic adjustment of the illumination range and angle is achieved, solving the problem of limited illumination range and angle of existing equipment, and improving the applicability and efficiency of lighting.

CN118980074BActive Publication Date: 2025-06-10JIANGSU JIEMA OPTOELECTRONICS TECH CO LTD
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Patent Information

Application Number
CN202411219540.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-09-02
Publication Date
2025-06-10
Estimated Expiration
2044-09-02

AI Technical Summary

Technical Problem

When used, the existing profile wing-shaped high-light-efficient ceiling lights have limited exposure range and angle, and multiple sets of light groups or manual adjustments are required, which consumes manpower.

Method used

A profile wing-shaped high-light ceiling lamp including an adjustment device is designed. The adjustable wing-shaped ceiling lamp device is connected to the inner side of the adjustment device, and the automatic adjustment of the illumination range and angle is achieved through a motor-driven transmission assembly.

Benefits of technology

Flexible adjustment of illumination range and angle is achieved, reducing manual intervention and improving the applicability and efficiency of lighting.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a profile wing-shaped high-efficiency ceiling lamp, which relates to the field of ceiling lamps and includes an adjustment device and an adjustable wing-shaped ceiling lamp device. By setting the adjustable wing-shaped ceiling lamp device, the adjustable wing-shaped ceiling lamp device is internally provided with two groups of main ceiling lamp plates and six groups of auxiliary ceiling lamp plates in the shape of wings. Each group of lamp plates can emit light, and each group of lamp plates can be unfolded and combined driven by a motor. Unfolding realizes the maximum irradiation range, and adjustment of the irradiation range can be realized when combined, with strong applicability. And this device is connected to the adjustment device. The adjustment device is internally provided with two independent motors, which respectively drive the transmission components to realize the circumferential adjustment and angle adjustment of the irradiation position, with automatic operation, without manual adjustment, and a large adjustment range.
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Description

Technical Field

[0001] The present invention relates to the field of ceiling lights, and particularly to a profile wing-shaped high-efficiency ceiling light. Background Art

[0002] A high-efficiency ceiling light refers to a lighting device with high luminous efficiency (i.e., a high ratio of high light output to low energy consumption), which is specifically used for places such as ceilings or high ceilings, such as factories, warehouses, gymnasiums, etc. High-efficiency ceiling lights usually adopt high-efficiency light sources, such as LEDs, to provide a strong lighting effect while reducing energy consumption. Their design takes into account the uniform distribution of light and anti-glare to ensure good lighting effects in large-area places. High-efficiency ceiling lights usually have the characteristics of long life, low maintenance, and strong durability, so they are widely used in environments that require high-intensity and long-time lighting. The profile wing-shaped high-efficiency ceiling light uses a wing-shaped profile to install the lighting components to improve the lighting effect in the shed. During the actual use of the profile wing-shaped high-efficiency ceiling light, the following problems exist: it is of a single-wing shape, and the irradiation range and angle are limited during use. Multiple groups of lamp sets need to be installed, or manual adjustment is required, which is relatively labor-consuming. Summary of the Invention

[0003] Therefore, in order to solve the above deficiencies, the present invention provides a profile wing-shaped high-efficiency ceiling light.

[0004] To achieve the above object, the present invention adopts the following technical solutions: A profile wing-shaped high-efficiency ceiling light includes an adjustment device, and an adjustable wing-shaped ceiling light device is connected to the inner side of the adjustment device. The adjustable wing-shaped ceiling light device adjusts its position along with the adjustment device, and the adjustable wing-shaped ceiling light device realizes self-adjustment of the light-emitting area;

[0005] The adjustment device includes a fixed ring with a chute opened on the inner side, a first motor arranged on the top of the fixed ring, a transmission box arranged on the inner side of the fixed ring, support arms arranged on both sides of the transmission box, support blocks arranged on the inner sides of the support arms and connected to the adjustable wing-shaped ceiling light device, and a second motor arranged on the top of the transmission box.

[0006] Preferably, a driving gear is arranged at the left end inside the fixed ring, the driving gear meshes with a toothed ring on the right side, the toothed ring is movably embedded inside the chute, and the inner side of the toothed ring is connected to the transmission box.

[0007] Preferably, a driving bevel gear is arranged in the middle of the transmission box, the middle of the driving bevel gear is connected to the output shaft of the second motor, the bottom of the driving bevel gear meshes with a driven bevel gear, a transmission shaft is arranged in the middle of the driven bevel gear, and the front and rear ends of the transmission shaft penetrate through the transmission box and are connected to the support arms.

[0008] Preferably, the adjustable wing-shaped shed lamp device includes a fixing block inside the connecting support block, a third motor provided on the right side of the fixing block, and two sets of transmission gears provided on the left side of the fixing block. The two sets of transmission gears mesh with each other. The third motor drives one set of transmission gears to rotate, and the transmission gears can drive the other set of transmission gears to rotate accordingly. The middle parts of the two sets of transmission gears are respectively connected with a main shed lamp board, two sets of limiting rods provided at the upper end outside the fixing block, an auxiliary shed lamp board connected to the main shed lamp board, sliding columns provided on the left side of the main shed lamp board and the auxiliary shed lamp board, and a limiting member provided in the middle of the other side of the auxiliary shed lamp board.

[0009] Preferably, there are six sets of the auxiliary shed lamp boards, three sets are provided at each of the left and right ends, the three sets are stacked, and their upper ends are all circular. They are sequentially hinged in a stacked manner between the transmission gears and the fixing block.

[0010] Preferably, an arc-shaped guiding groove is formed in the middle of the auxiliary shed lamp board. The sliding column can be movably embedded into the guiding groove for sliding. A limiting member is locked at the other end of the guiding groove. The guiding grooves are all formed in the three sets of auxiliary shed lamp boards, and the limiting members and sliding columns corresponding to the guiding grooves are also sequentially arranged.

[0011] Preferably, a convex member is fixed at the inner end near the top of the topmost auxiliary shed lamp board. A convex column is embedded in the convex member. A convex column is also fixed at the lower right end of the topmost auxiliary shed lamp board.

[0012] Preferably, clamping grooves are formed at the diagonal positions at the top and bottom of the limiting rod. The two convex columns can be correspondingly embedded into the clamping grooves for limiting.

[0013] Preferably, the main shed lamp board and the three sets of auxiliary shed lamp boards form a square shape after being unfolded.

[0014] Preferably, a lamp frame profile is embedded in the main shed lamp board. Components for efficient light emission are connected inside the lamp frame profile. Similarly, lamp frame profiles and light-emitting components with the same connection method are also provided inside the other three sets of auxiliary shed lamp boards.

[0015] The beneficial effects of the present invention: By providing an adjustable wing-shaped shed lamp device, the adjustable wing-shaped shed lamp device is internally provided with two sets of main shed lamp boards and six sets of auxiliary shed lamp boards in the shape of wings. Each set of lamp boards can emit light. Each set of lamp boards can be unfolded and combined under the drive of a motor. Unfolding realizes the maximum irradiation range, and adjustment of the irradiation range can be realized during combination. The applicability is strong; and the device is connected to an adjustment device. The adjustment device is internally provided with two independent motors, which respectively drive the transmission components to realize the circumferential adjustment and angle adjustment of the irradiation position. The operation is automated, manual adjustment by humans is not required, and the adjustment range is large. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 is a schematic structural diagram of the present invention;

[0017] Figure 2 is a schematic structural diagram of the adjusting device of the present invention;

[0018] Figure 3 is a schematic internal structure diagram of the fixing ring of the present invention;

[0019] Figure 4 is a schematic structural diagram of the transmission box of the present invention;

[0020] Figure 5 is a schematic structural diagram of the adjustable wing-shaped ceiling lamp device of the present invention;

[0021] Figure 6 is a schematic structural diagram of another perspective of the adjustable wing-shaped ceiling lamp device of the present invention;

[0022] Figure 7 is a schematic partial cross-sectional structure diagram of the main ceiling lamp board of the present invention. Wherein: adjusting device - 1, adjustable wing-shaped ceiling lamp device - 2, fixing ring - 11, first motor - 12, transmission box - 13, support arm - 14, support block - 15, second motor - 16, driving gear - 11a, gear ring - 11b, driving bevel gear - 13a, driven bevel gear - 13b, transmission shaft - 13c, fixing block - 21, third motor - 22, transmission gear - 23, main ceiling lamp board - 24, limit rod - 25, auxiliary ceiling lamp board - 26, sliding column - 27, limiting member - 28, convex member - 29, lamp frame profile - 24a, LED assembly - 24b. Specific Embodiments

[0023] In order to further explain the technical solution of the present invention, the following will be elaborated in detail through specific embodiments.

[0024] Please refer to Figure 1 , the present invention provides a profile wing-shaped high-efficiency ceiling lamp, including an adjusting device 1. The inner side of the adjusting device 1 is connected to an adjustable wing-shaped ceiling lamp device 2. The adjustable wing-shaped ceiling lamp device 2 can follow the adjusting device 1 for position adjustment, and the adjustable wing-shaped ceiling lamp device 2 can achieve self-adjustment to change the light-emitting area.

[0025] Please refer to Figures 2 - 4 , the adjusting device 1 includes a fixing ring 11. A chute is provided inside the fixing ring 11. Four ends of the top of the fixing ring 11 are fixed with hanging rings, and the hanging rings can be connected to hanging ropes to be hung on the top inside the shed. A first motor 12 is installed at the left end of the top of the fixing ring 11. A transmission box 13 is arranged inside the fixing ring 11. Support arms 14 are arranged at the front and rear ends of the transmission box 13. The inner sides of the support arms 14 are fixed to support blocks 15. The inner sides of the support blocks 15 are connected to the adjustable wing-shaped ceiling lamp device 2. A second motor 16 is arranged in the middle of the top of the transmission box 13;

[0026] At the left end inside the fixed ring 11, there is a driving gear 11a. The right side of the driving gear 11a meshes with a gear ring 11b. The gear ring 11b is movably embedded inside the sliding groove, and the inner side of the gear ring 11b is connected to a transmission box 13;

[0027] In the middle of the transmission box 13, there is a driving bevel gear 13a. The middle of the driving bevel gear 13a is connected to the output shaft of the second motor 16. The bottom of the driving bevel gear 13a meshes with a driven bevel gear 13b. In the middle of the driven bevel gear 13b, there is a transmission shaft 13c. The front and rear ends of the transmission shaft 13c penetrate through the transmission box 13 and are connected to a support arm 14. The support arm 14 can rotate along with the transmission shaft 13c, thereby realizing the adjustment of the angular position of the adjustable wing-shaped ceiling lamp device 2.

[0028] Please refer to Figures 5 - 7 As shown in the figure, the adjustable wing-shaped ceiling lamp device 2 includes a fixed block 21 provided inside the support block 15. On the right side of the fixed block 21, there is a third motor 22. On the left side of the fixed block 21, there are two groups of transmission gears 23. The two groups of transmission gears 23 mesh with each other. The middle of one group of transmission gears 23 is connected to the output shaft of the third motor 22. The middle parts of the two groups of transmission gears 23 are respectively connected to a main ceiling lamp plate 24. At the upper end outside the fixed block 21, there is a limiting rod 25. In the middle of the outside of the main ceiling lamp plate 24, there is a sliding column 27. The inner side of the sliding column 27 contacts an auxiliary ceiling lamp plate 26. There are a total of six groups of auxiliary ceiling lamp plates 26, with three groups arranged at each of the left and right ends. The three groups are stacked, and their upper ends are all circular. They are sequentially hinged between the transmission gears 23 and the fixed block 21 in a stacked manner. An arc-shaped guiding groove is opened in the middle of the auxiliary ceiling lamp plate 26. The sliding column 27 can be movably embedded into the guiding groove for sliding. At the other end of the guiding groove, there is a limiting member 28, which can limit the sliding sliding column 27. At the inner end near the top of the topmost auxiliary ceiling lamp plate 26, there is a convex member 29. A convex column is embedded inside the convex member 29. At the lower right end of the topmost auxiliary ceiling lamp plate 26, there is also a convex column;

[0029] In the interiors of the three groups of auxiliary ceiling lamp plates 26, guiding grooves are opened, and limiting members 28 and sliding columns 27 corresponding to the guiding grooves are also sequentially arranged;

[0030] At the top and the diagonal positions at the bottom of the limiting rod 25, there are clamping grooves, and the two convex columns can be correspondingly embedded into the clamping grooves for limiting;

[0031] During the movement of the main ceiling lamp plate 24, under the action of the sliding column 27 and the limiting member 28 in sequence, the other three groups of auxiliary ceiling lamp plates 26 overlap and block the main ceiling lamp plate 24. After the main ceiling lamp plate 24 and the three groups of auxiliary ceiling lamp plates 26 are unfolded, they form a square shape. After being combined, the main ceiling lamp plate 24 can block the three groups of auxiliary ceiling lamp plates 26;

[0032] The surfaces of the main ceiling lamp panel 24 and the auxiliary ceiling lamp panel 26 are both semi-transparent and can transmit light. Inside the main ceiling lamp panel 24, a lamp frame profile 24a is embedded. Inside the lamp frame profile 24a, an LED assembly 24b for efficient light emission is connected. Inside the other three auxiliary ceiling lamp panels 26, lamp frame profiles 24a and LED assemblies 24b with the same connection method are also provided. The lamp frame profile 24a is wing-shaped.

[0033] The specific implementation process is as follows:

[0034] When the high-efficiency ceiling lamp needs to be used, first install the fixing ring 11 on the top inside the shed by connecting the hanging ring with a suspension rope, and the installation can be completed.

[0035] By starting the LED assembly 24b, the main ceiling lamp panel 24 and the auxiliary ceiling lamp panel 26 can transmit light to achieve lighting. When the irradiation range needs to be adjusted, start the third motor 22 to work. The third motor 22 drives a set of transmission gears 23 to rotate, and the transmission gears 23 can drive another set of transmission gears 23 to rotate accordingly. The main ceiling lamp panel 24 connected in the middle can move accordingly. During the movement, the main ceiling lamp panel 24 covers the auxiliary ceiling lamp panel 26 by applying force to the limiting member 28 through the sliding column 27 sliding in the guiding groove, so as to cover one or more groups of auxiliary ceiling lamp panels 26 according to the needs to adjust the irradiation range.

[0036] When the irradiation angle and position need to be adjusted, start the first motor 12 to work. The first motor 12 drives the driving gear 11a to rotate. During the rotation of the driving gear 11a, the toothed ring 11b can be driven to rotate. When the toothed ring 11b rotates, the transmission box 13 can be driven to move accordingly, and a circular motion is achieved during the movement to adjust the irradiation position of the lamp panel. When the angle needs to be adjusted, start the second motor 16 to work. The second motor 16 drives the driving bevel gear 13a to make the driven bevel gear 13b rotate. The driven bevel gear 13b drives the transmission shaft 13c to rotate, and the transmission shaft 13c can drive the support arm 14 to move, so as to adjust the irradiation angle position of the lamp panel. The above are only the preferred examples of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. A profile wing-shaped high-light-efficiency ceiling light, characterized in that: It includes an adjusting device, the inner side of which is connected to an adjustable wing-shaped shed light device, the position of which is adjusted along with the adjusting device, and the adjustable wing-shaped shed light device realizes self-adjustment of the light-emitting area; The adjusting device comprises a fixing ring with a slide groove on the inner side, a first motor arranged on the top of the fixing ring, a transmission box arranged on the inner side of the fixing ring, support arms arranged on both sides of the transmission box, a support block arranged on the inner side of the support arms and connected to the adjustable wing-shaped shed light device, and a second motor arranged on the top of the transmission box; A driving gear is arranged at the left end of the fixed ring, the right side of the driving gear is meshed with the gear ring, the gear ring is movably embedded in the slide groove, and the inner side of the gear ring is connected to the transmission box; The adjustable wing-shaped shelf light device includes a fixed block connected to the inner side of the support block, a third motor arranged on the right side of the fixed block, and two sets of transmission gears arranged on the left side of the fixed block. The two sets of transmission gears are meshed with each other. The third motor drives one set of transmission gears to rotate, and the transmission gears can drive the other set of transmission gears to follow the rotation. The middle of the two sets of transmission gears are respectively connected to the main shelf light board, two sets of limit rods arranged on the upper end of the outer side of the fixed block, the auxiliary shelf light board connected to the main shelf light board, the sliding column arranged on the left side of the main shelf light board and the auxiliary shelf light board, and the limit piece arranged in the middle of the other side of the auxiliary shelf light board.

2. According to claim 1, a profile wing-shaped high-light-efficiency ceiling lamp, characterized in that: A driving bevel gear is arranged in the middle of the transmission box, the middle of the driving bevel gear is connected to the output shaft of the second motor, the bottom of the driving bevel gear is meshed with the driven bevel gear, a transmission shaft is arranged in the middle of the driven bevel gear, and the front and rear ends of the transmission shaft pass through the transmission box to connect the support arm.

3. According to claim 1, a profile wing-shaped high-light-efficiency ceiling lamp, characterized in that: The auxiliary shed light panels are provided with six groups in total, with three groups at each of the left and right ends. The three groups are stacked, and their upper ends are all circular and are hinged in sequence between the transmission gear and the fixed block in a stacked state.

4. According to claim 3, a profile wing-shaped high-light-efficiency ceiling lamp, characterized in that: An arc-shaped guide groove is opened in the middle of the auxiliary shed light board, and the sliding column can be movably embedded in the guide groove for sliding. The other end of the guide groove is locked with a limiting piece. The three groups of auxiliary shed light boards are all provided with guide grooves inside, and limiting pieces and sliding columns corresponding to the guide grooves are also arranged in sequence.

5. According to claim 4, a profile wing-shaped high-light-efficiency ceiling lamp, characterized in that: A convex piece is fixed on the inner end of the top of the auxiliary shed light board at the uppermost end, and a convex column is embedded in the convex piece. A convex column is also fixed on the lower end of the right side of the auxiliary shed light board at the uppermost end.

6. According to claim 5, a profile wing-shaped high-light-efficiency ceiling lamp, characterized in that: The top and bottom diagonal positions of the limiting rod are provided with card slots, and the two groups of protruding columns can be correspondingly embedded in the card slots for limiting.

7. According to claim 3, a profile wing-shaped high-light-efficiency ceiling lamp, characterized in that: The main shed light panel and the three groups of auxiliary shed light panels form a square shape after being unfolded.

8. According to claim 7, a profile wing-shaped high-light-efficiency ceiling lamp, characterized in that: The main shed light panel has a lamp frame profile embedded inside, and the lamp frame profile is internally connected with components for efficient light emission. The other three groups of auxiliary shed light panels are also provided with lamp frame profiles and light emitting components with the same connection method.

Citation Information

Patent Citations

  • Angle-adjustable LED illuminating lamp device

    CN108534008A

  • Concatenation formula lamp plate

    CN207471420U