Inverted wall lamp structure

By designing the telescopic and flip-up tube brackets for the inverted wall lamp, the problem of inconvenient cable routing in existing inverted wall lamps is solved, achieving flexible adjustment of the lamp body and a safe and aesthetically pleasing effect.

CN223649226UActive Publication Date: 2025-12-09XIAN XINGPAI CONSTRUCTION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520176797.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-30
Publication Date
2025-12-09
Estimated Expiration
2035-01-30

AI Technical Summary

Technical Problem

The existing inverted wall lamps have inconvenient wiring, resulting in poor safety and lack of aesthetics.

Method used

The design combines telescopic and flip-up pipe rack components. Through the use of hollow structure and corrugated flexible tubing, the connection cable is internally pulled. Combined with the use of sealing sleeves, this ensures the internal wiring of the cable and the flexible adjustment of the lamp body.

Benefits of technology

It enables flexible and convenient adjustment of the lamp body, improves installation safety and aesthetics, adapts to complex installation environments, and ensures the safety and aesthetics of internal cable routing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an upside-down hanging type wall lamp structure and relates to the technical field of lamps, a telescopic pipe frame assembly is installed in the middle of a support of an installation seat, the other end of a screw of the telescopic pipe frame assembly is provided with an overturning pipe frame assembly in a conducting mode, and a lamp holder is installed at the bottom end of a pipeline of the overturning pipe frame assembly. Based on horizontal telescopic adjustment of the telescopic pipe frame assembly and left-right overturning adjustment of the overturning pipe frame assembly, the design has flexible and convenient on-site regulation and control performance, adjustment and position correction work of different directions and angles can be conducted on the lamp body according to the on-site installation environment so as to adapt to the complex and changeable on-site installation environment, and the installation efficiency is improved. The telescopic pipe frame assembly and the overturning pipe frame assembly are combined in a conducting mode, the flexible regulation and control characteristic is achieved, meanwhile, the integrated conducting characteristic is achieved, the telescopic pipe frame assembly and the overturning pipe frame assembly can serve as a built-in traction space of a lamp body connecting cable, the connecting cable is led in a built-in threading mode, the installation safety is higher, and meanwhile the attractive performance is better.
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Description

Technical Field

[0001] This utility model relates to the field of lighting fixtures, and in particular to an inverted wall lamp structure. Background Technology

[0002] Wall lamps, as one type of lighting fixture, not only provide soft light but also add a touch of warmth to the home. Wall lamps typically have low power consumption, are energy-efficient and environmentally friendly, and have a long lifespan, making them an ideal choice for home lighting. With the development of the lighting industry, the variety of wall lamps has increased, and adjustable wall lamps, due to their flexibility and adaptability, have gradually become the mainstream lighting fixture. For example, an inverted wall lamp disclosed on the China Patent Network (publication number CN219640155U) demonstrates this type of inverted wall lamp. Through the coordinated design of the adjustment and telescopic components, adjusting the angle and length of the wall lamp involves rotating the connecting block and connecting piece to adjust the angle, and adjusting the length involves adjusting the positions of the main telescopic rod and the auxiliary telescopic rod to achieve length adjustment. This facilitates operation and improves convenience.

[0003] However, the aforementioned patented and existing inverted wall lamps still have some shortcomings: while existing wall lamps offer relatively flexible angle and orientation adjustment, the presence of adjustment components restricts the routing of connecting cables, forcing them to be typically laid out along the outside of the lamp, resulting in poor safety and aesthetics. Therefore, those skilled in the art have provided an inverted wall lamp structure to address the problems mentioned in the background section. Utility Model Content

[0004] To address the shortcomings of existing technologies, this utility model provides an inverted wall lamp structure, which solves the problem mentioned in the background art that the connection cable of existing inverted wall lamps is inconvenient to thread and guide.

[0005] To achieve the above objectives, this utility model provides the following technical solution: an inverted wall lamp structure, including a mounting base;

[0006] A telescopic pipe rack assembly is installed in the middle of the support of the mounting base, and a flip-up pipe rack assembly is installed at the other end of the screw of the telescopic pipe rack assembly.

[0007] The bottom end of the pipe of the flip-top pipe rack assembly is equipped with a lamp holder, and the lamp holder is covered with a lamp cover on the outside of the lamp body.

[0008] The telescopic tube frame assembly includes a telescopic screw tube, one end of which is screwed with a first telescopic screw rod, and the other end of which is screwed with a second telescopic screw rod;

[0009] The flip-over tube rack assembly includes a guide tube and a support tube. The guide tube and the support tube are connected by a corrugated flexible tube, and an adjusting bolt is connected between the guide tube and the support tube.

[0010] As a further technical solution of this utility model: the threads of the first telescopic screw and the second telescopic screw are arranged in opposite directions relative to the telescopic tube.

[0011] As a further technical solution of this utility model: the telescopic spiral tube, the first telescopic screw, and the second telescopic screw are all hollow structures.

[0012] As a further technical solution of this utility model: the guide tube, the corrugated hose, and the support tube are all hollow structures, and the corrugated hose is made of prestressed corrugated pipe material.

[0013] As a further technical solution of this utility model: one end of the guide tube is fitted with a first connecting seat that is connected to the adjusting bolt, and one end of the support tube is fitted with a second connecting seat that is connected to the adjusting bolt.

[0014] As a further technical solution of this utility model: the adjusting bolt includes an adjusting sleeve, one end of which is screwed with a first adjusting screw connected to a first connecting seat, and the other end of which is screwed with a first adjusting screw connected to a second connecting seat. The threads of the first adjusting screw and the second adjusting screw are arranged in a positive and negative direction relative to the adjusting sleeve.

[0015] As a further technical solution of this utility model: the support edge of the lamp holder is provided with multiple sets of docking slots in a circumferential form, and the cover edge of the lamp shade is provided with multiple sets of docking buckles in a circumferential form, and the docking buckles and the docking slots are interlocked.

[0016] As a further technical solution of this utility model: the support back plate of the mounting base is provided with a filling groove, and the filling groove is filled with a sealing sleeve, which extends into the pipeline of the telescopic pipe rack assembly.

[0017] This utility model provides an inverted wall lamp structure, which has the following advantages compared with the prior art:

[0018] This inverted wall lamp design utilizes the horizontal telescopic adjustment of the telescopic bracket assembly and the left-right flipping adjustment of the flipping bracket assembly. It offers flexible and convenient on-site control, allowing for adjustments and repositioning of the lamp body at different angles and orientations to adapt to complex and varied installation environments. Furthermore, the integrated combination of the telescopic and flipping bracket assemblies not only provides flexible control but also serves as a built-in traction space for the lamp's connecting cables, enabling them to be routed internally. This results in enhanced installation safety and improved aesthetics. Attached Figure Description

[0019] Figure 1 This is a structural diagram of an inverted wall lamp.

[0020] Figure 2 An exploded view of an inverted wall lamp structure;

[0021] Figure 3 This is a structural schematic diagram of a telescopic tube frame assembly in an inverted wall lamp structure;

[0022] Figure 4 This is a partial sectional view of a telescopic tube frame assembly in an inverted wall lamp structure;

[0023] Figure 5 This is a structural schematic diagram of a flip-up tube rack assembly in an inverted wall lamp structure;

[0024] Figure 6 This is a partial sectional view of a flip-up tube rack assembly in an inverted wall lamp structure.

[0025] In the diagram: 1. Mounting base; 11. Filling groove; 2. Telescopic pipe rack assembly; 21. Telescopic screw tube; 22. First telescopic screw rod; 23. Second telescopic screw rod; 3. Flipping pipe rack assembly; 31. Guide tube; 32. Corrugated flexible hose; 33. Support tube; 34. First connecting seat; 35. Second connecting seat; 36. Adjusting bolt; 361. Adjusting screw sleeve; 362. First adjusting screw rod; 363. Second adjusting screw rod; 4. Lamp holder; 41. Connecting slot; 5. Lamp cover; 51. Connecting buckle; 6. Sealing sleeve. Detailed Implementation

[0026] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the protection scope of the present utility model.

[0027] Please see Figure 1-6 This utility model provides a technical solution for an inverted wall lamp structure: an inverted wall lamp structure includes a mounting base 1, the back plate of the mounting base 1 has a filling groove 11, and the filling groove 11 is filled with a sealing sleeve 6. The sealing sleeve 6 extends into the pipeline of the telescopic tube frame assembly 2. By filling the back plate of the mounting base 1 with the sealing sleeve 6 extending into the telescopic tube frame assembly 2, when the mounting base 1 is installed with the wall, the sealing sleeve 6 is squeezed by the mounting base 1, so that the sealing sleeve 6 fits more tightly against the wall, sealing the part of the connecting cable lead-out and preventing external moisture from entering the lamp body.

[0028] The mounting base 1 has a telescopic pipe bracket assembly 2 installed in the middle of its support. The telescopic pipe bracket assembly 2 includes a telescopic screw tube 21. One end of the telescopic screw tube 21 is screwed with a first telescopic screw rod 22, and the other end of the telescopic screw tube 21 is screwed with a second telescopic screw rod 23. The threads of the first telescopic screw rod 22 and the second telescopic screw rod 23 are arranged in opposite directions relative to the telescopic screw tube 21. By rotating the telescopic screw tube 21, the first telescopic screw rod 22 and the second telescopic screw rod 23 are pushed to extend and retract in opposite directions, thereby adjusting the overall length of the telescopic pipe bracket assembly 2 to adjust the horizontal extension and retraction of the lighting position of the lamp body to adapt to the on-site installation environment.

[0029] Telescopic solenoid 21, first telescopic screw 22, and second telescopic screw 23 are all hollow structures. By setting the telescopic tube frame assembly 2 as a hollow structure, it has telescopic adjustment performance as well as good conductivity performance. It can serve as an internal traction space for the lamp body connecting cable, allowing the connecting cable to be threaded internally.

[0030] The other end of the screw of the telescopic tube frame assembly 2 is connected to the flip tube frame assembly 3. The flip tube frame assembly 3 includes a guide tube 31 and a support tube 33. The guide tube 31 and the support tube 33 are connected by a corrugated hose 32. The guide tube 31, the corrugated hose 32 and the support tube 33 are all hollow structures. The corrugated hose 32 is made of prestressed corrugated pipe material. By setting the flip tube frame assembly 3 as a hollow structure, it can serve as an internal traction space for the lamp body connection cable, and the connection cable can be threaded inside. With the corrugated hose 32, the flip tube frame assembly 3 can be flipped left and right with the corrugated hose 32 as the axis, and the lighting position of the lamp body can be adjusted and corrected to adapt to the on-site installation environment.

[0031] An adjusting bolt 36 connects the guide tube 31 and the support tube 33. One end of the guide tube 31 is fitted with a first connecting seat 34 connected to the adjusting bolt 36, and one end of the support tube 33 is fitted with a second connecting seat 35 connected to the adjusting bolt 36. The adjusting bolt 36 includes an adjusting sleeve 361. One end of the adjusting sleeve 361 is screwed with a first adjusting screw 362 connected to the first connecting seat 34, and the other end of the adjusting sleeve 361 is screwed with a first adjusting screw 362 connected to the second connecting seat 35. The threads of the first adjusting screw 362 and the second adjusting screw 363 are arranged in opposite directions relative to the adjusting sleeve 361. By rotating the adjusting sleeve 361, the first adjusting screw 362 and the second adjusting screw 363 are moved in opposite directions to extend and retract. During the extension and retraction of the adjusting bolt 36, the support tube 33 is pulled to swing left and right around the corrugated hose 32 as the axis, thereby adjusting and aligning the illumination angle of the lamp body in the left and right directions.

[0032] The bottom end of the pipe of the flip-top pipe rack assembly 3 is equipped with a lamp holder 4, and the lamp holder 4 is covered with a lamp cover 5. The support edge of the lamp holder 4 is provided with multiple sets of docking slots 41 in a circumferential manner. The cover edge of the lamp cover 5 is provided with multiple sets of docking buckles 51 in a circumferential manner. The docking buckles 51 and the docking slots 41 are interlocked. By using the interlocking buckles 51 and the docking slots 41, the lamp cover 5 can be installed on the lamp holder 4 by pressing the buckles. The installation is convenient and facilitates subsequent disassembly and maintenance.

[0033] The working principle of this utility model is as follows: When installing the inverted wall lamp, the lighting position and angle of the lamp body can be adjusted and adapted according to the on-site installation environment. Then, during the adjustment process, the telescopic screw 21 of the telescopic tube frame assembly 2 can be rotated to push the first telescopic screw 22 and the second telescopic screw 23 to extend and retract in opposite directions, thereby adjusting the overall length of the telescopic tube frame assembly 2 to adjust and calibrate the lighting position of the lamp body horizontally. Simultaneously, the adjusting sleeve 361 of the adjusting bolt 36 can be rotated to drive the first adjusting screw 362 and the second adjusting screw 363 to extend and retract in opposite directions. Then, during the extension and retraction of the adjusting bolt 36, the support tube 33 is pulled to swing left and right around the corrugated hose 32 as the axis, thereby adjusting and calibrating the lighting angle of the lamp body in the left and right directions to adapt to the complex and ever-changing on-site installation environment.

[0034] After adjusting and aligning the wall lamp installation position, the hollow structure of the telescopic tube frame assembly 2 and the hollow structure of the flip tube frame assembly 3 can serve as an internal traction space for the lamp body connection cable. The lamp body connection cable on the lamp holder 4 is sequentially threaded through the inside of the flip tube frame assembly 3 and the telescopic tube frame assembly 2, and pulled out from the sealing sleeve 6 of the mounting base 1. It is assembled with the wall lamp in an internal traction manner, which improves safety and usability while ensuring aesthetics.

[0035] The above description is merely a preferred embodiment of this utility model. It should be noted that those skilled in the art can make various improvements and modifications without departing from the principles of this utility model, and these improvements and modifications should also be considered within the scope of protection of this utility model. Structures, devices, and operating methods not specifically described or explained in this utility model are implemented according to conventional methods in the art, unless otherwise specified or limited.

Claims

1. An inverted wall lamp structure, characterized in that, Includes mounting base (1); The mounting base (1) has a telescopic pipe rack assembly (2) installed in the middle of the support, and the other end of the screw of the telescopic pipe rack assembly (2) is connected to the flip pipe rack assembly (3). The bottom end of the pipe of the flip-top pipe rack assembly (3) is equipped with a lamp holder (4), and the lamp holder (4) is covered with a lamp cover (5) on the outside of the lamp body. The telescopic pipe frame assembly (2) includes a telescopic screw tube (21), one end of which is screwed with a first telescopic screw rod (22), and the other end of which is screwed with a second telescopic screw rod (23). The flip tube rack assembly (3) includes a guide tube (31) and a support tube (33). The guide tube (31) and the support tube (33) are connected by a corrugated hose (32), and an adjusting bolt (36) is connected between the guide tube (31) and the support tube (33).

2. The inverted wall lamp structure according to claim 1, characterized in that, The threads of the first telescopic screw (22) and the second telescopic screw (23) are arranged in opposite directions relative to the telescopic screw tube (21).

3. The inverted wall lamp structure according to claim 1, characterized in that, The telescopic screw tube (21), the first telescopic screw (22), and the second telescopic screw (23) are all hollow structures.

4. The inverted wall lamp structure according to claim 1, characterized in that, The guide tube (31), corrugated hose (32), and support tube (33) are all hollow structures, and the corrugated hose (32) is made of prestressed corrugated material.

5. The inverted wall lamp structure according to claim 1, characterized in that, One end of the guide tube (31) is fitted with a first connecting seat (34) that is connected to the adjusting bolt (36), and one end of the support tube (33) is fitted with a second connecting seat (35) that is connected to the adjusting bolt (36).

6. The inverted wall lamp structure according to claim 5, characterized in that, The adjusting bolt (36) includes an adjusting sleeve (361), one end of which is screwed with a first adjusting screw (362) connected to the first connecting seat (34), and the other end of the adjusting sleeve (361) is screwed with a first adjusting screw (362) connected to the second connecting seat (35). The threads of the first adjusting screw (362) and the second adjusting screw (363) are arranged in opposite directions relative to the adjusting sleeve (361).

7. The inverted wall lamp structure according to claim 1, characterized in that, The lamp holder (4) has multiple sets of docking slots (41) circumferentially formed on the support edge, and the lamp cover (5) has multiple sets of docking buckles (51) circumferentially formed on the cover edge, and the docking buckles (51) and the docking slots (41) are interlocked.

8. The inverted wall lamp structure according to claim 1, characterized in that, The mounting base (1) has a back plate with a filling groove (11) and a sealing sleeve (6) inside the filling groove (11). The sealing sleeve (6) extends into the pipeline of the telescopic pipe rack assembly (2).

Citation Information

Patent Citations

  • Inverted wall lamp

    CN219640155U