Wall lamp mounting structure

The wall lamp installation structure that combines steel hangers, wire management mechanisms and magnetic attraction solves the problems of cumbersome traditional installation structures and wire entanglement, realizes automatic arrangement and tensioning of wires, and improves installation efficiency and the service life of lamps.

CN120760107AInactive Publication Date: 2025-10-10GUANGZHOU BAISHE DECORATION DESIGN CO LTD
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Patent Information

Application Number
CN202511031751.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-25
Publication Date
2025-10-10
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing wall lamp installation structure has problems such as cumbersome installation, inflexible adjustment, and entangled wires that prevent heat from being removed, which affects the aesthetics and service life.

Method used

It adopts the combined design of steel hanger, wire management mechanism, limit mechanism and closing mechanism. The wires are organized through structures such as wire management plate, wire management wheel and guide rod, and the magnetic attraction and spring structure are used to realize automatic arrangement and tensioning of the wires.

Benefits of technology

It realizes the orderly arrangement and tensioning of wires, improves the installation efficiency and convenience, reduces the maintenance difficulty, and extends the service life of the lamp.

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Abstract

The invention belongs to the technical field of lamp installation, and discloses a wall lamp installation structure which comprises a wall body, a steel hanging rod is installed outside the wall body, a decoration completed face is arranged outside a thick aluminum plate, a wire arranging mechanism is fixed into a thick steel connecting weight, and a closing mechanism is arranged at one end of the wire arranging mechanism. Through cooperation of structures such as a wire arrangement plate, a first wire arrangement wheel and a guide rod, the device can guide a wiring to the interior of a thick steel connection code for arrangement after installation of a lamp panel is completed, a second wire arrangement wheel and the first wire arrangement wheel are far away from each other by lifting the whole connection frame, and the wiring can be conveniently and rapidly arranged. After a connecting wire is placed between the first wire arranging wheel and the second wire arranging wheel, the connecting frame is released, at the moment, the connecting frame is pulled back by the first reset spring, so that the connecting wire is clamped between the first wire arranging wheel and the second wire arranging wheel, the connecting wire is tensioned through the first wire arranging wheel and the second wire arranging wheel, and the purpose of conveniently arranging the connecting wire is achieved.
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Description

Technical Field

[0001] The invention belongs to the technical field of lamp installation, and in particular relates to a wall lamp installation structure. Background Art

[0002] In the field of architectural decoration and lighting, the installation of wall lamps is extremely extensive. They not only undertake basic lighting functions, but also play an important role in the aesthetics of space decoration. With the diversification of architectural design styles and the continuous improvement of users' requirements for living and working environments, the installation structure of wall lamps needs to meet multiple requirements such as safety, convenience, and aesthetics. At present, the common wall lamp installation structure on the market mainly adopts the traditional screw fixing method. This method exposes many problems in actual application. On the one hand, the installation process is relatively cumbersome and requires precise positioning and drilling on the wall in advance. This not only increases the workload and time cost of installation, but also may cause a certain degree of damage to the wall structure. Especially on some high-end decoration or special material walls, the drilling operation may affect the overall appearance and structural strength of the wall. On the other hand, the traditional installation structure has poor adjustment flexibility. After the lamp is installed, it is difficult to fine-tune the angle or position according to actual needs, resulting in the lighting effect may not reach the optimal state. In addition, when the lamp needs to be repaired or replaced, the disassembly process is also relatively inconvenient and may require the use of professional tools, which increases the difficulty and cost of maintenance.

[0003] Publication number CN205909214U discloses a lamp installation structure, and in particular relates to a vertical wall horizontal lamp installation structure, which includes a vertical wall, a horizontal wall and a lamp installation bracket fixed to the vertical wall. The stone finishing layer provided facilitates the installation and fixation of the lamp bracket. An overflow gap is provided on the horizontal wall panel below the lamp to effectively drain water and eliminate the impact of accumulated water on the lamp, thereby ensuring the normal use of the lamp.

[0004] However, when this structure is actually used, it is impossible to organize the wires behind the lamp, which will cause the wires to be entangled inside the rear panel after decoration. As a result, after the lamp is used for a long time, the heat inside the wires cannot be effectively removed. The wires need to be organized to increase the service life of the lamp. Summary of the Invention

[0005] In order to solve the problems raised in the above background technology, the present invention provides a wall lamp installation structure.

[0006] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: a wall lamp mounting structure, comprising a wall body, a steel hanger mounted on the outside of the wall body, a thick steel connecting code fixed to one end of the steel hanger, a bolt fixed to the outside of the thick steel connecting code, a thick aluminum plate fixed to one end of the bolt, a lamp panel mounted on the inside of the thick aluminum plate, a decorative finish provided on the outside of the thick aluminum plate, a wire management mechanism fixed to the inside of the thick steel connecting code, a limiting mechanism mounted on one end of the wire management mechanism, and a closing mechanism provided on one end of the wire management mechanism; The cable management mechanism includes a cable management plate, a first cable management wheel and a guide rod. The cable management plate is fixed inside the thick steel connecting code. The first cable management wheel is rotatably connected to the outside of the cable management plate. The guide rod is fixed inside the cable management plate. The outside of the guide rod is provided with a first return spring. The outside of the first return spring is provided with a connecting frame. The limiting mechanism includes a mounting block, a trigger member and a first trigger block. The mounting block is fixed to the top of the connecting frame. The trigger member is movably connected inside the mounting block. The first trigger block is fixed to the bottom end of the trigger member.

[0007] Preferably, the external rotation of the connecting frame is connected to a second cable management wheel, and the first cable management wheel is provided with three groups, and the first cable management wheels are distributed at equal intervals, and the second cable management wheels are provided with two groups, and the second cable management wheels are symmetrically distributed about the central axis of the connecting frame. The three groups of equally spaced first cable management wheels can support and guide the wiring at different positions to ensure that the wiring remains in an orderly state during the wiring process, avoiding bending, entanglement, etc. The two groups of second cable management wheels symmetrically distributed about the central axis of the connecting frame can cooperate with the first cable management wheel to clamp the wiring from different directions, making the wiring more stable in the wiring mechanism, thereby better realizing organization and fixation, and improving wiring efficiency and neatness.

[0008] Preferably, two groups of guide rods and first return springs are provided, and the guide rods and first return springs are symmetrically distributed about the central axis of the wire management plate. The first return spring is used to squeeze the connecting frame and keep it moving downward. The symmetrically distributed structural design makes the wire management mechanism force balanced, reduces the wear of parts or structural deformation caused by unilateral force, and improves the reliability and service life of the overall device. At the same time, the symmetrical structure facilitates processing, manufacturing, installation and debugging, and reduces production costs.

[0009] Preferably, the mounting block is movably connected to a second trigger block inside, a second return spring is fixed to the outside of the second trigger block, a slot is provided at the top of the wire management plate, and a card slot is provided inside the wire management plate. When the connecting frame is lifted to insert the mounting block into the slot, the trigger member is squeezed to drive the first trigger block downward, squeezing the second trigger block to make it snap into the card slot. The magnet of the closing mechanism and the magnetic block are magnetically attracted to fix the connecting frame in a hanging state. At this time, there is no need for manual continuous support of the connecting frame, which is convenient for organizing multiple sets of wiring at the same time and improving the wire management efficiency.

[0010] Preferably, three groups of mounting blocks are provided, and the mounting blocks are distributed in an array about the central axis of the connecting frame. The outer wall of the trigger member fits into the inner wall of the mounting block, and the trigger member and the mounting block are slidably connected. The outer wall of the second trigger block fits into the inner wall of the mounting block, and the second trigger block and the mounting block are slidably connected.

[0011] Preferably, two groups of second trigger blocks and second return springs are provided, and the second trigger blocks and the second return springs are symmetrically distributed about the central axis of the mounting block. The second return spring is used to squeeze the second trigger block and keep it moving inward. The two groups of second trigger blocks and the second return springs are symmetrically distributed about the central axis of the mounting block, so that the limit mechanism can be subjected to balanced force during operation, avoiding tilting or jamming of the mounting block due to unilateral force, ensuring the stability of the connecting frame when it is lifted up and inserted into the slot, and preventing the cable management operation from being affected by structural shaking. The second return spring continuously squeezes the second trigger block to move inward. When the trigger member drives the first trigger block to move downward, the symmetrically distributed second trigger blocks can be synchronously snapped into the slot to form a stable limiting state; when the closing mechanism releases the magnetic attraction, the spring thrust acts evenly on the trigger blocks on both sides, causing them to synchronously disengage from the slot, ensuring accurate reset of the connecting frame and avoiding uneven wiring tension due to reset deviation.

[0012] Preferably, the inner diameter of the slot is equal to the outer diameter of the mounting block, and the inner diameter of the card slot is equal to the outer diameter of the second trigger block. There are two groups of card slots, and the card slots are symmetrically distributed about the central axis of the slot. The inner diameter of the slot is equal to the outer diameter of the mounting block, so that the mounting block can form a tight fit after being inserted into the slot, avoiding shaking or gaps. This precise adaptation can ensure that the mounting block is stably inserted into the slot when the connecting frame is lifted, providing a reliable foundation for the subsequent second trigger block to be inserted into the card slot, and preventing the cable management mechanism from failing due to loosening of the mounting block. The symmetrically distributed card slots make the clamping force of the second trigger blocks on both sides uniform. When the closing mechanism releases the magnetic attraction, the second reset spring pushes the trigger block out of the card slot. The two sides are subjected to the same force and can complete the reset synchronously, avoiding the trigger block from being stuck or resetting deviation due to uneven distribution of the card slots, and ensuring the smoothness of the "fixing-tensioning" process of the cable management mechanism.

[0013] Preferably, the closing mechanism comprises a connecting disc, a connecting rod and a magnet, one end of the connecting disc is fixed with the connecting rod, the outer part of the connecting rod is fixed with the magnet, the inner part of the wire arrangement plate is provided with a sliding rail, and the inner part of the sliding rail is movably connected with a magnetic block.

[0014] Preferably, the connecting rod and the wire arrangement plate are rotationally connected, the magnet is provided with three groups, the magnet is arrayed about the central axis of the connecting rod, the sliding rail is provided with three groups, and the sliding rail is equidistantly distributed about the central axis of the wire arrangement plate.

[0015] Preferably, the outer wall of the magnetic block is attached to the inner wall of the sliding rail, the magnetic block and the sliding rail are slidingly connected, the sliding rail is located at the bottom end of the mounting block at the attachment position of the trigger and the mounting block, the magnetic block and the magnet are magnetically connected, the magnetic attraction connection mode can realize limiting or releasing by rotating the connecting rod without additional tools, the operation is simple and convenient, in addition, the attached sliding design of the magnetic block and the sliding rail can reduce the wear of parts, prolong the service life of the closing mechanism, reduce the risk of failure caused by mechanical friction, and keep the device stable in long-term use.

[0016] Compared with the prior art, the beneficial effects of the present application are as follows: The present application cooperates with the wire arrangement plate, the first wire arrangement wheel, the guide rod and other structures, so that the device can arrange the wiring inside the thick steel connecting code after completing the installation of the lamp panel, the connecting frame is lifted as a whole, the second wire arrangement wheel and the first wire arrangement wheel are away from each other, the wiring is placed between the first wire arrangement wheel and the second wire arrangement wheel, and then the connecting frame is released, at this time, the first return spring pulls the connecting frame back, so that the wiring is clamped between the first wire arrangement wheel and the second wire arrangement wheel, thereby tensioning the wiring through the first wire arrangement wheel and the second wire arrangement wheel, to achieve the purpose of conveniently arranging the wiring.

[0017] The present application cooperates with the mounting block, the trigger, the first trigger block and other structures, so that the device can lift the connecting frame, insert the mounting block into the inner part of the slot, at this time, the trigger moves downward after being extruded by the top wire arrangement plate, thereby driving the first trigger block to move downward, so that the first trigger block extrudes the two groups of second trigger blocks, thereby clamping the second trigger blocks into the inner part of the clamping groove, and rotating the connecting disc by ninety degrees to drive the connecting rod to rotate, so that the positions of the two ends of the magnet are exchanged, thereby driving the magnetic block to clamp the top inside the mounting block through the magnetic attraction force of the magnet, to complete the fixation of the mounting block, at this time, a plurality of wire materials can be arranged, to achieve the purpose of conveniently improving the wire arrangement efficiency of workers.

[0018] The present invention cooperates with structures such as a connecting disk, a connecting rod, and a magnet so that when the device needs to reset the connecting frame to tension the wire, the connecting rod is reversed, so that the magnet and the magnetic block repel each other, so that the magnetic block no longer limits the mounting block. At this time, the second reset spring squeezes the second trigger block, and the second trigger block squeezes the first trigger block, so that the connecting frame is reset, thereby tensioning and arranging the wire, thereby achieving the purpose of facilitating workers to quickly and neatly organize the wires. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is a schematic diagram of the overall structure of the present invention; Figure 2 It is a schematic diagram of the overall bottom-up structure of the present invention; Figure 3 It is a schematic diagram of the overall front cross-sectional structure of the present invention; Figure 4 Schematic diagram of the cable management mechanism of the present invention; Figure 5 This is a schematic structural diagram of the cable management mechanism of the present invention in an expanded state; Figure 6 Schematic diagram of the limiting mechanism structure of the present invention; Figure 7 It is a schematic structural diagram of the closing mechanism of the present invention.

[0020] In the figure: 1. Wall main body; 2. Steel hanger; 3. Thick steel connecting code; 4. Bolt; 5. Thick aluminum plate; 6. Lamp panel; 7. Finished surface; 8. Wire management mechanism; 801. Wire management plate; 802. First wire management wheel; 803. Guide rod; 804. First return spring; 805. Connecting frame; 806. Second wire management wheel; 9. Limiting mechanism; 901. Mounting block; 902. Trigger member; 903. First trigger block; 904. Second trigger block; 905. Second return spring; 906. Slot; 907. Card slot; 10. Closing mechanism; 1001. Connecting plate; 1002. Connecting rod; 1003. Magnet; 1004. Slide rail; 1005. Magnetic block. DETAILED DESCRIPTION

[0021] like Figures 1 to 7 As shown, the present invention provides a wall lamp installation structure, including a wall body 1, a steel hanger 2 is installed on the outside of the wall body 1, a thick steel connecting code 3 is fixed to one end of the steel hanger 2, a bolt 4 is fixed to the outside of the thick steel connecting code 3, a thick aluminum plate 5 is fixed to one end of the bolt 4, a lamp panel 6 is installed inside the thick aluminum plate 5, a decoration finish surface 7 is provided on the outside of the thick aluminum plate 5, a wire management mechanism 8 is fixed inside the thick steel connecting code 3, a limiting mechanism 9 is installed on one end of the wire management mechanism 8, and a closing mechanism 10 is provided on one end of the wire management mechanism 8.

[0022] like Figures 1 to 7As shown, the wire management mechanism 8 includes a wire management plate 801, a first wire management wheel 802 and a guide rod 803. The wire management plate 801 is fixed inside the thick steel connecting code 3. The outside of the wire management plate 801 is rotatably connected to the first wire management wheel 802. The inside of the wire management plate 801 is fixed with a guide rod 803. The outside of the guide rod 803 is provided with a first return spring 804. The outside of the first return spring 804 is provided with a connecting frame 805. The outside of the connecting frame 805 is rotatably connected to the second wire management wheel 80 6. Three groups of first cable management wheels 802 are provided, and the first cable management wheels 802 are distributed at equal intervals. Two groups of second cable management wheels 806 are provided, and the second cable management wheels 806 are symmetrically distributed about the central axis of the connecting frame 805. Two groups of guide rods 803 and first return springs 804 are provided, and the guide rods 803 and the first return springs 804 are symmetrically distributed about the central axis of the cable management plate 801. The first return spring 804 is used to squeeze the connecting frame 805 and keep it moving downward.

[0023] The above solution is adopted: after completing the installation of the lamp panel 6, the wiring is guided to the inside of the thick steel connecting code 3 for arrangement, and the connecting frame 805 is lifted as a whole, so that the second wire management wheel 806 and the first wire management wheel 802 are separated from each other, and the wiring is placed between the first wire management wheel 802 and the second wire management wheel 806, and then the connecting frame 805 is released. At this time, the first return spring 804 pulls the connecting frame 805 back, so that the wiring is stuck between the first wire management wheel 802 and the second wire management wheel 806, so that the wiring is tensioned by the first wire management wheel 802 and the second wire management wheel 806 to achieve the effect of wiring management. The wire management method not only keeps the wiring inside the thick steel connecting code 3 in a neat and orderly state, avoiding entanglement and disorder of the wiring, but also prevents the wiring from loosening and affecting the normal use of the lamp through the tensioning effect. At the same time, the operation process is simple and convenient. No additional tools are required. The wiring can be organized and tensioned by lifting and releasing the connecting frame 805, which greatly improves the efficiency and convenience of wire management. In addition, the rotating connection design of the wire management wheel can also reduce the friction between the wiring and the wire management wheel, effectively protecting the wiring from damage, extending the service life of the wiring, and thereby improving the stability and reliability of the entire structure.

[0024] like Figures 1 to 7As shown, the limiting mechanism 9 comprises a mounting block 901, a trigger 902 and a first trigger block 903, the mounting block 901 is fixed at the top end of the connecting frame 805, the inside of the mounting block 901 movably connects with the trigger 902, the bottom end of the trigger 902 is fixed with the first trigger block 903, the inside of the mounting block 901 movably connects with a second trigger block 904, the mounting block 901 is provided with three groups, the mounting block 901 is arrayed about the central axis of the connecting frame 805, the outer wall of the trigger 902 is fitted with the inner wall of the mounting block 901, the trigger 902 and the mounting block 901 are slidingly connected, the outer wall of the second trigger block 904 is fitted with the inner wall of the mounting block 901, the second trigger block 904 and the mounting block 901 are slidingly connected.

[0025] As shown in Figures 1 to 7 The second trigger block 904 is externally fixed with a second reset spring 905, the second trigger block 904 and the second reset spring 905 are provided with two groups, the second trigger block 904 and the second reset spring 905 are symmetrically distributed about the central axis of the mounting block 901, the second reset spring 905 is used for pressing the second trigger block 904 and keeping it moving inward, the top end of the wire arrangement plate 801 is provided with a slot 906, the inside of the wire arrangement plate 801 is provided with a clamping groove 907, the inner diameter of the slot 906 is equal to the outer diameter of the mounting block 901, the inner diameter of the clamping groove 907 is equal to the outer diameter of the second trigger block 904, the clamping groove 907 is provided with two groups, the clamping groove 907 is symmetrically distributed about the central axis of the slot 906.

[0026] As shown in Figures 1 to 7 The closing mechanism 10 comprises a connecting disc 1001, a connecting rod 1002 and a magnet 1003, the connecting disc 1001 is arranged outside the wire arrangement plate 801, one end of the connecting disc 1001 is fixed with the connecting rod 1002, the outside of the connecting rod 1002 is fixed with the magnet 1003, the inside of the wire arrangement plate 801 is provided with a sliding rail 1004, the inside of the sliding rail 1004 movably connects with a magnetic block 1005, the connecting rod 1002 and the wire arrangement plate 801 are rotationally connected, the magnet 1003 is provided with three groups, the magnet 1003 is arrayed about the central axis of the connecting rod 1002, the sliding rail 1004 is provided with three groups, the sliding rail 1004 is equidistantly distributed about the central axis of the wire arrangement plate 801, the outer wall of the magnetic block 1005 is fitted with the inner wall of the sliding rail 1004, the magnetic block 1005 and the sliding rail 1004 are slidingly connected, the sliding rail 1004 is located at the bottom end of the mounting block 901 where the trigger 902 and the mounting block 901 are fitted, the magnetic block 1005 and the magnet 1003 are magnetically connected.

[0027] The above scheme is adopted: when it is necessary to synchronize the wiring inside multiple groups of thick steel connecting codes 3, the connecting frame 805 is lifted up so that the mounting block 901 is inserted into the interior of the slot 906. At this time, the trigger member 902 is squeezed by the top wire management plate 801 and moves downward, thereby driving the first trigger block 903 to move downward, so that the first trigger block 903 squeezes the two groups of second trigger blocks 904, and then the second trigger block 904 is stuck in the interior of the card slot 907, and the connecting disk 1001 is rotated 90 degrees to drive the connecting rod 1002 to rotate, so that the positions of the two ends of the magnet 1003 are interchanged, and then through the magnetic The magnetic attraction of iron 1003 and magnet 1005 drives magnet 1005 to be stuck on the top of the inside of mounting block 901, thereby completing the fixation of mounting block 901, and then setting the connecting frame 805 to a hanging state. After the wires are arranged, the connecting rod 1002 is reversed so that the magnet 1003 and magnet 1005 repel each other, so that the magnet 1005 no longer limits the mounting block 901. At this time, the second reset spring 905 squeezes the second trigger block 904, and the second trigger block 904 squeezes the first trigger block 903, so that the connecting frame 805 is reset, thereby tensioning and arranging the wires.

[0028] The working principle and use process of the present invention are as follows: after completing the installation of the lamp panel 6, the wiring is guided to the inside of the thick steel connecting code 3 for arrangement, and the connecting frame 805 is lifted as a whole so that the second wire management wheel 806 and the first wire management wheel 802 are separated from each other, and the wiring is placed between the first wire management wheel 802 and the second wire management wheel 806, and then the connecting frame 805 is released. At this time, the first return spring 804 pulls the connecting frame 805 back, so that the wiring is stuck between the first wire management wheel 802 and the second wire management wheel 806, so that the wiring is tensioned by the first wire management wheel 802 and the second wire management wheel 806 to achieve the effect of wiring arrangement. When it is necessary to synchronously arrange the wiring inside multiple groups of thick steel connecting codes 3, the connecting frame 805 is lifted. 05 is lifted up, so that the mounting block 901 is inserted into the interior of the slot 906. At this time, the trigger member 902 is squeezed by the top wire management plate 801 and moves downward, thereby driving the first trigger block 903 to move downward, so that the first trigger block 903 squeezes the two groups of second trigger blocks 904, and then the second trigger block 904 is stuck in the interior of the card slot 907, and the connecting plate 1001 is rotated 90 degrees to drive the connecting rod 1002 to rotate, so that the positions of the two ends of the magnet 1003 are interchanged, and then the magnetic block 1005 is driven to be stuck at the top of the interior of the mounting block 901 by the magnetic attraction of the magnet 1003 and the magnetic block 1005, thereby completing the fixation of the mounting block 901, and then setting the connecting frame 805 to a hanging state. After the wires are arranged, the connecting plate is reversed and connected. The connecting rod 1002 causes the magnet 1003 and the magnetic block 1005 to repel each other, so that the magnetic block 1005 no longer limits the mounting block 901. At this time, the second reset spring 905 squeezes the second trigger block 904, and the second trigger block 904 squeezes the first trigger block 903, so that the connecting frame 805 is reset, thereby tensioning and arranging the wires. This process realizes the automation and repeatability of the wire management operation. When it is necessary to simultaneously arrange the wires in multiple groups of thick steel connecting codes 3, the connecting frame 805 in the suspended state can remain fixed, which is convenient for workers to handle multiple wirings simultaneously and avoid the efficiency loss caused by frequent manual support of the connecting frame 805. At the same time, the cooperation of the magnetic attraction and the spring structure forms a double limiting mechanism. The magnet 1003 and the magnetic block 1 The magnetic attraction of 005 can prevent the mounting block 901 from accidentally detaching from the slot 906, while the engagement of the second trigger block 904 with the card slot 907 ensures the stability of the connecting frame 805 when suspended. The double protection avoids structural loosening during the wire arrangement process. In addition, the solution reduces the dependence on manual operation through the linkage design of the mechanical structure. The repulsive force between the magnetic block 1005 and the magnet 1003 can be used to release the limit by reversing the connecting rod 1002. The second reset spring 905 then pushes the connecting frame 805 to automatically reset the tensioned wire without manually adjusting the position of the trigger 902 or the trigger block. This "one-button release" mechanism not only improves the efficiency of wire management, but also reduces the complexity of operation and reduces the safety hazards caused by repeated operations by workers.

[0029] The examples of this specific embodiment are all preferred embodiments of this application and are not intended to limit the scope of protection of this application. Identical components are represented by the same reference numerals. Therefore, any equivalent changes made based on the structure, shape, and principle of this application should be included in the scope of protection of this application.

Claims

1. A wall lamp installation structure, comprising a wall body (1), characterized in that: A steel hanger (2) is installed on the outside of the wall body (1), a thick steel connecting code (3) is fixed to one end of the steel hanger (2), a bolt (4) is fixed to the outside of the thick steel connecting code (3), a thick aluminum plate (5) is fixed to one end of the bolt (4), a lamp panel (6) is installed inside the thick aluminum plate (5), a decoration finish surface (7) is provided on the outside of the thick aluminum plate (5), a wire management mechanism (8) is fixed to the inside of the thick steel connecting code (3), a limiting mechanism (9) is installed at one end of the wire management mechanism (8), and a closing mechanism (10) is provided at one end of the wire management mechanism (8); The wire management mechanism (8) comprises a wire management plate (801), a first wire management wheel (802) and a guide rod (803); the wire management plate (801) is fixed inside the thick steel connection code (3); the outside of the wire management plate (801) is rotatably connected to the first wire management wheel (802); the inside of the wire management plate (801) is fixed with a guide rod (803); the outside of the guide rod (803) is provided with a first return spring (804); the outside of the first return spring (804) is provided with a connecting frame (805); The limiting mechanism (9) comprises a mounting block (901), a trigger member (902) and a first trigger block (903); the mounting block (901) is fixed to the top of the connecting frame (805); the trigger member (902) is movably connected to the interior of the mounting block (901); and the first trigger block (903) is fixed to the bottom end of the trigger member (902).

2. The wall lamp mounting structure according to claim 1, characterized in that: The outer portion of the connecting frame (805) is rotatably connected to a second cable management wheel (806), three groups of the first cable management wheels (802) are provided, and the first cable management wheels (802) are distributed at equal intervals, and two groups of the second cable management wheels (806) are provided, and the second cable management wheels (806) are distributed symmetrically about the central axis of the connecting frame (805).

3. The wall lamp mounting structure according to claim 2, characterized in that: Two groups of guide rods (803) and first return springs (804) are provided. The guide rods (803) and first return springs (804) are symmetrically distributed about the central axis of the cable management plate (801). The first return springs (804) are used to squeeze the connecting frame (805) and keep it moving downward.

4. The wall lamp mounting structure according to claim 1, characterized in that: The mounting block (901) is internally movably connected to a second trigger block (904), and a second return spring (905) is fixed to the outside of the second trigger block (904). A slot (906) is provided at the top of the wiring board (801), and a card slot (907) is provided inside the wiring board (801).

5. The wall lamp mounting structure according to claim 4, characterized in that: The mounting blocks (901) are provided in three groups, and the mounting blocks (901) are distributed in an array about the central axis of the connecting frame (805); the outer wall of the trigger member (902) fits the inner wall of the mounting block (901); the trigger member (902) and the mounting block (901) are slidably connected; the outer wall of the second trigger block (904) fits the inner wall of the mounting block (901); the second trigger block (904) and the mounting block (901) are slidably connected.

6. The wall lamp mounting structure according to claim 4, characterized in that: The second trigger block (904) and the second return spring (905) are provided in two groups. The second trigger block (904) and the second return spring (905) are symmetrically distributed about the central axis of the mounting block (901). The second return spring (905) is used to squeeze the second trigger block (904) and keep it moving inward.

7. The wall lamp mounting structure according to claim 4, characterized in that: The inner diameter of the slot (906) is equal to the outer diameter of the mounting block (901), the inner diameter of the clamping slot (907) is equal to the outer diameter of the second trigger block (904), two groups of the clamping slots (907) are provided, and the clamping slots (907) are symmetrically distributed about the central axis of the slot (906).

8. The wall lamp mounting structure according to claim 1, characterized in that: The closing mechanism (10) comprises a connecting disk (1001), a connecting rod (1002) and a magnet (1003); the connecting disk (1001) is arranged outside the wire management plate (801); a connecting rod (1002) is fixed to one end of the connecting disk (1001); a magnet (1003) is fixed to the outside of the connecting rod (1002); a slide rail (1004) is provided inside the wire management plate (801); and a magnetic block (1005) is movably connected inside the slide rail (1004).

9. The wall lamp mounting structure according to claim 8, characterized in that: The connecting rod (1002) and the cable management plate (801) are rotatably connected, three groups of magnets (1003) are provided, and the magnets (1003) are distributed in an array about the central axis of the connecting rod (1002), and three groups of slide rails (1004) are provided, and the slide rails (1004) are distributed at equal intervals about the central axis of the cable management plate (801).

10. The wall lamp mounting structure according to claim 8, characterized in that: The outer wall of the magnetic block (1005) fits the inner wall of the slide rail (1004), the magnetic block (1005) and the slide rail (1004) are slidably connected, the slide rail (1004) is located at the bottom of the mounting block (901) where the trigger member (902) and the mounting block (901) fit together, and the magnetic block (1005) and the magnet (1003) are magnetically connected.

Citation Information

Patent Citations

  • Perpendicular horizontal lamps and lanterns mounting structure of wall

    CN205909214U