Two-way sliding wall light
The light-shielding plate structure, which connects the central pivot and the symmetrical pivot ends, enables synchronous adjustment of the wall light spot, solves the problem of fixed position of the light-shielding plate, and improves user experience and decorative effect.
Patent Information
- Application Number
- CN202211679586.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-26
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2042-12-26
AI Technical Summary
The light shields of existing wall lamps are in a fixed position, making it impossible to adjust the size of the light spot according to actual usage needs. This results in inconvenience in adjusting the light spot and affects the user experience.
It adopts a central rotating shaft and symmetrically arranged first and second rotating shaft ends to connect multiple light-shielding plates. By pushing one light-shielding plate, the other light-shielding plate is driven to rotate, so that the relative positions of multiple light-shielding plates can be adjusted simultaneously. More complex light spot adjustments can be achieved through the base plate, outer shell and transmission mechanism.
It enables the synchronous adjustment of multiple light-shielding plates, enriching the decorative effect of the light spot, and maintains the position of the light spot through damping adjustment, thereby improving the user experience.
Smart Images

Figure CN115854285B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of lighting, in particular to a bidirectional sliding wall lamp. BACKGROUND
[0002] The wall lamp is a kind of auxiliary lighting decorative lamp installed on the wall, the core component is light source and light shield, by setting the relative position of light shield to light source, the shape and size of the light spot emitted by the wall lamp can be changed, thereby playing a decorative role.
[0003] However, the structure of the wall lamp is single, and the relative position of the light shield is generally fixed, so the user cannot adjust the size of the light spot according to the change of the actual use demand. In order to solve this problem, part of the wall lamp uses a single rotating piece to change the size of the light spot. However, this method needs to set multiple light shields for each light source, and the relative positions of the multiple light shields cannot be adjusted at the same time, but can be adjusted one by one in sequence, which leads to inconvenient adjustment of the light spot of the wall lamp and affects the user experience. SUMMARY
[0004] The first aspect of the embodiment of the present application provides a bidirectional sliding wall lamp, which can realize simultaneous adjustment of the relative positions of multiple light shields.
[0005] The bidirectional sliding wall lamp provided by the embodiment of the present application comprises:
[0006] The center shaft comprises a center piece, a first shaft end and a second shaft end; the first shaft end and the second shaft end are symmetrically arranged around the center piece;
[0007] At least two light shields; at least one light shield is connected to the first shaft end, and at least one light shield is connected to the second shaft end.
[0008] In one implementation manner, the bidirectional sliding wall lamp further comprises a light source, and the light source is arranged on the center piece.
[0009] In one implementation manner, the bidirectional sliding wall lamp further comprises at least two bottom plates, and the bottom plates are symmetrically arranged around the center piece.
[0010] The bottom plate is provided with a shaft limiting groove;
[0011] The bottom plate is connected with the first shaft end and the second shaft end through the shaft limiting groove and the first sliding assembly respectively.
[0012] In one implementation manner, the bottom plate is a right-angled ladder type, and the upper bottom edges of the two bottom plates are oppositely inserted.
[0013] In one implementation manner, the bidirectional sliding wall lamp further comprises at least two housings, and the housings are symmetrically arranged around the center piece.
[0014] The shell and the bottom plate are connected, and the shell and the bottom plate wrap the center rotating shaft and the light shielding plate; the shape of the shell corresponds to the shape of the bottom plate.
[0015] The shell and the light shielding plate are provided with a light transmission area corresponding to the position of the light shielding plate, and the light transmission area is used for transmitting a light spot.
[0016] In an implementation manner, the shell is a right-angle ladder type, and the upper bottom edge of the shell is oppositely arranged.
[0017] In an implementation manner, the shell is provided with a transmission clamping groove on the shell opposite to the light transmission area, and is provided with a light shielding plate moving clamping groove below the light transmission area.
[0018] In an implementation manner, the bidirectional sliding wall lamp further comprises at least two transmission mechanisms.
[0019] The transmission mechanisms are symmetrically arranged around the center piece.
[0020] The transmission mechanism comprises a first transmission end and a second transmission end; the first transmission end is connected with the shell through the transmission clamping groove; the second transmission end is connected with the light shielding plate and places the light shielding plate in the light shielding plate moving clamping groove.
[0021] In an implementation manner, the first transmission end is a linear bearing, and the second transmission end is a long shaft.
[0022] In an implementation manner, the bidirectional sliding wall lamp further comprises a light shielding cloth, the light shielding cloth comprises a first fixed end and a second fixed end, the first fixed end is connected with the light shielding plate, and the second fixed end is connected with the shell.
[0023] In an implementation manner, the bottom plate is further provided with a bottom disc limiting groove.
[0024] In an implementation manner, the bidirectional sliding wall lamp further comprises a bottom disc, and the bottom disc is connected with the bottom plate through a second sliding assembly.
[0025] In an implementation manner, the second sliding assembly comprises:
[0026] An inner clamping piece and an outer clamping piece, the inner clamping piece and the outer clamping piece are oppositely arranged, the inner clamping piece is placed on the inner side of the bottom plate, and the outer clamping piece is placed on the outer side of the bottom plate.
[0027] Screws and nuts for connecting the inner clamping piece, the bottom plate, the outer clamping piece and the bottom disc; the second sliding assembly is used for adjusting the damping size between the bottom plate and the bottom disc.
[0028] In an implementation manner, the bidirectional sliding wall lamp further comprises a power supply arranged inside the shell.
[0029] The bidirectional sliding wall lamp provided by the application has the advantages that the bidirectional sliding wall lamp comprises a central rotating shaft, the central rotating shaft comprises a central piece and first and second rotating shaft ends which are arranged in a central symmetry around the central piece, and the first and second rotating shaft ends are connected with one light shielding plate respectively. When one of the light shielding plates is pushed, the first rotating shaft end is moved, the central rotating shaft is rotated around the central piece, the second rotating shaft end drives the other light shielding plate to rotate, and the relative positions of the multiple light shielding plates are simultaneously adjusted. In addition, the bidirectional sliding wall lamp can realize more complex simultaneous adjustment of the relative positions of the multiple light shielding plates and various decorative effects by arranging the bottom plate, the shell and the transmission mechanism. Finally, the damping size of the bidirectional sliding wall lamp during sliding is adjusted by arranging the bottom disc and the second sliding assembly, so that the bidirectional sliding wall lamp can be kept in position after the light spot is adjusted. BRIEF DESCRIPTION OF DRAWINGS
[0030] In order to more clearly illustrate the technical solutions in the embodiments of the application, the following will briefly introduce the drawings needed to be used in the embodiment description. Obviously, the drawings in the following description are only some embodiments of the application, and other drawings can also be obtained by those skilled in the art without any creative effort based on these drawings.
[0031] Figure 1 is a structural schematic diagram of the bidirectional sliding wall lamp provided by the embodiment of the application;
[0032] Figure 2 is another structural schematic diagram of the bidirectional sliding wall lamp provided by the embodiment of the application;
[0033] Figure 3 is still another structural schematic diagram of the bidirectional sliding wall lamp provided by the embodiment of the application;
[0034] Figure 4 is a whole schematic diagram of the bidirectional sliding wall lamp provided by the embodiment of the application;
[0035] Figure 5 is a placement schematic diagram of the light shielding cloth in the bidirectional sliding wall lamp provided by the embodiment of the application;
[0036] Figure 6 is a placement schematic diagram of the bottom disc in the bidirectional sliding wall lamp provided by the embodiment of the application;
[0037] Figure 7 is a structural schematic view of a second sliding assembly in a bidirectional sliding wall lamp provided by an embodiment of the present application;
[0038] The reference signs include: 100 - central rotating shaft, 110 - central piece, 120 - first rotating shaft end, 130 - second rotating shaft end, 200 - light shield, 300 - light source, 310 - light source fixing frame, 400 - bottom plate, 410 - rotating shaft limiting groove, 420 - first sliding assembly, 430 - chassis limiting groove, 500 - shell, 510 - light transmission area, 520 - transmission clamping groove, 530 - light shield moving clamping groove, 540 - light transmission plate, 600 - transmission mechanism, 610 - first transmission end, 620 - second transmission end, 700 - light shield cloth, 800 - chassis, 810 - second sliding assembly, 811 - inner clamping piece, 812 - outer clamping piece, 813 - screw, 814 - nut, 900 - power supply, 910 - power supply support. DETAILED DESCRIPTION
[0039] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application. In addition, it should be understood that the specific embodiments described herein are only used to illustrate and explain the present application, and are not used to limit the present application. In the embodiments of the present application, the orientation words such as "upper" and "lower" generally refer to the upper and lower in the actual use or working state of the device, and specifically refer to the direction of the drawing surface in the drawings; and "inner" and "outer" refer to the outline of the device. In addition, the terms "first" and "second" are only for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features. Therefore, the features limited by "first" and "second" can explicitly or implicitly include one or more of the features.
[0040] In an embodiment of the present application, a bidirectional sliding wall lamp is provided, referring to Figure 1 is a structural schematic view of a bidirectional sliding wall lamp provided by an embodiment of the present application. The bidirectional sliding wall lamp includes a central rotating shaft 100 and a light shield 200.
[0041] The central rotating shaft 100 includes a central piece 110, a first rotating shaft end 120 and a second rotating shaft end 130; the first rotating shaft end 120 and the second rotating shaft end 130 are symmetrically arranged around the central piece 110;
[0042] At least two light shielding plates 200; at least one light shielding plate 200 is connected to the first rotating shaft end 120, and at least one light shielding plate 200 is connected to the second rotating shaft end 130.
[0043] When one of the light shielding plates 200 is pushed, the center rotating shaft 100 rotates around the center part 110, and the first rotating shaft end 120 and the second rotating shaft end 130 drive the other light shielding plate 200 to rotate, and the angle of rotation can be set according to actual use requirements. In this way, the two light shielding plates 200 can move synchronously, thereby adjusting the light spot of the bidirectional sliding wall lamp.
[0044] Further, the present application is not limited to the case where there are two light shielding plates 200. If a more complex light spot effect is required, the number, shape and color of the light shielding plates 200 can be changed according to actual use requirements, or other structures that can have a decorative effect. As long as the light shielding plates 200 are connected to the first rotating shaft end 120 or the second rotating shaft end 130, the above-mentioned effects can be achieved.
[0045] In an implementation manner, the bidirectional sliding wall lamp further comprises a light source 300, and the light source 300 is arranged on the center part 110.
[0046] In an implementation manner, the light source 300 can be arranged on the center part 110 through a light source fixing frame 310.
[0047] In the embodiment of the present application, the light source 300 determines the final light spot effect of the bidirectional sliding wall lamp to a certain extent, and therefore different styles of light sources 300 can be selected according to actual use requirements. It should be noted that the light emitted by the light source 300 needs to be able to irradiate all the light shielding plates 200 at the same time, so that the light shielding plates 200 can effectively shield light and emit a light spot meeting the requirements.
[0048] In the embodiment of the present application, in order to realize the movement of one of the light shielding plates 200, the other light shielding plate 200 can move synchronously, and the light shielding plate 200 needs to be connected to the first rotating shaft end 120 or the second rotating shaft end 130. In the above structure, the light shielding plate 200 is directly connected to the first rotating shaft end 120 or the second rotating shaft end 130, and in other implementation manners, the light shielding plate 200 can also be indirectly connected to the first rotating shaft end 120 or the second rotating shaft end 130 through other transmission devices. The following will be introduced:
[0049] Referring to Figure 2 is another structural schematic view of the bidirectional sliding wall lamp provided by the embodiment of the present application.
[0050] In another embodiment of the present application, the bidirectional sliding wall lamp further comprises at least two bottom plates 400; the bottom plates 400 are arranged symmetrically around the center part 110;
[0051] In an implementation, when the two bottom plates 400 are in a right trapezoidal shape, the upper bases of the two bottom plates 400 are arranged in a penetrating manner, so that when one of the two bottom plates 400 is moved, the other bottom plate 400 can move relatively.
[0052] In the embodiment, the bottom plate 400 is used to transmit the movement state of the first rotating shaft end 120 and the second rotating shaft end 130. The shape and style of the bottom plate 400 can be set according to actual use requirements, and the shapes and styles of the two bottom plates 400 can be the same or different, as long as the two bottom plates 400 are connected with the first rotating shaft end 120 and the second rotating shaft end 130 respectively.
[0053] In an implementation, the bottom plate 400 can have different styles, which can bring more decorative effects to the bidirectional sliding wall lamp.
[0054] In the embodiment, the two bottom plates 400 can be directly connected with the first rotating shaft end 120 and the second rotating shaft end 130, or indirectly connected. The connection mode can be fixed connection or sliding connection, which can be set according to specific use requirements.
[0055] In an implementation, the bottom plate 400 is provided with a rotating shaft limiting groove 410, and the two bottom plates 400 are connected with the first rotating shaft end 120 and the second rotating shaft end 130 through the rotating shaft limiting groove 410 and a first sliding assembly 420 respectively. The first sliding assembly 420 is any component that can adapt to the rotating shaft limiting groove 410 and realize sliding effect.
[0056] Referring to Figure 3 is a whole schematic view of the bidirectional sliding wall lamp provided in the embodiment.
[0057] In the embodiment, the bidirectional sliding wall lamp further comprises at least two housings 500, which are arranged symmetrically around the center piece 110. The housing 500 is connected with the bottom plate 400, so that the housing 500 and the bottom plate 400 wrap the center rotating shaft 100 and the light shield plate 200; the shape of the housing 500 corresponds to the shape of the bottom plate 400.
[0058] In an implementation, when the two housings 500 are in a right trapezoidal shape, the upper bases of the two housings 500 are arranged in a penetrating manner, so that when one of the two housings 500 is moved, the other housing 500 can move relatively.
[0059] It should be noted that the shape of the shell 500 and the shape of the bottom plate 400 correspond, including the shape of the shell 500 and the shape of the bottom plate 400 being the same, and the shape of the shell 500 and the shape of the bottom plate 400 being different but corresponding. The former makes the outer appearance of the bidirectional sliding wall lamp look like a complete whole, and the latter can realize more beautiful decorative effect of the bidirectional sliding wall lamp through the shell 500 and the bottom plate 400, for example, the shape of the shell 500 is smaller than the shape of the bottom plate 400, and the excess part of the bottom plate 400 can be made into a more complex shape.
[0060] In the embodiment of the application, the light-transmitting area 510 is arranged on the shell 500 and corresponds to the position of the light-shielding plate 200, and the light-transmitting area 510 is used to transmit the light spot.
[0061] In an implementable manner, the size and shape of the light-transmitting area 510 and the light-shielding plate 200 can be the same or different, and can be determined according to the final light spot effect.
[0062] In an implementable manner, the transmission clamping groove 520 is arranged on the shell 500 opposite the light-transmitting area 510, and the light-shielding plate moving clamping groove 530 is arranged below the light-transmitting area 510. Correspondingly, the bidirectional sliding wall lamp further comprises at least two transmission mechanisms 600, and the transmission mechanisms 600 are arranged symmetrically around the center piece 110.
[0063] The transmission mechanism 600 comprises a first transmission end 610 and a second transmission end 620; the first transmission end 610 is connected with the shell 500 through the transmission clamping groove 520; the second transmission end 620 is connected with the light-shielding plate 200 and places the light-shielding plate 200 in the light-shielding plate moving clamping groove 530.
[0064] In an implementable manner, the first transmission end 610 is a linear bearing, and the second transmission end 620 is a long shaft, and the linear bearing and the long shaft are matched with each other.
[0065] In the embodiment of the application, the bottom plate 400, the shell 500 and the transmission mechanism 600 are taken as a transmission device to realize the indirect connection between the light-shielding plate 200 and the first rotating shaft end 120 or the second rotating shaft end 130.
[0066] Referring to Figure 2When the two bottom plates 400 and the two housings 500 are right-angled trapezoids, the movement of the bidirectional sliding wall lamp is as follows: when the upper housing 500 is pushed from left to right, the left transmission mechanism 600 is driven to move from left to right, and the lower light shield plate 200 is driven to move from left to right by the left transmission mechanism 600; at the same time, due to the center rotating shaft 100 and the rotating shaft limiting groove 410 and the trapezoidal inclined edge of the housing 500, the lower housing 500 is pushed from right to left, the right transmission mechanism 600 is driven to move from right to left, and the lower light shield plate 200 is driven to move from right to left by the right transmission mechanism 600. In this way, the two light shield plates 200 move synchronously in the two light transmission areas 510, so that the light spots above and below the bidirectional sliding wall lamp are adjusted at the same time. In the above process, the adjustment of the light spot is from one light spot to two light spots. Further, with the increase in the number of light shield plates 200, the adjustment of the light spot can be from one light spot to multiple light spots.
[0067] Referring to Figure 4 is a schematic diagram of the placement of the light shielding cloth in the bidirectional sliding wall lamp provided by the embodiment of the application.
[0068] In an implementable manner, the bidirectional sliding wall lamp further comprises a light shielding cloth 700, the light shielding cloth 700 comprising a first fixed end 710 and a second fixed end 720, the first fixed end 710 being connected with the light shield plate 200, and the second fixed end 720 being connected with the housing 500.
[0069] In the embodiment of the application, the light shielding cloth 700 provides a more abundant light spot adjustment mode for the bidirectional sliding wall lamp.
[0070] When the two bottom plates 400 and the two housings 500 are right-angled trapezoids, and the light shielding cloth 700 exists, the movement of the bidirectional sliding wall lamp is as follows:
[0071] When the upper housing 500 is pushed from left to right, the left transmission mechanism 600 is driven to move from left to right, and the lower light shield plate 200 is driven to move from left to right by the left transmission mechanism 600, at this time, the area in the light transmission area 510 corresponding to the left side of the lower light shield plate 200 is shielded by the light shielding cloth 700; at the same time, due to the center rotating shaft 100 and the rotating shaft limiting groove 410 and the trapezoidal inclined edge of the housing 500, the lower housing 500 is pushed from right to left, the right transmission mechanism 600 is driven to move from right to left, and the lower light shield plate 200 is driven to move from right to left by the right transmission mechanism 600, at this time, the area in the light transmission area 510 corresponding to the right side of the upper light shield plate 200 is shielded by the light shielding cloth 700. In this way, the two light shield plates 200 move synchronously in the two light transmission areas 510, so that the light spots above and below the bidirectional sliding wall lamp are adjusted at the same time. In the above process, the adjustment of the light spot is from large to small.
[0072] Further, the light shielding cloth 700 can be provided with different transparency or shape to realize more rich decoration effect of the bidirectional sliding wall lamp.
[0073] Referring to Figure 5 is another structural schematic diagram of the bidirectional sliding wall lamp provided by the embodiment of the present application.
[0074] In an implementable manner, the bottom plate 400 is further provided with a bottom disc limiting groove 430.
[0075] In an implementable manner, referring to Figure 6 is a placing schematic diagram of the bottom disc in the bidirectional sliding wall lamp provided by the embodiment of the present application. The bidirectional sliding wall lamp further comprises a bottom disc 800, which is connected with the bottom plate 400 through a second sliding assembly 810.
[0076] Referring to Figure 7 is a structural schematic diagram of the second sliding assembly in the bidirectional sliding wall lamp provided by the embodiment of the present application.
[0077] In an implementable manner, the second sliding assembly 810 comprises an inner clamping piece 811, an outer clamping piece 812, a screw 813 and a nut 814. The inner clamping piece 811 and the outer clamping piece 812 are oppositely arranged, the inner clamping piece 811 is placed on the inner side of the bottom plate 400, and the outer clamping piece 812 is placed on the outer side of the bottom plate 400. The screw 813 and the nut 814 are used to connect the inner clamping piece 811, the bottom plate 400, the outer clamping piece 812 and the bottom disc 800. The second sliding assembly 810 is used to adjust the damping size between the bottom plate 400 and the bottom disc 800, so that the bidirectional sliding wall lamp can be kept in position after the light spot adjustment is completed.
[0078] When the two bottom plates 400 and the two housings 500 are right-angled trapezoids, the light shielding cloth 700 is provided, and the bottom disc 800 is provided, the movement mode of the bidirectional sliding wall lamp is as follows:
[0079] In the embodiment of the present application, the bottom plate 400, the housing 500, the transmission mechanism 600 and the bottom disc 800 are taken as a transmission device to realize the indirect connection between the light shielding plate 200 and the first rotating shaft end 120 or the second rotating shaft end 130. Referring to Figure 5When the upper shell 500 is pushed from left to right, the left transmission mechanism 600 is driven to move from left to right, and the lower sunshade 200 is driven to move from left to right by the left transmission mechanism 600. The light blocked by the sunshade cloth 700 becomes more, and the angle of the light spot becomes smaller. At the same time, due to the center shaft 100 and the shaft limiting groove 410, the chassis 800, the chassis limiting groove 430, the second sliding assembly, and the trapezoidal bevel of the shell 500, the lower shell 500, the right transmission mechanism 600, and the upper sunshade 200 move relatively to the left, the light blocked by the sunshade cloth 700 becomes less, and the angle of the light spot becomes larger. In this way, the sunshade 200 moves in the light transmission area 510, so that the light spots above and below the bidirectional sliding wall lamp are adjusted at the same time.
[0080] In an implementation manner, the bidirectional sliding wall lamp further comprises a power supply 900, which is arranged inside the shell 500.
[0081] In an implementation manner, the power supply 900 is arranged inside the shell 500 through a power supply support 910.
[0082] The bidirectional sliding wall lamp and the bidirectional sliding wall lamp provided by the embodiments of the present application are described in detail above, and the principles and implementation manners of the present application are described by applying specific examples. The above description of the embodiments is only used to help understand the method of the present application and its core idea; meanwhile, for those skilled in the art, according to the idea of the present application, the specific implementation manner and application range will be changed, and the above description should not be understood as a limitation of the present application.
Claims
1. A two-way sliding wall lamp, characterized in that, include: A central rotating shaft (100) includes a central component (110), a first rotating shaft end (120), and a second rotating shaft end (130); the first rotating shaft end (120) and the second rotating shaft end (130) are symmetrically arranged around the central component (110); At least two light-shielding plates (200); at least one light-shielding plate (200) is connected to the first rotating shaft end (120), and at least one light-shielding plate (200) is connected to the second rotating shaft end (130); At least two base plates (400); At least two outer shells (500) are symmetrically arranged around the central member (110); the outer shells (500) and the base plate (400) are connected, and the outer shells (500) and the base plate (400) enclose the central rotating shaft (100) and the light shield (200); the shape of the outer shell (500) corresponds to the shape of the base plate (400); a light-transmitting area (510) is provided on the outer shell (500) corresponding to the position of the light shield (200), and the light-transmitting area (510) is used to transmit light spots; a transmission groove (520) is provided on the outer shell (500) on the shell opposite to the light-transmitting area (510), and a light shield moving groove (530) is provided below the light-transmitting area (510); At least two transmission mechanisms (600) are symmetrically arranged around the central member (110); each transmission mechanism (600) includes a first transmission end (610) and a second transmission end (620); the first transmission end (610) is connected to the outer shell (500) through the transmission slot (520); the second transmission end (620) is connected to the light shield (200) and places the light shield (200) in the light shield moving slot (530).
2. The bidirectional sliding wall lamp according to claim 1, characterized in that, The bidirectional sliding wall lamp also includes a light source (300), which is disposed on the central member (110).
3. The bidirectional sliding wall lamp according to claim 2, characterized in that, The base plate (400) is symmetrically arranged around the center member (110); The base plate (400) is provided with a pivot limiting groove (410); The base plate (400) is connected to the first rotating shaft end (120) and the second rotating shaft end (130) respectively through the rotating shaft limiting groove (410) and the first sliding component (420).
4. The bidirectional sliding wall lamp according to claim 3, characterized in that, The base plate (400) is a right trapezoid, and the upper bottom edges of the two base plates (400) are interspersed with each other.
5. The bidirectional sliding wall lamp according to claim 1, characterized in that, The outer shell (500) is a right trapezoid, and the upper bottom edges of the outer shell (500) are intersecting each other.
6. The bidirectional sliding wall lamp according to claim 1, characterized in that, The first transmission end (610) is a linear bearing, and the second transmission end (620) is a long shaft.
7. The bidirectional sliding wall lamp according to claim 1, characterized in that, The bidirectional sliding wall lamp also includes a light-shielding cloth (700), which includes a first fixed end (710) and a second fixed end (720). The first fixed end (710) is connected to the light-shielding plate (200), and the second fixed end (720) is connected to the outer shell (500).
8. The bidirectional sliding wall lamp according to claim 3, characterized in that, The base plate (400) is also provided with a chassis limiting groove (430).
9. The bidirectional sliding wall lamp according to claim 8, characterized in that, The bidirectional sliding wall lamp also includes a chassis (800), which is connected to the base plate (400) via a second sliding component (810).
10. The bidirectional sliding wall lamp according to claim 9, characterized in that, The second sliding component (810) includes: An inner clip (811) and an outer clip (812) are arranged opposite to each other. The inner clip (811) is placed on the inner side of the base plate (400), and the outer clip (812) is placed on the outer side of the base plate (400). Screws (813) and nuts (814) are used to connect the inner clamp (811), the base plate (400), the outer clamp (812), and the chassis (800); the second sliding assembly (810) is used to adjust the damping between the base plate (400) and the chassis (800).
11. The bidirectional sliding wall lamp according to claim 1, characterized in that, The bidirectional sliding wall lamp also includes a power supply (900), which is located inside the housing (500).
Citation Information
Patent Citations
Bidirectional sliding wall lamp
CN219102794U