Dual-purpose light for lighting atmosphere

The combination of slider and adjustment arm enables flexible switching between ambient lighting mode and general lighting mode for dual-purpose lighting, solving the problems of insufficient aesthetics and simplicity in existing technologies and providing greater adjustment flexibility and convenience.

CN224680697UActive Publication Date: 2026-08-25LAIMEI TECHNOLOGY (SHENZHEN) CO LTD
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Patent Information

Application Number
CN202521934328.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2024-09-12
Filing Date
2025-09-09
Publication Date
2026-08-25
Estimated Expiration
2035-09-09

AI Technical Summary

Technical Problem

Existing ambient lighting and lighting dual-purpose lights lack aesthetic appeal and simplicity when switching between ambient lighting and general lighting modes, and the light source position adjustment is not flexible enough to meet the diverse needs of users.

Method used

The system employs a combination of a sliding component and an adjusting arm. The light source is mounted on the adjusting arm. By rotating and sliding the adjusting arm around the R-axis, combined with the rotation of the light source around the O-axis, the position and angle of the light source in space can be adjusted, thus enabling the switching between ambient lighting mode and general lighting mode.

Benefits of technology

This dual-purpose lighting and ambient lighting lamp features a sleek and simple design in ambient lighting mode, enhancing its aesthetic appeal. Its compact size also makes it easy to store, meeting diverse lighting needs.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224680697U_ABST
    Figure CN224680697U_ABST
Patent Text Reader

Abstract

The utility model discloses a dual -purpose lamp of lighting atmosphere, including light -transmitting main part, sliding element, adjusting arm and light source, sliding element is along Y axle and is slidably arranged on the lateral wall of light -transmitting main part, adjusting arm is installed on the sliding element, the sliding element still has the R axle of horizontal arrangement, and adjusting arm can rotate around R axle and still can slide relative to sliding element, the light source is located at the end of adjusting arm, and adjusting arm has the O axle of horizontal arrangement, and the light source can rotate around O axle. Compared with the prior art, the utility model discloses a dual -purpose lamp of lighting atmosphere takes a new adjusting mode to move light source, changes the position of light source and makes the utility model discloses a dual -purpose lamp of lighting atmosphere have atmosphere lamp mode and lighting mode, when adopting atmosphere lamp mode, adjusting arm adjusts to the position of mutual parallelism with light -transmitting main part, the utility model discloses the modelling is more smooth and simple, is not conspicuous, has more aesthetic feeling, and the volume is small and delicate, is more convenient storage.
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Description

Technical Field

[0001] This utility model relates to the field of lighting equipment, and in particular to a dual-purpose lighting and ambient lighting lamp. Background Technology

[0002] Ambient lights are lamps that emit a warm light source and are widely used in settings such as bedrooms and studies. They have gained popularity among consumers in recent years because they create a warm and pleasant atmosphere. Meanwhile, main lights, due to their ability to provide ample illumination, are the most frequently used type of light in daily life. Existing lighting devices switch between ambient lighting and main lighting modes by adjusting the color temperature of the light source. However, such devices only change the color temperature of the light source, rather than altering the position of the light source to switch between ambient lighting and main lighting modes, thus making dual-mode lighting lack aesthetic appeal. Existing technology includes dual-mode lighting that switches between ambient lighting and main lighting modes by changing the position of the light source.

[0003] Chinese patent application CN 112513524 A discloses a lighting device comprising a light-transmitting body having an aperture through which light enters the body; and a light source movable relative to the body to allow the lighting device to selectively employ one of a first configuration and a second configuration, wherein in the first configuration the light source is positioned above the aperture to illuminate the interior of the body, and in the second configuration the light source is laterally spaced from the aperture. When the light source is positioned to illuminate the interior of the light-transmitting body, the lighting device is placed in a first or "room lighting" configuration, wherein light that has passed through the light-transmitting body illuminates the room or other external environment. When the light source is moved away from the light-transmitting body, the lighting device is placed in a second or "task lighting" configuration, wherein the room, task area, or other work surface is directly illuminated by light emitted from the light source. This allows the task area to be illuminated by relatively intense light emitted by the light source. It also discloses that "the lighting device (10) includes a light source (18), a base (14), and a hinged support (16). The support (16) has: a first arm (58) rotatable relative to the base (14) about a first axis (X1); a second arm (80) on which the light source (18) is mounted; and a connecting portion (76) connecting the second arm (80) to the first arm (58) for movement relative to the first arm about a second axis (X2) parallel to the first axis (X1). The second arm (80) is also movable relative to the connecting portion (76) about a third axis (X3) which intersects and is orthogonal to the second axis (X2) to change the orientation of the light source (18) relative to the base (14)." In the first configuration position (ambient light mode), the first and second arms of the aforementioned lighting device are parallel and horizontal in the vertical direction. The two parallel arms intersect the light-transmitting main body in an L-shape. Therefore, when switching to ambient light mode, the lamp arms cannot be fully retracted, resulting in a lack of simplicity and aesthetics in ambient light mode. This is one point that needs improvement. Furthermore, in the second configuration position (lighting mode), the position of the light source can only be rotated 180° at a constant height and relative to the second arm, but cannot be adjusted in height. Therefore, this is a second point that needs improvement.

[0004] Therefore, there is an urgent need for a dual-purpose lighting and ambient lighting lamp that uses a new adjustment method to switch between ambient lighting and general lighting modes to overcome the above-mentioned shortcomings. Utility Model Content

[0005] The purpose of this invention is to provide a dual-purpose lighting and ambient light that uses a new adjustment method to switch between ambient light mode and general lighting mode.

[0006] To achieve the above objectives, the present invention provides a dual-purpose lighting and ambient lighting lamp, comprising a light-transmitting body, a sliding member, an adjusting arm, and a light source; the sliding member is slidably disposed on the side wall of the light-transmitting body along the Y-axis; the adjusting arm is mounted on the sliding member; the sliding member also has a horizontally arranged R-axis, and the adjusting arm can rotate around the R-axis while also sliding relative to the sliding member; the light source is disposed at the end of the adjusting arm, and the adjusting arm has a horizontally arranged O-axis, and the light source can rotate around the O-axis.

[0007] Compared with existing technologies, this utility model's dual-purpose lighting and ambient lighting lamp adopts a new adjustment method to move the light source. By changing the position of the light source, this utility model's dual-purpose lighting and ambient lighting lamp can have both ambient lighting mode and general lighting mode. Since the light source is located on the adjustment arm, and the adjustment arm is located on the sliding member, when the adjustment arm slides relative to the sliding member along the Y-axis, the position of the light source in the Y-axis direction can be adjusted; when the adjustment arm rotates relative to the R-axis, the angle of the adjustment arm relative to the light-transmitting body can be adjusted, so that the adjustment arm is perpendicular, parallel, or intersecting the light-transmitting body; when the light source rotates relative to the O-axis, the light emission direction of the light source can be adjusted. The light source can be adjusted so that the light output direction is directly opposite to or deviates from the light source entrance of the light-transmitting body. Therefore, the height of the light source and the incident light can be adjusted in space. In addition, the angle of the adjustment arm can also be adjusted. When the ambient light mode is adopted, the adjustment arm is adjusted to a position parallel to the light-transmitting body, and the light source is adjusted to be directly opposite the light source entrance of the light-transmitting body. This makes the dual-purpose lighting and ambient light of this utility model more streamlined and simple in the ambient light mode, not obtrusive, and more aesthetically pleasing. At the same time, when the dual-purpose lighting and ambient light of this utility model is in the ambient light mode position, it can achieve the purpose of being compact and more convenient to store.

[0008] Preferably, the sliding member includes a first moving member and a second moving member. The first moving member is slidably disposed on the side wall of the light-transmitting body, and the second moving member is rotatably disposed on the first moving member about the R-axis. The adjusting arm is slidably disposed on the second moving member.

[0009] Preferably, the first moving member includes a first slider and a first fixed seat covering the first slider, the first fixed seat being connected to the first slider; the light-transmitting body has a first track, the first slider being slidably disposed on the first track; the first track is arranged along the Y-axis direction; the second moving member includes a second slider and a second fixed seat covering the second slider, the second fixed seat being connected to the second slider; the adjusting arm is equipped with a second track, the second track being slidably disposed on the second slider, the second track being arranged along the length direction of the adjusting arm.

[0010] Preferably, a damping shaft is simultaneously inserted inside the first moving member and the second moving member. The damping shaft is located on the R-axis and includes two mutually rotating ends, one end of which is inserted inside the first moving member and the other end of which is inserted inside the second moving member.

[0011] Preferably, the first moving member includes at least one first slider and a first connecting plate for connecting all the first sliders, the light-transmitting body has a first track, the first track is arranged along the Y-axis direction, and all the first sliders are spaced apart and slide simultaneously on the first track; the second moving member includes at least one second slider and a second connecting plate for connecting all the second sliders, the adjusting arm is mounted with a second track, the second track is arranged along the length direction of the adjusting arm, and all the second sliders are spaced apart and slide simultaneously on the second track.

[0012] Preferably, a first mounting hole is passed through the middle of the first connecting plate, and a plurality of second mounting holes are passed through the upper and / or lower parts of the first connecting plate; a third mounting hole is passed through the middle of the second connecting plate, and a plurality of fourth mounting holes are passed through the upper and / or lower parts of the second connecting plate.

[0013] Preferably, the first moving member further includes a first damping adjustment assembly, which includes a first movable block, a first manual adjustment member, and a first elastic member. The first movable block is slidably disposed on the first track and connected to the first slider through a first connecting plate. The first movable block is located between the first track and the first connecting plate. The first elastic member is disposed inside the first movable block. The first manual adjustment member is threadedly connected to the first connecting plate and passes through the first connecting plate to press against the first elastic member. The first elastic member presses against the first movable block. The first manual adjustment member rotates relative to the first connecting plate to change the pressure on the first elastic member, thereby changing the pressure on the first movable block, thus changing the friction between the first movable block and the first track, and thus changing the sliding damping of the first moving member. The second moving part also includes a second damping adjustment assembly, which includes a second movable block, a second manual adjustment component, and a second elastic component. The second movable block is slidably disposed on the second track and connected to the second slider through a second connecting plate. The second movable block is located between the second track and the second connecting plate. The second movable block has a second elastic component inside. The second manual adjustment component is threadedly connected to the second connecting plate and passes through the second connecting plate to press against the second elastic component. The second elastic component presses against the second movable block. The second manual adjustment component rotates relative to the second connecting plate to change the pressure on the second elastic component, thereby changing the pressure on the second movable block, thus changing the friction between the second movable block and the second track, and thus changing the sliding damping of the second sliding assembly.

[0014] Preferably, the first moving member further includes a first circuit board, and the second moving member further includes a second circuit board, with the first circuit board and the second circuit board being electrically connected.

[0015] Preferably, the dual-purpose lighting and ambient lighting of this utility model further includes a buffer ring, which is disposed at the light outlet of the light source; or, the buffer ring is disposed at the light source inlet of the light-transmitting body.

[0016] Preferably, the light-transmitting body has multiple light-transmitting areas. The light-transmitting body includes a first light-transmitting column and a second light-transmitting column. The first light-transmitting column is located inside the second light-transmitting column. The first light-transmitting column has multiple small round holes, and the second light-transmitting column has multiple holes that form light-transmitting areas. Attached Figure Description

[0017] Figure 1 This is a perspective view of the dual-purpose lighting and ambient lighting lamp of this utility model in ambient lighting mode.

[0018] Figure 2 yes Figure 1 A 3D view of the light source rising along the Y-axis.

[0019] Figure 3 yes Figure 2 The adjustment arm rotates to a three-dimensional view perpendicular to the light-transmitting main body.

[0020] Figure 4 yes Figure 3 The image shows the adjustment arm rotating to the other side and the light source rotating 180°.

[0021] Figure 5 This is a sectional perspective view of the first embodiment of the present utility model of a dual-purpose lighting and ambient lighting lamp after being cut along the middle.

[0022] Figure 6 yes Figure 5 Enlarged view of point B in the image.

[0023] Figure 7 This is a partially enlarged schematic diagram of the first embodiment of the present utility model of a dual-purpose lighting and ambient light lamp after the light-transmitting main body and the adjustment arm are hidden, and after the first fixing seat and the second fixing seat are blown open.

[0024] Figure 8 This is a schematic diagram of the first moving member of the dual-purpose lighting and ambient lighting lamp according to the first embodiment of the present invention after rotation relative to the second moving member.

[0025] Figure 9 It is Figure 8 A schematic diagram of the first and second fixing seats after they burst open.

[0026] Figure 10 This is a cross-sectional schematic diagram of the light source and adjustment arm of the dual-purpose lighting and ambient lighting lamp of this utility model.

[0027] Figure 11 This is a cross-sectional view of the first mating surface of the light source and the second mating surface of the adjusting arm.

[0028] Figure 12 This is a cross-sectional view of the retaining ring and the boss of the shaft of the adjusting arm.

[0029] Figure 13 This is a three-dimensional schematic diagram of the second embodiment of the present invention, showing the dual-purpose lighting and ambient lighting lamp with the main body and adjustment arm housing concealed.

[0030] Figure 14 This is an enlarged diagram of point D in 13.

[0031] Figure 15 This is an enlarged perspective view of the sliding component and damping shaft of the dual-purpose lighting and ambient lighting lamp according to the second embodiment of this utility model.

[0032] Figure 16 This is a three-dimensional schematic diagram of the first moving part of the dual-purpose lighting and ambient lighting lamp according to the second embodiment of this utility model.

[0033] Figure 17 This is an exploded view of the first moving part of the dual-purpose lighting and ambient lighting lamp according to the second embodiment of this utility model.

[0034] Figure 18 This is an exploded view of the second moving part of the dual-purpose lighting and ambient lighting lamp according to the second embodiment of this utility model.

[0035] Figure 19 yes Figure 15 Enlarged cross-sectional view of the slider and damping shaft. Detailed Implementation

[0036] To explain the technical content and structural features of this utility model in detail, the following description is provided in conjunction with the embodiments and accompanying drawings.

[0037] Please see Figures 1 to 12 This invention demonstrates a first embodiment of a dual-purpose lighting and ambient lighting lamp 100a. It includes a base 1, a light-transmitting body 2, a sliding member 3a, an adjusting arm 4, and a light source 5. The light-transmitting body 2 is vertically mounted on the base 1 and has a light source inlet 21. The sliding member 3a is slidably mounted on the side wall of the light-transmitting body 2 along the Y-axis. The adjusting arm 4 is mounted on the sliding member 3a; the sliding member 3a also has a horizontally arranged R-axis, allowing the adjusting arm 4 to rotate around the R-axis while also sliding relative to the sliding member 3. The light source 5 is located at the end of the adjusting arm 4, which has a horizontally arranged O-axis, allowing the light source 5 to rotate around the O-axis. Specifically, the light emission direction of the light source 5 is always orthogonal to the O-axis. However, in other embodiments, the light emission direction of the light source 5 is always parallel to the O-axis, so this is not a limitation. Preferably, in other embodiments, the light-transmitting body 2 is detachably and rotatably mounted on the base 1, so this is not a limitation.

[0038] The movement of the light source 5 relative to the light-transmitting body 2 enables the dual-purpose lighting and ambient lighting lamp 100 to have both ambient lighting mode and illumination mode. When the light source 5 moves to cover the light source inlet 21, the dual-purpose lighting and ambient lighting lamp 100 is in ambient lighting mode, such as... Figure 1 As shown, light enters the light-transmitting body 2 through the light source inlet 21 and then exits; when the light source 5 deviates from the light source inlet 21, the dual-purpose lighting and ambient lighting 100 is in lighting mode, illuminating the task area, as shown. Figures 2 to 5 As shown. More specifically, as follows: Please see Figures 5 to 9 This invention demonstrates a dual-purpose lighting and ambient lighting lamp according to a first embodiment of the present invention. The sliding member 3 includes a first moving member 31 and a second moving member 32. The first moving member 31 is slidably disposed on the side wall of the light-transmitting body 2, and the second moving member 32 is rotatably disposed on the first moving member 31 about an R-axis. The adjusting arm 4 is slidably disposed on the second moving member 32.

[0039] Please see Figures 5 to 9The first moving member 31 includes a first slider 311 and a first fixed seat 312 covering the first slider 311. The first fixed seat 312 is connected to the first slider 311. The light-transmitting body 2 has a first track 61, and the first slider 311 slides on the first track 61. The first track 61 is arranged along the Y-axis direction.

[0040] Please see Figures 5 to 9 Specifically, the second moving member 32 includes a second slider 321 and a second fixed seat 322 covering the second slider 321. The second fixed seat 322 is connected to the second slider 321. The adjusting arm 4 is equipped with a second track 62, which slides on the second slider 321 and is arranged along the length of the adjusting arm 4.

[0041] Please see Figures 5 to 9 Specifically, a damping shaft 7 is simultaneously installed inside both the first fixed seat 312 and the second fixed seat 322, and the damping shaft 7 is located on the R-axis. One end of the damping shaft 7 is inserted through the first fixed seat 312, and the other end is inserted through the second fixed seat 322. The damping shaft 7 includes two ends that can rotate relative to each other; one end of the damping shaft 7 can rotate relative to the other end as long as it is subjected to a force resisting damping. The damping shaft 7 is a commercially available part, and its structure and principle are well known to those skilled in the art, so they will not be described in detail here. It is understood that the damping shaft 7 enables the second moving member 32 to rotate relative to the first moving member 31.

[0042] Please see Figures 5 to 9 Specifically, to facilitate the assembly of the first fixed base 312, the first slider 311, and the damping shaft 7, the first fixed base 312 has a first mounting hole 3121 through its center for the damping shaft 7 to pass through. The bottom surface of the first fixed base 312 has a second mounting hole (not shown in the figure) directly opposite the first mounting hole 3121, and the second mounting hole is also connected to the first mounting hole 3121. The top and bottom surfaces of the first fixed base 312 also have several third mounting holes 3123 for fixed installation with the first slider 311. For example, there are two third mounting holes 3123 on the top surface and two third mounting holes 3123 on the bottom surface, respectively located on both sides of the second mounting hole.

[0043] Please see Figures 5 to 9Similarly, to facilitate the assembly of the second fixed base 322, the second slider 321, and the damping shaft 7, a fourth mounting hole 3221 for the damping shaft 7 to pass through is provided in the middle of the second fixed base 322. A fifth mounting hole 3222, directly opposite the fourth mounting hole 3221, is provided on the bottom surface of the second fixed base 322, and the fifth mounting hole 3222 is also connected to the fourth mounting hole 3221. The top and bottom surfaces of the second fixed base 322 are also provided with several sixth mounting holes 3223 for fixed installation with the second slider 321. For example, there are two sixth mounting holes 3223 on the top surface; and two sixth mounting holes 3223 on the bottom surface, respectively located on both sides of the fifth mounting hole 3222.

[0044] It is worth noting that the first slider 311 and the first track 61 are damped, and the second slider 321 and the second track 62 are damped. The damped sliders and tracks are commercially available parts and are well known to those skilled in the art, so they will not be described in detail here.

[0045] Please see Figure 6 and Figure 9 The first moving member 31 further includes a first circuit board 313, and the second moving member 32 further includes a second circuit board 323. Specifically, the first circuit board 313 is connected to the side of the first slider 311, and the second circuit board 323 is connected to the side of the second slider 321. The first circuit board 313 and the second circuit board 323 are electrically connected; for example, a first spring probe 71 is connected between the first circuit board 313 and the second circuit board 323, so as to connect the first circuit board 313 and the second circuit board 323, so that the light source 5 can work continuously and stably. It is understood that the first spring probe 71 is a commercially available part, and its structure and principle are well known to those skilled in the art, so it will not be described in detail here. For example, one end of the first spring probe 71 is soldered to the second circuit board 323, and the other end of the first spring probe 71 is in contact with the first circuit board 313.

[0046] Please see Figure 9 Specifically, the first circuit board 313 has a first conductive area (not shown in the figure), which is located in the middle of the first circuit board 313, and the contact end of the first spring probe 71 contacts the first conductive area. For example, the first conductive area is a circular copper foil area, but it is not limited thereto.

[0047] Please see Figure 6 and Figure 9Preferably, the damping shaft 7 has a hollow structure in the middle, and the first spring probe 71 passes through the hollow structure of the damping shaft 7. It is understood that the center of the damping shaft 7 is aligned with the center of the first conductive area, so that the first spring probe 71 contacts the first conductive area after passing through the damping shaft 7. It is understood that, since the damping shaft 7 is on the R-axis, when the second moving member 32 rotates relative to the first moving member 31 for adjustment, the first spring probe 71 always rotates around the R-axis. Preferably, the outer edge of the first spring probe 71 is also fitted with a first insulating tube (not shown in the figure) to prevent short circuits and ensure safety.

[0048] Please see Figure 6 and Figure 9 Preferably, to ensure a more stable electrical connection between the first circuit board 313 and the second circuit board 323, a second spring probe 72 is connected between the first circuit board 313 and the second circuit board 323, spaced apart from the first spring probe 71. The first circuit board 313 also has a second conductive area 3132, which is an arc-shaped area centered on the first conductive area. Specifically, the central angle corresponding to the arc-shaped area is 90°-270°. Preferably, in this embodiment, the central angle corresponding to the arc-shaped area is 270°, but it is not limited thereto. It is understood that an arc-shaped groove 3124 for the second spring probe 72 to move is provided in the first fixing seat 312, and the arc-shaped groove 3124 corresponds to the arc-shaped area. Preferably, the outer edge of the second spring probe 72 is also fitted with a second insulating tube (not shown in the figure) to prevent short circuits and ensure safety.

[0049] Please see Figure 6 Preferably, since the second spring probe 72 moves within the second conductive area 3132 when the second moving member 32 rotates relative to the first moving member 31, friction is generated during this movement. This friction can easily cause the second spring probe 72 to break. To protect the second spring probe 72 from easy breakage and extend its service life, the second moving member 32 also includes a pressure post 324, which is orthogonally aligned with the second spring probe 72. It is understood that the top surface of the second fixed base 322 is provided with a seventh mounting hole 3224 for the pressure post 324 to pass through.

[0050] Please see Figures 6 to 9Preferably, the first circuit board 313 has a first winding end, and the second circuit board 323 has a second winding end. The first winding end has at least two first through holes 3133 for the power cable to pass through; the second winding end has at least two second through holes 3231 for the power cable to pass through. The power cable passes through two first through holes 3133 and then connects to the first circuit board 313, and passes through two second through holes 3231 and then connects to the second circuit board 323. When the light source 5 moves, the internal power cable also moves accordingly. The first through holes 3133 and the second through holes 3231 help prevent the power cable from being pulled apart by sudden force.

[0051] Please see Figure 5 The light source 5 includes a housing 51, a light source body 52, and a heat sink 53. The light source body 52 and the heat sink 53 are located inside the housing 51. The heat sink 53 is located at the end of the housing 51, and the end of the housing 51 has heat dissipation holes for airflow. For example, the heat sink 53 is a fan. The light source 5 also includes a rotating shaft 54 ​​located on the side wall of the housing 51. The rotating shaft 54 ​​rotates about the O-axis relative to the end of the adjusting arm 4.

[0052] Please see Figure 5 and Figures 10 to 12Specifically, the pivot 54 includes a shaft 541 extending into the adjusting arm 4. Preferably, the shaft 541 is a hollow structure, with the power cord passing through it. Specifically, the pivot 54 includes a first contact surface that engages with the adjusting arm 4, and the adjusting arm 4 has a second contact surface that engages with the first contact surface. The first contact surface has a spherical protrusion 542, and the second contact surface has a spherical groove 41 that engages with the spherical protrusion 542. Multiple spherical grooves 41 are centrally symmetrically distributed with the O-axis as the center. The engagement of the spherical protrusions 542 and the spherical grooves 41 allows the light source 5 to rotate at multiple levels. During rotation of the light source 5, the spherical protrusion 542, under the action of torsional force, disengages from the previous spherical groove 41 and re-engages into the next spherical groove 41, resulting in a slight audible feedback sound and tactile feedback for each level of rotation. Preferably, in this embodiment, the rotation of the light source 5 has a travel of 180° clockwise and 180° counterclockwise, ensuring a large rotation range while preventing excessive winding of the power cord. To prevent the rotation of the light source 5 from exceeding the 180° travel, a boss 543 protrudes radially outward from the shaft 541. The adjusting arm 4 has a stop ring 42 sleeved on the shaft 541. The stop ring 42 has a groove 421 for the boss 543 to slide on, and both ends of the groove 421 abut against the boss 543. The central angle corresponding to the groove 421 is 180°. It is understood that, regardless of whether the rotation is clockwise or counterclockwise, when the travel is exceeded, the boss 543 will abut against the end of the groove 421, thereby prompting the user to stop rotating the light source 5. Of course, in other embodiments, the central angle corresponding to the channel 421 can be set to 140°, 150°, 160°, 170°, 190°, 200°, 210°, 220°, 230°, 240°, etc., and is not limited thereto.

[0053] Please see Figure 10 Preferably, the outer wall of the shaft 541 is further provided with a first annular groove 5411 and a second annular groove 5412 in a radial direction. The first annular groove 5411 and the second annular groove 5412 are spaced apart along the axial direction. A rubber ring 5413 is fitted on the first annular groove 5411 to increase the friction force when the shaft 541 rotates, thereby playing a damping role. A retaining ring 5414 is engaged on the second annular groove 5412 to prevent the rotating shaft 54 ​​from disengaging from the adjusting arm 4.

[0054] Please see Figure 5Preferably, the dual-purpose lighting and ambient lighting lamp 100 of this utility model also includes a buffer ring 56, which is disposed at the light source inlet 21 of the light-transmitting body 2. Of course, in other embodiments, the light source 5 is provided with a light outlet 55, and the buffer ring 56 is disposed at the light outlet 55 of the light source 5, so it is not limited to this. With the help of the buffer ring 56, when the light source 5 is in the ambient lighting mode, when the light outlet 55 of the housing 51 is in contact with the light source inlet 21 of the light-transmitting body 2, it can play a buffering role and avoid hard impact. In addition, with the help of the buffer ring 56, light is prevented from leaking out from the gap between the light outlet 55 and the light source inlet 21.

[0055] Please see Figure 5 Specifically, the light-transmitting body 2 has a built-in color temperature adjustment plate 22. Specifically, the color temperature adjustment plate 22 is built into the top part of the light-transmitting body 2. When the light source 5 enters the interior of the light-transmitting body 2 from the light outlet 55, the light passes through the color temperature adjustment plate 22, making the light softer before it is emitted from the light-transmitting area 241 of the light-transmitting body 2. It can be understood that the color temperature adjustment plate 22 is a warm light plate.

[0056] Please see Figure 1 , Figure 2 as well as Figure 5 Specifically, the light-transmitting body 2 has multiple light-transmitting areas 241, each containing multiple small circular holes 231 for light transmission, thus creating an atmospheric effect. Specifically, the light-transmitting body 2 includes a first light-transmitting column 23 and a second light-transmitting column 24. For example, both the first light-transmitting column 23 and the second light-transmitting column 24 are hollow cylindrical structures; in other embodiments, they can also be hollow polygonal prism structures, and are not limited thereto. The first light-transmitting column 23 is located within the second light-transmitting column 24 and has multiple small circular holes 231. The second light-transmitting column 24 has multiple elongated holes forming the light-transmitting areas 241; these can also be other shapes such as elliptical, circular, or irregular shapes. By creating the small circular holes 231 on the first light-transmitting column 23 and the elongated holes on the second light-transmitting column 24, the manufacturing process of the light-transmitting body 2 is simplified, saving manufacturing costs. Of course, in other embodiments, an elongated slot can be formed on the light-transmitting body 2, or a small round hole 231 can be formed directly in the elongated slot, which can also achieve the same lighting effect. However, the manufacturing process of such a light-transmitting body 2 would be complex and costly.

[0057] Please see Figures 1 to 4 as well as Figures 10 to 19 The present invention demonstrates a second embodiment of the dual-purpose lighting and ambient lighting lamp 100. The differences between this lamp and the first embodiment are: (1) the specific structure of the sliding member is different; and (2) the electrical connection method between the first circuit board and the second circuit board is different.

[0058] Specifically, please refer to Figures 10 to 19 The sliding member 3b includes a first moving member 31b and a second moving member 32b. The first moving member 31b is slidably disposed on the side wall of the light-transmitting body 2, and the second moving member 32b is rotatably disposed on the first moving member 31b around the R axis. The adjusting arm 4 is slidably disposed on the second moving member 32b.

[0059] Please see Figures 10 to 19 The first moving member 31b includes at least one first slider 31b and a first connecting plate 314 for connecting all the first sliders 31b. For example, in this embodiment, there are two first sliders 311b. Of course, in other embodiments, there may be one, three, four, or five first sliders 311b, and it is not limited thereto. The light-transmitting body 2 has a first track 61, which is arranged along the Y-axis. Specifically, two first sliders 311b are spaced apart and slide simultaneously on the first track 61. By using multiple first sliders 311b, the force-bearing area between the first sliders 311b and the first track 61 is increased, thus reducing the pressure and making the sliding of the first moving member 31b more stable and reliable.

[0060] Please see Figures 10 to 19 The second moving member 32b includes at least two second sliders 321b and a second connecting plate 325 for connecting all the second sliders 321b. For example, in this embodiment, there are two second sliders 321b; however, in other embodiments, there may be three, four, or five second sliders 321b, and this is not a limitation. The adjusting arm 4 is equipped with a second track 62, which is arranged along the length of the adjusting arm 4. Specifically, the two second sliders 321b are spaced apart and slide simultaneously on the second track 62. By using multiple second sliders 321b, the force-bearing area between the second sliders 321b and the second track 62 is increased, thus reducing the pressure and making the sliding of the second moving member 32b more stable and reliable.

[0061] Please see Figures 10 to 19Specifically, the first connecting plate 314 and the second connecting plate 325 are arranged facing each other. When the adjusting arm 4 and the light-transmitting body are both vertically arranged, that is, when the first track 61 and the second track 62 are both vertically arranged, the first connecting plate 314 and the second connecting plate 325 are both vertical and parallel, and the two first sliders 311b on the first connecting plate 314 and the two second sliders 321b on the second connecting plate 325 are arranged facing each other. Specifically, a damping shaft 7 is simultaneously inserted through the middle of the first connecting plate 314 and the second connecting plate 325, and the damping shaft 7 is located on the R-axis. The damping shaft 7 includes two ends that can rotate relative to each other. One end of the damping shaft 7 is inserted through the first connecting plate 314, and the other end of the damping shaft 7 is inserted through the second connecting plate 325. As long as one end of the damping shaft 7 is subjected to a force resisting damping, it can rotate relative to the other end. The damping shaft 7 is a commercially available part, and its structure and principle are well known to those skilled in the art, so it will not be described in detail here. Understandably, with the help of the damping shaft 7, after the second moving member 32b rotates relative to the first moving member 31b and stops rotating, the second moving member 32b can still maintain the position after rotation.

[0062] Please see Figures 10 to 19 To facilitate the assembly of the first connecting plate 314, the first slider 311b, and the damping shaft 7, the first connecting plate 314 has a first mounting hole 3141 through its center for the damping shaft to pass through, and several second mounting holes 3142 through its upper and lower parts for threaded fasteners to pass through. It is understood that the first slider 311b and the first connecting plate 314 are fixedly connected by threaded fasteners. Preferably, to prevent the head 31521 of the threaded fastener from protruding from the surface of the first connecting plate 314, the surface of the first connecting plate 314 is also recessed at the second mounting holes 3142, so that the head 31521 of the threaded fastener is hidden within the first slot 3143. This allows for a smaller distance between the first moving member 31b and the second moving member 32b, and prevents interference between them when they pivot relative to each other.

[0063] Please see Figures 10 to 19Similarly, to facilitate the assembly of the second connecting plate 325, the second slider 321b311, and the damping shaft 7, a third mounting hole 3251 for the damping shaft to pass through is provided in the middle of the second connecting plate 325, and several fourth mounting holes 3252 for threaded fasteners to pass through the upper and lower parts of the second connecting plate 325. It is understood that the second slider 321b and the second connecting plate 325 are fixedly connected by threaded fasteners. Preferably, to prevent the head 31521 of the threaded fastener from protruding from the surface of the second connecting plate 325, a second groove 3253 is recessed at the fourth mounting hole 3252 on the surface of the second connecting plate 325. This allows the head 31521 of the threaded fastener to be concealed within the second groove 3253, making the distance between the first moving member 31b and the second moving member 32b smaller, and preventing interference between them when they pivot relative to each other.

[0064] It is worth noting that, in this embodiment, the first slider 311b and the first track 61, and the second slider 321b and the second track 62 are ordinary slide rail slider assemblies without damping. These ordinary slide rail slider assemblies are commercially available products, and their structure and principle are well known to those skilled in the art, therefore they will not be described in detail here.

[0065] Please see Figures 10 to 19To provide manually adjustable damping for the first slider 311b to slide relative to the first track 61, the first moving member 31b further includes a first damping adjustment assembly 315. The first damping adjustment assembly 315 includes a first movable block 3151, a first manual adjustment member 3152, and a first elastic member 3153. The first movable block 3151 is slidably disposed on the first track 61 and connected to the first slider 311b via a first connecting plate 314. The first movable block 3151 is located between the first track 61 and the first connecting plate 314. The device is internally provided with a first elastic element 3153; a first manual adjustment element 3152 is threadedly connected to and passes through the first connecting plate 314 to press against the first elastic element 3153, the first elastic element 3153 presses against the first movable block 3151, and the first manual adjustment element 3152 rotates relative to the first connecting plate 314 to change the pressure on the first elastic element 3153 to change the pressure on the first movable block 3151, thereby changing the friction between the first movable block 3151 and the first track 61, thereby changing the sliding damping of the first moving element 31b. Specifically, when the first manual adjustment member 3152 is tightened in the forward direction, it rotates towards the first track 61. At this time, the first manual adjustment member 3152 applies pressure to the first elastic member 3153, which in turn applies pressure to the first movable block 3151, thereby increasing the friction between the contact surface of the first movable block 3151 and the first track 61, and thus increasing the sliding damping of the first moving member 31b. When the first manual adjustment member 3152 is loosened in the reverse direction, it retracts away from the first track 61. At this time, the first manual adjustment member 3152 releases pressure on the first elastic member 3153, which in turn releases pressure on the first movable block 3151, thereby reducing the friction between the contact surface of the first movable block 3151 and the first track 61, and thus reducing the sliding damping of the first moving member 31b.

[0066] Preferably, the first movable block 3151 is made of POM material, thus possessing high strength, high rigidity, high wear resistance, self-lubrication, and excellent insulation. Therefore, the first movable block 3151 can repeatedly slide on the first track 61; Preferably, please refer to Figures 17 to 19 The first elastic element 3153 consists of multiple first elastic pads stacked on top of each other. Of course, in other embodiments, the first elastic element 3153 may be a spring or a spring column, and is not limited thereto. More specifically, the first elastic pad is a butterfly-shaped pad, and multiple first elastic pads are stacked in opposite pairs to obtain a larger deformation space. When the elastic pad is compressed, it can obtain a larger elastic potential energy, thereby generating a greater resistance force on the first movable block 3151.

[0067] Preferably, please refer to Figures 17 to 19 The bottom of the first movable block 3151 is provided with a first through hole 31512 for the manual adjustment component to pass through, and the first through hole 31512 is connected to the first receiving cavity 31511. The first through hole 31512 allows for unrestricted thread tightening of the manual adjustment component. When the thread surface is long enough, it can be tightened until the bottom surface of the first manual adjustment component 3152 abuts against the surface of the first track 61.

[0068] Specifically, preferably, please refer to Figures 17 to 19 The first manual adjustment member 3152 includes a head 31521 and a stud portion (not shown) connected in sequence. The head protrudes from the first connecting plate 314, and the stud portion passes through the first connecting plate 314. The stud portion has a pressing surface (not shown) for pressing against the first elastic member 3153. It is understood that the first connecting plate 314 has a connecting hole 3144 for threaded connection with the stud portion. Preferably, the first connecting plate 314 has a recessed hole 3145 at the connecting hole 3144 for positioning the head 31521. The recessed hole 3145 also extends upward through the upper end face of the first connecting plate 314, so that the head 31521 is partially exposed in the recessed hole 3145 in its radial direction and also partially exposed in the recessed hole 3145 in its axial direction. Preferably, the bottom surface of the stud portion 31522 has a connecting post (not shown in the figure), and the middle of the first elastic member 3153 has a sleeve hole 31531 that matches the connecting post. The connecting post passes through the sleeve hole 31531, and the diameter of the connecting post is smaller than the diameter of the stud portion, so that a pressing surface is formed at the shoulder of the connecting post and the stud portion. With the cooperation between the connecting post and the sleeve hole 31531, when the first elastic member 3153 is compressed and moves, it can move concentrically, so that the generated pressing force is also in the same direction, preventing the pressing force from being dispersed. Preferably, the side of the head 31521 is a friction surface, which increases the friction when a person touches the head 31521 for adjustment, thus facilitating tightening.

[0069] Please see Figure 15 , Figures 18 to 19To provide manually adjustable damping for the second slider 321b to slide relative to the second track 62, the second actuator 32b further includes a second damping adjustment assembly 326. The second damping adjustment assembly 326 includes a second movable block 3261, a second manual adjustment element 3262, and a second elastic element 3263. The second movable block 3261 is slidably disposed on the second track 62 and connected to the second slider 321 via a second connecting plate 325. The second movable block 3261 is located between the second track 62 and the second connecting plate 325. The device has a second elastic element 3263 inside; the second manual adjustment element 3262 is threadedly connected to the second connecting plate 325 and passes through the second connecting plate 325 to press against the second elastic element 3263. The second elastic element 3263 presses against the second movable block 3261. The second manual adjustment element 3262 rotates relative to the second connecting plate 325 to change the pressure on the second elastic element 3263, thereby changing the pressure on the second movable block 3261, thus changing the friction between the second movable block 3261 and the second track 62, thereby changing the sliding damping of the second moving element 32b. Specifically, when the second manual adjustment member 3262 is turned forward and tightened, it rotates towards the second track 62. At this time, the second manual adjustment member 3262 applies pressure to the second elastic member 3263, which in turn applies pressure to the second movable block 3261, thereby increasing the friction between the contact surface of the second movable block 3261 and the second track 62, and thus increasing the sliding damping of the second moving member 32b. When the second manual adjustment member 3262 is turned backward and loosened, it retracts away from the second track 62. At this time, the second manual adjustment member 3262 releases pressure on the second elastic member 3263, which in turn releases pressure on the second movable block 3261, thereby reducing the friction between the contact surface of the second movable block 3261 and the second track 62, and thus reducing the sliding damping of the second moving member 32b.

[0070] Preferably, the second movable block 3261 is made of POM material, thus possessing high strength, high rigidity, high wear resistance, self-lubrication, and excellent insulation. Therefore, the second movable block 3261 can repeatedly slide on the second track 62; Please see Figures 18 to 19 Preferably, the second elastic element 3263 is a plurality of overlapping second elastic pads. Of course, in other embodiments, the second elastic element 3263 may be a spring or a spring column, and is not limited thereto. More specifically, the second elastic pad is a butterfly-shaped pad, and the plurality of second elastic pads are stacked in opposite pairs to obtain a larger deformation space. When the second elastic pad is compressed, it can obtain a larger elastic potential energy, thereby generating a greater resistance force on the second movable block 3261.

[0071] Please see Figures 18 to 19 The bottom of the second movable block 3261 is provided with a second through hole (not shown in the figure) for the manual adjustment component to pass through, and the second through hole is connected to the second receiving cavity. The second through hole allows for the unrestricted thread tightening stroke of the second manual adjustment component 3262. When the thread surface is long enough, it can be tightened until the bottom surface of the second manual adjustment component 3262 abuts against the surface of the second track 62.

[0072] Please see Figures 18 to 19 Specifically, the second manual adjustment member 3262 includes a head 32621 and a stud portion 32622 connected in sequence. The head protrudes from the second connecting plate 325, and the stud portion 32622 passes through the second connecting plate 325. The stud portion 32622 has a pressing surface 32624 for pressing against the second elastic member 3263. It is understood that the second connecting plate 325 has a connecting hole 3254 for threaded connection with the stud portion 32622. Preferably, the second connecting plate 325 has a recessed hole (not shown in the figure) at the connecting hole 3254 for positioning the head 32621. The recessed hole also penetrates downward through the lower end face of the second connecting plate 325, so that the head 32621 is partially exposed in the recessed hole in its radial direction and also partially exposed in the recessed hole in its axial direction. Preferably, a connecting post 32623 protrudes from the bottom surface of the stud portion 32622, and a socket hole 32631 matching the connecting post 32623 is provided in the middle of the second elastic member 3263. The connecting post 32623 passes through the socket hole 32631, and the diameter of the connecting post 32623 is smaller than the diameter of the stud portion 32622, so that a pressing surface 32624 is formed at the shoulder of the connecting post 32623 and the stud portion 32622. With the cooperation between the connecting post 32623 and the socket hole 32631, when the second elastic member 3263 is compressed and moves, it can move concentrically, so that the generated pressing force is also in the same direction, preventing the pressing force from being dispersed. Preferably, the side of the head 32621 is a friction surface, which increases the friction when a person touches the head 32621 for adjustment, thereby facilitating tightening.

[0073] It is understandable that the first damping adjustment component 315 and the second damping adjustment component 326 have the same specific structure, that is, the first damping adjustment component 315 and the second damping adjustment component 326 are arranged symmetrically about the R-axis.

[0074] Please see Figure 15 and Figure 19Regarding the electrical connection between the first moving member 31b and the second moving member 32b: In this embodiment, the first moving member 31b further includes a first circuit board 313, and the second moving member 32b further includes a second circuit board 323. Specifically, the first circuit board 313 is built into the first connecting plate 314 and faces the first slider 311b, and the second circuit board 323 is built into the second connecting plate 325 and faces the second slider 321b. A power line 8 is connected between the first circuit board 313 and the second circuit board 323 to achieve electrical connection. Specifically, the middle part of the damping shaft 7 is a hollow structure, and the power line 8 passes through the hollow structure. It is understood that the first circuit board and the second circuit board are each provided with conductive terminals (not shown in the figure) for connecting the power line 8. Specifically, the surface of the first connecting plate 314 facing the first slider 311b is recessed with a first receiving cavity 3146 for receiving the first circuit board, and the surface of the second connecting plate facing the second slider 321b is recessed with a second receiving cavity 3256 for receiving the second circuit board.

[0075] The remaining structure of the dual-purpose lighting and ambient lighting lamp of the second embodiment is the same as that of the dual-purpose lighting and ambient lighting lamp of the first embodiment, so it will not be described in detail here.

[0076] Referring to the accompanying drawings, the operating principle of the dual-purpose lighting and ambient lighting lamp 100 of this utility model is explained as follows: When it is necessary to put the dual-purpose lighting and ambient lighting lamp 100 of this utility model into ambient lighting mode, rotate the light source 5 to make it vertically downward, rotate the second moving member 32 to make the adjusting arm 4 parallel to the light-transmitting body 2, and then move the light source 5 down to cover the light inlet by raising and lowering in the vertical direction, i.e., the Y-axis; When it is necessary to put the dual-purpose lighting and ambient lighting lamp 100 of this utility model into lighting mode, move the first moving member 31 along the Y-axis according to the height requirement, rotate the second moving member 32 around the R-axis according to the illumination angle requirement to adjust the angle of the adjusting arm 4, and rotate the light source 5 around the O-axis to adjust the angle of the light source 5.

[0077] Compared with the prior art, the dual-purpose lighting and ambient lighting lamp 100 of this utility model adopts a new adjustment method to move the light source 5. By changing the position of the light source 5, the dual-purpose lighting and ambient lighting lamp 100 of this utility model has both an ambient lighting mode and a lighting mode. Since the light source 5 is mounted on the adjusting arm 4, and the adjusting arm 4 is mounted on the sliding member 3, when the adjusting arm 4 slides relative to the sliding member 3 along the Y-axis, the position of the light source 5 in the Y-axis direction can be adjusted; when the adjusting arm 4 rotates relative to the R-axis, the angle of the adjusting arm 4 relative to the light-transmitting body 2 can be adjusted, so that the adjusting arm 4 is perpendicular, parallel, or intersecting the light-transmitting body 2; when the light source 5 rotates relative to the O-axis, the angle of the light source 5 can be adjusted. The light emission direction is adjusted so that it is directly opposite to or deviates from the light source inlet 21 of the light-transmitting body 2. Therefore, the height and incident light of the light source 5 can be adjusted in space. In addition, the angle of the adjustment arm 4 can also be adjusted. When the ambient light mode is adopted, the adjustment arm 4 is adjusted to a position parallel to the light-transmitting body 2, and the light source 5 is adjusted to face the light source inlet 21 of the light-transmitting body 2. This makes the dual-purpose lighting and ambient light 100 of this utility model more streamlined and simple in the ambient light mode, less abrupt, and more aesthetically pleasing. At the same time, when the dual-purpose lighting and ambient light 100 of this utility model is in the ambient light mode position, it can achieve the purpose of being compact and more convenient to store.

[0078] The above-disclosed examples are merely preferred embodiments of the present utility model and should not be construed as limiting the scope of the present utility model. Therefore, any equivalent variations made in accordance with the claims of the present utility model shall fall within the scope of the present utility model.

Claims

1. A dual-purpose lighting and ambient lighting lamp, characterized in that, include Translucent main body; Sliding element; the sliding element is slidably disposed on the side wall of the light-transmitting body along the Y-axis; An adjusting arm is mounted on the sliding member; the sliding member also has a horizontally arranged R-axis, and the adjusting arm can rotate around the R-axis while also sliding relative to the sliding member. A light source is located at the end of the adjusting arm, which has a horizontally arranged O-axis, and the light source can rotate around the O-axis.

2. The dual-purpose lighting and ambient lighting lamp according to claim 1, characterized in that, The sliding member includes a first moving member and a second moving member. The first moving member is slidably disposed on the side wall of the light-transmitting body, and the second moving member is rotatably disposed on the first moving member about the R-axis. The adjusting arm is slidably disposed on the second moving member.

3. The dual-purpose lighting and ambient lighting lamp according to claim 2, characterized in that, Both the first moving member and the second moving member have damping shafts inserted inside them. The damping shafts are located on the R-axis and have two rotating ends. One end of the damping shaft is inserted inside the first moving member, and the other end is inserted inside the second moving member.

4. The dual-purpose lighting and ambient lighting lamp according to claim 2, characterized in that, The first moving member includes a first slider and a first fixed seat covering the first slider, the first fixed seat being connected to the first slider; the light-transmitting body has a first track, the first slider being slidably disposed on the first track; the first track is arranged along the Y-axis direction; the second moving member includes a second slider and a second fixed seat covering the second slider, the second fixed seat being connected to the second slider; the adjusting arm is equipped with a second track, the second track being slidably disposed on the second slider, the second track being arranged along the length direction of the adjusting arm.

5. The dual-purpose lighting and ambient lighting lamp according to claim 2, characterized in that, The first moving member includes at least one first slider and a first connecting plate for connecting all the first sliders. The light-transmitting body has a first track, which is arranged along the Y-axis direction. All the first sliders are spaced apart and slide simultaneously on the first track. The second moving member includes at least one second slider and a second connecting plate for connecting all the second sliders. The adjusting arm is equipped with a second track, which is arranged along the length direction of the adjusting arm. All the second sliders are spaced apart and slide simultaneously on the second track.

6. The dual-purpose lighting and ambient lighting lamp according to claim 5, characterized in that, The first connecting plate has a first mounting hole through its middle portion, and the upper and / or lower portions of the first connecting plate each have a plurality of second mounting holes through their respective portions; the second connecting plate has a third mounting hole through its middle portion, and the upper and / or lower portions of the second connecting plate each have a plurality of fourth mounting holes through their respective portions.

7. The dual-purpose lighting and ambient lighting lamp according to claim 5, characterized in that, The first moving member further includes a first damping adjustment assembly, which includes a first movable block, a first manual adjustment component, and a first elastic component. The first movable block is slidably disposed on the first track and connected to the first slider via a first connecting plate. The first movable block is located between the first track and the first connecting plate. The first elastic component is disposed inside the first movable block. The first manual adjustment component is threadedly connected to the first connecting plate and passes through the first connecting plate to press against the first elastic component. The first elastic component presses against the first movable block. The first manual adjustment component rotates relative to the first connecting plate to change the pressure on the first elastic component, thereby changing the pressure on the first movable block, thus changing the friction between the first movable block and the first track, and thus changing the sliding damping of the first moving member. The second moving member also... The system includes a second damping adjustment assembly, which comprises a second movable block, a second manual adjustment member, and a second elastic member. The second movable block is slidably disposed on the second track and connected to the second slider via the second connecting plate. The second movable block is located between the second track and the second connecting plate. The second elastic member is disposed inside the second movable block. The second manual adjustment member is threadedly connected to the second connecting plate and passes through the second connecting plate to press against the second elastic member. The second elastic member presses against the second movable block. The second manual adjustment member can be rotated relative to the second connecting plate to change the pressure on the second elastic member, thereby changing the pressure on the second movable block, thus changing the friction between the second movable block and the second track, and thus changing the sliding damping of the second movable member.

8. The dual-purpose lighting and ambient lighting lamp according to claim 2, characterized in that, The first moving member further includes a first circuit board, and the second moving member further includes a second circuit board, wherein the first circuit board and the second circuit board are electrically connected.

9. The dual-purpose lighting and ambient lighting lamp according to claim 1, characterized in that, It also includes a buffer ring, which is located at the light outlet of the light source; or, the buffer ring is located at the light inlet of the light-transmitting body.

10. The dual-purpose lighting and ambient lighting lamp according to claim 1, characterized in that, The light-transmitting body has multiple light-transmitting areas. The light-transmitting body includes a first light-transmitting column and a second light-transmitting column. The first light-transmitting column is located inside the second light-transmitting column. The first light-transmitting column has multiple small round holes, and the second light-transmitting column has multiple holes forming the light-transmitting areas.

Citation Information

Patent Citations

  • Lighting device

    CN112513524A