Stage lamp with locking atomizing assembly

By using an XY motion sliding rail structure and an L-shaped pull rod design, the problem of the fogging mirror not being able to switch with the focusing mirror was solved, enabling rapid switching of fogging effects and simplifying the structure, thus enhancing the artistic expression of the stage lights.

CN224534118UActive Publication Date: 2026-07-21GUANGZHOU LANGYI LIGHTING TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGZHOU LANGYI LIGHTING TECHNOLOGY CO LTD
Filing Date
2025-08-11
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

The existing stage light fogging mirror installation method cannot quickly switch with the movement of the focusing lens, resulting in poor fogging effect, and the existing dual fogging mirror switching structure is complicated.

Method used

It adopts an XY motion sliding rail structure and an L-shaped pull rod design. The X-direction movement of the focusing lens is achieved through the sliding rail, and the atomizing component moves along the horizontal section of the L-shaped pull rod. The Y-direction switching of the atomizing lens is achieved by using elastic elements and locking blocks, which simplifies the switching process of atomization effect.

Benefits of technology

It achieves rapid switching of atomization effects and optimal usage results, simplifies structural complexity, and enhances the artistic expression of stage lights.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the stage lamp field especially discloses a stage lamp with locking atomization assembly and XY movement, including the lamp barrel, the focusing mirror and atomization assembly, and the slide rail structure that the focusing mirror is along X direction is provided between lamp barrel bottom and focusing mirror, its characterized in that, atomization assembly includes two atomization mirrors, and the slide bar spare of Y direction is correspondingly set between two atomization mirrors and focusing mirror, each atomization mirror is through the mirror seat cover of itself and is installed on the corresponding slide bar spare, and the corresponding elastic member is installed in each mirror seat cover bottom, and the corresponding L-shaped pull rod that makes the mirror seat cover move along Y direction on the slide bar spare and switches two atomization mirrors to the front of focusing mirror when pushing and pressing elastic member is installed in the bottom of each elastic member, the vertical section of L-shaped pull rod has the lifting portion and stretches out from the bottom of lamp barrel, and the horizontal section is along X direction for the horizontal section that atomization assembly follows focusing mirror and moves, and the lock block is fixedly installed on the horizontal section, and the lock slot is set in the lamp barrel bottom with the cooperation of lock block.
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Description

Technical Field

[0001] This utility model relates to the field of stage lighting, and in particular to a stage light that can move in XY and has a locking atomizing component. Background Technology

[0002] Stage lighting plays a crucial role in stage performances, providing audiences with a clear visual experience and enhancing the artistic effect and emotional expression of the performance in various ways. Focusing lenses and fogging lenses are often used together in stage lighting to achieve special lighting effects, enhancing visual impact and the performance's emotional impact. However, current fogging lenses are typically fixedly mounted on the mounting base of the focusing lens. This fixed mounting method cannot quickly switch fogging effects as the focusing lens moves, making it difficult to achieve optimal fogging performance. Dual fogging lens switching has also appeared on the market. These mainly involve fixing fogging components on both sides of the focusing lens mounting base, using a motor to drive a gear assembly to achieve fogging lens switching; however, their structure is relatively complex. Utility Model Content

[0003] The purpose of this invention is to provide a stage light with a locking atomizing component that can quickly switch atomization effects as the focusing lens moves, thereby achieving the best atomization effect.

[0004] The present invention relates to a stage light capable of XY movement and equipped with a locking atomizing component, comprising a lamp tube, a focusing lens, and an atomizing component. A slide rail structure is provided between the bottom of the lamp tube and the focusing lens for the focusing lens to move along the X (horizontal) direction. The atomizing component comprises two atomizing lenses, with corresponding Y (vertical) sliding rods between each atomizing lens and the focusing lens. Each atomizing lens is fitted onto its corresponding sliding rod via its own lens mount. A corresponding elastic element is installed at the bottom of each lens mount, and an L-shaped pull rod is installed at the bottom of each elastic element. When the elastic element is pushed, the lens mount moves along the sliding rod along the Y direction, switching the two atomizing lenses alternately in front of the focusing lens. The vertical section of the L-shaped pull rod extends from the bottom of the lamp tube with a lifting part, and the horizontal section along the X direction allows the atomizing component to move with the focusing lens. A locking block is fixedly installed on the horizontal section, and a locking groove is provided at the bottom of the lamp tube that cooperates with the locking block.

[0005] The stage light of this invention, which is capable of XY movement and has a locking atomizing component, allows the focusing lens to be adjusted along the X (horizontal) direction via a sliding rail structure at the bottom of the lamp tube to achieve the effect of focusing the light. At this time, the atomizing component also moves along the X (horizontal) direction with the focusing lens in the horizontal section of the L-shaped pull rod to achieve the atomizing effect in front of the focusing lens. When it is necessary to switch the atomizing lens, the lifting part causes one of the L-shaped pull rod locking blocks to leave the locking groove. Under the elastic action of the elastic element, the lens base is sleeved on the sliding rod, which drives one atomizing lens to move upwards to the top along the Y direction. The other L-shaped pull rod locking block is locked in the locking groove, so that the other atomizing lens is in front of the focusing lens, thereby realizing the switching of the atomizing effect to achieve the best atomizing effect.

[0006] As a preferred embodiment of this utility model, two sliding rods are spaced apart in front of the focusing lens. Each sliding rod includes two sliding rods, one of which is equipped with an elastic element. The lens mount is fitted onto the two sliding rods, and the elastic element is located below the lens mount.

[0007] As a preferred embodiment of this utility model, one end of the elastic element is connected to the horizontal section of the L-shaped tie rod, and the other end is connected to the mirror base sleeve. A protective plate is provided outside the elastic element, with one end of the protective plate connected to the horizontal section of the L-shaped tie rod and the other end connected to the mirror base sleeve.

[0008] As a preferred embodiment of this utility model, grooves are provided on both sides of the locking block, and spherical elastic bosses are provided on both sides of the inner wall of the locking groove that cooperates with the grooves.

[0009] As a preferred embodiment of this utility model, the locking groove is located on a locking groove seat provided on the bottom of the lamp tube, and the locking groove seat is provided with a U-shaped insertion hole for the vertical section of the L-shaped pull rod to pass through.

[0010] As a preferred embodiment of this utility model, a nut is provided on the lifting part of the L-shaped pull rod.

[0011] As a preferred embodiment of this utility model, the slide rail structure includes a slide rail arranged along the X direction at the bottom of the lamp tube, and a slide groove provided at the bottom of the lamp tube that cooperates with the slide rail.

[0012] As a preferred embodiment of this utility model, the focusing lens is provided with a lens mount, a sliding groove is located at the bottom of the lens mount, and the top and bottom of one side of the lens mount extend out of the top plate and the bottom plate, respectively. The bottom of the sliding rod is mounted on the bottom plate, and the top is mounted on the top plate.

[0013] As a preferred embodiment of this utility model, the bottom of the lamp tube is equipped with an adjusting lens holder and an adjusting component for moving the focal lens in the X direction.

[0014] As a preferred embodiment of this utility model, the adjusting component includes a rotating wheel installed at one end of a slide rail at the bottom of the lamp tube, an adjusting wheel at the other end of the slide rail, a transmission steel belt installed between the adjusting wheel and the rotating wheel, the bottom of the mirror base being installed on the transmission steel belt, and a rotating component extending from the bottom of the lamp tube from the adjusting wheel. Attached Figure Description

[0015] Figure 1 , 2 This is a structural schematic diagram of a stage lamp of the present invention that can move in XY directions and has a locking atomizing component;

[0016] Figure 3 This is a schematic diagram showing the focusing lens and atomizing assembly mounted on a lamp tube.

[0017] Figure 4 for Figure 3 A magnified view of a portion of the image;

[0018] Figure 5 This is a schematic diagram of the installation of the focusing lens and the atomizing assembly;

[0019] Figure 6 This is a schematic diagram of the atomizing component and the L-shaped tie rod installation. Detailed Implementation

[0020] The technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.

[0021] This embodiment provides a stage light capable of XY movement and equipped with a locking atomizing component, such as... Figures 1-6 As shown, the device includes a lamp tube 1, a focusing lens (2), and an atomizing assembly 3. A slide rail structure 4 is provided between the bottom of the lamp tube and the focusing lens for the focusing lens to move along the X (horizontal) direction. The atomizing assembly includes two atomizing lenses. A slide rod 5 is provided between the two atomizing lenses and the focusing lens in the Y (vertical) direction. Each atomizing lens is fitted onto the corresponding slide rod through its own lens mount 6. A corresponding elastic element 7 is installed at the bottom of each lens mount. A corresponding L-shaped pull rod 8 is installed at the bottom of each elastic element, which moves the lens mount on the slide rod along the Y direction when the elastic element is pushed to switch the two atomizing lenses to alternately move in front of the focusing lens. The vertical section of the L-shaped pull rod extends from the bottom of the lamp tube with a lifting part 9. The horizontal section along the X direction is for the atomizing assembly to move with the focusing lens. A locking block 10 is fixedly installed on the horizontal section. A locking groove 11 is provided at the bottom of the lamp tube that cooperates with the locking block.

[0022] The focusing lens can be adjusted along the X (horizontal) direction via the sliding rail structure at the bottom of the lamp tube to achieve the effect of focusing the light. At this time, the atomizing component also moves along the X (horizontal) direction with the focusing lens in the horizontal section of the L-shaped lever to achieve the atomizing effect in front of the focusing lens. When it is necessary to switch the atomizing lens, the lifting part is used to make one of the L-shaped lever locking blocks leave the locking groove. Under the elastic action of the elastic element, the lens mount is put on the sliding rod, which drives one atomizing lens to move upward to the top along the Y direction. The other L-shaped lever locking block is locked in the locking groove, so that the other atomizing lens is in front of the focusing lens, thereby realizing the switching of the atomizing effect to achieve the best atomizing effect.

[0023] The slide rail structure includes two slide rails 17 arranged along the X direction at the bottom of the lamp tube. The two rails are fixed to the bottom of the lamp tube by screws. The lens base 19 has a focusing lens extension hole. The focusing lens extends out from the focusing lens extension hole of the lens base. The outer wall is fixed to the lens base wall of the focusing lens extension hole by clamps or buckles. There are sliding grooves 18 on both sides of the bottom of the lens base to engage the two slide rails. The focusing lens can be adjusted to move along the X (horizontal) direction by sliding on the slide rails through the sliding grooves at the bottom of the lens base, thereby achieving the effect of focusing the light.

[0024] The bottom of the lamp housing is equipped with an adjustment mechanism 22 for moving the focusing lens in the X direction. The adjustment mechanism includes a rotating wheel 23 mounted on one end of a slide rail at the bottom of the lamp housing, an adjustment wheel 24 on the other end of the slide rail, a transmission steel belt 25 installed between the adjustment wheel and the rotating wheel, the bottom of the lens housing mounted on the transmission steel belt, and a rotating component 26 extending from the bottom of the lamp housing from the adjustment wheel. The rotating wheel, transmission steel belt, and adjustment wheel are located between two slide rails. The rotating wheel is fixed to the bottom of the lamp housing via a rotating shaft, and a gear is mounted on the adjustment wheel. The rotating component at the bottom of the lamp housing rotates the shaft, causing the gear to rotate, which in turn moves the transmission steel belt between the rotating wheel and the adjustment wheel, thereby moving the lens housing. This allows the sliding groove at the bottom of the lens housing to move on the slide rail, ultimately moving the focusing lens along the X (horizontal) direction, thus achieving the effect of focusing the light.

[0025] like Figure 3 As shown, the top and bottom of one side of the lens mount extend from the top plate 20 and the bottom plate 21. The bottom of the sliding rod is mounted on the bottom plate with screws, and the top is mounted on the top plate with screws. Two sliding rods are spaced apart in front of the focusing lens. Each sliding rod includes two sliding rods, one of which is equipped with an elastic element. The lens mount sleeve is fitted onto the two sliding rods, and the elastic element is located below the lens mount sleeve. The elastic element is a spring, with one end connected to the horizontal section of the L-shaped pull rod and the other end connected to the lens mount sleeve. A protective plate 12 is provided outside the spring, with one end connected to the horizontal section of the L-shaped pull rod with screws and the other end connected to the lens mount sleeve with screws.

[0026] like Figure 4As shown, the locking block is a locking pin, which fits onto the horizontal section of the L-shaped pull rod at the top and is fixed with screws. Grooves 13 are provided on both sides. Spherical, elastic bosses 14 are provided on both sides of the inner wall of the locking groove. When the locking block is inserted into the locking groove, the grooves on both sides of the locking block are precisely locked by the bosses on both sides of the inner wall of the locking groove. A locking groove seat 15 is fixedly installed on the bottom of the lamp holder with screws. Two locking grooves are provided on the locking groove seat at a distance from each other. One locking groove is slightly offset to the left, and the other is slightly offset to the right to avoid interference between the two U-shaped insertion holes 16. A nut is provided on the lifting part of the L-shaped pull rod.

[0027] When switching atomizing lenses, pull the nut to move the vertical section of one L-shaped lever onto the U-shaped socket. The locking block on the horizontal section of the L-shaped lever disengages from the locking groove. Under the elastic action of the spring, the lens mount moves onto the sliding rod, causing one atomizing lens to move upwards along the Y direction to the top. The locking block of the other L-shaped lever remains locked in the locking groove, placing the other atomizing lens in front of the focusing lens, thus achieving the switching of atomization effects. To switch atomizing lenses again, simply pull the locking block of the other L-shaped lever out of the locking groove and repeat the above switching method. This will not be repeated here.

[0028] The above embodiments are only used to illustrate the detailed solution of this utility model. This utility model is not limited to the above detailed solution, that is, it does not mean that this utility model must rely on the above detailed solution to be implemented. Those skilled in the art should understand that any improvement to this utility model, equivalent substitution of the raw materials of this utility model product, addition of auxiliary components, selection of specific methods, etc., all fall within the protection scope and disclosure scope of this utility model.

Claims

1. A stage light capable of XY motion and equipped with a locking atomizing component, comprising a lamp tube (1), a focusing lens (2), and an atomizing component (3), wherein a slide rail structure (4) for the focusing lens to move along the X direction is provided between the bottom of the lamp tube and the focusing lens, characterized in that, The atomizing assembly includes two atomizing lenses. Each atomizing lens and the focusing lens are respectively provided with a sliding rod (5) in the Y direction. Each atomizing lens is fitted onto the corresponding sliding rod through its own lens mount (6). Each lens mount is fitted with a corresponding elastic element (7) at the bottom. Each elastic element is fitted with an L-shaped pull rod (8) at the bottom, which moves the lens mount on the sliding rod in the Y direction when the elastic element is pushed to switch the two atomizing lenses to alternately in front of the focusing lens. The vertical section of the L-shaped pull rod extends from the bottom of the lamp tube with a lifting part (9). The horizontal section along the X direction is for the atomizing assembly to move with the focusing lens. A locking block (10) is fixedly installed on the horizontal section. A locking groove (11) is provided at the bottom of the lamp tube that cooperates with the locking block.

2. The stage light with XY motion capability and locking atomizing component according to claim 1, characterized in that, Two sliding rods are spaced apart in front of the focusing lens. Each sliding rod includes two sliding rods, one of which is equipped with an elastic element. The lens mount is fitted onto the two sliding rods, and the elastic element is located below the lens mount.

3. The stage light with XY motion capability and locking atomizing component according to claim 2, characterized in that, One end of the elastic element is connected to the horizontal section of the L-shaped tie rod, and the other end is connected to the mirror base sleeve. A protective plate (12) is provided outside the elastic element. One end of the protective plate is connected to the horizontal section of the L-shaped tie rod, and the other end is connected to the mirror base sleeve.

4. The stage light with XY motion capability and locking atomizing component according to claim 1, characterized in that, The locking block has grooves (13) on both sides, and the inner wall of the locking groove that matches the groove has spherical elastic bosses (14) on both sides.

5. The stage light with XY motion capability and locking atomizing component according to claim 4, characterized in that, The locking groove is located on the locking groove seat (15) at the bottom of the lamp tube, and the locking groove seat is provided with a U-shaped insertion hole (16) for the vertical section of the L-shaped pull rod to pass through.

6. The stage light with XY motion capability and locking atomizing component according to claim 1, characterized in that, A nut is provided on the lifting part of the L-shaped pull rod.

7. The stage light with XY motion capability and locking atomizing component according to any one of claims 1-6, characterized in that, The slide rail structure includes a slide rail (17) arranged along the X direction at the bottom of the lamp tube, and a slide groove (18) arranged at the bottom of the lamp tube to cooperate with the slide rail.

8. The stage light with XY motion capability and locking atomizing component according to claim 7, characterized in that, The focusing lens is provided with a lens mount (19), a slide is located at the bottom of the lens mount, and the top and bottom of one side of the lens mount extend out of the top plate (20) and the bottom plate (21). The bottom of the slide rod is mounted on the bottom plate and the top is mounted on the top plate.

9. The stage light with XY motion capability and locking atomizing component according to claim 8, characterized in that, The bottom of the lamp tube is equipped with an adjustment lens mount and an adjustment component (22) for the focusing lens to move in the X direction.

10. The stage light with XY motion capability and locking atomizing component according to claim 9, characterized in that, The adjusting component includes a rotating wheel (23) installed at one end of a slide rail at the bottom of the lamp tube, an adjusting wheel (24) at the other end of the slide rail, a transmission steel belt (25) installed between the adjusting wheel and the rotating wheel, the bottom of the mirror mount is installed on the transmission steel belt, and a rotating component (26) extends from the bottom of the lamp tube from the adjusting wheel.