Intelligent control industrial and mining lamp for factory building

CN224718716UActive Publication Date: 2026-09-04CHINA YANGTZE POWER
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Patent Information

Application Number
CN202521495099.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-17
Publication Date
2026-09-04
Estimated Expiration
2035-07-17

AI Technical Summary

Technical Problem

[0005]本实用新型提供了用于厂房的智能调控工矿灯,解决工矿灯难以进行光线调节,灵活性差,当厂房关键部位进行详细检查时,无法提供足够的局部光照强度,难以满足工作对高精度视觉的要求,能源利用效率低的问题

Benefits of technology

[0015]The beneficial effects of this utility model are as follows: When there are equipment, workbenches, or shelves of different heights in the factory, it is necessary to adjust the illumination direction of the industrial lamps to accurately project the light onto the area requiring illumination. Alternatively, as the production process or workflow changes, the work area and operating methods may change, requiring a change in the illumination direction of the industrial lamps. Multiple different industrial lamps can be rotated, each capable of rotating 360° relative to the mounting side frame, allowing for precise adjustment of the illumination direction of each lamp. This ensures that multiple lamps illuminate different directions, providing sufficient illumination for equipment of different heights or work areas in different locations. By using second bolts to abut against different adjustment holes, the mounting side frame can be installed at different angles relative to the support frame, resulting in different angles for the overall structure relative to the support frame. This further allows for precise adjustment of the illumination direction of multiple industrial lamps and also allows for adjustment of the installation position of each lamp. Additionally, by adjusting the control lever, the control lever is disengaged from the arc-shaped sleeve. Rotating the control lever allows the two handles to pass through the notch and abut against the first slide groove. By sliding the position of the handles, the angle of the reflector relative to the industrial lamp is adjusted. Rotating the handles allows the limit strip to engage with the damper, thus positioning the reflector and further precisely adjusting the irradiation direction.

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Abstract

The utility model provides an intelligent regulation and control industrial and mining lamp for factory building, including above -mentioned technical problem, the utility model adopts the technical scheme: the intelligent regulation and control industrial and mining lamp for factory building, including support frame, support frame both ends are equipped with installation side frame, multiple industrial and mining lamps are equipped between two installation side frames, and one side of industrial and mining lamp is equipped with the reflection board of rotation, and the reflection board both ends are equipped with regulation and control rotating lever, and the handle is equipped on regulation and control rotating lever, and the both sides of industrial and mining lamp are equipped with the sliding slot and arc clamping sleeve. When the reflection board is not needed, the handle is rotated, to make the spacing strip away the damping, and the handle is slid, to make regulation and control rotating lever be clamped on arc clamping sleeve. The reflection board is convenient to open and close, and the reflection board is adjusted to irradiate direction simple and quick, and the whole structure is adjusted to irradiate direction diversity, can carry out quick spotlight, can carry out 360 degree regulation to each industrial and mining lamp, and the flexibility is high, can provide enough local light intensity, can satisfy the requirement of high accuracy vision to work, and energy utilization efficiency is high.
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Description

Technical Field

[0001] This utility model relates to the field of industrial and mining lamps, and in particular to intelligent controllable industrial and mining lamps for use in factories. Background Technology

[0002] Industrial production workshops, warehouses for storing goods, and factory corridors are typically large and high-ceilinged, requiring sufficient brightness to ensure clear visibility throughout the work area. Industrial and mining lamps generally have high wattage, providing high luminous flux and effectively illuminating large spaces.

[0003] When there are equipment, workbenches, or shelves of varying heights within the factory, it is necessary to adjust the direction of the industrial lamps to accurately project the light onto the areas requiring illumination. Similarly, as production processes or workflows change, work areas and operating methods may alter, necessitating adjustments to the direction of the industrial lamps. When conducting detailed inspections or repairs on specific equipment, instruments, or critical components within the factory, it is necessary to focus the light emitted by the industrial lamps to provide a more concentrated and brighter beam.

[0004] However, existing industrial and mining lamps are difficult to adjust in terms of light intensity. They also lack effective focusing, making it impossible to flexibly adjust the angle and brightness of the light according to different work scenarios and task requirements. Furthermore, they cannot adjust the light according to the visual needs of workers, potentially causing eye damage and exhibiting poor flexibility. When conducting detailed inspections of critical areas in the factory, they cannot provide sufficient localized illumination, failing to meet the demands for high-precision vision and exhibiting low energy efficiency. Utility Model Content

[0005] This invention provides an intelligent controllable industrial and mining lamp for factory buildings, which solves the problems of difficult light adjustment, poor flexibility, inability to provide sufficient local illumination intensity when conducting detailed inspections of key parts of the factory, difficulty in meeting the requirements of high-precision vision, and low energy utilization efficiency of industrial and mining lamps.

[0006] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is: an intelligent controllable industrial and mining lamp for factory buildings, including a support frame, mounting side frames at both ends of the support frame, multiple industrial and mining lamps between the two mounting side frames, a rotating reflector on one side of the industrial and mining lamp, control rods at both ends of the reflector, a handle on the control rod, and sliding grooves and arc-shaped sleeves on both sides of the industrial and mining lamp.

[0007] In a preferred embodiment, the support frame includes a U-shaped frame, a base at the bottom of the U-shaped frame, first through holes at both ends of the U-shaped frame, and a positioning hole on one side of the first through hole.

[0008] In a preferred embodiment, the mounting side frame includes a side plate, a rotating support plate at the bottom of the side plate, multiple mounting holes on the side plate, a second through hole on the rotating support plate, and multiple circumferentially arrayed adjustment holes around the second through hole.

[0009] In the preferred embodiment, the first bolt passes through the second through hole and the first through hole, and the second bolt passes through the positioning hole and one of the adjustment holes.

[0010] In the preferred embodiment, the industrial and mining lamp includes a lamp body with a rotating shaft on it, a notch on one side of the slide, inclined grooves at both ends of the lamp body, and multiple rotating seats on one side of the lamp body. The rotating shaft rotates against the mounting hole.

[0011] In the preferred embodiment, the arc-shaped sleeve is installed on the inclined groove, the groove includes a first groove, a second groove connected to one side of the first groove, and damping on both sides of the second groove.

[0012] In the preferred embodiment, the reflector is provided with multiple rotating shafts on one side, the rotating shafts are rotatably connected to the rotating seat, and the reflector is provided with side holes on both sides.

[0013] In the preferred embodiment, one end of the control lever is provided with a first rotating rod, which is rotatably connected to the side hole, and the other end of the control lever is provided with a second rotating rod, which is provided with a third through hole.

[0014] In a preferred embodiment, the handle includes a limiting shaft, one end of which is provided with a limiting strip, and the limiting shaft abuts against the third through hole; When the reflector is opened, the handle abuts against the first slide groove; When the reflector is closed, the control lever is locked in the arc-shaped sleeve.

[0015] The beneficial effects of this utility model are as follows: When there are equipment, workbenches, or shelves of different heights in the factory, it is necessary to adjust the illumination direction of the industrial lamps to accurately project the light onto the area requiring illumination. Alternatively, as the production process or workflow changes, the work area and operating methods may change, requiring a change in the illumination direction of the industrial lamps. Multiple different industrial lamps can be rotated, each capable of rotating 360° relative to the mounting side frame, allowing for precise adjustment of the illumination direction of each lamp. This ensures that multiple lamps illuminate different directions, providing sufficient illumination for equipment of different heights or work areas in different locations. By using second bolts to abut against different adjustment holes, the mounting side frame can be installed at different angles relative to the support frame, resulting in different angles for the overall structure relative to the support frame. This further allows for precise adjustment of the illumination direction of multiple industrial lamps and also allows for adjustment of the installation position of each lamp. Additionally, by adjusting the control lever, the control lever is disengaged from the arc-shaped sleeve. Rotating the control lever allows the two handles to pass through the notch and abut against the first slide groove. By sliding the position of the handles, the angle of the reflector relative to the industrial lamp is adjusted. Rotating the handles allows the limit strip to engage with the damper, thus positioning the reflector and further precisely adjusting the irradiation direction.

[0016] When industrial and mining lamps need to flexibly adjust the angle and brightness of the light according to different work scenarios and task requirements, they need to focus the light. At this time, multiple industrial and mining lamps are rotated so that they shine on the same position to achieve the purpose of focusing the light. At the same time, the brightness can be adjusted by the number of industrial and mining lamps being illuminated. In addition, the light reflected from the industrial and mining lamps can also be adjusted by adjusting the control lever, which can also achieve the purpose of focusing the light.

[0017] When the reflector is not needed, rotate the handle to disengage the limit strip from the damper, slide the handle to disengage it from the groove, and continue rotating the control rod until it engages with the arc-shaped sleeve. The reflector is easy to open and close, and adjusting its illumination direction is simple and quick. The overall structure allows for diverse illumination direction adjustments, enabling 360° rotation adjustment for each industrial lamp. The overall structure allows for rapid light focusing, adapting to different lighting needs and offering high flexibility. When conducting detailed inspections of critical areas in the factory, it provides sufficient localized illumination intensity, meeting the requirements for high-precision vision, and exhibits high energy efficiency. Attached Figure Description

[0018] The present invention will be further described below with reference to the accompanying drawings and embodiments; Figure 1 This is an axonometric view of the overall structure of this utility model; Figure 2 This is an axonometric view of the overall structure of this utility model from another perspective; Figure 3This is an axonometric view of the mounting bracket of this utility model; Figure 4 This is a front view of the support frame of this utility model; Figure 5 This is an axonometric view of the reflector of the industrial and mining lamp of this utility model when it is open; Figure 6 This is an axonometric view of the reflector of the industrial and mining lamp of this utility model when it is closed; Figure 7 This is an axonometric view of the industrial and mining lamp of this utility model; Figure 8 This is an axonometric view of the industrial and mining lamp of this utility model from another perspective; Figure 9 This is a utility model Figure 8 Sectional view of A in the middle; Figure 10 This is a cross-sectional view of the chute in the industrial and mining lamp of this utility model; Figure 11 This is an isometric view of the regulating lever and handle of this utility model; In the diagram: Support frame 1; U-shaped frame 101; Base 102; First through hole 103; Positioning hole 104; Mounting side frame 2; Side plate 201; Rotating support plate 202; Second through hole 203; Adjustment hole 204; Mounting hole 205; Industrial lamp 3; Lamp body 301; Rotating shaft 302; Rotating seat 303; Inclined groove 304; Arc-shaped sleeve 305; Notch 306; Slide groove 307; First slide groove 3071; Second slide groove 3072; Reflector 4; Rotating shaft 401; Side hole 402; Adjusting rod 5; First rotating rod 501; Second rotating rod 502; Third through hole 503; Rotating handle 6; Limiting shaft 601; Limiting strip 602. Detailed Implementation

[0019] Example 1: like Figure 1-11The intelligent controllable industrial and mining lamps used in factories include a support frame 1, with mounting side frames 2 at both ends of the support frame 1. Multiple industrial and mining lamps 3 are positioned between the two mounting side frames 2. A rotating reflector 4 is located on one side of each industrial and mining lamp 3, with control levers 5 at both ends of the reflector 4. Each control lever 5 has a handle 6. Both sides of each industrial and mining lamp 3 have sliding grooves 307 and arc-shaped clamps 305. With this structure, when there are equipment, workbenches, or shelves of different heights within the factory, the illumination direction of the industrial and mining lamps needs to be adjusted to accurately project light onto the area requiring illumination. Alternatively, as production processes or workflows change, the work area and operating methods may change, requiring a change in the illumination direction of the industrial and mining lamps. Multiple different industrial and mining lamps 3 can be rotated 360° relative to the mounting side frames 2, allowing for precise adjustment of the illumination direction of each lamp 3. This ensures that multiple different industrial and mining lamps 3 can illuminate different directions, providing sufficient illumination for equipment of different heights or work areas in different locations. By abutting the second bolt against different adjustment holes 204, the mounting side frame 2 is installed at different angles relative to the support frame 1, thereby adjusting the overall structure at different angles relative to the support frame 1. This allows for precise adjustment of the illumination direction of multiple industrial and mining lamps 3, and also allows for adjustment of the installation position of each industrial and mining lamp 3. Additionally, by adjusting the control lever 5, the control lever 5 is disengaged from the arc-shaped retainer 305. Rotating the control lever 5 allows the two handles 6 to pass through the notch 306 and abut against the first sliding groove 3071. By sliding the handles 6, the angle of the reflector 4 relative to the industrial and mining lamp 3 is adjusted. Rotating the handles 6 causes the limiting strip 602 to engage with the damper, positioning the reflector 4 and further precisely adjusting the illumination direction.

[0020] When the industrial and mining lamp 3 needs to flexibly adjust the angle and brightness of the light according to different work scenarios and task requirements, the industrial and mining lamp 3 needs to focus the light. At this time, multiple industrial and mining lamps 3 are rotated so that multiple industrial and mining lamps 3 illuminate the same position to achieve the purpose of focusing the light. At the same time, the brightness can be adjusted by the number of industrial and mining lamps 3 illuminating. In addition, by adjusting the control lever 5, the light reflected by the industrial and mining lamp 3 can also be adjusted to achieve the purpose of focusing the light.

[0021] When the reflector 4 is not needed, rotate the handle 6 to disengage the limiting strip 602 from the damper, slide the handle 6 to disengage it from the slide groove 307, and continue rotating the adjusting rod 5 until it engages with the arc-shaped sleeve 305. The reflector 4 is easy to open and close, and adjusting its illumination direction is simple and quick. The overall structure allows for diverse illumination direction adjustments, enabling 360° rotation adjustment for each industrial lamp 3. The overall structure allows for rapid light focusing, adapting to different lighting needs and offering high flexibility. When conducting detailed inspections of critical parts of the factory, it provides sufficient local illumination intensity, meeting the requirements for high-precision vision and exhibiting high energy efficiency.

[0022] In a preferred embodiment, the support frame 1 includes a U-shaped frame 101, with a base 102 at the bottom of the U-shaped frame 101. First through holes 103 are provided at both ends of the U-shaped frame 101, and a positioning hole 104 is provided on one side of each first through hole 103. With this structure, the base 102 is used to fix the overall structure.

[0023] In a preferred embodiment, the mounting side frame 2 includes a side plate 201, with a rotating support plate 202 at its bottom. The side plate 201 has multiple mounting holes 205, and the rotating support plate 202 has a second through hole 203. Around the second through hole 203 are multiple circumferentially arranged adjustment holes 204. With this structure, multiple different industrial lamps 3 can rotate 360° relative to the mounting side frame 2, allowing for precise adjustment of the illumination direction of each lamp 3. This ensures that the multiple lamps 3 illuminate different directions, providing sufficient illumination for equipment at different heights or work areas in different locations. By using second bolts abutting against different adjustment holes 204, the mounting side frame 2 can be installed at different angles relative to the support frame 1, further allowing for precise adjustment of the illumination direction of the multiple industrial lamps 3 and adjusting the installation position of each lamp 3.

[0024] In the preferred embodiment, the first bolt passes through the second through hole 203 and the first through hole 103, and the second bolt passes through the positioning hole 104 and one of the adjustment holes 204. With this structure, a second damping structure is provided on the mounting hole 205, and the rotating shaft 302 is rotatably connected to the mounting hole 205. The second damping structure provides a certain resistance, which can limit the movement of the mining lamp 3, allowing the mining lamp 3 to stop more accurately in the required position.

[0025] In the preferred embodiment, the industrial lamp 3 includes a lamp body 301, a rotating shaft 302 on the lamp body 301, a notch 306 on one side of the slide groove 307, inclined grooves 304 at both ends of the lamp body 301, and multiple rotating seats 303 on one side of the lamp body 301. The rotating shaft 302 rotates against the mounting hole 205. With this structure, the arc-shaped sleeve 305 has a third damping structure, so that the adjusting rod 5 can be securely engaged in the arc-shaped sleeve 305.

[0026] In the preferred embodiment, the arc-shaped retaining sleeve 305 is installed on the inclined groove 304. The sliding groove 307 includes a first sliding groove 3071, a second sliding groove 3072 communicating with one side of the first sliding groove 3071, and damping on both sides of the second sliding groove 3072. With this structure, the arc-shaped retaining sleeve 305 is installed on the inclined groove 304. When the control lever 5 is rotated onto the industrial lamp 3, and the control lever 5 is to be engaged with the arc-shaped retaining sleeve 305, the control lever 5 is inclined relative to the lamp body 301, and the inclined groove 304 just matches the control lever 5 at this time.

[0027] In a preferred embodiment, the reflector 4 has multiple rotating shafts 401 on one side, which are rotatably connected to the rotating base 303. The reflector 4 also has side holes 402 on both sides. With this structure, the reflector 4 is rotatably connected to the lamp body 301.

[0028] In the preferred embodiment, one end of the control lever 5 is provided with a first lever 501, which is rotatably connected to the side hole 402. The other end of the control lever 5 is provided with a second lever 502, which is provided with a third through hole 503. With this structure, by adjusting the control lever 5, the control lever 5 is disengaged from the arc-shaped sleeve 305. By rotating the control lever 5, the two handles 6 pass through the notch 306 and abut against the first slide groove 3071. By sliding the position of the handles 6, the angle of the reflector 4 relative to the industrial lamp 3 is adjusted. By rotating the handles 6, the limiting strip 602 is locked onto the damper to position the reflector 4, and the illumination direction is further precisely adjusted.

[0029] In a preferred embodiment, the handle 6 includes a limiting shaft 601, one end of which is provided with a limiting strip 602, and the limiting shaft 601 abuts against the third through hole 503; When the reflector 4 is opened, the handle 6 abuts against the first slide groove 3071; When the reflector 4 is closed, the adjusting lever 5 is engaged with the arc-shaped retaining sleeve 305. With this structure, when the reflector 4 is open, the handle 6 abuts against the first slide groove 3071. The rotation angle of the reflector 4 is adjusted by adjusting the position of the handle 6. After the position of the reflector 4 is adjusted, the adjusting handle 6 is rotated to engage the limiting strip 602 with the damping on both sides of the second slide groove 3072.

[0030] The above embodiments are merely preferred technical solutions of this utility model and should not be considered as limitations on this utility model. The protection scope of this utility model should be the technical solution described in the claims, including equivalent substitutions of the technical features described in the claims. That is, equivalent substitutions and improvements within this scope are also within the protection scope of this utility model.

Claims

1. Intelligent controllable industrial and mining lamps for factory buildings, characterized by: Includes a support frame (1), with mounting side frames (2) at both ends of the support frame (1), and multiple mining lamps (3) between the two mounting side frames (2). A rotating reflector (4) is provided on one side of the mining lamp (3), and an adjustment lever (5) is provided at both ends of the reflector (4). A handle (6) is provided on the adjustment lever (5). Slide grooves (307) and arc-shaped sleeves (305) are provided on both sides of the mining lamp (3).

2. The intelligent controllable industrial and mining lamp for factory buildings according to claim 1, characterized in that: The support frame (1) includes a U-shaped frame (101), a base (102) at the bottom of the U-shaped frame (101), a first through hole (103) at both ends of the U-shaped frame (101), and a positioning hole (104) on one side of the first through hole (103).

3. The intelligent controllable industrial and mining lamp for factory buildings according to claim 1, characterized in that: The mounting side frame (2) includes a side plate (201), a rotating support plate (202) is provided at the bottom of the side plate (201), a plurality of mounting holes (205) are provided on the side plate (201), a second through hole (203) is provided on the rotating support plate (202), and a plurality of circumferentially arrayed adjustment holes (204) are provided around the second through hole (203).

4. The intelligent controllable industrial and mining lamp for factory buildings according to claim 3, characterized in that: The first bolt passes through the second through hole (203) and the first through hole (103), and the second bolt passes through the positioning hole (104) and one of the adjustment holes (204).

5. The intelligent controllable industrial and mining lamp for factory buildings according to claim 1, characterized in that: The industrial and mining lamp (3) includes a lamp body (301), a rotating shaft (302) is provided on the lamp body (301), a notch (306) is provided on one side of the slide (307), inclined grooves (304) are provided at both ends of the lamp body (301), and multiple rotating seats (303) are provided on one side of the lamp body (301). The rotating shaft (302) abuts against the mounting hole (205) and rotates.

6. The intelligent controllable industrial and mining lamp for factory buildings according to claim 5, characterized in that: The arc-shaped sleeve (305) is installed on the inclined groove (304). The slide groove (307) includes a first slide groove (3071), a second slide groove (3072) is provided on one side of the first slide groove (3071), and damping is provided on both sides of the second slide groove (3072).

7. The intelligent controllable industrial and mining lamp for factory buildings according to claim 1, characterized in that: The reflector (4) has multiple rotating shafts (401) on one side, and the rotating shafts (401) are rotatably connected to the rotating seat (303). The reflector (4) has side holes (402) on both sides.

8. The intelligent controllable industrial and mining lamp for factory buildings according to claim 1, characterized in that: One end of the control lever (5) is provided with a first lever (501), which is rotatably connected to the side hole (402). The other end of the control lever (5) is provided with a second lever (502), which is provided with a third through hole (503).

9. The intelligent controllable industrial and mining lamp for factory buildings according to claim 8, characterized in that: The handle (6) includes a limiting shaft (601), one end of which is provided with a limiting strip (602), and the limiting shaft (601) abuts against the third through hole (503); When the reflector (4) is opened, the handle (6) abuts against the first slide groove (3071); When the reflector (4) is closed, the control lever (5) is locked on the arc-shaped sleeve (305).