Solar mobile lamp trolley

By increasing the number of deployable solar panels and optimizing their layout on the solar-powered mobile lighting vehicle, the problem of insufficient solar panel quantity was solved, achieving efficient power generation and lighting capabilities. The structure is simple, compact, and highly adaptable.

CN223795212UActive Publication Date: 2026-01-13FUJIAN ROBUST POWER
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Patent Information

Application Number
CN202423088594.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-14
Publication Date
2026-01-13
Estimated Expiration
2034-12-14

AI Technical Summary

Technical Problem

The solar panels in commonly available solar-powered mobile lighting vehicles are insufficient to meet the demand for high-power lighting.

Method used

A solar-powered mobile light vehicle was designed, which increases the number of deployable solar panels. Multiple deployable solar panels are set on the top and front of the casing, and the solar panels are flexibly deployed using slide rails and gas struts. The rotating and flipping light frame is combined to maximize the use of space.

Benefits of technology

It improves the power generation efficiency and capacity of solar energy, has a compact structure, is easy to maintain, and can adapt to the lighting needs of different scenarios.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a solar mobile lamp car which comprises a mobile car frame and a machine shell located on the mobile car frame, a lifting lamp pole is arranged in front of the machine shell, a rear solar frame is arranged on the top of the machine shell, a fixed solar panel is arranged on the rear solar frame, and the fixed solar panel is connected with the lifting lamp pole. A first movable solar panel and a second movable solar panel which can be pushed, pulled and extended towards two sides respectively are arranged below the fixed solar panel; a front solar frame is arranged on the front side of the lower portion of the lifting lamp pole, the upper end of the front solar frame is hinged to the lower portion of the lifting lamp pole and can turn over up and down, and a third movable solar panel and a fourth movable solar panel which can stretch out towards the two sides in a push-pull mode are arranged on the front solar frame. The solar movable lamp trolley is simple and compact in structure and reasonable in design, the number of the expandable solar panels is increased, the space of the front portion of the lamp trolley is utilized to the maximum extent, the overall size is not affected, the solar energy collecting capacity is improved, and the power generation efficiency and the power generation capacity are improved in practical application.
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Description

Technical Field

[0001] This utility model relates to the field of mobile lighting vehicles, and in particular to a solar-powered mobile lighting vehicle. Background Technology

[0002] Most commercially available solar-powered mobile lighting vehicles only have deployable solar panels on the top of the casing. These vehicles typically have only three deployable solar panels, which is far from sufficient for lighting vehicles with high-power lighting requirements. Utility Model Content

[0003] In view of this, the purpose of this utility model is to provide a solar-powered mobile light vehicle with a simple and compact structure, which increases the number of deployable solar panels and improves power generation efficiency and power generation capacity.

[0004] This utility model is implemented using the following scheme: A solar-powered mobile light vehicle includes a mobile frame and a housing located on the mobile frame. A lifting light pole is provided at the front of the housing, and a rear solar frame is provided at the top of the housing. A fixed solar panel is provided on the rear solar frame, and a first movable solar panel and a second movable solar panel that can be pushed and pulled out to both sides are provided below the fixed solar panel. A front solar frame is provided on the lower front side of the lifting light pole. The upper end of the front solar frame is hinged to the lower part of the lifting light pole and can be rotated up and down. A third movable solar panel and a fourth movable solar panel that can be pushed and pulled out to both sides are provided on the front solar frame.

[0005] Furthermore, a gas strut is provided below the front solar panel to support it. One end of the gas strut is hinged to the middle of the front solar panel, and the other end is hinged to the lower end of the lifting light pole.

[0006] Furthermore, the first and second movable solar panels are arranged in staggered layers, and the first and second movable solar panels are slidably connected to the rear solar rack via slide rails.

[0007] Furthermore, the third and fourth movable solar panels are arranged in staggered layers, and the third and fourth movable solar panels are slidably connected to the front solar rack via slide rails.

[0008] Furthermore, the upper end of the lifting light pole is provided with a rotating light frame that can rotate 360° around the lifting light pole. A flip light frame that can flip up and down relative to the rotating light frame is hinged to the rotating light frame, and light fixtures are respectively installed at both ends of the flip light frame.

[0009] Furthermore, the upper end of the lifting lamp post is provided with an electric drive mechanism for driving the rotating lamp holder to rotate.

[0010] Furthermore, the electric drive mechanism includes a drive box, the upper end of the lifting lamp post passes through the drive box and rotates with it, a motor is installed inside the drive box, a gear ring is fixedly connected to the upper end of the lifting lamp post, and a gear that meshes with the gear ring is provided on the main shaft of the motor; the lower part of the rotating lamp holder is connected to the drive box.

[0011] Furthermore, the flip lamp holder is driven to flip by a hydraulic cylinder, with both ends of the hydraulic cylinder hinged to the flip lamp holder and the rotating lamp holder, respectively.

[0012] Furthermore, a towing frame is provided at the front of the mobile vehicle frame.

[0013] Furthermore, a pair of stabilizing bars that can slide and extend are respectively provided on both sides of the mobile frame, and jacks are connected to the ends of the stabilizing bars.

[0014] Compared with the prior art, the present invention has the following beneficial effects: The solar mobile light vehicle of the present invention has a simple and compact structure and a reasonable design. It increases the number of deployable solar panels, makes maximum use of the space in the front part of the light vehicle without affecting the overall size, improves the solar energy collection capacity, and improves the power generation efficiency and power generation capacity in practical applications.

[0015] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below through specific embodiments and related drawings. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the retracted state of the mobile light vehicle according to an embodiment of this utility model;

[0017] Figure 2 This is a schematic diagram of the unfolded state of the solar panel on the mobile lighting vehicle according to an embodiment of this utility model;

[0018] Figure 3 yes Figure 1 A partial schematic diagram of the flip-up lamp holder after it has been flipped 90°.

[0019] Figure 4 This is a schematic diagram of the mobile light vehicle with its solar panel deployed and the lifting light pole extended, according to an embodiment of this utility model.

[0020] Figure 5 yes Figure 4 Schematic diagram of local structure in the middle;

[0021] Figure 6 yes Figure 5 Schematic diagram of the rotating lamp holder after it has been rotated 180°;

[0022] The labels in the diagram are as follows: 100-Mobile frame, 110-Traction frame, 120-Stabilizer bar, 130-Jack, 200-Main housing, 300-Lifting light pole, 400-Rear solar panel, 410-Fixed solar panel, 420-First movable solar panel, 430-Second movable solar panel, 500-Front solar panel, 510-Third movable solar panel, 520-Fourth movable solar panel, 530-Gas strut, 600-Slide rail, 700-Rotating light stand, 800-Flipping light stand, 810-Light fixture, 820-Hydraulic cylinder, 900-Drive box. Detailed Implementation

[0023] It should be noted that the following detailed descriptions are exemplary and intended to provide further explanation of this application. Unless otherwise specified, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application pertains.

[0024] It should be noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the exemplary embodiments according to this application. As used herein, the singular form is intended to include the plural form as well, unless the context clearly indicates otherwise. Furthermore, it should be understood that when the terms "comprising" and / or "including" are used in this specification, they indicate the presence of features, steps, operations, devices, components, and / or combinations thereof.

[0025] like Figures 1-6As shown, a solar-powered mobile light vehicle includes a mobile frame 100 and a housing 200 located on the mobile frame. A lifting light pole 300 is provided at the front of the housing, and a rear solar panel 400 is provided at the top of the housing. A fixed solar panel 410 is provided on the rear solar panel, and a first movable solar panel 420 and a second movable solar panel 430 that can be pushed and pulled out to both sides are provided below the fixed solar panel. A front solar panel 500 is provided on the lower front side of the lifting light pole. The upper end of the front solar panel is hinged to the lower part of the lifting light pole and can be rotated up and down. The angle of rotation of the front solar panel is 90°, that is, a vertical state and a horizontal state. A third movable solar panel 510 and a fourth movable solar panel 520 that can be pushed and pulled out to both sides are provided on the front solar panel. This utility model of a solar-powered mobile lighting vehicle features a foldable front solar panel 500 at the bottom of the lifting light pole. The front solar panel 500 is equipped with two deployable solar panels, bringing the total number of deployable solar panels on the vehicle to five. This multi-panel deployable structure improves power generation efficiency and capacity in practical applications. Utilizing the space above the front of the frame (i.e., the towing frame), it features a simple and compact structure, low manufacturing cost, long lifespan, good stability, and easy maintenance. The layout and configuration of this mobile lighting vehicle's solar energy collection method represent a significant improvement over similar products on the market. Specifically, the front solar panel is equipped with two solar panels that can be flexibly deployed to the left and right sides along sliding rails installed on the front solar panel, thereby maximizing the use of the space in the front of the lighting vehicle without affecting the overall size and enhancing solar energy collection capacity.

[0026] Meanwhile, the rear solar panel rack is equipped with three solar panels. The top solar panel is fixed in place, while the bottom two solar panels are also able to unfold to the left and right sides via a sliding rail device, further improving the efficiency of solar energy collection.

[0027] In this embodiment, a gas strut 530 is provided below the front solar panel to support it. One end of the gas strut is hinged to the middle of the front solar panel, and the other end is hinged to the lower end of the lifting light pole. The front solar panel is mainly folded down using the gas strut. The front solar panel is designed to be vertically folded in its initial state for easy storage and transportation. In actual use, the gas strut can be used to smoothly unfold the front solar panel to a horizontal state, ensuring that the solar panels can be fully extended to receive sunlight and achieve higher photoelectric conversion efficiency.

[0028] In this embodiment, the first movable solar panel and the second movable solar panel are arranged in staggered layers, and the first movable solar panel and the second movable solar panel are slidably connected to the rear solar rack via slide rails 600.

[0029] In this embodiment, the third and fourth movable solar panels are arranged in staggered layers, and the third and fourth movable solar panels are slidably connected to the front solar rack via slide rails 600.

[0030] In this embodiment, the upper end of the lifting light pole is provided with a rotating light frame 700 that can rotate 360° around the lifting light pole. A flip light frame 800 that can flip up and down relative to the rotating light frame is hinged to the rotating light frame. Light fixtures 810 are respectively installed at both ends of the flip light frame. The flip angle of the flip light frame 800 is 90°, and the light fixtures are in vertical and horizontal states respectively. The lighting part of the light vehicle has an angle adjustment function, which allows the light fixtures to be flexibly rotated and adjusted between horizontal and vertical postures (i.e., the rotation angle range covers 0° to 90°) to adapt to the lighting of different scenarios.

[0031] In this embodiment, the upper end of the lifting lamp post is provided with an electric drive mechanism for driving the rotating lamp holder to rotate.

[0032] In this embodiment, the electric drive mechanism includes a drive box 900. The upper end of the lifting light pole passes through the drive box and rotates with it. A motor is installed inside the drive box. A gear ring is fixedly connected to the upper end of the lifting light pole. A gear that meshes with the gear ring is provided on the main shaft of the motor. The lower part of the rotating light frame is connected to the drive box. Since the lifting light pole is fixed, when the motor works, it will drive the drive box to rotate, which in turn will drive the rotating light frame to rotate, enabling a 360° rotation in all directions.

[0033] In this embodiment, the flip lamp holder is driven to flip by a hydraulic cylinder 820. The two ends of the hydraulic cylinder are respectively hinged to the flip lamp holder and the rotating lamp holder. The flipping function of the flip lamp holder is realized by the hydraulic cylinder at the center position.

[0034] In this embodiment, a towing frame 110 is provided at the front of the mobile vehicle frame.

[0035] In this embodiment, a pair of stabilizing rods 120 that can slide and extend are respectively provided on both sides of the mobile frame, and the ends of the stabilizing rods are connected to jacks 130.

[0036] The aforementioned lifting light pole 300 is existing technology, and its structure and principle will not be described in detail here; it is mainly composed of multiple telescopic joints connected together, with the bottom telescopic joint fixed on the traction frame, and the front solar panel 500 is installed on the bottom telescopic joint.

[0037] Unless otherwise stated, if any of the technical solutions disclosed in this utility model discloses a numerical range, then the disclosed numerical range is a preferred numerical range. Any person skilled in the art should understand that the preferred numerical range is merely one among many feasible numerical values ​​that has a more obvious or representative technical effect. Because there are many numerical values, it is impossible to list them all. Therefore, this utility model discloses only some numerical values ​​to illustrate the technical solutions of this utility model. Furthermore, the numerical values ​​listed above should not constitute a limitation on the scope of protection of this utility model.

[0038] If this utility model discloses or relates to mutually fixedly connected parts or structural components, then unless otherwise stated, a fixed connection can be understood as: a detachable fixed connection (e.g., using bolts or screws), or a non-detachable fixed connection (e.g., riveting, welding). Of course, mutually fixed connections can also be replaced by an integral structure (e.g., manufactured by integral molding using a casting process) (except where it is obviously impossible to use an integral molding process).

[0039] In addition, unless otherwise stated, the terms used in any of the technical solutions disclosed in this utility model to indicate positional relationships or shapes include states or shapes that are similar to, close to, or approximate with those states or shapes.

[0040] Any component provided by this utility model can be assembled from multiple individual components, or it can be a single component manufactured by a one-piece molding process.

[0041] The above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model in any other way. Any person skilled in the art may make changes or modifications to the disclosed technical content to create equivalent embodiments. However, any simple modifications, equivalent changes, and modifications made to the above embodiments based on the technical essence of this utility model without departing from its technical solution shall still fall within the protection scope of this utility model.

Claims

1. A solar mobile light vehicle comprising a mobile vehicle frame and a housing located on the mobile vehicle frame, a lifting light pole being provided in front of the housing, characterized in that: The top of the cabinet is provided with a rear solar energy frame, the rear solar energy frame is provided with a fixed solar panel, and the lower part of the fixed solar panel is provided with a first movable solar panel and a second movable solar panel which can be respectively pushed and pulled to extend to both sides; the lower part of the front side of the lifting lamp rod is provided with a front solar energy frame, the upper end of the front solar energy frame is hinged to the lower part of the lifting lamp rod and can be turned up and down, the front solar energy frame is provided with a third movable solar panel and a fourth movable solar panel which can be respectively pushed and pulled to extend to both sides; the first movable solar panel and the second movable solar panel are arranged in an upper and lower staggered manner, and the first movable solar panel and the second movable solar panel are respectively connected to the rear solar energy frame through sliding rails; the third movable solar panel and the fourth movable solar panel are arranged in an upper and lower staggered manner, and the third movable solar panel and the fourth movable solar panel are respectively connected to the front solar energy frame through sliding rails.

2. The solar mobile light cart of claim 1, wherein: The lower part of the front solar energy frame is provided with an air support rod for supporting the front solar energy frame, one end of the air support rod is hinged to the middle part of the front solar energy frame, and the other end is hinged to the lower end of the lifting lamp rod.

3. The solar mobile light cart of claim 1, wherein: The upper end of the lifting lamp rod is provided with a rotating lamp frame which can rotate 360° around the lifting lamp rod as the center, the rotating lamp frame is hinged to a turnover lamp frame which can turn up and down relative to it, and the two ends of the turnover lamp frame are respectively provided with lamps.

4. The solar mobile light cart of claim 3, wherein: The upper end of the lifting lamp rod is provided with an electric drive mechanism for driving the rotating lamp frame to rotate.

5. The solar mobile light cart of claim 4, wherein: The electric drive mechanism comprises a drive box, the upper end of the lifting lamp rod passes through the drive box and is rotationally connected thereto, a motor is installed in the drive box, the upper end of the lifting lamp rod is fixedly connected with a gear ring, and a gear matched with the gear ring is arranged on the main shaft of the motor; the lower part of the rotating lamp frame is connected to the drive box.

6. The solar-powered mobile light cart of claim 3, wherein: The turnover lamp frame is driven to turn over by a hydraulic cylinder, and the two ends of the hydraulic cylinder are respectively hinged to the turnover lamp frame and the rotating lamp frame.

7. The solar-powered mobile light cart of claim 1, wherein: The front part of the mobile frame is provided with a traction frame.

8. The solar-powered mobile light cart of claim 1, wherein: A pair of stable rods which can be extended by sliding are arranged on both sides of the mobile frame, and jacks are connected to the ends of the stable rods.