Light energy power supply device for scooter

By using photoelectric power generation devices on the scooter and using the drive offset component to move the photovoltaic panel rack, the problem of waste of municipal charging resources is solved, and an energy-saving and environmentally friendly power supply method is achieved.

CN223168285UActive Publication Date: 2025-07-29TIANJIN SAAB VEHICLE IND CO LTD
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Patent Information

Application Number
CN202422234221.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-12
Publication Date
2025-07-29
Estimated Expiration
2034-09-12

AI Technical Summary

Technical Problem

The charging of existing scooters relies on mains electricity, resulting in waste of resources and lack of environmentally friendly and energy-saving power supply solutions.

Method used

The photovoltaic power generation device is adopted to drive the photovoltaic panel rack to move by driving the offset components, increase the photovoltaic power generation area, and the photovoltaic panel can be folded when not in use.

Benefits of technology

It realizes energy-saving and environmentally friendly power supply of scooters, reduces power consumption and improves the efficiency of light energy utilization.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of power supply for scooters, and provides a light energy power supply device for scooters, which comprises a mounting frame provided with a sliding cavity. The driving deviation assembly is arranged in the sliding cavity; the driving offset assembly comprises driving cavities, the driving cavities are formed in the two opposite sides of the placement frame, driving gears are arranged in the driving cavities, movable shafts are arranged on the driving gears, driving racks are meshed with the driving gears, the driving racks are meshed with the driving gears, and the movable shafts are arranged on the driving racks. And a connecting column is arranged on the side surface of the driving gear, a placement piece is connected to the connecting column, and a photovoltaic panel frame is connected to the placement piece. By means of the technical scheme, the problem that resources are wasted due to the fact that electric supply is used for charging in the prior art is solved, light energy is adopted for power generation, part of consumption of the electric supply is relatively saved, and energy conservation and environment protection are achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of power supply for scooters, and specifically, to a solar energy power supply device for scooters. Background Art

[0002] Electric scooters are made of high-tech composite materials for the vehicle body, which have the advantages of impact resistance, corrosion resistance, toughness, not easy to break, long service life, etc.

[0003] Fully enclosed scooters for the elderly are divided into two types: three-wheel and four-wheel. When the manufacturer designs them, they do not simply apply the configuration of the original two-wheel electric bicycle to the scooters for the elderly, but need to separately configure a special motor and controller for the scooter. In terms of functions, it is also different from the two-wheel electric bicycle, and more attention should be paid to the convenience and safety of the elderly when using.

[0004] During the use of the scooter, it is charged by the mains power, which is extremely wasteful of resources. In view of this, this technical solution uses solar power generation, which relatively saves the consumption of a part of the mains power, and is energy-saving and environment-friendly. Content of the Utility Model

[0005] The utility model provides a solar energy power supply device for scooters, which solves the problem that in the related technology, charging by the mains power is extremely wasteful of resources. In view of this, this technical solution uses solar power generation, which relatively saves the consumption of a part of the mains power, and is energy-saving and environment-friendly.

[0006] The technical solution of the utility model is as follows: It includes

[0007] A mounting frame, on which a sliding cavity is provided;

[0008] A driving and offsetting component, which is arranged in the sliding cavity;

[0009] The driving and offsetting component includes a driving cavity, which is opened on the opposite sides of the mounting frame. A driving gear is arranged in the driving cavity, and a movable shaft is arranged on the driving gear. A driving rack is engaged with the driving gear. A connecting column is arranged on the side surface of the driving gear, and a mounting piece is connected to the connecting column. A photovoltaic panel frame is connected to the mounting piece.

[0010] As a further technical solution, a limiting groove is arranged on the inner surface of the photovoltaic panel frame, and a limiting strip is arranged on the inner surface of the sliding cavity. The limiting groove and the limiting strip are fitted with each other.

[0011] As a further technical solution, a sliding opening is arranged on the side surface of the sliding cavity, and a part of the mounting piece extends out of the sliding opening.

[0012] As a further technical solution, the number of the photovoltaic panel frames is two, the placement pieces are located at the upper and lower ends of the driving cavity, and photovoltaic panels are placed on the photovoltaic panel frames.

[0013] As a further technical solution, the number of the driving racks is two, and the two driving racks are respectively engaged with the upper and lower end faces of the driving gear.

[0014] As a further technical solution, the placement piece is of an L-shaped structure, and the horizontal part of the placement piece extends out of the sliding opening.

[0015] The working principle and beneficial effects of the present utility model are as follows:

[0016] In the present utility model, the driving gear in the driving offset assembly drives the driving rack to move, the driving rack drives the placement piece on the connecting column to translate, and after the placement piece moves, it drives the photovoltaic panel frame to move. Photovoltaic panels are placed on both the photovoltaic panel frame and the sliding cavity. The three photovoltaic panels increase the area of light energy power generation, and when not in use, the photovoltaic panels can be translated and retracted. Description of the Drawings

[0017] The following further describes the present utility model in detail with reference to the drawings and specific embodiments.

[0018] Figure 1 is a schematic structural diagram of the present utility model;

[0019] Figure 2 is an axonometric view of the driving rack of the present utility model;

[0020] Figure 3 is a sectional view of the driving cavity of the present utility model;

[0021] In the figure: 1, placement frame; 2, sliding cavity; 3, driving offset assembly; 3-1, driving cavity; 3-2, driving gear; 3-3, movable shaft; 3-4, driving rack; 3-5, connecting column; 3-6, placement piece; 3-7, photovoltaic panel frame; 4, limiting groove; 5, limiting strip; 6, sliding opening. Specific Embodiments

[0022] The following will clearly and completely describe the technical solutions in the embodiments of the present utility model in conjunction with the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0023] As Figures 1 to 3 shown, this embodiment proposes a light energy power supply device for a scooter, including

[0024] Placement frame 1, on which a sliding cavity 2 is provided;

[0025] Drive offset component 3, which is arranged in the sliding cavity 2;

[0026] The drive offset component 3 includes a drive cavity 3-1, which is opened on opposite sides of the placement frame 1. A drive gear 3-2 is arranged in the drive cavity 3-1. A movable shaft 3-3 is arranged on the drive gear 3-2. A drive rack 3-4 is engaged with the drive gear 3-2. A connecting column 3-5 is arranged on the side surface of the drive gear 3-2. A placement piece 3-6 is connected to the connecting column 3-5. A photovoltaic panel frame 3-7 is connected to the placement piece 3-6.

[0027] In this embodiment, the drive gear 3-2 drives the drive rack 3-4 to move. The drive rack 3-4 drives the placement piece 3-6 on the connecting column 3-5 to translate. After the placement piece 3-6 moves, it drives the photovoltaic panel frame 3-7 to move. Photovoltaic panels are arranged on both the photovoltaic panel frame 3-7 and the sliding cavity 2. The three photovoltaic panels increase the area of solar energy power generation, and when not in use, the photovoltaic panels can be translated and retracted.

[0028] Specifically, a limiting groove 4 is arranged on the inner side surface of the photovoltaic panel frame 3-7, and a limiting strip 5 is arranged on the inner side surface of the sliding cavity 2. The limiting groove 4 and the limiting strip 5 are fitted with each other.

[0029] In this embodiment, the limiting groove 4 and the limiting strip 5 are fitted with each other, making the movement of the placement piece 3-6 more stable.

[0030] Specifically, a sliding opening 6 is arranged on the side surface of the sliding cavity 2. A part of the placement piece 3-6 extends out of the sliding opening 6. The number of the photovoltaic panel frames 3-7 is two. The placement pieces 3-6 are located at the upper and lower ends of the drive cavity 3-1. Photovoltaic panels are arranged on the photovoltaic panel frames 3-7.

[0031] In this embodiment, the sliding opening 6 is used for the sliding of the placement piece 3-6.

[0032] Specifically, the number of the drive racks 3-4 is two. The two drive racks 3-4 are respectively engaged with the upper and lower end faces of the drive gear 3-2. The placement piece 3-6 is of an L-shaped structure, and the horizontal part of the placement piece 3-6 extends out of the sliding opening 6.

[0033] When light energy power generation is required, the driving gear 3-2 drives the driving rack 3-4 to move. The driving rack 3-4 drives the mounting piece 3-6 on the connecting column 3-5 to translate. After the mounting piece 3-6 moves, it drives the photovoltaic panel frame 3-7 to move. Photovoltaic panels are installed on both the photovoltaic panel frame 3-7 and the sliding cavity 2. The three photovoltaic panels increase the area of light energy power generation, and when not in use, the photovoltaic panels can be translated and retracted.

[0034] The driving gear 3-2 can be rotated by manual screwing, or after installing a motor, the motor can drive the driving gear 3-2 to rotate.

[0035] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. A solar power supply device for a mobility scooter, characterized in that: include A placement frame (1), wherein a sliding cavity (2) is provided on the placement frame (1); A drive deflection assembly (3), the drive deflection assembly (3) being disposed in the sliding cavity (2); The drive offset assembly (3) comprises a drive cavity (3-1), the drive cavity (3-1) being opened on opposite sides of the placement frame (1), a drive gear (3-2) being provided in the drive cavity (3-1), a movable shaft (3-3) being provided on the drive gear (3-2), a drive rack (3-4) being meshed with the drive gear (3-2), the drive rack (3-4) being meshed with the drive gear (3-2), a connecting column (3-5) being provided on the side surface of the drive gear (3-2), a placement plate (3-6) being connected to the connecting column (3-5), and a photovoltaic panel frame (3-7) being connected to the placement plate (3-6).

2. The light energy power supply device for a scooter according to claim 1, wherein The inner surface of the photovoltaic panel frame (3-7) is provided with a limiting groove (4), the inner surface of the sliding cavity (2) is provided with a limiting strip (5), and the limiting groove (4) and the limiting strip (5) are embedded in each other.

3. The light energy power supply device for a mobility scooter according to claim 1, characterized in that: A sliding opening (6) is provided on the side surface of the sliding cavity (2), and a portion of the placement piece (3-6) extends out of the sliding opening (6).

4. The light energy power supply device for a scooter according to claim 1, characterized in that, There are two photovoltaic panel racks (3-7), the placement plates (3-6) are located at the upper and lower ends of the driving cavity (3-1), and photovoltaic panels are placed on the photovoltaic panel racks (3-7).

5. The light energy power supply device for a mobility scooter according to claim 1, characterized in that: There are two driving racks (3-4), and the two driving racks (3-4) are respectively engaged with the upper and lower end surfaces of the driving gear (3-2).

6. The light energy power supply device for a mobility scooter according to claim 3, characterized in that: The placement piece (3-6) is an L-shaped structure, and the horizontal portion of the placement piece (3-6) extends out of the sliding opening (6).