The present disclosure relates to the technical field of hand-propelled vehicles, and in particular, to an electric wheelbarrow.
Hand-propelled vehicles are common means of transportation. Compared with ordinary multi-wheeled hand-propelled vehicles, a wheelbarrow has a simple structure and a small size, and is therefore widely used in production and life, such as in the storage industry and construction industry. The pulling or pushing of a conventional wheelbarrow relies on manpower, resulting in high labor intensity and low working efficiency. As a result, an electric wheelbarrow came into being, which wheelbarrow is powered by a drive motor.
However, in a current electric wheelbarrow, the drive motor, a transmission device, etc. are all installed at a tray or a frame of the electric wheelbarrow, resulting in a complicated overall structure and relatively large size of the electric wheelbarrow.
The present disclosure provides an electric wheelbarrow. The electric wheelbarrow comprises a main body portion, and a power supply device, a power device and a control device which are installed at the main body portion. The power supply device and the control device are separately connected to the power device.
Optionally, the main body portion comprises a tray, a main body frame for carrying the tray, and a wheel installed at the main body frame.
Optionally, the power device comprises a drive device, a transmission device, and a brake device.
Further, optionally, the drive device and the transmission device are disposed in the wheel, the drive device is connected to a hub assembly of the wheel, and the transmission device is connected to a rim of the wheel.
Further, optionally, the drive device comprises a hub motor installed in the wheel, and the hub motor is connected to the transmission device and the hub assembly.
Further, optionally, the hub motor comprises a stator and a rotor, the stator is connected to the hub assembly, and the rotor is connected to the transmission device.
Optionally, the transmission device is a gearbox.
Further, optionally, the gearbox is a planetary gearbox.
Further, optionally, the planetary gearbox comprises a sun gear, a planetary gear, a planet carrier and a ring gear. The sun gear is connected to the drive device, the sun gear meshes with the planetary gear, the planetary gear is installed at the planet carrier, the ring gear meshes with the planetary gear, and the ring gear is fixedly connected to the rim.
Optionally, the power supply device comprises an upper housing and a lower housing. The lower housing is fixedly installed at the main body portion, and the upper housing is detachably connected to the lower housing.
Further, optionally, a sealing ring is disposed between the lower housing and the upper housing.
Optionally, the control device comprises a controller for controlling the power device, and a switch device connected to the controller. The controller and the switch device are both disposed on the main body portion.
Further, optionally, the switch device comprises a power membrane switch for controlling the on or off of a power supply of the electric wheelbarrow, a brake device, a motor regulation switch for regulating the operation of the motor when the power supply is turned on, a direction adjustment membrane switch for controlling the electric wheelbarrow to move forward or backward, and a speed regulation membrane switch for regulating a movement speed of the electric wheelbarrow.
Further, optionally, the main body portion is provided with a handle, and the switch device is disposed on the handle.
Further, optionally, the power membrane switch is disposed on an end face of a first end of the handle, the brake device is disposed on an inner side of the first end, the motor regulation switch is disposed on an inner side of a second end of the handle, and the direction adjustment membrane switch and the speed regulation membrane switch are disposed on an end face of the second end.
To illustrate the technical solutions of the present disclosure more clearly, the accompanying drawings required in some embodiments of the present disclosure will be briefly introduced below. As can be seen, the accompanying drawings in the following description show only some embodiments of the present disclosure, and a person of ordinary skill in the art can further obtain other accompanying drawings according to these accompanying drawings.
The technical solutions in some embodiments of the present disclosure are clearly and completely described below with reference to the accompanying drawings. As can be seen, the embodiments described are only some embodiments of the present disclosure rather than all embodiments. All the other embodiments obtained by a person of ordinary skill in the art on the basis of the embodiments provided in the present disclosure shall fall within the scope of protection of the present disclosure.
It should be noted in the description of the structure of a device or a component that the orientation or positional relationship indicated by the terms used, such as “upper”, “lower”, “front”, “rear”, “left”, “right”, “vertical”, “horizontal”, “top”, “bottom”, “inner” and “outer”, is based on the orientation or positional relationship shown in the accompanying drawings, which is merely for the ease of description and simplification of the description, and is not intended to indicate or imply that the device or component referred to must have a particular orientation or be constructed and operated in a particular orientation. Therefore, this should not be construed as limiting the present disclosure.
An electric wheelbarrow provided in the present disclosure will be described below with reference to specific embodiments.
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In some embodiments of the present disclosure, the power device comprises a drive device 3, a transmission device 4, and a brake device 5.
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It can be seen from the foregoing structure that in some embodiments of the present disclosure, after electromagnetic torque of the hub motor 31 is increased by the planetary gearbox due to deceleration, power is transmitted to the rim 132 to drive the wheel 13. Specifically, the hub motor 31 transmits power to the sun gear 41 through the rotor shaft 313 connected to the sun gear 41, such that the sun gear 41 rotates. The sun gear 41 drives the planetary gear 42 meshing therewith to rotate, the planetary gear 42 drives the ring gear 44 meshing therewith to rotate, and the ring gear 44 drives the rim 132 fixedly connected thereto to rotate, thereby driving the wheel 13.
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In some embodiments of the present disclosure, as shown in
For example, in some embodiments of the present disclosure, the power supply device 2 may be a waterproof battery pack disposed on the main body portion. In addition, an external plug may be provided on the power supply device 2, to charge the battery pack by an external power supply.
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Preferably, a sealing ring is disposed between the lower housing 22 and the upper housing 21 to prevent rainwater and the like from entering the cavity for the power supply device 2 and damaging the battery. For example, the sealing ring may be a rubber sealing ring made of a soft material to further improve the sealing performance of the power supply device 2.
In some embodiments of the present disclosure, the control device comprises a controller for controlling the power device, and a switch device 7 connected to the controller. The controller and the switch device 7 are both disposed on the main body portion 1, for example, on the main body frame 12 of the main body portion 1. The switch device 7 may provide a power on/off function of turning on or off a power supply of the electric wheelbarrow, a function of adjusting the operation of the hub motor 31 to adjust a rotation speed of the hub motor 31, and a function of activating or deactivating the brake device 5. In addition, the switch device 7 may be further configured to provide a function of adjusting a movement speed and/or a movement direction, so as to adjust a movement speed and direction of the electric wheelbarrow.
When the electric wheelbarrow is in use, the power supply and the drive device 3 can be activated through the switch device 7 and the controller, power output by the hub motor 31 in the drive device 3 can be transmitted to the rim 132 through the transmission device 4 to drive the wheel 13, so as to drive the electric wheelbarrow to move, and drive the electric wheelbarrow to move to a designated position. After the designated position is reached, brake kinetic energy is activated through the switch device 7, that is, the brake wire is pulled by the switch device 7, and the brake wire drives the brake 51 to act on the brake disc, thereby implementing the braking of the wheel 13 and making the electric trolley stop moving.
It should be noted that the controller may include a processor for supporting the electric movement of the electric wheelbarrow performed by the control device, a storage unit for storing program codes of the control device, etc. For example, the processor may be a central processing unit (CPU), or may be other general-purpose processors, a digital signal processor (DSP), an application-specific integrated circuit (ASIC), a field-programmable gate array (FPGA) or other programmable logic devices, and the like. The general-purpose processor may be a microprocessor or any conventional processor or the like.
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For example, when it is necessary to switch the electric wheelbarrow into an electric movement mode, an operator can turn on the power membrane switch 71 and the motor regulation switch 73 to activate the hub motor 31. The power output by the hub motor 31 can be transmitted to the rim 132 through the transmission device 4, and then drives the wheel 13 to move the electric wheelbarrow.
For example, during the electric movement of the electric wheelbarrow, the user can adjust the movement speed of the electric wheelbarrow through the motor regulation switch 73 and the speed regulation membrane switch 75 as required. In addition, the direction adjustment membrane switch 74 may also be used to make the electric wheelbarrow move forward or backward.
When the electric wheelbarrow reaches a target position and the electric wheelbarrow in the electric movement mode needs to be stopped, the user can press the brake switch 72 to pull the brake wire, and the brake wire drives the brake 51 to act on the brake disc, thereby braking the wheel 13, so that the electric wheelbarrow stops moving. After the power supply is turned off by means of the power membrane switch 71, the user can safely unload goods from the electric wheelbarrow.
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Preferably, the switch device 7 may be disposed on a grip portion of the handle 19 to further facilitate the operation by the staff.
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In the description of the foregoing implementations, specific features, structures, materials or characteristics may be combined in any one or more embodiments or examples in a suitable way.
The foregoing description is only for preferred implementations of the present disclosure, but the scope of protection of the present disclosure is not limited thereto, and variations and replacements that can be conceived within the technical scope disclosed in the present disclosure by those skilled in the art should fall within the scope of protection of the present disclosure. Therefore, the scope of protection of the present disclosure should be subject to the scope of protection of the claims.
Filing Document | Filing Date | Country | Kind |
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PCT/CN2019/117982 | 11/13/2019 | WO |