Self-tracing lifting device for battery replacement of electric vehicle

A technology of electric vehicles and lifting devices, which is applied in the direction of electric vehicles, motor vehicles, charging stations, etc., can solve the problems of difficult disassembly and transfer, inflexible use, and inconvenient operation, so as to achieve convenient high-density layout, improve operating efficiency, and use Flexible and convenient effects

Pending Publication Date: 2021-09-03
陈维加
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] 1. It is too dependent on the site, occupies a large area, and is not flexible to use; since this type of trench or fixed lifting frame is a fixed facility on the ground, the supporting battery charging and storage and transportation facilities in the replacement station can only be integrated It is built and bound to each other, which requires a relatively open site, and is not suitable for construction in areas such as the city center with heavy traffic and land shortage, or narrow underground garages
[0005] 2. The known fixed lifting frame is often composed of a series of complex and precise mechanisms, which work together to complete a series of actions such as alignment, locking and lifting for electric vehicles. The overall structure is complex. It is difficult to disassemble and transfer, and requires professionals to install and debug, which is expensive and equipment maintenance costs are high
Moreover, a set of institutions only serves a single type of electric vehicle, and the scope of application is very limited. In addition, some car companies have invested heavily in self-contained power stations, which cannot achieve high-density layout.
[0006] 3. The interior of the existing battery swap station usually only corresponds to one type of car, so there is no wheelbase and wheelbase problems when lifting and aligning. If it is to meet the needs of battery swapping for all vehicles, a complex mechanical structure must be added to the lifting device. Adapt to the wheelbase and wheelbase, even if it still puts forward quite high driving technical requirements for the driver to park in a precise fixed position
However, this lifting device is limited to the lifting and moving of the vehicle, and cannot be used as battery replacement or bottom maintenance of electric vehicles, and has the following disadvantages:
[0010] 3. Due to the need to carry and balance the forces in all directions at the bottom of the vehicle, the AGV trolley must also be equipped with a supporting balance and stabilization mechanism to provide a stable supporting force, resulting in a complex overall structure of the lifting device, inconvenient operation, and relatively low manufacturing and maintenance costs. higher
[0011] Therefore, there is no precedent for the application of AGV trolley as a vehicle lifting tool in the field of electric vehicle battery replacement.

Method used

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  • Self-tracing lifting device for battery replacement of electric vehicle
  • Self-tracing lifting device for battery replacement of electric vehicle
  • Self-tracing lifting device for battery replacement of electric vehicle

Examples

Experimental program
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Effect test

Embodiment 1

[0054] Example 1: Combining Figure 1~Figure 10 A specific implementation of the self-tracking lifting device for electric vehicle battery replacement provided by the present invention is described as follows:

[0055] Such as figure 1 As shown, the self-tracking lifting device for electric vehicle battery replacement provided in this embodiment is composed of a lifting unit device for synchronously lifting the four wheels 7 of the electric vehicle 6 and a device that controls the four lifting unit devices to work synchronously. A synchronous controller (omitted in the figure) is jointly constituted.

[0056] recombine Figure 2~Figure 4 As shown, each lifting unit device is composed of two parts: a traveling mechanism and a lifting mechanism. 4. Two wheel support rods 5 at the front are jointly formed, and the two wheel support rods 5 are arranged parallel and horizontally, and are used to extend to the bottom of the wheel 7 of the electric vehicle 6 to lift the wheel 7. ...

Embodiment 2

[0072] Example 2: Combining Figure 11~Figure 15 As shown, it is another specific embodiment of the present invention, which is the same as Embodiment 1 as a whole, and is also composed of a lifting unit device for synchronously lifting the four wheels 7 of the electric vehicle 6 and a synchronous device for controlling the synchronous work of these four lifting unit devices. controller together. Each lifting unit device is also composed of two parts: a traveling mechanism and a lifting mechanism. The two wheel support rods 5 of the upper part are jointly formed, and the two wheel support rods 5 are parallel and horizontally arranged, and are used to reach the bottom of the wheel 7 of the electric vehicle 6 to lift the wheel 7.

[0073] The AGV trolley 1 is composed of a flat body 1a and a plurality of walking wheels 1b installed at the bottom of the vehicle body 1a. The design of this embodiment is different from that of the embodiment 1 in that the AGV trolley 1 and the sup...

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Abstract

The invention discloses a self-tracing lifting device for battery replacement of an electric automobile, the device comprises lifting unit devices for synchronously lifting four wheels of the electric automobile, and is characterized in that each lifting unit device comprises a walking mechanism and a lifting mechanism, and the walking mechanism comprises an AGV; the lifting device comprises a supporting frame and a lifting block connected to the supporting frame through a lifting driving device, two wheel supporting rods are fixed to the lifting block, and the lifting driving device is connected with an automatic controller in the AGV to drive the lifting block to ascend and descend; the supporting frame is installed on an AGVbody in a floating mode or rigidly fixed to the AGV body or integrally arranged on the AGV body, and the walking wheels are installed at the bottom of the AGV body in a floating mode; when the lifting unit device does not conduct lifting operation, the bottom of the supporting frame is suspended, and when the lifting unit device conducts lifting operation, the bottom of the supporting frame touches the ground to provide support for lifting of the lifting block. The device can be put in places where electric vehicles need to be replaced anytime and anywhere, the vehicles are automatically lifted, use is flexible and convenient, bearing is stable and reliable, and efficiency is high.

Description

technical field [0001] The invention relates to a self-tracking lifting device for battery replacement of electric vehicles. Background technique [0002] With the popularization of electric vehicles, in order to solve the problem of oil-to-electricity conversion of electric vehicles, the current solution is to use the battery replacement mode. Some existing car companies have launched a variety of battery replacement models. The batteries of this type of battery replacement model are usually installed on the bottom frame of the vehicle. Carry out the operation, that is, raise the vehicle through the facility to suspend the bottom frame, and then send the mechanical arm or the operating trolley under the frame to load and unload the battery. [0003] Currently on the market for electric vehicle battery replacement stations, the internal facilities used for vehicle bottom operations are the same as the original facilities for ordinary vehicle repair and maintenance. They are...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B60L53/80B62D63/02
CPCB60L53/80B62D63/02Y02T10/70Y02T10/7072
Inventor 陈维加
Owner 陈维加
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