Bluetooth battery post-processing equipment logistics line

文档序号:1401644 发布日期:2020-03-06 浏览:6次 中文

阅读说明:本技术 蓝牙电池后处理设备物流线 (Bluetooth battery post-processing equipment logistics line ) 是由 曹骥 曹政 桑宏宇 章军 于 2019-10-31 设计创作,主要内容包括:蓝牙电池后处理设备物流线,包括至少一列用于对蓝牙电池化成分容的化成分容物流线和用于运输蓝牙电池的物流车,每列所述化成分容物流线由若干套化成分容设备沿物流运输方向排列而成,相邻化成分容物流线之间留有供物流车通过的运输通道;所述化成分容设备包括用于对蓝牙电池进行化成分容的装置本体以及用于将物料车上的蓝牙电池转移至装置本体的滑动转移装置,所述装置本体包括若干层电池承载板框架和用于对蓝牙电池进行化成分容的总线接口;所述物流车包括若干层从上到下设置的蓝牙电池承载板框架以及用于与装置本体固定的定位装置。本发明的有益效果是:快速实现化成分容物流线的设备与蓝牙电池承载板的插拔,操作简单。(The logistics line of the Bluetooth battery post-processing equipment comprises at least one line of chemical component and content flow lines for carrying out chemical component and content capacity on the Bluetooth battery and logistics vehicles for transporting the Bluetooth battery, wherein each line of chemical component and content flow lines is formed by arranging a plurality of sets of chemical component and content equipment along the logistics transportation direction, and a transportation channel for the logistics vehicles to pass through is reserved between every two adjacent chemical component and content flow lines; the device comprises a device body and a sliding transfer device, wherein the device body is used for carrying out formation and capacity grading on the Bluetooth batteries, the sliding transfer device is used for transferring the Bluetooth batteries on the material vehicle to the device body, and the device body comprises a plurality of layers of battery bearing plate frames and a bus interface used for carrying out formation and capacity grading on the Bluetooth batteries; the logistics vehicle comprises a plurality of layers of Bluetooth battery bearing plate frames arranged from top to bottom and a positioning device used for being fixed with the device body. The invention has the beneficial effects that: the plugging and unplugging of the equipment which is divided into the content flow line and the Bluetooth battery bearing plate can be realized quickly, and the operation is simple.)

1. Bluetooth battery aftertreatment equipment commodity circulation line, its characterized in that: the system comprises at least one line of chemical component content flow lines for chemical component content of the Bluetooth batteries and logistics vehicles for transporting the Bluetooth batteries, wherein each line of chemical component content flow lines is formed by arranging a plurality of sets of chemical component content equipment along the logistics transportation direction, and a transportation channel for the logistics vehicles to pass through is reserved between every two adjacent chemical component content flow lines; the device comprises a device body and a sliding transfer device, wherein the device body is used for carrying out formation and capacity grading on the Bluetooth batteries, the sliding transfer device is used for transferring the Bluetooth batteries on the material vehicle to the device body, the device body comprises a plurality of layers of battery bearing plate frames and bus interfaces used for carrying out formation and capacity grading on the Bluetooth batteries, the battery bearing plate frames are horizontally arranged in layers from top to bottom, and the inner ends of the battery bearing plate frames are provided with the bus interfaces; the sliding transfer device comprises a sliding plate and a roller group embedded on the surface of the sliding plate, the surface of each battery bearing plate frame is connected with one sliding plate in a sliding way, and the sliding plate is connected with the bearing plate frame in a sliding way through the roller group and is used for driving the Bluetooth battery bearing plate to slide into the battery bearing plate frame of the device body;

the logistics vehicle comprises a plurality of layers of Bluetooth battery bearing plate frames arranged from top to bottom and a positioning device used for fixing the device body, wherein the Bluetooth battery bearing plate frames correspond to the bearing plate frames one by one; the positioning device is arranged on one side, facing the formation component content flow line, of the logistics vehicle, and when the logistics vehicle is fixed with the device body through the positioning device, the bearing plate frame of the logistics vehicle is aligned with the bearing plate frame of the device body one by one, so that the Bluetooth battery bearing plate can be pushed into the bearing plate frame of the device body through the sliding transfer device, and the golden finger of the Bluetooth battery bearing plate is connected with the formation component content bus interface of the device body in an inserting mode.

2. The bluetooth battery post-processing device logistics line of claim 1, wherein: the chemical component content flow lines are arranged in two rows, the two rows of chemical component content flow lines are arranged oppositely, and a transportation channel is reserved between the two rows of chemical component content flow lines.

3. The bluetooth battery post-processing device logistics line of claim 2, wherein: the roller group comprises a first roller and a second roller, wherein the first roller is horizontally arranged at the bottom of the sliding plate through a first roller support, the second roller is vertically arranged at the bottom of the sliding plate through a second roller support, the first roller and the second roller are positioned on the same side of the sliding plate, and the rolling surface of the first roller and the rolling surface of the second roller are respectively contacted with the bottom surface and the side surface of the sliding plate.

4. The bluetooth battery post-processing device logistics line of claim 3, wherein: the front end of the sliding plate is provided with a slope which is convenient for the loading plate to go up and down from the logistics vehicle; the rear end of the sliding plate is provided with an upper baffle plate for accurate positioning, so that the golden finger of the bearing plate is in butt joint with the bus interface of the device body.

5. The bluetooth battery post-processing device logistics line of claim 2, wherein: the positioning device is a positioning pin, wherein the positioning pin is arranged on one side of the logistics vehicle facing the device body, and a positioning hole for inserting the positioning pin is formed in one side of the device body facing the logistics vehicle.

6. The bluetooth battery post-processing device logistics line of claim 1, wherein: still including being used for the bluetooth battery loading board from the popping out device that the battery loading board frame was released, pop out the device including moving back the ejecting cylinder of board and moving back the board button, move back the ejecting cylinder of board and install on the device body to the flexible end that moves back the ejecting cylinder of board aims at battery loading board frame rear portion, move back the control end that the ejecting cylinder of board and move back the board button and establish ties.

Technical Field

The invention relates to an logistics line of a Bluetooth battery post-processing device, and belongs to the technical field of battery device manufacturing.

Background

Generally, after-treatment of lithium polymer batteries (soft packages) is carried out to form a component capacity, there are two general methods for realizing automatic production, the first method is: the automatic loading, unloading and formation grading capacity of the large soft package battery are realized by an automatic fixture machine; and the second method comprises the following steps: the middle soft package battery adopts a tray type to carry out post-processing on needle bed type formation and capacity grading equipment, and a stacker is used for delivering materials to realize automatic production. However, the bluetooth battery has various types due to small size and different shapes, and the input cost is high if a tray mode is adopted. Therefore, most Bluetooth battery manufacturers use a battery loading plate to manually input the battery loading plate to equipment for capacity-dividing work. The operation method of feeding and discharging of the traditional equipment comprises the following steps: manually taking down a bearing plate from the logistics vehicle, then inserting the bearing plate into a guide groove of the alignment device (the work is not easy, an operator sometimes bends over to look down and stands on tiptoe to look up), then pushing the bearing plate into the bus seat, and then carrying out the second and third blocks until all the bearing plate is put in; blanking: manually pulling the bearing plates out one by one from the equipment battery bearing plate frame and putting the bearing plates on the logistics vehicle. Because the traditional equipment is in a full-manual mode, the working efficiency is low, the labor cost is high due to the fact that more workers are used, and some manufacturers also carry out improvement, if a clamp opener is adopted, the working strength of the staff for loading and unloading the batteries on the battery bearing plate is reduced, and the working efficiency of loading and unloading the batteries is also improved. But the whole production process is still manual, and if some improvements and perfections are carried out, the efficiency should be improved.

Disclosure of Invention

In order to solve the above problems, the present invention proposes a bluetooth battery post-processing device logistics line that can be quickly pulled out of or inserted into a device frame.

The invention relates to a physical and chemical flow line of a Bluetooth battery post-processing device, which is characterized in that: the system comprises at least one line of chemical component content flow lines for chemical component content of the Bluetooth batteries and logistics vehicles for transporting the Bluetooth batteries, wherein each line of chemical component content flow lines is formed by arranging a plurality of sets of chemical component content equipment along the logistics transportation direction, and a transportation channel for the logistics vehicles to pass through is reserved between every two adjacent chemical component content flow lines; the device comprises a device body and a sliding transfer device, wherein the device body is used for carrying out formation and capacity grading on the Bluetooth batteries, the sliding transfer device is used for transferring the Bluetooth batteries on the material vehicle to the device body, the device body comprises a plurality of layers of battery bearing plate frames and bus interfaces used for carrying out formation and capacity grading on the Bluetooth batteries, the battery bearing plate frames are horizontally arranged in layers from top to bottom, and the inner ends of the battery bearing plate frames are provided with the bus interfaces; the sliding transfer device comprises a sliding plate and a roller group embedded on the surface of the sliding plate, the surface of each battery bearing plate frame is connected with one sliding plate in a sliding way, and the sliding plate is connected with the bearing plate frame in a sliding way through the roller group and is used for driving the Bluetooth battery bearing plate to slide into the battery bearing plate frame of the device body;

the logistics vehicle comprises a plurality of layers of Bluetooth battery bearing plate frames arranged from top to bottom and a positioning device used for fixing the device body, wherein the Bluetooth battery bearing plate frames correspond to the bearing plate frames one by one; the positioning device is arranged on one side, facing the formation component content flow line, of the logistics vehicle, and when the logistics vehicle is fixed with the device body through the positioning device, the bearing plate frame of the logistics vehicle is aligned with the bearing plate frame of the device body one by one, so that the Bluetooth battery bearing plate can be pushed into the bearing plate frame of the device body through the sliding transfer device, and the golden finger of the Bluetooth battery bearing plate is connected with the formation component content bus interface of the device body in an inserting mode.

The chemical component content flow lines are arranged in two rows, the two rows of chemical component content flow lines are arranged oppositely, and a transportation channel is reserved between the two rows of chemical component content flow lines.

The roller group comprises a first roller and a second roller, wherein the first roller is horizontally arranged at the bottom of the sliding plate through a first roller support, the second roller is vertically arranged at the bottom of the sliding plate through a second roller support, the first roller and the second roller are positioned on the same side of the sliding plate, and the rolling surface of the first roller and the rolling surface of the second roller are respectively contacted with the bottom surface and the side surface of the sliding plate.

The front end of the sliding plate is provided with a slope which is convenient for the loading plate to go up and down from the logistics vehicle; the rear end of the sliding plate is provided with an upper baffle plate for accurate positioning, so that the golden finger of the bearing plate is in butt joint with the bus interface of the device body.

The positioning device is a positioning pin, wherein the positioning pin is arranged on one side of the logistics vehicle facing the device body, and a positioning hole for inserting the positioning pin is formed in one side of the device body facing the logistics vehicle.

Still including being used for the bluetooth battery loading board from the popping out device that the battery loading board frame was released, pop out the device including moving back the ejecting cylinder of board and moving back the board button, move back the ejecting cylinder of board and install on the device body to the flexible end that moves back the ejecting cylinder of board aims at battery loading board frame rear portion, move back the control end that the ejecting cylinder of board and move back the board button and establish ties.

The design idea of the invention is as follows: the automatic work of the Bluetooth battery formation capacity grading equipment and the matching production line is carried out in two stages. The first stage is used for improving the design of the chemical composition and capacity equipment, so that the improved equipment can meet the requirement of automatic production, and the second stage is used for designing a matched automatic logistics production line, so that the automatic process of the whole battery post-treatment production is completed. The operation method of the device comprises the following steps: aligning and inserting a positioning pin below the logistics car and a positioning hole of the equipment, aligning a Bluetooth battery bearing plate frame of the logistics car with a battery bearing plate frame of the device body, pushing 32 Bluetooth battery bearing plates into the battery bearing plate frame at one time until a golden finger is inserted into a bus interface, and finishing feeding; the blanking is more convenient, the loading plate frames of the logistics vehicle and the equipment are aligned by the same method, the equipment plate withdrawing button is pressed, the plate withdrawing ejection cylinder ejects the Bluetooth battery loading plate out, so that the golden finger is separated from the bus interface, and then the Bluetooth battery loading plate is pushed into the Bluetooth battery loading plate frame of the logistics vehicle to complete the blanking.

The invention has the beneficial effects that: the plugging and unplugging of the equipment which is divided into the content flow line and the Bluetooth battery bearing plate can be realized quickly, and the operation is simple.

Drawings

FIG. 1a is a block diagram of the present invention.

FIG. 1b is a top view of the present invention.

Figure 1c is a front view of the present invention.

Figure 1d is a side view of the present invention.

Fig. 2a is a structural view of the slide transfer apparatus of the present invention.

Figure 2b is a front view of the present invention.

Fig. 2c is a rear view of the present invention.

Figure 2d is a side view of the present invention.

Fig. 2e is a left side view of the invention.

Detailed Description

The invention is further described below with reference to the accompanying drawings.

With reference to the accompanying drawings:

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