Battery box transmission system for pole group pressing procedure

A transfer system and battery box technology, which is applied in the construction of secondary batteries, lead-acid batteries, and lead-acid batteries, can solve the problems of low efficiency, poor precision, and high labor intensity of lead-acid batteries.

Pending Publication Date: 2017-05-31
DETRON PRECISION MACHINERY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] In view of the above-mentioned prior art, in the manufacturing process of lead-acid batteries, it is necessary to wrap the positive and negative pole pieces with diaphragm paper and then alternately stack them to form electrode groups and install them in the lead-acid battery box. In the prior art, the stacking of the above pole pieces The process is generally operated manually by production personnel. The above-mentioned operation method makes the production process of lead-acid batteries not only labor-intensive, poor in precision, but also has the disadvantage of low efficiency. delivery system

Method used

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  • Battery box transmission system for pole group pressing procedure
  • Battery box transmission system for pole group pressing procedure
  • Battery box transmission system for pole group pressing procedure

Examples

Experimental program
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Effect test

Embodiment 1

[0037] Such as Figure 1 to Figure 8 As shown, the battery box transfer system used for the electrode group pressing process includes a primary transmission part and a secondary transmission part 7 located at the output end of the primary transmission part. The first conveyor belt 2 on the first frame 1, the pulley 6 for the installation of the first conveyor belt 2, and the braking device for braking the rotation of the pulley 6, the first-stage transmission part also includes 2 the box unloading part 9 above the discharge end, the box unloading part 9 is used to further accelerate the battery box on the first conveyor belt 2 so as to output the battery box to the secondary transmission part 7;

[0038] Described second transmission part comprises second frame 71 and the second conveyor belt 73 that is arranged on the second frame 71, and second transmission part also comprises the shelving platform 72 that is arranged on the feed end of second conveyor belt 73 and is positio...

Embodiment 2

[0043] Such as Figure 1 to Figure 8As shown, this embodiment is further limited on the basis of embodiment 1: in order to realize that the system can transfer multiple battery boxes at the same time or perform pole group pressing operations on multiple battery boxes at the same time, and at the same time, in order to facilitate the realization of the communication function The action consistency of parts is beneficial to the material and process control in the production process of lead-acid batteries. The second conveyor belt 73, the shelving table 72 and the tray table 75 are more than one and the number of the three is equal. The second conveyor belt 73 is mutually 1. The shelving tables 72 and the tray trays 75 are arranged in parallel rows, and the second conveyor belt 73 is installed on the same pulley 6 groups. The trays 72 and the tray trays 75 are all Arranged side by side at the feed end of the second frame 71;

[0044] Simultaneously as a kind of structural form o...

Embodiment 3

[0051] This embodiment is further limited on the basis of the technical solution provided in embodiment 1, as Figure 1 to Figure 8 , as a way to adapt to the shape of the bottom surface of the existing battery box and to ensure that both the shelving table 72 and the tray table 75 can stably support the battery box, the said shelving table 72 is parallel to the second conveyor belt 73 in the length direction In the shape of a rectangular parallelepiped in the conveying direction, at least one notch is provided on both width sides of the shelving table 72 , and protrusions corresponding to each notch are provided on the inner walls of both sides of the groove-like structure. That is, the structural form of the above tray table 75 can support both sides of the length side of the battery case.

[0052] Because the shelving platform 72 is delivered to the receiving part of the secondary transmission part 7 as the battery box, and the relative positions and respective structures a...

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PUM

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Abstract

The invention discloses a battery box transmission system for a pole group pressing procedure. The battery box transmission system comprises a first-stage transmission part and a second-stage transmission part, wherein the first-stage transmission part comprises a first rack, a first conveying belt, a belt wheel and a braking device; the first-stage transmission part further comprises a box discharging part arranged above the material discharging end of the first conveying belt; the box discharging part is used for further accelerating a battery box on the first conveying belt so as to output the battery box onto the second-stage transmission part; the second-stage transmission part comprises a second rack and a second conveying belt arranged on the second rack; the second-stage transmission part further comprises a placing table arranged above the material feeding end of the second conveying belt and a box carrying table located below the material feeding end of the second conveying belt; and a jacking cylinder for driving the box carrying table to do lifting motion is further fixed on the box carrying table. The battery box transmission system disclosed by the invention facilitates mechanical and automatic production of a pole group pressing process, so that the efficiency of pressing a pole group into a lead storage battery box can be greatly improved.

Description

technical field [0001] The invention relates to the field of storage battery production equipment, in particular to a battery case transfer system used in an electrode group pressing process. Background technique [0002] Compared with other new batteries, such as lithium batteries, lead-acid batteries have the advantages of large storage capacity and low manufacturing cost, so they are still widely used batteries, such as those used in automobiles. The lead storage battery uses a lead substrate grid filled with spongy lead as the negative electrode, a lead substrate grid filled with lead dioxide as the positive electrode, and dilute sulfuric acid as the electrolyte. When the battery is being discharged, metallic lead is the negative electrode, which undergoes an oxidation reaction to generate lead sulfate; lead dioxide is the positive electrode, which undergoes a reduction reaction to generate lead sulfate. When the lead storage battery is charged with direct current, the ...

Claims

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Application Information

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IPC IPC(8): B65G37/00B65G47/82H01M10/12
CPCH01M10/128B65G37/00B65G47/82B65G2201/025Y02P70/50Y02E60/10
Inventor 蒋思宏周建军郑朝前王文平任兵邓涛杨雄
Owner DETRON PRECISION MACHINERY
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