Vertical NG discharge runner mechanical device for cylindrical battery

Through the design of the dual-channel conveying line and cache runner assembly, the risk of scratches and short-circuit fire of NG batteries in the production of cylindrical batteries is solved, and the accurate discharge of NG batteries is achieved.

CN120246520APending Publication Date: 2025-07-04SHENZHEN JINGJIENENG ELECTRONICS CO LTD
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Patent Information

Application Number
CN202510517274.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-23
Publication Date
2025-07-04

AI Technical Summary

Technical Problem

In the existing cylindrical battery production process, the surface sleeve film is easily scratched when NG is discharged, and there is a risk of short circuits and fires between batteries, and space is limited and NG runners cannot be installed.

Method used

The dual-channel conveying line assembly, flat-push cylindrical battery steering assembly and cache runner assembly are used to transport through the dual-channel conveying line, and the discharge problem of NG batteries is solved by using the flat-push steering and cache runners.

Benefits of technology

It effectively avoids the risk of scratching the surface membrane of the NG battery and short circuit fire between the battery, solves the problem of space limitations, and achieves the accurate discharge of the NG battery.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of cylindrical battery production, in particular to a cylindrical battery vertical NG discharge runner mechanical device which comprises a double-runner conveying line assembly, a cylindrical battery horizontal pushing steering assembly and a buffer runner assembly. The horizontally-pushing cylindrical battery steering assembly is arranged at the joint of the temporary storage flow channel assembly and the double-flow-channel conveying line assembly and used for pushing the cylindrical batteries on the double-flow-channel conveying line assembly into the temporary storage flow channel assembly; the head end of the buffering flow channel assembly is connected with the tail end of the double-flow-channel conveying line assembly, the double-flow-channel conveying line assembly comprises a transmission conveying belt, two parallel conveying flow channels are arranged on the transmission conveying belt, and the cylindrical batteries flow to the buffering flow channel assembly from the conveying flow channels; the buffering flow channel assembly comprises two parallel buffering flow channels, the head end of each buffering flow channel is connected with the tail end of one conveying flow channel, the horizontally-pushing cylindrical battery steering assembly comprises two material pushing air cylinders, and the two material pushing air cylinders are arranged at the connecting positions of the buffering flow channels and the conveying flow channels respectively. The pushing air cylinder is used for pushing the cylindrical batteries at the tail end of the conveying runner into the buffering runner. Compared with the prior art, the vertical NG discharge runner mechanical device for the cylindrical batteries, disclosed by the invention, effectively and accurately solves the problems that surface sleeve films are scratched when the NG batteries are discharged, short-circuit fire risks exist between the batteries and the space is limited in manners of conveying through the double-runner conveying line, horizontally pushing and steering the cylindrical batteries and caching the runner.
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Description

Technical Field

[0001] The present invention relates to the technical field of cylindrical battery production, and particularly to a mechanical device for a vertical NG discharge channel of a cylindrical battery.

Background Art

[0002] In the production process of cylindrical batteries in the prior art, after the cylindrical batteries standing in a 256-tray are grabbed, when NG is discharged, the surface film is easily scratched, and there is a risk of short circuit and fire between the batteries. There is limited space to install the NG channel.

Summary of the Invention

[0003] In order to overcome the above problems, the present invention proposes a mechanical device for a vertical NG discharge channel of a cylindrical battery that can effectively solve the above problems.

[0004] A technical solution provided by the present invention to solve the above technical problems is: to provide a mechanical device for a vertical NG discharge channel of a cylindrical battery, including a double-channel conveyor line assembly, a flat-pushing cylindrical battery turning assembly, and a buffer channel assembly. The buffer channel assembly is vertically connected to the double-channel conveyor line assembly. The flat-pushing cylindrical battery turning assembly is arranged at the connection between the buffer channel assembly and the double-channel conveyor line assembly. The flat-pushing cylindrical battery turning assembly is used to push the cylindrical battery on the double-channel conveyor line assembly into the buffer channel assembly. The head end of the buffer channel assembly is connected to the tail end of the double-channel conveyor line assembly. The double-channel conveyor line assembly includes a driving conveyor belt, and two parallel conveying channels are arranged on the driving conveyor belt. The cylindrical battery flows from the conveying channel to the buffer channel assembly. The buffer channel assembly includes two parallel buffer channels. The head end of each buffer channel is connected to the tail end of a conveying channel. The flat-pushing cylindrical battery turning assembly includes two pushing cylinders, and the two pushing cylinders are respectively arranged at the connection between the buffer channel and the conveying channel. The pushing cylinder is used to push the cylindrical battery at the tail end of the conveying channel into the buffer channel.

[0005] Preferably, the telescopic direction of the pushing cylinder is parallel to the buffer channel, and the pushing cylinder is located at the head end of the buffer channel.

[0006] Preferably, the double-channel conveyor line assembly includes a speed-regulating motor, and the speed-regulating motor is used to drive the driving conveyor belt to drive.

[0007] Preferably, a magnet is arranged below the driving conveyor belt, and the magnet adsorbs the cylindrical battery to prevent the battery from tipping over.

[0008] Preferably, a background suppression type reflection photoelectric component is arranged at the head end of the conveying channel for detecting whether the conveying channel is full of batteries.

[0009] Preferably, two proximity switches are provided at the connection between the buffer channel and the conveying channel. The two proximity switches are spaced apart by a certain distance to detect the cylindrical batteries buffered within a certain distance.

[0010] Preferably, the buffer channel assembly is used to temporarily store the NG cylindrical batteries, and an opposed photoelectric assembly is provided at the end of the buffer channel.

[0011] Compared with the prior art, the mechanical device for the vertical NG discharge channel of cylindrical batteries of the present invention is conveyed through a double-channel conveyor line, pushes and turns the cylindrical batteries horizontally, and buffers the channels, effectively and accurately solving the problems of surface film scratching during NG battery discharge, the risk of short circuit and fire between batteries, and limited space.

Description of the Drawings

[0012] Figure 1 is the first three-dimensional view of the mechanical device for the vertical NG discharge channel of cylindrical batteries of the present invention;

[0013] Figure 2 is the second three-dimensional view of the mechanical device for the vertical NG discharge channel of cylindrical batteries of the present invention.

Detailed Embodiments

[0014] In order to make the objectives, technical solutions and advantages of the present invention clearer, the present invention will be further described in detail below with reference to the accompanying drawings and implementation examples. It should be understood that the specific implementation examples described herein are only used to explain the present invention and are not used to limit the present invention.

[0015] It should be noted that all directional indications (such as up, down, left, right, front, back...) in the embodiments of the present invention are only relative positions on the specified views, rather than absolute positions.

[0016] In addition, the descriptions such as "first" and "second" in the present invention are only for descriptive purposes and cannot be understood as indicating or implying their relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include at least one of such features. In the description of the present invention, "a plurality" means at least two, such as two, three, etc., unless otherwise specifically defined.

[0017] Please refer to Figure 1 and Figure 2, the vertical NG discharge channel mechanical device of the cylindrical battery of the present invention includes a double-channel conveyor line assembly 1, a flat-push cylindrical battery steering assembly 2, and a buffer channel assembly 3. The buffer channel assembly 3 is vertically connected to the double-channel conveyor line assembly 1. The flat-push cylindrical battery steering assembly 2 is arranged at the connection between the buffer channel assembly 3 and the double-channel conveyor line assembly 1. The flat-push cylindrical battery steering assembly 2 is used to push the cylindrical battery on the double-channel conveyor line assembly 1 into the buffer channel assembly 3.

[0018] The head end of the buffer channel assembly 3 is connected to the tail end of the double-channel conveyor line assembly 1. The double-channel conveyor line assembly 1 includes a driving conveyor belt 11. There are two parallel conveying channels 111 on the driving conveyor belt 11. The cylindrical battery flows from the conveying channel 111 to the buffer channel assembly 3.

[0019] The buffer channel assembly 3 includes two parallel buffer channels 31. The head end of each buffer channel 31 is connected to the tail end of a conveying channel 111. The flat-push cylindrical battery steering assembly 2 includes two pushing cylinders 21. The two pushing cylinders 21 are respectively arranged at the connection between the buffer channel 31 and the conveying channel 111. The pushing cylinder 21 is used to push the cylindrical battery at the tail end of the conveying channel 111 into the buffer channel 31.

[0020] The telescopic direction of the pushing cylinder 21 is parallel to the buffer channel 31, and the pushing cylinder 21 is located at the head end of the buffer channel 31.

[0021] The double-channel conveyor line assembly 1 includes a speed-regulating motor 12. The speed-regulating motor 12 is used to drive the driving conveyor belt 11 to drive.

[0022] A magnet is arranged below the driving conveyor belt 11. The magnet adsorbs the cylindrical battery to prevent the battery from tipping over.

[0023] A background suppression type reflection optoelectronic component 13 is arranged at the head end of the conveying channel 111 to detect whether the battery in the conveying channel 111 is full. If the conveying channel 111 is full, the battery cannot be grabbed and put in again to avoid the battery and the battery hitting and catching fire.

[0024] Two proximity switches are arranged at the connection between the buffer channel 31 and the conveying channel 111. The two proximity switches are spaced apart by a certain distance to detect the cylindrical battery buffered in a certain distance. When the two proximity switches simultaneously detect the cylindrical battery, the installed pushing cylinder 21 pushes the cylindrical battery away to the side buffer channel 31. When the cylindrical battery moves to the side, the problem of limited space for installing the NG channel is solved.

[0025] The buffer channel component 3 is used for temporarily storing NG cylindrical batteries. An opposed photoelectric component 32 is arranged at the end of the buffer channel 31. When a certain number of cylindrical batteries are reached, the opposed photoelectric sensor will sense the cylindrical batteries and trigger an alarm. When personnel handle it, the sealing plate at the tail of the buffer channel 31 can be taken out, which is more convenient for collecting NG cylindrical batteries.

[0026] During operation, two groups of batteries are grabbed from the cylindrical batteries standing in the 256 trays and placed into the double-channel conveyor line component 1. The background suppression type reflective photoelectric component 13 in the double-channel conveyor line component 1 detects the incoming cylindrical batteries, and the speed control motor 12 starts to drive the conveyor belt 11 to convey the batteries forward. In the flat-pushing cylindrical battery steering component 2, when the first proximity switch and the second proximity switch simultaneously detect the cylindrical batteries, the installed pushing cylinder 21 pushes the cylindrical batteries towards the side channel. The buffer channel component 3 will always temporarily store the NG cylindrical batteries. When a certain number of cylindrical batteries are reached, the opposed photoelectric sensor at the tail of the buffer channel component 3 will sense the cylindrical batteries, thereby triggering an alarm. When personnel handle it, the sealing plate at the tail of the buffer channel can be taken out, which is more convenient for collecting NG cylindrical batteries.

[0027] Compared with the prior art, the vertical NG discharge channel mechanical device for cylindrical batteries of the present invention effectively and accurately solves the problems of surface film scratching of NG batteries during discharge, the risk of short circuit and fire between batteries, and limited space by means of double-channel conveyor line transportation, flat-pushing and steering cylindrical batteries, and buffer channels.

[0028] The above are only the preferred embodiments of the present invention, and do not limit the patent scope of the present invention. Any modifications, equivalent substitutions, and improvements made within the concept of the present invention shall be included in the patent protection scope of the present invention.

Claims

1. Vertical NG discharge flow channel mechanical device for cylindrical batteries, characterized in that, It includes a double-channel conveying line assembly, a flat-pushing cylindrical battery steering assembly, and a buffer channel assembly. The buffer channel assembly is vertically connected to the double-channel conveying line assembly. The flat-pushing cylindrical battery steering assembly is arranged at the connection of the buffer channel assembly and the double-channel conveying line assembly. The flat-pushing cylindrical battery steering assembly is used to push the cylindrical batteries on the double-channel conveying line assembly into the buffer channel assembly; The head end of the buffer channel assembly is connected to the tail end of the double-channel conveying line assembly. The double-channel conveying line assembly includes a driving conveyor belt. There are two parallel conveying channels arranged on the driving conveyor belt. The cylindrical batteries flow from the conveying channels to the buffer channel assembly; The buffer channel assembly includes two parallel buffer channels. The head end of each buffer channel is connected to the tail end of a conveying channel. The flat-pushing cylindrical battery steering assembly includes two pushing cylinders. The two pushing cylinders are respectively arranged at the connection of the buffer channel and the conveying channel. The pushing cylinder is used to push the cylindrical battery at the tail end of the conveying channel into the buffer channel.

2. The vertical NG discharge flow channel mechanical device of the cylindrical battery according to claim 1, characterized in that, The telescopic direction of the pushing cylinder is parallel to the buffer channel, and the pushing cylinder is located at the head end of the buffer channel.

3. The vertical NG discharge flow channel mechanical device for cylindrical batteries according to claim 1, characterized in that, The double-channel conveying line assembly includes a speed-regulating motor, and the speed-regulating motor is used to drive the driving conveyor belt to drive.

4. The vertical NG discharge flow channel mechanical device for cylindrical batteries according to claim 1, wherein Magnets are arranged under the driving conveyor belt, and the magnets adsorb the cylindrical batteries to prevent the batteries from tipping over.

5. The vertical NG discharge flow channel mechanical device for cylindrical batteries according to claim 1, characterized in that, A background suppression type reflective photoelectric component is arranged at the head end of the conveying channel to detect whether the conveying channel is full of batteries.

6. The vertical NG discharge channel mechanical device for cylindrical batteries according to claim 1, wherein, Two groups of proximity switches are arranged at the connection of the buffer channel and the conveying channel. The two groups of proximity switches are spaced apart by a certain distance to detect the cylindrical batteries buffered within a certain distance.

7. The vertical NG discharge flow channel mechanical device for cylindrical batteries according to claim 1, characterized in that, The buffer channel assembly is used to temporarily store the NG cylindrical batteries. An opposed photoelectric component is arranged at the tail end of the buffer channel.