Button cell shell feeding device
Through the combination of the mold sleeve feeding mechanism, the shell feeding mechanism and the mold entry inspection mechanism, the automatic conveying and precise assembly of the button battery housing are achieved, solving the problem of low manual conveying efficiency and improving production efficiency and assembly quality.
Patent Information
- Application Number
- CN202422237415.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-12
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-09-12
AI Technical Summary
The shell of existing button batteries needs to be transported and transported manually, which is time-consuming and labor-intensive, has low production efficiency, and is prone to omissions or wear, affecting the assembly quality.
The die-frame feeding mechanism is used to realize the automatic conveying of the die-frame, and the shell feeding mechanism is used to realize the automatic pressing of the housing into the die-frame. The die-frame feeding mechanism is used to ensure accurate assembly and form an automated conveying process.
It greatly improves production efficiency, ensures assembly consistency and quality, and reduces labor costs and assembly errors.
Smart Images

Figure CN223059935U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of button battery assembly, and more specifically, to a feeding device for button battery cases. Background Art
[0002] Existing button batteries include a case, a lithium strip, and a separator paper. During the production process, the lithium strip needs to be first loaded into the case and evenly pressed into the case, and then the separator paper is loaded into the case. The specific assembly operations in the above button battery process are as follows: the lithium strip coil and the separator paper coil are first cut off one by one by a cutting device, and then the cut lithium strip and separator paper are transported to the manual assembly area. The lithium strip is manually loaded into the case one by one, and the lithium strip is evenly pressed into the case manually by a pressing tool. Finally, the separator paper is placed into the case, and the separator paper is evenly pressed above the lithium strip manually by a pressing tool.
[0003] Especially during the above-mentioned case transportation process, manual transfer and transportation are required, which is time-consuming and laborious, with a high labor cost, and it is very easy to cause omissions or abrasions during the transportation process, affecting the transportation efficiency and the overall assembly quality of the case. Summary of the Utility Model
[0004] The technical problem to be solved by the utility model is that the cases of existing button batteries need to be manually transferred and transported, which is time-consuming and laborious, and the production efficiency is relatively low. To overcome the above defects of the prior art, the utility model provides a device that automatically feeds the cases into the die set and realizes automatic transportation through the die set, greatly improving the production efficiency. At the same time, the automatic transportation and feeding can ensure the assembly consistency and assembly quality.
[0005] To achieve the purpose of the utility model, the following technical solutions are adopted:
[0006] A button cell housing feeding device, comprising a frame and a die sleeve feeding mechanism, a housing feeding mechanism, a housing inserting into die mechanism and a housing assembly conveying mechanism arranged on the frame; the die sleeve feeding mechanism is used to convey and feed the die sleeve into the housing inserting into die mechanism, the housing feeding mechanism is used to convey and feed the housing into the housing inserting into die mechanism, the housing inserting into die mechanism is used to press the housing into the die sleeve and transfer the housing-die sleeve assembly to the housing assembly conveying mechanism; the housing inserting into die mechanism includes a housing inserting into die turret and a plurality of inserting into die components arranged at intervals along the circumferential direction of the housing inserting into die turret; a die sleeve placing disk and a die sleeve limiting disk are respectively arranged at the lower part of the inserting into die turret, the die sleeve limiting disk is located above the die sleeve placing disk, and a placing space for placing the die sleeve is formed between the die sleeve limiting disk and the die sleeve placing disk; the die sleeve limiting disk is provided with an inserting into die pressure port corresponding to the position of the inserting into die component; a positioning sleeve is sleeved in the middle part of the inserting into die turret; each inserting into die component is connected to the positioning sleeve in a lifting manner and is used to press the housing into the die sleeve; the housing assembly conveying mechanism is used to convey and transfer the housing-die sleeve assembly to the next process. This device realizes the automatic conveying and feeding of the die sleeve through the die sleeve feeding mechanism, realizes the automatic conveying and feeding of the housing through the housing feeding mechanism, and conveniently presses the housing into the die sleeve through the housing inserting into die mechanism, can realize the automatic conveying of the housing along with the die sleeve, and is also convenient for subsequent automatic assembly, greatly improving the production efficiency. At the same time, the automatic conveying and feeding can ensure the assembly consistency and assembly quality.
[0007] Preferably, the inserting into die component includes an inserting into die pressure rod and an inserting into die head; the inserting into die pressure rods are respectively and connected to the positioning sleeve in a lifting manner along the circumferential direction; an inserting into die annular track is arranged along the circumferential direction on the outer peripheral wall of the upper fixed disk of the housing inserting into die turret; an inserting into die roller is arranged at the top of the inserting into die pressure rod; the inserting into die roller is connected to the inserting into die annular track in a rolling manner, and the inserting into die component realizes lifting and positioning through the track of the inserting into die annular track; the inserting into die head is arranged at the lower end of the inserting into die pressure rod. By the cooperation of the inserting into die roller on the inserting into die pressure rod and the inserting into die annular track, the housing is gradually pressed into the die sleeve, without manual assembly, and the automatic conveying can be realized with the die sleeve as the carrier.
[0008] Preferably, it also includes a mold detection mechanism for detecting whether the shell is in place; the mold detection mechanism includes a mold detection bracket, a lifting sensor seat, a lifting guide rod and a detection sensor plate; the mold detection bracket is arranged on the frame, the lifting sensor seat is fixedly connected to the mold detection bracket, and the lifting sensor seat is located above the lowest point of the mold circular track, the lifting guide rod is lifted and connected to the lifting sensor seat, the lower end of the lifting guide rod is abutted against the top of the mold pressure rod, and the lifting guide rod is slidably connected to the mold detection bracket through the mold lifting slide rail, the detection sensor plate is arranged on the mold detection bracket, and is located above the lifting guide rod, and the distance between the top of the lifting guide rod and the detection sensor plate is used to judge whether the shell is pressed into the mold sleeve. The mold detection mechanism can further ensure that the shell is accurately pressed into the mold sleeve.
[0009] Preferably, the mold sleeve feeding mechanism comprises a mold sleeve feeding bracket, a mold sleeve feeding drive assembly and a mold sleeve feeding rotating conveying assembly; the mold sleeve feeding bracket is arranged on a frame, and a mold sleeve feeding channel is arranged on the mold sleeve feeding bracket; the mold sleeve feeding drive assembly is arranged on the mold sleeve feeding bracket, and the mold sleeve feeding drive assembly is used to drive the mold sleeve in the mold sleeve feeding channel to be conveyed into the mold sleeve feeding rotating conveying assembly; the mold sleeve feeding rotating conveying assembly is used to perform connection conveying and convey the mold sleeve into the shell mold feeding mechanism.
[0010] Preferably, the mold sleeve feed rotary conveying assembly includes a mold sleeve feed rotary gear at the bottom, a mold sleeve feed connecting shaft in the middle, and a mold sleeve feed rotary disk at the top; the mold sleeve feed rotary gear is transmission-connected to the housing feed total drive mechanism, and the mold sleeve feed rotary disk rotates synchronously with the mold sleeve feed rotary gear through the mold sleeve feed connecting shaft; a mold sleeve feed fixed sleeve is disposed outside the mold sleeve feed connecting shaft, and the mold sleeve feed fixed sleeve is fixedly disposed on the frame, and a mold sleeve feed support disk is disposed on the top of the mold sleeve feed fixed sleeve; the mold sleeve feed support disk is located below the mold sleeve feed rotary disk. Automatic conveying is achieved by rotating the mold sleeve feed support disk.
[0011] Preferably, a plurality of mold sleeve recesses are arranged at intervals on the outer peripheral wall of the mold sleeve feeding rotary disk, so as to better match the outer peripheral wall of the housing through the mold sleeve recesses.
[0012] Preferably, a mold sleeve feeding conveying baffle is arranged on the mold sleeve feeding support disk at the periphery of the mold sleeve feeding rotating disk. The mold sleeve feeding conveying baffle is convenient for limiting during conveying to prevent the mold sleeve from separating from the mold sleeve feeding rotating disk.
[0013] Preferably, the housing feeding mechanism includes a housing feeding vibrating disk, a housing linear conveyor belt, and a housing feeding rotary conveying component; the housing feeding vibrating disk and the housing linear conveyor belt are arranged on the frame, and the discharging end of the housing feeding vibrating disk is connected to the feeding end of the housing linear conveyor belt; the housing feeding rotary conveying component is connected to the discharging end of the housing linear conveyor belt, and the structure of the housing feeding rotary conveying component is the same as that of the die sleeve feeding rotary conveying component. The housing feeding mechanism facilitates automatic conveying in a rotating manner.
[0014] Preferably, the housing assembly conveying mechanism is connected to the housing feeding mechanism, and the structure of the housing assembly conveying mechanism is the same as that of the die sleeve feeding rotary conveying component.
[0015] In summary, the advantages of the present utility model are that the device realizes automatic feeding of the die sleeve through the die sleeve feeding mechanism, realizes automatic feeding of the housing through the housing feeding mechanism, and conveniently presses the housing into the die sleeve through the housing into die mechanism, can realize automatic conveying of the housing with the die sleeve as a carrier, and is also convenient for subsequent automatic assembly, greatly improving the production efficiency. At the same time, the automatic conveying and feeding can ensure the assembly consistency and assembly quality. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 is a schematic structural diagram of the button battery housing feeding device of the present utility model from the first perspective.
[0017] Figure 2 is a schematic structural diagram of the button battery housing feeding device of the present utility model from the second perspective.
[0018] Figure 3 is a schematic structural diagram of the button battery housing feeding device of the present utility model from the third perspective.
[0019] Figure 4 is a schematic structural diagram of the button battery housing feeding device of the present utility model from the fourth perspective. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0020] The following further details the present application in conjunction with the drawings and specific embodiments.
[0021] As Figures 1 to 4As shown, a button battery shell feeding device includes a frame 1 and a shell feeding general driving mechanism 20, a mold sleeve feeding mechanism 21, a shell feeding mechanism 22, a shell mold insertion mechanism 23 and a shell assembly conveying mechanism 24 arranged on the frame 1; the shell feeding general driving mechanism 20 is used to make the mold sleeve feeding mechanism 21, the shell feeding mechanism 22, the shell mold insertion mechanism 23 and the shell assembly conveying mechanism 24 operate synchronously; the shell feeding general driving mechanism 20 is driven by a conventional motor driving a general gear, which will not be repeated here. The mold sleeve feeding mechanism 21 is used to feed the mold sleeve into the shell mold insertion mechanism 23, the shell feeding mechanism 22 is used to feed the shell into the shell mold insertion mechanism 23, the shell mold insertion mechanism 23 is used to press the shell into the mold sleeve, and the shell assembly conveying mechanism 24 is used to transport the shell mold sleeve assembly to the next process.
[0022] like Figures 1 to 4 As shown, the mold sleeve feeding mechanism 21 includes a mold sleeve feeding bracket 211, a mold sleeve feeding driving assembly 213 and a mold sleeve feeding rotating conveying assembly; the mold sleeve feeding bracket 211 is arranged on the frame 1, and the mold sleeve feeding bracket 211 is provided with a mold sleeve feeding channel 212 for conveying the mold sleeve; the mold sleeve feeding driving assembly 213 is arranged on the mold sleeve feeding bracket 211, and the mold sleeve feeding driving assembly 213 is used to drive the mold sleeve in the mold sleeve feeding channel 212 to convey the mold sleeve to the mold sleeve feeding rotating conveying assembly by means of an existing conventional motor transmission wheel. The mold sleeve feed rotating conveying assembly includes a mold sleeve feed rotating gear 214 at the bottom, a mold sleeve feed connecting shaft 215 in the middle and a mold sleeve feed rotating disk 216 at the top; the mold sleeve feed rotating gear 214 is meshed with the main gear on the shell feed main driving mechanism 20 and is transmission-connected, and the mold sleeve feed rotating disk 216 rotates synchronously with the mold sleeve feed rotating gear 214 through the mold sleeve feed connecting shaft 215; the mold sleeve feed connecting shaft 215 is outerly provided with a mold sleeve feed fixed sleeve 217, and the mold sleeve feed fixed sleeve 217 is fixedly set on the frame 1, and a mold sleeve feed supporting disk 218 is set on the top of the mold sleeve feed fixed sleeve 217; the mold sleeve feed supporting disk 218 is located below the mold sleeve feed rotating disk 216, so that the mold sleeve feed rotating disk 216 can support the mold sleeve to prevent the mold sleeve from falling. A plurality of mold sleeve notches 219 are evenly spaced on the outer peripheral wall of the mold sleeve feeding rotating disk 216. The mold sleeve notches 219 are arc-shaped and match the outer peripheral wall of the mold sleeve. A mold sleeve feeding conveying baffle 2181 is arranged on the mold sleeve feeding supporting disk 218 at the outer periphery of the mold sleeve feeding rotating disk 216. The mold sleeve feeding conveying baffle 2181 can prevent the mold sleeve from being separated from the mold sleeve feeding rotating disk 216 during conveying. The mold sleeve feeding mechanism 21 realizes automatic conveying and feeding of the mold sleeve, saving time and labor.
[0023] like Figures 1 to 4As shown, the housing feeding mechanism 22 includes a housing feeding vibrating disk 221, a housing linear conveyor belt 222, and a housing feeding rotary conveying assembly 223. The housing feeding vibrating disk 221 and the housing linear conveyor belt 222 are arranged on the frame 1, and the discharging end of the housing feeding vibrating disk 221 is connected to the feeding end of the housing linear conveyor belt 222. The housing feeding rotary conveying assembly 223 is connected to the discharging end of the housing linear conveyor belt 222. The structure of the housing feeding rotary conveying assembly 223 is the same as that of the die sleeve feeding rotary conveying assembly, and the gear on the housing feeding rotary conveying assembly 223 is in transmission connection with the main gear of the housing feeding main driving mechanism 20. Through the housing feeding mechanism 22, the housing is automatically conveyed and fed, saving time and effort.
[0024] As Figures 1 to 4 As shown, the housing die inserting mechanism 23 includes a housing die inserting turret 231 and a plurality of die inserting components arranged at equal intervals along the circumferential direction of the housing die inserting turret 231. A die inserting driving gear 2311 is arranged at the bottom of the die inserting turret 231. The die inserting driving gear 2311 is in meshing transmission connection with the main gear on the housing feeding main driving mechanism 20 through gears. A die sleeve placing disk 2312 and a die sleeve limiting disk 2313 are respectively arranged at the lower part of the die inserting turret 231. The die sleeve limiting disk 2313 is located above the die sleeve placing disk 2312, and a placing space for placing the die sleeve is formed between the die sleeve limiting disk 2313 and the die sleeve placing disk 2312. Die inserting pressure ports 2314 corresponding to the die inserting components are arranged on the die sleeve limiting disk 2313, so as to facilitate the housing to be pressed down into the module. Die inserting pressure rods 233 are respectively and vertically connected in a positioning sleeve 232 along the circumferential direction. An die inserting annular track 235 is arranged along the circumferential direction on the outer peripheral wall of the fixed disk at the upper part of the housing die inserting turret 231. Die inserting rollers 236 are arranged at the tops of the die inserting pressure rods 233. The die inserting rollers 236 are in rolling connection in the die inserting annular track 235, and the lifting and positioning of the die inserting components are realized through the height of the track of the die inserting annular track 235, so that the housing can be slowly pressed into the die sleeve during the rotary conveying process. A die inserting head 324 is arranged at the lower end of the die inserting pressure rod 233, which is convenient for better matching with the housing and further press-fitting.
[0025] As Figures 1 to 4As shown in the figure, it further includes a mold-in detection mechanism 25 for detecting whether the housing is in place in the mold; the mold-in detection mechanism 25 includes a mold-in detection bracket 251, a lifting sensor seat 252, a lifting guide rod 253 and a detection sensing plate 254; the mold-in detection bracket 251 is arranged on the frame 1, the lifting sensor seat 252 is fixedly connected to the mold-in detection bracket 251, and the lifting sensor seat 252 is located above the lowest point of the mold-in annular track 235. The lifting guide rod 253 is connected to the lifting sensor seat 252 in a lifting manner. The lower end of the lifting guide rod 253 abuts against the top of the mold-in pressing rod 233, and the lifting guide rod 253 is slidably connected to the mold-in detection bracket 251 through a mold-in lifting slide rail 255. The detection sensing plate 254 is arranged on the mold-in detection bracket 251 and is located above the lifting guide rod 253. Whether the housing is pressed into the mold sleeve is judged by the distance between the top of the lifting guide rod 253 and the detection sensing plate 254. If the lifting guide rod 253 is lifted, it is judged that the housing is not completely pressed into the housing, and the housing is marked to facilitate subsequent rejection. The housing assembly conveying mechanism 24 has the same structure as the mold sleeve feeding and rotating conveying assembly, and the gear of the housing assembly conveying mechanism 24 is in transmission connection with the main gear of the housing feeding total driving mechanism 20. The housing assembly conveying mechanism 24 is used for conveying and connecting to conveniently convey the assembled housing and mold sleeve assembly to the next process. Through the housing mold-in mechanism 23, the housing is automatically pressed into the mold sleeve, ensuring that the two are assembled together for convenient conveying and transfer.
[0026] As Figures 1 to 4 shown, the main gear of the housing feeding total driving mechanism 20 meshes with the gear on the housing assembly conveying mechanism 24. The gear on the housing assembly conveying mechanism 24 meshes with the mold-in driving gear 2311. The mold-in driving gear 2311 meshes with the mold sleeve feeding rotating gear 214 and the gear on the housing feeding rotating conveying assembly 223, and synchronous rotation is achieved through the meshing between the gears.
[0027] As Figures 1 to 4As shown in the figure, when the device is working, the die sleeve is conveyed to the die sleeve notch 219 of the die sleeve feeding rotary disk 216 one by one through the die sleeve feeding mechanism 21, and is conveyed to the placement space between the die sleeve limiting disk 2313 and the die sleeve placement disk 2312 through the die sleeve feeding rotary disk 216. The housing is conveyed to the rotary disk of the housing feeding rotary conveying assembly 223 one by one through the housing feeding vibrating disk 221 and the housing linear conveyor belt 222 on the housing die inserting mechanism 23, and is conveyed to the die inserting pressure port 2314 of the die sleeve limiting disk 2313 through the rotary disk, so that the housing is located above the die sleeve. Through the rotation of the housing die inserting turret 231, the die inserting pressure rod 233 moves slowly downward along the track of the die inserting annular track 235. Finally, at the lowest point of the die inserting annular track 235, the die inserting pressure rod 233 presses the housing into the die sleeve. When the die inserting annular track 235 is at the lowest point, the distance between the lifting guide rod 253 and the detection sensing plate 254 of the die inserting detection mechanism 25 is used to judge whether the housing is completely pressed into the die sleeve. If the distance is less than the set distance, it indicates that the housing is not pressed in place, and a mark is made for subsequent rejection treatment. If the distance is not less than the set distance, it indicates that the pressing is in place. The assembled housing-die sleeve assembly is conveyed and connected to the housing assembly conveying mechanism 24 through the housing die inserting turret 231, and the housing and die sleeve assemblies are conveyed to the next process one by one through the housing assembly conveying mechanism 24, which is convenient for subsequent assembly.
[0028] The advantages of the present utility model are that the device realizes the automatic feeding of the die sleeve through the die sleeve feeding mechanism 21, realizes the automatic feeding of the housing through the housing feeding mechanism 22, and conveniently presses the housing into the die sleeve through the housing die inserting mechanism 23. It can realize the automatic conveying of the housing with the die sleeve as the carrier, and is also convenient for subsequent automatic assembly, greatly improving the production efficiency. At the same time, the automatic conveying and feeding can ensure the assembly consistency and assembly quality.
Claims
1. A button battery case feeding device, characterized in that, It includes a frame (1) and a die sleeve feeding mechanism (21), a housing feeding mechanism (22), a housing die-setting mechanism (23), and a housing assembly conveying mechanism (24) arranged on the frame (1); the die sleeve feeding mechanism (21) is used to convey and feed the die sleeve into the housing die-setting mechanism (23), the housing feeding mechanism (22) is used to convey and feed the housing into the housing die-setting mechanism (23), and the housing die-setting mechanism (23) is used to press the housing into the die sleeve and transfer the housing-die sleeve assembly to the housing assembly conveying mechanism (24); the housing die-setting mechanism (23) includes a housing die-setting turret (231) and a plurality of die-setting components arranged at intervals along the circumferential direction of the housing die-setting turret (231); a die sleeve placement disc (2312) and a die sleeve limiting disc (2313) are respectively arranged at the lower part of the die-setting turret (231), the die sleeve limiting disc (2313) is located above the die sleeve placement disc (2312), and a placement space for placing the die sleeve is formed between the die sleeve limiting disc (2313) and the die sleeve placement disc (2312); a die-setting pressure port (2314) corresponding to the die-setting component is arranged on the die sleeve limiting disc (2313); a positioning sleeve (232) is sleeved in the middle of the die-setting turret (231); each die-setting component is vertically connected in the positioning sleeve (232) and is used to press the housing into the die sleeve; the housing assembly conveying mechanism (24) is used to convey and transfer the housing-die sleeve assembly to the next process.
2. The button cell housing feeding device according to claim 1, characterized in that, The die-setting component includes a die-setting pressure rod (233) and a die-setting pressure head (324); the die-setting pressure rod (233) is vertically connected in the positioning sleeve (232) along the circumferential direction respectively; an annular die-setting track (235) is arranged along the circumferential direction on the outer peripheral wall of the upper fixed disc of the housing die-setting turret (231); a die-setting roller (236) is arranged at the top of the die-setting pressure rod (233); the die-setting roller (236) is rollingly connected in the annular die-setting track (235), and the die-setting component realizes vertical positioning through the track of the annular die-setting track (235); the die-setting pressure head (324) is arranged at the lower end of the die-setting pressure rod (233).
3. The button cell case feeding device according to claim 2, characterized in that, It further includes a mold-in detection mechanism (25) for detecting whether the housing is in place in the mold; the mold-in detection mechanism (25) includes a mold-in detection bracket (251), a lifting sensor seat (252), a lifting guide rod (253) and a detection sensing plate (254); the mold-in detection bracket (251) is arranged on the frame (1), the lifting sensor seat (252) is fixedly connected to the mold-in detection bracket (251), and the lifting sensor seat (252) is located above the lowest point of the mold-in annular track (235), the lifting guide rod (253) is connected to the lifting sensor seat (252) in a lifting manner, the lower end of the lifting guide rod (253) abuts against the top of the mold-in pressing rod (233), and the lifting guide rod (253) is slidably connected to the mold-in detection bracket (251) through a mold-in lifting slide rail (255), the detection sensing plate (254) is arranged on the mold-in detection bracket (251), and is located above the lifting guide rod (253), and it is judged whether the housing is pressed into the mold sleeve by the distance between the top of the lifting guide rod (253) and the detection sensing plate (254).
4. The button cell housing feeding device according to claim 1, characterized in that, The mold sleeve feeding mechanism (21) includes a mold sleeve feeding bracket (211), a mold sleeve feeding drive assembly (213) and a mold sleeve feeding rotary conveying assembly; the mold sleeve feeding bracket (211) is arranged on the frame (1), and a mold sleeve feeding channel (212) is arranged on the mold sleeve feeding bracket (211); the mold sleeve feeding drive assembly (213) is arranged on the mold sleeve feeding bracket (211), and the mold sleeve feeding drive assembly (213) is used to drive the mold sleeve in the mold sleeve feeding channel (212) to be conveyed into the mold sleeve feeding rotary conveying assembly; the mold sleeve feeding rotary conveying assembly is used for connecting and conveying, and conveying the mold sleeve into the housing mold-in mechanism (23).
5. The button cell housing feeding device according to claim 4, characterized in that, The mold sleeve feeding rotary conveying assembly includes a mold sleeve feeding rotary gear (214) at the bottom, a mold sleeve feeding connecting shaft (215) in the middle and a mold sleeve feeding rotary disc (216) at the top; the mold sleeve feeding rotary gear (214) is in transmission connection with the housing feeding total drive mechanism (20), and the mold sleeve feeding rotary disc (216) rotates synchronously with the mold sleeve feeding rotary gear (214) through the mold sleeve feeding connecting shaft (215); a mold sleeve feeding fixed sleeve (217) is sleeved outside the mold sleeve feeding connecting shaft (215), and the mold sleeve feeding fixed sleeve (217) is fixedly arranged on the frame (1), and a mold sleeve feeding support disc (218) is arranged at the top of the mold sleeve feeding fixed sleeve (217); the mold sleeve feeding support disc (218) is located below the mold sleeve feeding rotary disc (216).
6. The button cell housing feeding device according to claim 5, characterized in that, A plurality of mold sleeve notches (219) are arranged at intervals on the outer peripheral wall of the mold sleeve feeding rotary disc (216).
7. The button cell case feeding device according to claim 5, characterized in that, A mold sleeve feeding conveying baffle (2181) is arranged on the mold sleeve feeding support disc (218) on the outer periphery of the mold sleeve feeding rotary disc (216).
8. The button cell housing feeding device according to claim 5, wherein, The housing feeding mechanism (22) includes a housing feeding vibrating bowl (221), a housing linear conveyor belt (222), and a housing feeding rotary conveying assembly (223); the housing feeding vibrating bowl (221) and the housing linear conveyor belt (222) are arranged on the frame (1), and the discharging end of the housing feeding vibrating bowl (221) is connected to the feeding end of the housing linear conveyor belt (222); the housing feeding rotary conveying assembly (223) is connected to the discharging end of the housing linear conveyor belt (222), and the structure of the housing feeding rotary conveying assembly (223) is the same as that of the die sleeve feeding rotary conveying assembly.
9. The button cell case feeding device according to claim 5, characterized in that, The housing assembly conveying mechanism (24) is connected to the housing feeding mechanism (22), and the housing assembly conveying mechanism (24) has the same structure as the die sleeve feeding rotary conveying assembly.