Full-automatic button cell negative electrode injection molding sealing ring embedding equipment
Through the fully automatic button battery negative injection molded seal ring buried equipment, the problem of low assembly efficiency of seal ring is solved, automatic assembly is realized, and processing efficiency and product quality are improved.
Patent Information
- Application Number
- CN202422775676.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-14
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2034-11-14
AI Technical Summary
The sealing ring assembly efficiency in existing button batteries is low, and it is prone to misinstall or misinstall, affecting the quality of the finished product.
A fully automatic button battery negative electrode injection molded seal ring buried equipment is designed, including a feeding mechanism, a variable distance mechanism and a buried mechanism. The seal ring is automatically conveyed and positioned through vibrating screen, feeding rail, a variable distance module and adsorption column, and automatic assembly is achieved in combination with a mold mechanism.
The sealing ring assembly efficiency is improved, the defective rate is reduced, and the product quality is improved.
Smart Images

Figure CN223302249U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of button battery processing, in particular to a fully automatic button battery negative electrode injection molding sealing ring embedding device. Background Art
[0002] During the processing of existing button batteries, the sealing rings must be placed in a mold before being fed into subsequent processing equipment for forming. Traditionally, this process has been manual assembly. Because a mold requires multiple sealing rings, manual assembly is inefficient and prone to missing or incorrect assembly, impacting the quality of the finished product. Utility Model Content
[0003] In order to make up for the deficiencies of the prior art and solve at least one technical problem raised in the background art, the present invention proposes a fully automatic button battery negative electrode injection molding sealing ring embedding device that can greatly improve processing efficiency.
[0004] The technical solution adopted by the utility model to solve its technical problems is:
[0005] A fully automatic button battery negative electrode injection molding sealing ring embedding device, including a feeding mechanism, a distance changing mechanism, an embedding mechanism and a mold mechanism.
[0006] The feeding mechanism is used to automatically feed the button battery negative electrode injection molding seal ring, including a vibrating screen, a feeding track and a positioning seat, the feeding track is arranged at the discharge port of the vibrating screen, and the positioning seat is arranged at the discharge port of the feeding track;
[0007] The variable pitch mechanism is correspondingly arranged on one side of the feeding mechanism, and is used for receiving the button battery negative electrode injection molding sealing ring on the positioning seat and changing the pitch of the button battery negative electrode injection molding sealing ring, comprising a transverse guide rail, a transverse slide, a transverse cylinder, a vertical guide rail, a vertical slide, a vertical cylinder, a variable pitch motor, a plurality of variable pitch modules and an adsorption column, the transverse slide is slidably connected to the transverse guide rail and is connected to the transverse cylinder, the transverse cylinder can drive the transverse slide to move left and right along the transverse guide rail, the vertical guide rail is fixed on the transverse slide, the vertical slide is slidably connected to the vertical guide rail and is connected to the vertical cylinder, the vertical cylinder can drive the vertical slide to move up and down along the vertical guide rail, the variable pitch module is arranged on the vertical slide and is connected to the variable pitch motor, the adsorption column is fixed at the bottom end of the variable pitch module, and the variable pitch motor can drive the variable pitch module to move left and right to change the distance between each adsorption column;
[0008] The embedding mechanism is used to receive the button battery negative electrode injection sealing ring on the pitch-changing mechanism and embed the button battery negative electrode injection sealing ring into the mold, including a longitudinal guide rail, a longitudinal slide, a longitudinal motor, a lifting cylinder, a lifting seat and an adsorption head. The longitudinal slide is slidably connected to the longitudinal guide rail and is connected to the longitudinal motor. The longitudinal motor can drive the longitudinal slide to move forward and backward along the longitudinal guide rail. The lifting cylinder is fixed on the longitudinal slide and connected to the lifting seat. The adsorption head is fixed to the bottom end of the lifting seat. The lifting cylinder can drive the lifting seat and the adsorption head to move up and down;
[0009] The mold mechanism is used for positioning the mold, and comprises a body and a mold support seat arranged in the body.
[0010] In order to further improve processing efficiency, the discharge port of the vibrating screen is provided with a set of parallel feeding tracks.
[0011] Correspondingly, a group of parallel positioning channels are provided on the positioning seat, and the positioning channels are respectively connected to the feeding tracks.
[0012] In order to avoid relative stacking of products in the positioning channel, the top of the positioning seat is set on the leveling plate, and the leveling plate is connected to the leveling cylinder. A through groove connecting to the positioning channel is opened on the leveling plate, and the leveling cylinder can drive the leveling plate to move forward and backward.
[0013] In order to achieve pitch change, in a preferred embodiment of the present invention, the pitch change module includes a plurality of parallel guide rods and a plurality of pitch change plates slidably connected to the guide rods, the adsorption column is fixed to the bottom end of the pitch change plate, and the pitch change motor is connected to each pitch change plate through a screw rod. The pitch change motor can drive each pitch change plate to move left and right along the guide rod.
[0014] In order to facilitate the subsequent material retrieval by the embedding mechanism, the embedding mechanism also includes a transfer seat, which is correspondingly arranged at the bottom end of the adsorption head and has a plurality of positioning grooves for positioning the negative electrode injection molding sealing ring of the button battery.
[0015] The beneficial effects of the present invention are as follows: the fully automatic button battery negative electrode injection molding sealing ring embedding equipment cooperates with the feeding mechanism, the distance changing mechanism, the embedding mechanism and the mold mechanism to realize the automatic assembly of multiple battery negative electrode injection molding sealing rings and molds, which greatly improves the processing efficiency, reduces the defective rate and improves the product quality. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is an overall three-dimensional diagram of the utility model;
[0017] Figure 2 It is a three-dimensional diagram of the feeding mechanism of the utility model;
[0018] Figure 3It is a three-dimensional diagram of the pitch-changing mechanism of the utility model;
[0019] Figure 4 It is a three-dimensional diagram of the embedding mechanism and the mold mechanism of the utility model. DETAILED DESCRIPTION
[0020] The following will be combined with the accompanying drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0021] like Figure 1 The shown device is a fully automatic button battery negative electrode injection molding sealing ring embedding device, comprising a feeding mechanism 1, a distance changing mechanism 2, an embedding mechanism 3 and a mold mechanism 4. The feeding mechanism 1 is used to automatically convey the button battery negative electrode injection molding sealing ring, the distance changing mechanism 2 is correspondingly arranged on the output side of the feeding mechanism 1, for receiving the button battery negative electrode injection molding sealing ring sent by the feeding mechanism 1 and changing the distance of the button battery negative electrode injection molding sealing ring, the embedding mechanism 3 is correspondingly arranged on one side of the distance changing mechanism 2, for receiving the button battery negative electrode injection molding sealing ring on the distance changing mechanism 2 and embedding the button battery negative electrode injection molding sealing ring into the mold, and the mold mechanism 4 is correspondingly arranged on one side of the embedding mechanism 3, for positioning the mold.
[0022] Specifically, combined Figure 2 The feeding mechanism shown includes a vibrating screen 101, a feeding track 102, and a positioning seat 103. The feeding track 102 has a set of two feeding tracks 102 arranged parallel to the discharge port of the vibrating screen 101. The positioning seat 103 is arranged at the discharge port of the feeding track 102. The positioning seat 103 is provided with a set of parallel positioning channels, and the two positioning channels are respectively connected to the two feeding tracks 102, which can position two rows of button battery negative electrode injection sealing rings 5. In addition, the top of the positioning seat 103 is provided with a leveling plate 106 and a guide plate 104. The leveling plate 106 is connected to the leveling cylinder 105. The movement of the leveling plate 106 is guided by the two guide plates 104. The leveling plate 106 is provided with a through slot connecting the two positioning channels. The leveling cylinder 105 can drive the leveling plate 106 to move back and forth.
[0023] Specifically, combined Figure 3The pitch-changing mechanism shown includes a transverse guide rail 201, a transverse slide 203, a transverse cylinder 202, a vertical guide rail 206, a vertical slide 207, a vertical cylinder 205, a pitch-changing motor 208, a plurality of pitch-changing modules and an adsorption column 211. The transverse slide 203 is slidably connected to the transverse guide rail 201 and is connected to the transverse cylinder 202. The transverse cylinder 202 can drive the transverse slide 203 to move left and right along the transverse guide rail 201. A vertical plate 204 is fixed to the transverse slide 203. The vertical guide rail 206 is fixed to the vertical plate 204. The vertical slide 207 is slidably connected to the vertical guide rail 206 and is connected to the vertical cylinder 205. The vertical cylinder 205 is connected, and the vertical slide 207 can move up and down along the vertical guide rail 206. The pitch variable module is arranged on the vertical slide 207 and is connected to the pitch variable motor 208. The pitch variable module includes a plurality of parallel guide rods 209 and a plurality of pitch variable plates 210 slidably connected to the guide rods 209. The adsorption column 211 is fixed to the bottom end of the pitch variable plate 210. The pitch variable motor 208 is connected to each pitch variable plate 210 through a screw rod. The pitch variable motor 208 can drive each pitch variable plate 210 to move left and right along the guide rod 209, thereby changing the distance between each adsorption column 211 and each button battery negative electrode injection molding sealing ring 5.
[0024] Specifically, combined Figure 4 The embedding mechanism and mold mechanism shown in the figure include a longitudinal guide rail 301, a longitudinal slide 302, a longitudinal motor 303, a lifting cylinder 304, a lifting seat 305, and an adsorption head 306. The longitudinal slide 302 is slidably connected to the longitudinal guide rail 301 and is connected to the longitudinal motor 303. The longitudinal motor 303 can drive the longitudinal slide 305 to move forward and backward along the longitudinal guide rail 301. The lifting cylinder 304 is fixed to the longitudinal slide 302 and is connected to the lifting seat 305. The adsorption heads 306 are arranged in two rows and fixed to the bottom end of the lifting seat 305. The lifting cylinder 304 can drive the lifting seat 305 and the adsorption heads 306 to move up and down. In addition, the pitch-changing mechanism also includes a transfer seat 307, which is correspondingly arranged at the bottom end of the adsorption head 306. The transfer seat 307 is provided with two rows of positioning grooves for positioning the negative electrode injection molding seal ring of the button battery.
[0025] The mold mechanism includes a body 401 and a mold support base 402 disposed in the body 401 .
[0026] During processing, the button battery negative electrode injection molding sealing ring 5 enters the feeding track 102 after being automatically screened by the vibrating screen 101, and enters the positioning channel of the positioning seat 103 one by one for arrangement. At this time, the leveling plate 106 covers the positioning seat 103, and the through groove of the leveling plate 106 is not connected with the positioning channel of the positioning seat 103. Therefore, the button battery negative electrode injection molding sealing rings 5 will not stack on each other. When the positioning channel is full of button battery negative electrode injection molding sealing rings 5, the leveling cylinder 105 drives the leveling plate 106 to move back and forth to connect the through groove with the positioning channel. At this time, the vertical cylinder 205 drives the vertical slide 207 and the adsorption column 211 to descend, and adsorbs the two rows of button battery negative electrode injection molding sealing rings 5. The horizontal cylinder 202 drives the horizontal slide 203 along the horizontal guide rail 2 01 moves backward, and at the same time, the pitch motor 208 drives each pitch plate 210 to move evenly left and right along the guide rod 209 (three pitch plates 210 to the left, and three pitch plates 210 to the right), so that the distance between each adsorption column 211 and each button battery negative electrode injection molding seal ring 5 changes equidistantly, realizing pitch change, and the button battery negative electrode injection molding seal ring 5 after pitch change is sent to the transfer seat 307 for positioning, and then, the lifting cylinder 304 drives the lifting seat 305 and the adsorption head 306 to descend to adsorb the button battery negative electrode injection molding seal ring 5 after pitch change, and the longitudinal motor 303 drives the longitudinal slide 302 and the adsorption head 306 to move above the mold support seat 402, and finally the adsorption head 306 descends to press the button battery negative electrode injection molding seal ring 5 into the mold.
[0027] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and improvements may be made to the present invention without departing from the spirit and scope of the present invention, and such changes and improvements fall within the scope of the present invention as claimed.
Claims
1. A fully automatic button battery negative electrode injection molding sealing ring embedding device, including a feeding mechanism, a pitch changing mechanism, an embedding mechanism and a mold mechanism, characterized by: The feeding mechanism is used to automatically feed the button battery negative electrode injection molding seal ring, including a vibrating screen, a feeding track and a positioning seat, the feeding track is arranged at the discharge port of the vibrating screen, and the positioning seat is arranged at the discharge port of the feeding track; The variable pitch mechanism is correspondingly arranged on one side of the feeding mechanism, and is used for receiving the button battery negative electrode injection molding sealing ring on the positioning seat and changing the pitch of the button battery negative electrode injection molding sealing ring, comprising a transverse guide rail, a transverse slide, a transverse cylinder, a vertical guide rail, a vertical slide, a vertical cylinder, a variable pitch motor, a plurality of variable pitch modules and an adsorption column, the transverse slide is slidably connected to the transverse guide rail and is connected to the transverse cylinder, the transverse cylinder can drive the transverse slide to move left and right along the transverse guide rail, the vertical guide rail is fixed on the transverse slide, the vertical slide is slidably connected to the vertical guide rail and is connected to the vertical cylinder, the vertical cylinder can drive the vertical slide to move up and down along the vertical guide rail, the variable pitch module is arranged on the vertical slide and is connected to the variable pitch motor, the adsorption column is fixed at the bottom end of the variable pitch module, and the variable pitch motor can drive the variable pitch module to move left and right to change the distance between each adsorption column; The embedding mechanism is used to receive the button battery negative electrode injection sealing ring on the pitch-changing mechanism and embed the button battery negative electrode injection sealing ring into the mold, including a longitudinal guide rail, a longitudinal slide, a longitudinal motor, a lifting cylinder, a lifting seat and an adsorption head. The longitudinal slide is slidably connected to the longitudinal guide rail and is connected to the longitudinal motor. The longitudinal motor can drive the longitudinal slide to move forward and backward along the longitudinal guide rail. The lifting cylinder is fixed on the longitudinal slide and connected to the lifting seat. The adsorption head is fixed to the bottom end of the lifting seat. The lifting cylinder can drive the lifting seat and the adsorption head to move up and down; The mold mechanism is used for positioning the mold, and comprises a body and a mold support seat arranged in the body.
2. The fully automatic button battery negative electrode injection molding sealing ring embedding device according to claim 1, characterized in that: The discharge port of the vibrating screen is provided with a group of parallel feeding tracks.
3. The fully automatic button battery negative electrode injection molding sealing ring embedding device according to claim 2, characterized in that: A group of parallel positioning channels are provided on the positioning seat, and the positioning channels are respectively connected with the feeding tracks.
4. The fully automatic button battery negative electrode injection molding sealing ring embedding device according to claim 3, characterized in that: The top end of the positioning seat is arranged on the leveling plate, and the leveling plate is connected to the leveling cylinder. A through groove connected to the positioning channel is opened on the leveling plate, and the leveling cylinder can drive the leveling plate to move forward and backward.
5. The fully automatic button battery negative electrode injection molding sealing ring embedding device according to claim 1, characterized in that: The pitch variable module includes multiple parallel guide rods and several pitch variable plates slidably connected to the guide rods. The adsorption column is fixed to the bottom end of the pitch variable plate. The pitch variable motor is connected to each pitch variable plate through a screw rod. The pitch variable motor can drive each pitch variable plate to move left and right along the guide rod.
6. The fully automatic button battery negative electrode injection molding sealing ring embedding device according to claim 5, characterized in that: The embedding mechanism further comprises a transfer seat, which is correspondingly arranged at the bottom end of the adsorption head and is provided with a plurality of positioning grooves for positioning the negative electrode injection molding sealing ring of the button battery.