Feeding mechanism for forming lithium battery component

By designing the feeding mechanism for forming lithium battery components, the automatic conveying and quality inspection of wiring guide columns is realized, and the accurate installation of insulated rubber rings is ensured through automatic assembly technology, which solves the problem of inaccurate manual installation in the existing technology, and improves the safety and load status of lithium batteries.

CN119929398AActive Publication Date: 2025-05-06GUANGDONG YANGJI TECH CO LTD
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Patent Information

Application Number
CN202510438378.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-09
Publication Date
2025-05-06
Estimated Expiration
2045-04-09

AI Technical Summary

Technical Problem

In the assembly of existing lithium batteries, the manual installation of the insulated rubber ring is inaccurate, which affects the airtightness and safety of the battery. At the same time, some terminal posts with insufficient conductivity affect the load state of the battery.

Method used

A feeding mechanism for forming lithium battery components is designed to realize the conveying and quality inspection of wiring guide columns one by one through the conveyor rack and conveyor belt, and the grooves are pretreated through the grinding parts to ensure the sealing effect. At the same time, the automatic assembly of the insulating rubber ring is realized by assembling the sliding assembly parts of the assembly unit.

Benefits of technology

The quality and sealing effect of the wiring guide column are improved, the safety and load state of the lithium battery are ensured, and the occurrence of artificial errors is reduced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a feeding mechanism for lithium battery component forming, and belongs to the technical field of lithium battery accessories, the feeding mechanism comprises a conveying frame, two oppositely arranged lower sliding plates are arranged on the conveying frame, and a pushing conveying unit, a quality checking unit and an assembling unit are arranged on the conveying frame. The wiring guide columns are conveyed through the conveying frame, one-by-one conveying of the wiring guide columns is achieved through extrusion of the transverse pushing column arranged on the conveying side end base, and the size standards of the wiring guide columns are detected through the quality detection piece arranged on the synchronous conveying belt in the conveying process; a quality inspection piece is used for driving a wiring guide column to rotate, a grinding piece arranged on a conveying frame is used for conducting burr pretreatment on a groove of the wiring guide column, an insulating rubber ring is conveyed to the groove through a fixed pressing strip and a rotary pressing strip on an inner lantern ring and an outer lantern ring, and the insulating rubber ring is conveyed to the groove through rotation of the rotary pressing strip. And the insulating rubber ring is automatically clamped into the groove on the wiring guide post, so that automatic assembly is realized.
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Description

Technical Field

[0001] The invention relates to the technical field of lithium battery accessories, and in particular to a feeding mechanism for forming lithium battery components. Background Art

[0002] A lithium battery pack is formed by combining multiple lithium batteries in a shell. The lithium batteries are effectively connected to each other through wires. After the lithium batteries are combined, a terminal post needs to be installed on the shell for external wires. The terminal post is composed of a terminal guide post and an end cover. The terminal guide post is mostly formed by multiple extrusions of a mold. The formed terminal guide post needs to pass quality inspection before it can be used. A groove is opened on the terminal guide post for installing an insulating rubber ring to ensure the sealing effect with the end cover and achieve sealing of the battery end contact. The current insulating rubber ring is mainly installed manually when assembling with the battery. When the insulating rubber ring is not accurately inserted into the groove, the air tightness of the battery will be affected. In addition, the quality of the terminal post seriously affects the safety of the lithium battery. Some terminal posts with insufficient conductivity will affect the load state of the battery. Based on this, a feeding mechanism for lithium battery component molding is proposed. Summary of the invention

[0003] The purpose of the present invention is to solve the problems existing in the prior art and to propose a feeding mechanism for forming lithium battery components.

[0004] In order to achieve the above object, the present invention adopts the following technical solutions: A feeding mechanism for forming lithium battery components, comprising a conveying frame, on which two lower sliding plates arranged opposite to each other are arranged, an upper extrusion conveyor belt is arranged above the lower sliding plates, and on which a pushing conveying unit, a quality verification unit and an assembly unit are arranged; The pushing and conveying unit comprises a conveying side end seat arranged on the conveying frame, the conveying side end seat is connected to two lateral pushing columns through a reset sliding member, and a pushing electric push rod is arranged on the side wall of the conveying frame, and the pushing electric push rod controls the lateral pushing columns to move one by one through sequential pushing members; The quality verification unit comprises a synchronous conveyor belt arranged on a conveyor frame, quality inspection pieces are arranged equidistantly on the synchronous conveyor belt, an L-shaped polishing piece is arranged oppositely at the bottom of the lower sliding plate, a polishing edge strip is arranged on the opposite side wall of the L-shaped polishing piece, and a tooth drive assembly for controlling the rotation of the quality inspection piece is arranged on the side wall of the conveyor frame; The assembly unit comprises two conveying plates arranged opposite to each other, the two conveying plates are connected by a bearing spindle, the conveying plates are connected to a rotating plate by an intermittent conveying member, the rotating plate is rotatably arranged on the outer side wall of the bearing spindle, and the outer side wall of the rotating plate is provided with a sliding assembly; The sliding assembly includes a docking shaft column fixedly connected to the rotating disk, the docking shaft column is connected to a feeding push cylinder through a limit key bar assembly, the feeding push cylinder is connected to a joint control pressure disk through a sleeve spring, the joint control pressure disk is connected to the outer wall of the rotating disk through an automatic recovery spring sleeved on the outer wall of the docking shaft column, the side wall of the conveying disk is provided with a feeding electric push rod, the feeding electric push rod is connected to the joint control pressure disk through a feeding joint control assembly, the joint control pressure disk is connected to an inner ring through a connecting ring, the outer wall of the inner ring is rotatably provided with an outer ring, a fixed pressure strip and a rotating pressure strip are respectively provided on the inner ring and the outer ring, and the conveying disk is connected to the outer ring through a meshing transmission assembly.

[0005] Preferably, the reset sliding member includes a sliding opening opened in the conveying side end seat, the outer wall of the transverse push column is fixedly connected with a sliding limit plate located in the sliding opening, the sliding limit plate is connected to the inner wall of the sliding opening through a resistance spring sleeved on the outer wall of the transverse push column, and a resistance ball is arranged at the end of the transverse push column.

[0006] Preferably, the sequential pushing member comprises a pressure-bearing inclined block fixedly connected to the transverse pushing column, and the output end of the pushing electric push rod is fixedly connected with a double-layer inclined trapezoidal block adapted to the pressure-bearing inclined block.

[0007] Preferably, the quality inspection part comprises a base fixedly arranged on the synchronous conveyor belt, the base is fixedly connected with a fixed stand, the fixed stand is connected with a rotating sleeve through a spring inner pressure piece, the top of the rotating sleeve is fixedly connected with a resisting rubber sleeve, the bottom of the resisting rubber sleeve is provided with a displacement sensor, and the rotating sleeve is connected with a displacement disk to be tested through a displacement spring; The spring inner pressure part includes a telescopic opening opened in the fixed stand, the bottom of the rotating sleeve passes through the telescopic opening and is rotatably connected to a spring magnetic repulsion limit ring, and the side wall of the conveying frame is fixedly connected to a fixed magnetic seat that magnetically repels the spring magnetic repulsion limit ring.

[0008] Preferably, the gear drive assembly comprises a fixed rack fixedly connected to the side wall of the conveying frame, and the outer side wall of the rotating sleeve is fixedly connected to a self-rotating gear ring meshing with the fixed rack.

[0009] Preferably, the intermittent conveying member comprises an intermittent motor fixedly connected to a conveying disc, a fixed gear ring is fixedly connected to a side wall of the conveying disc, and an intermittent gear meshingly connected to the fixed gear ring is fixedly connected to an output end of the intermittent motor.

[0010] Preferably, the limit key bar assembly comprises a rectangular sliding opening formed on the docking shaft column, and the outer side wall of the feeding push cylinder is fixedly connected with a sliding key bar located in the rectangular sliding opening.

[0011] Preferably, the feeding joint control assembly includes pressure blocks fixedly connected to both sides of the joint control pressure plate, a moving opening is opened on the conveying plate, and an extrusion piece passing through the moving opening is fixedly connected to the output end of the feeding electric push rod.

[0012] Preferably, the meshing transmission assembly includes a regulating motor fixedly connected to the conveying disk, the output end of the regulating motor is fixedly connected to a penetrating gear disk, and the outer ring is fixedly connected to a regulating gear meshing with the penetrating gear disk.

[0013] Compared with the prior art, the present invention has the following beneficial effects: 1. The present invention transports the wiring guide posts through a conveying frame, and realizes the transportation of the wiring guide posts one by one through the extrusion of a lateral pushing column arranged on the end seat on the conveying side. During the transportation process, the size standard of the wiring guide posts is detected by a quality inspection piece arranged on a synchronous conveyor belt. In the detection process, the wiring guide posts are driven to rotate by the quality inspection piece, and the burrs of the wiring guide post grooves are pre-processed by a grinding piece arranged on the conveying frame to ensure the sealing effect in the subsequent assembly process.

[0014] 2. The present invention conveys the insulating rubber rings to the grooves on the terminal guide pillars one by one through the sliding assembly parts arranged on the conveying disk, and conveys the insulating rubber rings to the grooves through the fixed pressure strips and the rotating pressure strips on the inner ring and the outer ring, and utilizes the rotation of the rotating pressure strips to automatically clip the insulating rubber rings into the grooves on the terminal guide pillars, thereby realizing automatic assembly, ensuring the assembly quality, and also ensuring the quality of the terminal guide pillars fed to the lithium battery assembly station. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 This is a schematic diagram of the main assembly structure of a feeding mechanism for forming a lithium battery component proposed by the present invention; Figure 2 A schematic diagram of the three-dimensional structure of a feeding mechanism for forming a lithium battery component proposed by the present invention; Figure 3 It is a three-dimensional structural schematic diagram of a quality verification unit in a feeding mechanism for forming a lithium battery component proposed by the present invention; Figure 4 It is a schematic diagram of the cross-sectional structure at the position of the quality verification unit in a feeding mechanism for forming a lithium battery component proposed by the present invention; Figure 5 for Figure 4 A schematic diagram of the enlarged structure at A in the middle; Figure 6 This is a schematic diagram of the positional relationship of the assembly unit in a feeding mechanism for forming a lithium battery component proposed by the present invention; Figure 7This is a structural schematic diagram of an assembly unit in a feeding mechanism for forming a lithium battery component proposed by the present invention; Figure 8 This is a schematic diagram of the structural assembly of a sliding assembly part in a feeding mechanism for forming a lithium battery component proposed by the present invention; Fig. 9 This is a three-dimensional structural schematic diagram of a sliding assembly in a feeding mechanism for forming a lithium battery component proposed by the present invention; Fig.10 This is a structural schematic diagram of a pushing and conveying unit in a feeding mechanism for forming a lithium battery component proposed by the present invention; Fig.11 The present invention is a schematic diagram of the cross-sectional structure of a sliding assembly in a feeding mechanism for forming a lithium battery component.

[0016] In the figure: 1, conveyor frame; 2, lower sliding plate; 3, upper extrusion conveyor belt; 4, conveyor side end seat; 5, horizontal push column; 6, push electric push rod; 7, synchronous conveyor belt; 8, L-shaped grinding piece; 9, conveyor plate; 10, bearing spindle; 11, rotating plate; 12, docking shaft column; 13, feeding push cylinder; 14, joint control pressing plate; 15, feeding electric push rod; 16, connecting ring; 17, inner sleeve ring; 18, outer sleeve ring; 19, fixed pressure strip; 20, rotating pressure strip; 21, sliding 1. Moving limit plate; 22. Pressure-bearing inclined block; 23. Double-layer inclined trapezoidal block; 24. Fixed seat; 25. Rotating sleeve; 26. Resistance rubber sleeve ring; 27. Displacement sensor; 28. Measured displacement plate; 29. ​​Fixed rack; 30. Rotating gear ring; 31. Intermittent motor; 32. Fixed gear ring; 33. Sliding key strip; 34. Pressing block; 35. Extrusion piece; 36. Control motor; 37. Penetrating gear plate; 38. Control gear; 39. Spring magnetic repulsion limit ring; 40. Fixed magnetic seat. DETAILED DESCRIPTION

[0017] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.

[0018] In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms "installed", "provided with", "mounted / connected", "connected", etc. should be understood in a broad sense. For example, "connected" can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be indirectly connected through an intermediate medium, or it can be the internal communication of two components. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0019] Example, see Figures 1 to 11 A feeding mechanism for forming lithium battery components, comprising a conveying frame 1, on which two lower sliding plates 2 arranged opposite to each other are arranged, an upper extrusion conveyor belt 3 is arranged above the lower sliding plates 2, and the conveying frame 1 is provided with a pushing conveying unit, a quality verification unit and an assembly unit; The pushing and conveying unit includes a conveying side end seat 4 arranged on the conveying frame 1, and the conveying side end seat 4 is connected to two lateral pushing columns 5 through a reset sliding member. Furthermore, the reset sliding member includes a sliding opening opened in the conveying side end seat 4, and the outer wall of the lateral pushing column 5 is fixedly connected to a sliding limit plate 21 located in the sliding opening. The sliding limit plate 21 is connected to the inner wall of the sliding opening through a resistance spring sleeved on the outer wall of the lateral pushing column 5, and a resistance ball is arranged at the end of the lateral pushing column 5.

[0020] The side wall of the conveying frame 1 is provided with a push electric push rod 6, which controls the lateral push columns 5 to move one by one through sequential push members; refer to Figure 5 The terminal guide post is transported to the conveying frame 1 through the conveyor belt. During the transportation process, the guide post end of the terminal guide post is between the two lower sliding plates 2, and the position of the insulating rubber ring that needs to be installed is at the L-shaped polishing piece 8. When it is pushed to move, the polishing effect on the installation position of the terminal guide post will be achieved.

[0021] Furthermore, the push member includes a pressure-bearing inclined block 22 fixedly connected to the transverse push column 5 , and the output end of the push electric push rod 6 is fixedly connected with a double-layer inclined trapezoidal block 23 adapted to the pressure-bearing inclined block 22 .

[0022] It should be noted that the double-layer inclined trapezoidal block 23 is set up, and its trapezoidal structure on the outside will first push the outermost compressed inclined block 22 for extrusion, so that the lateral pushing column 5 is squeezed to push the disk above the wiring guide column to move. When the outermost disk is squeezed and moved forward, the trapezoidal structure on the inside of the double-layer inclined trapezoidal block 23 will be squeezed with the other compressed inclined block 22, and the wiring guide column will be pushed forward again. Under the joint action of the two lateral pushing columns 5, a wiring guide column can be pushed a distance of its own size, thereby achieving the effect of conveying one by one.

[0023] The quality verification unit includes a synchronous conveyor belt 7 arranged on the conveyor frame 1, and the synchronous conveyor belt 7 can be intermittently driven by a synchronous motor to move the synchronous conveyor belt 7, and quality inspection parts are equidistantly arranged on the synchronous conveyor belt 7. Further, the quality inspection part includes a base fixedly arranged on the synchronous conveyor belt 7, and a fixed stand 24 is fixedly connected to the base, and the fixed stand 24 is connected to a rotating sleeve 25 through a spring inner pressure member, and a resisting rubber sleeve 26 is fixedly connected to the top of the rotating sleeve 25, and a displacement sensor 27 is arranged at the bottom of the resisting rubber sleeve 26, and the rotating sleeve 25 is connected to a displacement disk 28 to be tested through a displacement spring; The spring inner pressure part includes a telescopic opening opened in the fixed stand 24, the bottom of the rotating sleeve 25 passes through the telescopic opening, and is rotatably connected to a spring magnetic repulsion limit ring 39, and the side wall of the conveying frame 1 is fixedly connected to a fixed magnetic seat 40 that magnetically repels the spring magnetic repulsion limit ring 39.

[0024] It should be noted that the upper part of the wiring guide post is squeezed by the upper squeezing conveyor belt 3, so it cannot move upward. When the quality inspection piece on the synchronous conveyor belt 7 moves to the upper part of the fixed magnetic seat 40, the magnetic force generated by the fixed magnetic seat 40 will drive the spring magnetic repulsion limit ring 39 to move upward, so that the rotating sleeve 25 is driven to move upward and is connected with the wiring guide post. At this time, the bottom end of the wiring guide post will contact the displacement disk 28 to be tested and move. By measuring the moving distance of the displacement disk 28 to be tested by the displacement sensor 27, it can be obtained whether the length of the wiring guide post meets the standard; It is worth noting that the displacement disk 28 under test is a conductor, and the contact portion between the upper extrusion conveyor belt 3 and the terminal guide post is provided with conductive metal and is externally connected to a resistance measuring element. When the connection is on, the resistance characteristics of the terminal guide post can be measured to ensure the quality of the terminal guide post.

[0025] The bottom of the lower sliding plate 2 is provided with an L-shaped polishing piece 8 which is arranged opposite to each other, and the opposite side wall of the L-shaped polishing piece 8 is provided with a polishing edge strip, wherein the polishing edge strip is arranged obliquely, that is, the spacing between the polishing edge strips near the conveying inlet of the wiring guide column is larger, and the spacing between the outlets at the other end is smaller, so as to achieve the effect of gradual polishing; The side wall of the conveyor frame 1 is provided with a gear drive assembly for controlling the rotation of the quality inspection piece. The gear drive assembly includes a fixed rack 29 fixedly connected to the side wall of the conveyor frame 1, and the outer side wall of the rotating sleeve 25 is fixedly connected to a self-rotating gear ring 30 meshing with the fixed rack 29.

[0026] It should be noted that when the terminal guide post is sleeved by the rotating sleeve 25, the outer wall of the terminal guide post will squeeze the interfering rubber sleeve ring 26 set in the rotating sleeve 25. At this time, when the rotating gear ring 30 contacts the fixed rack 29, it will be driven to rotate, thereby realizing the rotation of the terminal guide post sleeved by the rotating sleeve 25. At this time, the insulating rubber ring installation groove opened on the terminal guide post will contact the L-shaped polishing piece 8 during the rotation process and be gradually polished to ensure the sealed installation with the insulating rubber ring.

[0027] The assembly combination unit includes two conveying discs 9 arranged opposite to each other, and the two conveying discs 9 are connected by a bearing main shaft 10. The conveying discs 9 are connected to a rotating disc 11 through an intermittent conveying member. Furthermore, the intermittent conveying member includes an intermittent motor 31 fixedly connected to the conveying disc 9, and a fixed gear ring 32 is fixedly connected to the side wall of the conveying disc 9. An intermittent gear meshing with the fixed gear ring 32 is fixedly connected to the output end of the intermittent motor 31, and the conveying disc 9 is driven to rotate by the setting of the intermittent motor 31.

[0028] The rotating disk 11 is rotatably arranged on the outer side wall of the bearing main shaft 10, and a sliding assembly is arranged on the outer side wall of the rotating disk 11; The sliding assembly includes a docking shaft column 12 fixedly connected to the rotating disk 11, and the docking shaft column 12 is connected to a feed push cylinder 13 through a limit key bar assembly. The limit key bar assembly includes a rectangular sliding opening opened on the docking shaft column 12, and the outer side wall of the feed push cylinder 13 is fixedly connected to a sliding key bar 33 located in the rectangular sliding opening.

[0029] The feeding push cylinder 13 is connected to the joint control pressure disk 14 through a sleeve spring. The joint control pressure disk 14 is connected to the outer wall of the rotating disk 11 through an automatic recovery spring sleeved on the outer wall of the docking shaft column 12. A feeding electric push rod 15 is arranged on the side wall of the conveying disk 9. The feeding electric push rod 15 is connected to the joint control pressure disk 14 through a feeding joint control component. Furthermore, the feeding joint control component includes a pressure block 34 fixedly connected to both sides of the joint control pressure disk 14. A moving opening is opened on the conveying disk 9. An extrusion piece 35 that passes through the moving opening is fixedly connected to the output end of the feeding electric push rod 15.

[0030] The linked control pressure plate 14 is connected to an inner ring 17 via a connecting ring 16. The connecting ring 16 and the inner ring 17 are rotatably connected. An outer ring 18 is rotatably provided on the outer side wall of the inner ring 17. A fixed pressure strip 19 and a rotating pressure strip 20 are respectively provided on the inner ring 17 and the outer ring 18. The conveying plate 9 is connected to the outer ring 18 via a meshing transmission assembly.

[0031] It is worth noting that a groove for receiving and placing the fixed pressure strip 19 and the rotating pressure strip 20 is provided on the feeding push cylinder 13. When the insulating rubber ring is sleeved on the docking shaft column 12 under the action of the feeding machine (existing technology), the insulating rubber ring will be driven to the top of the feeding push cylinder 13 under the action of gravity during the rotation of the conveying plate 9, and pressed on the fixed pressure strip 19 and the rotating pressure strip 20; Furthermore, the meshing transmission assembly includes a regulating motor 36 fixedly connected to the conveying disk 9, the output end of the regulating motor 36 is fixedly connected to a penetrating gear disk 37, and the outer ring 18 is fixedly connected to a regulating gear 38 meshing with the penetrating gear disk 37. When the feeding push cylinder 13 is conveyed upward to the top and the insulating rubber ring of the feeding push cylinder 13 is sleeved on it, it is sleeved in the groove of the wiring guide column. At this time, the regulating gear 38 and the penetrating gear disk 37 are in a state of mutual meshing.

[0032] A further advantage of adopting the above method is that when the positions of the docking shaft column 12 and the wiring guide column correspond, the extrusion piece 35 connected to its output end is driven to move upward by the feeding electric push rod 15. The upward movement of the extrusion piece 35 will squeeze the pressure block 34 set on the outer wall of the joint control pressure plate 14, so that the joint control pressure plate 14 moves upward, and synchronously drives the feeding push cylinder 13, the inner sleeve ring 17 and the outer sleeve ring 18 to move upward. When the feeding push cylinder 13 moves upward, it will drive the insulating rubber ring thereon to move upward and be sleeved on the wiring guide column. At this time, due to the existence of the limit key bar assembly, the feeding push cylinder 13 cannot move upward, and the inner sleeve ring 17 and the outer sleeve ring 18 continue to move upward under the action of the directly connected connecting ring 16, and the insulating rubber ring is moved and squeezed to the installation groove of the wiring guide column under the action of the fixed pressure strip 19 and the rotating pressure strip 20. At this time, the regulating motor 36 drives the penetrating gear plate 37 to rotate, and will synchronously drive the regulating gear 38 set on the outer wall of the outer ring 18 to rotate, so that the rotating pressure strip 20 rotates. At this time, the fixed pressure strip 19 squeezes one side of the insulating rubber ring. During the movement of the rotating pressure strip 20, the remaining part of the insulating rubber ring will gradually be squeezed into the installation groove of the wiring guide column, so as to achieve precise assembly of the two.

[0033] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical scheme and inventive concept of the present invention within the technical scope disclosed by the present invention, which should be covered by the protection scope of the present invention.

Claims

1. A feeding mechanism for forming lithium battery components, comprising a conveying frame (1), characterized in that: The conveying frame (1) is provided with two lower sliding plates (2) arranged opposite to each other, an upper extrusion conveying belt (3) is arranged above the lower sliding plates (2), and the conveying frame (1) is provided with a pushing conveying unit, a quality verification unit and an assembly unit; The pushing and conveying unit comprises a conveying side end seat (4) arranged on the conveying frame (1), the conveying side end seat (4) being connected to two transverse pushing columns (5) via a reset sliding member, and a pushing electric push rod (6) is arranged on the side wall of the conveying frame (1), and the pushing electric push rod (6) controls the transverse pushing columns (5) to move one by one via a sequential pushing member; The quality verification unit comprises a synchronous conveyor belt (7) arranged on a conveyor frame (1), quality inspection pieces are arranged on the synchronous conveyor belt (7) at equal intervals, an L-shaped grinding piece (8) is arranged opposite to the bottom of the lower sliding plate (2), a grinding edge strip is arranged on the opposite side wall of the L-shaped grinding piece (8), and a tooth drive assembly for controlling the rotation of the quality inspection piece is arranged on the side wall of the conveyor frame (1); The assembly unit comprises two conveying discs (9) arranged opposite to each other, the two conveying discs (9) being connected via a bearing spindle (10), the conveying discs (9) being connected to a rotating disc (11) via an intermittent conveying member, the rotating disc (11) being rotatably arranged on an outer side wall of the bearing spindle (10), and a sliding assembly member being arranged on the outer side wall of the rotating disc (11); The sliding assembly comprises a docking shaft column (12) fixedly connected to the rotating disk (11); the docking shaft column (12) is connected to a feeding push cylinder (13) via a limit key bar assembly; the feeding push cylinder (13) is connected to a joint control pressure disk (14) via a sleeve spring; the joint control pressure disk (14) is connected to the outer wall of the rotating disk (11) via an automatic recovery spring sleeved on the outer wall of the docking shaft column (12); and a feeding electric push rod ( 15), the feeding electric push rod (15) is connected to the joint control pressure plate (14) through the feeding joint control component, the joint control pressure plate (14) is connected to the inner sleeve ring (17) through the connecting ring (16), the outer sleeve ring (18) is rotatably provided on the outer wall of the inner sleeve ring (17), and the inner sleeve ring (17) and the outer sleeve ring (18) are respectively provided with a fixed pressure strip (19) and a rotating pressure strip (20), and the conveying plate (9) is connected to the outer sleeve ring (18) through the meshing transmission component.

2. A feeding mechanism for forming a lithium battery component according to claim 1, characterized in that: The reset sliding member comprises a sliding opening formed in a conveying side end seat (4); the outer side wall of the transverse push column (5) is fixedly connected to a sliding limit plate (21) located in the sliding opening; the sliding limit plate (21) is connected to the inner side wall of the sliding opening via a resistance spring sleeved on the outer side wall of the transverse push column (5); and a resistance ball is provided at the end of the transverse push column (5).

3. A feeding mechanism for forming a lithium battery component according to claim 1, characterized in that: The sequential pushing member comprises a pressure-bearing inclined block (22) fixedly connected to the transverse pushing column (5), and the output end of the pushing electric push rod (6) is fixedly connected to a double-layer inclined trapezoidal block (23) adapted to the pressure-bearing inclined block (22).

4. A feeding mechanism for forming a lithium battery component according to claim 1, characterized in that: The quality inspection part comprises a base fixedly arranged on the synchronous conveyor belt (7), the base being fixedly connected to a fixed stand (24), the fixed stand (24) being connected to a rotating sleeve (25) via a spring inner pressure member, the top of the rotating sleeve (25) being fixedly connected to a resisting rubber sleeve (26), the bottom of the resisting rubber sleeve (26) being provided with a displacement sensor (27), and the rotating sleeve (25) being connected to a displacement disk (28) to be tested via a displacement spring; The spring inner pressure member comprises a telescopic opening formed in a fixed stand (24); the bottom of the rotating sleeve (25) extends through the telescopic opening and is rotatably connected to a spring magnetic repulsion limit ring (39); and the side wall of the conveying frame (1) is fixedly connected to a fixed magnetic seat (40) that magnetically repels the spring magnetic repulsion limit ring (39).

5. A feeding mechanism for forming a lithium battery component according to claim 4, characterized in that: The tooth drive assembly comprises a fixed rack (29) fixedly connected to the side wall of the conveying frame (1), and the outer side wall of the rotating sleeve (25) is fixedly connected to a self-rotating gear ring (30) meshingly connected to the fixed rack (29).

6. A feeding mechanism for forming a lithium battery component according to claim 1, characterized in that: The intermittent conveying member comprises an intermittent motor (31) fixedly connected to a conveying disc (9), a fixed gear ring (32) fixedly connected to a side wall of the conveying disc (9), and an intermittent gear meshingly connected to the fixed gear ring (32) fixedly connected to an output end of the intermittent motor (31).

7. A feeding mechanism for forming a lithium battery component according to claim 1, characterized in that: The limit key bar assembly comprises a rectangular sliding opening formed on the docking shaft column (12), and the outer side wall of the feeding push cylinder (13) is fixedly connected with a sliding key bar (33) located in the rectangular sliding opening.

8. A feeding mechanism for forming a lithium battery component according to claim 1, characterized in that: The feeding joint control assembly comprises pressure blocks (34) fixedly connected to both sides of the joint control pressure plate (14), a movable opening is provided on the conveying plate (9), and an extrusion piece (35) penetrating the movable opening is fixedly connected to the output end of the feeding electric push rod (15).

9. A feeding mechanism for forming a lithium battery component according to claim 1, characterized in that: The meshing transmission assembly comprises a control motor (36) fixedly connected to the conveying disc (9), the output end of the control motor (36) being fixedly connected to a penetrating gear disc (37), and the outer ring (18) being fixedly connected to a control gear (38) meshingly connected to the penetrating gear disc (37).

Citation Information

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