Battery cell loading bracket automatic mounting device

The automated cell mounting equipment, which combines movable inserts and elastic scrapers, solves the problem of burrs and hole residues during battery bracket installation. This achieves efficient cell bracket positioning and cleaning, reduces defect rates, and improves production efficiency and safety.

CN121307126BActive Publication Date: 2026-05-12TAIZHOU DONGFU NEW ENERGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
TAIZHOU DONGFU NEW ENERGY CO LTD
Filing Date
2025-10-14
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

During the installation process, issues such as burrs, residual holes, blocked holes, and misalignment may occur in the plastic battery bracket, leading to a high defect rate and affecting production efficiency and safety.

Method used

An automated battery cell mounting bracket installation device was designed. It uses a movable insert rod and an elastic scraper in conjunction with a negative pressure collection tube to automatically scrape off plastic residue. The modular rotating shaft adapts to different models of battery cell brackets, and the straightening ring and abrasive disc remove burrs, achieving rapid positioning and closed-loop recycling.

Benefits of technology

It significantly reduced the installation failure rate caused by hole blockage or misalignment, improved production efficiency and safety, reduced the defect rate, enabled quick switching of different models of battery cell brackets for positioning and cleaning, and avoided debris contamination and component damage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a kind of automatic installation equipment of battery pack installation support, including, installation base is provided with a group of support vertical plate of connection fixed guide rail in top end, transmission support is provided on fixed guide rail, for conveying bolt, installation base top end is equipped with limit slide rail, and limit slide rail is provided with feeding box, feeding box is used for bolt storage feeding, feeding box both sides are movably provided with positioning support, positioning support is movably set in installation base interior, a group of movable clamping plates are provided on positioning support, detachable rotating shaft is movably provided on movable clamping plate, a group of movable insertion rod is provided on rotating shaft, and butt joint ring for auxiliary correction is provided on the side of movable insertion rod top end;Compared with prior art, the application is adapted to multiple models of battery pack support by replaceable rotating shaft, uses elastic scraper to clean hole debris and recycles by negative pressure, combines correction ring to calibrate positioning in real time, realizes support clamping, cleaning, installation whole-process automation, significantly improves assembly accuracy and efficiency.
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Description

Technical Field

[0001] This invention relates to the field of energy storage battery technology, specifically to an automatic cell loading bracket installation device. Background Technology

[0002] A battery is a component that converts electrical energy into chemical energy and stores it. A battery is often composed of many cells connected in series or parallel to form an assembly with a corresponding rated voltage and rated capacity. Therefore, a battery consists of a casing, cell fixing brackets, fasteners, connecting pieces, battery protection devices, etc. It requires that each component has good quality and technical performance, stable connection and high reliability.

[0003] Various technical problems may arise during the installation of battery plastic brackets. These problems can affect production efficiency, battery pack quality, safety, and final cost. Wear of injection molds or improper processes can produce sharp burrs or flash on the edges and around holes of the brackets. These can affect precise positioning or assembly smoothness during installation. In particular, excessive residual material at internal holes can lead to misalignment during docking or even cracking or breakage of the hollow tubes during clamping, resulting in an increased defect rate. To address these issues, we propose an automated cell insertion bracket installation device. Summary of the Invention

[0004] The purpose of this invention is to provide an automatic installation device for battery cell mounting brackets to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, the present invention provides the following technical solution: an automatic cell loading bracket installation device, comprising,

[0006] The mounting base has a set of support vertical plates connected to a fixed guide rail at its top. The fixed guide rail is equipped with a transmission bracket for conveying bolts. The top of the mounting base is equipped with a limit slide rail, and a feeding box is provided on the limit slide rail. The feeding box is used for storing and feeding bolts. Positioning brackets are movably provided on both sides of the feeding box, and the positioning brackets are movably disposed inside the mounting base.

[0007] The positioning bracket is equipped with a set of movable clamps, on which a detachable rotating shaft is movably mounted. A set of movable insert rods is mounted on the rotating shaft. One side of the top of each movable insert rod has an auxiliary alignment ring, which can rotate and is used to clean plastic residue from the docking hole. The other side of the movable insert rod has a collection tube connected to an external device. One side of the positioning bracket has a positioning seat. When the battery cell bracket needs to be clamped and docked, it can be engaged between the movable clamps and the corresponding plastic shell. The docking ring on one side of the movable insert rod aligns with the docking hole. Under the action of an elastic scraper, excess plastic pieces are scraped off. With the operation of the external device, a negative pressure is formed inside the collection tube, which can collect the debris generated during cleaning, preventing it from remaining inside the plastic shell. Furthermore, when the docking ring and docking hole align, the docking insert at the bottom of the plastic shell to be installed can be engaged inside the alignment ring. This allows for effective observation of whether the distance between the plastic insert rod and the docking hole is aligned, reducing installation losses caused by defective products during subsequent processing.

[0008] Preferably, the positioning bracket is provided with a set of symmetrically arranged hollow plates, and a movable rod connected to the movable clamp is inserted inside the hollow plate. Multiple rubber pads are attached to the inner wall of the movable clamp for pressing against the outer wall of the cell bracket.

[0009] A lifting plate is connected to the rotating shaft, and a set of conveying grooves are opened on the lifting plate. The movable insert rod is movably set inside the conveying grooves, and the rotating shaft can be replaced according to different hole docking positions to adapt to different models of battery cell brackets. The rotating shaft and the lifting plate adopt a modular design, and the height and angle of the movable insert rod can be adjusted by changing the rotating shaft at different conveying groove positions.

[0010] Preferably, one end of the movable insert rod is a ring, the docking ring is concentric with the ring, a set of symmetrically arranged drive slide plates are provided at the bottom of the docking ring, a number of docking shafts are provided on the edge of the docking ring, a transmission shaft is movably engaged on the docking shaft, the transmission shaft is slidably engaged in the groove inside the docking ring, and a fixed shaft is provided on the transmission shaft;

[0011] The drive slide plate is provided with a set of transmission slots, and the fixed shaft is locked inside the transmission slots. The drive slide plate moves to control the movement of the transmission shaft in the transmission slots. As the drive slide plate moves, the cleaning scraper at the bottom is evenly distributed and extends outward. The elastic scraper, supported by the metal plate, divides large debris into small particles, which are then transported to the adsorption ring through the collection pipe by the negative pressure airflow.

[0012] Preferably, the drive shaft is connected to a connecting end block at one end located inside the docking ring. The bottom of the connecting end block is provided with an inclined elastic scraper. The elastic scraper has a metal plate of the same shape inside to control the amount of plastic scraped off. The elastic scraper can follow the docking ring and move in a circular motion inside the docking hole to clean plastic residue. Under the action of the metal plate, the deformation of the elastic scraper under centrifugal force is limited, reducing the occurrence of poor cleaning effect. It can control the elastic scraper to expand evenly outward inside the hole and break the plastic debris into small particles.

[0013] Preferably, a reset ring is installed at the air inlet of the collection pipe. The reset ring is locked inside the ring at one end of the movable insert rod, and its outer diameter is smaller than the inner diameter of the ring. The reset ring can be squeezed with the connecting end block during the circumferential motion. Several transmission plates are provided inside the reset ring. The transmission plates can move with the reset ring. The connecting end block expands outward and can squeeze with the reset ring, which can make the transmission plate at the top move and evenly distribute the plastic on the adsorption ring, so that it is locked in the gap of the mesh ring.

[0014] Preferably, a sealing ring is provided at the top of the collection tube, and a reset plate is provided inside the sealing ring. An adsorption ring located inside the collection tube is connected to the bottom of the reset plate. The adsorption ring is provided with multiple grid rings for trapping plastic fragments. An air extraction hole is opened on the outer wall of the collection tube, and the air extraction hole is connected to an external device to form a negative pressure inside the collection tube. The elastic scraper, supported by a metal plate, cuts large debris into fine particles, which are then transported to the adsorption ring through the collection tube by the negative pressure airflow. The grid-like adsorption ring intercepts the fragments and distributes them evenly. Combined with the external air extraction system, closed-loop recycling is achieved.

[0015] Preferably, the top of the reset plate is provided with multiple snap-fit ​​shafts, and the snap-fit ​​shafts are provided with a correction ring inside. The correction ring is provided with several abrasive plates inside, which are used to cooperate with the docking tube of the bracket shell for docking correction, to screen out defective products, and the abrasive plates embedded in the correction ring remove burrs on the surface of the docking tube, avoid pressing and jamming, and reduce component damage caused by forced assembly.

[0016] Preferably, a piston rod is movably inserted at the top of the positioning seat, a fixed shaft is installed on one side of the top of the positioning seat, and the fixed shaft is provided with a movable hinged rod. A tension plate is hinged inside one end of the hinged rod, an adjusting shaft is connected to the top of the tension plate, and a positioning rod connected to the positioning pressure block is provided at the bottom of the adjusting shaft. After the positioning bracket and the positioning seat work together to complete the bracket clamping, cleaning, and correction, the positioning pressure block is driven by the hinged rod to press the bracket tightly.

[0017] Preferably, a feeding slide plate is provided on the outside of the transmission bracket, and a tightening mechanism is provided at the bottom of the feeding slide plate for conveying and tightening bolts, and for synchronously conveying and locking bolts.

[0018] Compared with the prior art, the beneficial effects of the present invention are:

[0019] 1. This invention uses a rotatable docking ring and an elastic scraper at the end of the movable plug to automatically scrape off plastic residue when it is inserted into the hole of the battery cell bracket. It also works in conjunction with a negative pressure collection tube to adsorb the debris in real time. The synergistic effect prevents residue from affecting subsequent installation and significantly reduces the installation failure rate caused by hole blockage or misalignment.

[0020] 2. This invention employs a modular design for the rotating shaft and lifting plate, allowing adjustment of the height and angle of the movable insertion rod by replacing the rotating shaft at different conveying slot positions; the rubber pad of the movable clamp enhances the friction against irregularly shaped supports. This enables rapid switching between different models of battery cell supports for positioning and cleaning without requiring overall equipment modification.

[0021] 3. The present invention guides the docking tube at the bottom of the bracket to be inserted into the correction ring simultaneously when the docking ring is inserted into the hole. By observing the concentricity of the tube and the hole, defective products with misalignment are screened out in real time. At the same time, the grinding disc embedded in the correction ring removes burrs on the surface of the docking tube, avoids pressing and jamming, and reduces component damage caused by forced assembly.

[0022] 4. This invention uses an elastic scraper supported by a metal plate to break large debris into small particles, which are then transported to the adsorption ring through a collection pipe by a negative pressure airflow. The grid-like adsorption ring intercepts the fragments and distributes them evenly. Combined with an external air extraction system, this achieves closed-loop recycling, preventing debris from contaminating the battery cell or the inside of the equipment and facilitating centralized cleaning. Attached Figure Description

[0023] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0024] Figure 2 This is a schematic diagram of the positioning bracket structure of the present invention;

[0025] Figure 3 This is a partial structural diagram of the positioning bracket of the present invention;

[0026] Figure 4 This is a partial structural diagram of the movable insert rod of the present invention;

[0027] Figure 5 For the present invention Figure 4 A magnified view of a portion of point A;

[0028] Figure 6 This is a schematic diagram of the exploded disassembly structure of the rear end of the movable insert rod of the present invention;

[0029] Figure 7 This is a schematic diagram of the exploded disassembly structure of the collection tube of the present invention;

[0030] Figure 8This is a partial cross-sectional view of the sealing ring structure of the present invention;

[0031] In the diagram: 1. Mounting base; 2. Transmission bracket; 3. Feeding box; 4. Positioning bracket; 5. Positioning seat; 11. Supporting vertical plate; 12. Fixed guide rail; 21. Feeding slide plate; 41. Movable clamping plate; 411. Hollow plate; 42. Rotating shaft; 421. Lifting plate; 43. Movable insertion rod; 44. Collection pipe; 441. Transmission plate; 442. Reset ring; 45. Docking ring; 451. Docking shaft; 46. Drive slide plate; 47. Transmission shaft; 471. Connecting end block; 472. Elastic scraper; 48. Sealing ring; 49. Reset plate; 491. Snap-fit ​​shaft; 492. Adsorption ring; 51. Stretching plate; 52. Hinge insertion rod; 53. Adjusting shaft; 54. Positioning pressure block. Detailed Implementation

[0032] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0033] Please see Figures 1-8 This invention provides a technical solution: an automatic installation device for battery cell mounting brackets, comprising,

[0034] The mounting base 1 has a set of support vertical plates 11 connected to the fixed guide rail 12 at its top. The fixed guide rail 12 is equipped with a transmission bracket 2 for conveying bolts. The mounting base 1 has a limit slide rail at its top and a feeding box 3 on the limit slide rail. The feeding box 3 is used for storing and feeding bolts. The feeding box 3 has positioning brackets 4 movably arranged on both sides of the feeding box 3. The positioning brackets 4 are movably arranged inside the mounting base 1.

[0035] The positioning bracket 4 is equipped with a set of movable clamping plates 41. A detachable rotating shaft 42 is movably mounted on the movable clamping plates 41. A set of movable insert rods 43 are mounted on the rotating shaft 42. A docking ring 45 for auxiliary correction is located on one side of the top of each movable insert rod 43. The docking ring 45 can rotate and is used to clean plastic residue from the docking holes. A collection pipe 44 for connection to external equipment is located on the other side of the movable insert rod 43. A positioning seat 5 is located on one side of the positioning bracket 4. When clamping and docking the battery cell bracket is required, it can be engaged between the movable clamping plates 41 and fitted with the corresponding plastic casing. The mating ring 45 on one side of the movable plug 43 can align with the mating hole. Under the action of the elastic scraper 472, excess plastic pieces are scraped off. In conjunction with the operation of external equipment, a negative pressure is formed inside the collection tube 44, which can collect the debris generated during cleaning and prevent it from remaining inside the plastic shell. When the mating ring 45 aligns with the mating hole, the mating plug tube at the bottom of the plastic shell that needs to be installed at the top can be locked inside the alignment ring. This allows for effective observation of whether the distance between the plastic plug and the mating hole is aligned, reducing installation losses caused by defective products during subsequent processing.

[0036] like Figure 3 As shown, when the plastic frame needs to be positioned, a set of symmetrically arranged hollow plates 411 are provided on the positioning bracket 4. A movable rod connected to the movable clamping plate 41 is inserted inside the hollow plate 411. Multiple rubber pads are attached to the inner wall of the movable clamping plate 41 to abut against the outer wall of the battery cell bracket. The rubber pads can increase the clamping friction under their own elasticity. In the subsequent docking process, when the contact area formed by the shape of the plastic frame itself is small, the accidental displacement during the docking process is reduced.

[0037] A lifting plate 421 is connected to the rotating shaft 42. A set of conveying grooves is provided on the lifting plate 421. The movable insertion rod 43 is movably set inside the conveying grooves. The rotating shaft 42 can be replaced according to different hole docking positions to adapt to different models of battery cell brackets. By rotating and moving the rotating shaft 42 and the lifting plate 421, the height of the movable insertion rod 43 can be effectively adjusted. The rotating shaft 42 with different conveying groove positions can be replaced according to different models of battery cell brackets to calibrate the docking and cleaning position of the movable insertion rod 43.

[0038] like Figure 4 As shown, one end of the movable plug rod 43 is a ring, and the docking ring 45 is concentrically arranged with the ring. A set of symmetrically arranged drive slide plates 46 are provided at the bottom of the docking ring 45. Several docking shafts 451 are provided on the edge of the docking ring 45. A transmission shaft 47 is movably locked on the docking shaft 451. The transmission shaft 47 is slidably locked in the groove inside the docking ring 45. A fixed shaft is provided on the transmission shaft 47.

[0039] The drive slide plate 46 is provided with a set of transmission grooves, and the fixed shaft is locked inside the transmission grooves. The drive slide plate 46 moves to control the movement of the transmission shaft 47 in the transmission grooves. When the drive slide plate 46 moves, it brings the elastic scraper 472 together and inserts it into the docking hole. At this time, the docking ring 45 can move in a circular motion. The distance of the drive slide plate 46 can be set according to the inner diameter of the hole, thereby controlling the outward expansion of the cleaning range of the elastic scraper 472. This allows for small-scale cleaning of the plastic sheet multiple times, reducing the amount of residue. Small particles can also enter the collection pipe 44 with the airflow during the operation of the external equipment, reducing their residue inside the plastic frame and effectively reducing the amount of plastic sheet residue.

[0040] like Figure 4 and Figure 5 As shown, the drive shaft 47 is connected to a connecting end block 471 at one end inside the docking ring 45. The bottom of the connecting end block 471 is provided with an inclined elastic scraper 472. The elastic scraper 472 has a metal plate of the same shape inside, which is used to control the amount of plastic scraped off. The elastic scraper 472 can follow the docking ring 45 to move in a circular motion inside the docking hole to clean up plastic residue. During the scraping and cleaning process, the elastic scraper 472 can be restricted from deformation under the action of centrifugal force by the action of the metal plate, reducing the occurrence of poor cleaning effect. It can control the elastic scraper 472 to expand evenly outward inside the hole, breaking the plastic debris into small particles, which are then recycled with the airflow.

[0041] like Figure 6 and Figure 7 As shown, a reset ring 442 is installed at the air inlet of the collection pipe 44. The reset ring 442 is locked inside the ring at one end of the movable insert rod 43, and its outer diameter is smaller than the inner diameter of the ring. The reset ring 442 can be squeezed with the connecting end block 471 during the circumferential movement. Several transmission plates 441 are provided inside the reset ring 442. The transmission plates 441 can move with the reset ring 442. During the operation of the external equipment, a negative pressure can be formed inside the collection pipe 44, which can quickly collect dust and plastic debris. As the connecting end block 471 expands outward, it can squeeze with the reset ring 442, which can make the transmission plate 441 at the top move, and can evenly distribute the plastic on the adsorption ring 492, so that it is locked in the gap of the mesh ring.

[0042] like Figure 7 and Figure 8As shown, a sealing ring 48 is provided at the top of the collection tube 44, and a reset plate 49 is provided inside the sealing ring 48. The bottom of the reset plate 49 is connected to an adsorption ring 492 located inside the collection tube 44. The adsorption ring 492 is provided with multiple mesh rings for trapping plastic fragments. An air extraction hole is provided on the outer wall of the collection tube 44, and the air extraction hole is connected to an external device to form a negative pressure inside the collection tube 44, which can collect and process plastic fragments for subsequent unified cleaning.

[0043] like Figure 8 As shown, the top of the reset plate 49 is provided with multiple snap-fit ​​shafts 491. The snap-fit ​​shafts 491 are provided with a correction ring inside, and the correction ring is provided with several abrasive plates inside. These are used to cooperate with the docking tube of the bracket shell for docking correction, and defective products are screened out. During the cleaning process, the protruding docking tube of the upper plastic frame can be snapped into the correction ring at the top of the snap-fit ​​shaft 491. It is possible to observe whether its position is corrected and aligned, reducing the situation where defective products have positional offset or tilt, which affects the subsequent installation quality and reduces the wear caused by forced pressing.

[0044] It should also be noted that when the insertion tube enters the correction ring, it can interact with the internal abrasive pads to clean away any residual plastic pieces on the outer wall, reducing the chance of jamming during the subsequent insertion process.

[0045] like Figure 5 As shown, a piston rod is movably inserted into the top of the positioning seat 5. A fixed shaft is installed on one side of the top of the positioning seat 5, and the fixed shaft is provided with a movable hinged rod 52. A tension plate 51 is hinged to one end of the hinged rod 52. An adjusting shaft 53 is connected to the top of the tension plate 51. A positioning rod connected to the positioning pressure block 54 is provided at the bottom of the adjusting shaft 53. After cleaning, the movable rod 43 and the rotating shaft 42 can be reset to align the plastic frame. The hinged rod 52 extends and retracts to pull the tension plate 51 to move, so that the positioning pressure block 54 at the bottom of the adjusting shaft 53 presses against the top of the plastic frame, thus achieving a pressing effect.

[0046] like Figure 1 As shown, a feeding slide plate 21 is provided on the outside of the transmission bracket 2, and a tightening mechanism is provided at the bottom of the feeding slide plate 21 for bolt feeding and tightening, which can take out bolts from the feeding box 3 and insert them for tightening.

[0047] Working principle: First, when clamping and installing the battery cell bracket, the corresponding plastic shell can be clamped between the movable clamping plates 41. The docking ring 45 on one side of the movable plug 43 aligns with the docking hole. Under the action of the elastic scraper 472, excess plastic pieces are scraped off. Furthermore, with the operation of external equipment, a negative pressure is formed inside the collection tube 44, which can collect the debris generated during cleaning, preventing it from remaining inside the plastic shell. When the docking ring 45 aligns with the docking hole, the docking plug at the bottom of the plastic shell to be installed can be clamped inside the alignment ring. It can effectively observe whether the distance between the plastic plug and the docking hole is aligned, reducing the installation loss caused by defective products in subsequent processing. When docking the bottom plastic frame, it can control the position of the movable clamping plate 41 and press the internal rubber pad against the outer wall of the plastic frame. This can reduce the accidental situation of misalignment during subsequent installation caused by a small contact area during clamping. After clamping is completed, the rotating shaft 42 and the lifting plate 421 rotate, and the movable plug 43 can move to the position corresponding to the docking hole, which can clean up the plastic fragments remaining on its edge.

[0048] Then, during the cleaning process, the drive slide plate 46 can be moved to bring the elastic scraper 472 together and insert it into the docking hole. At this time, the docking ring 45 can move in a circular motion. The distance of the drive slide plate 46 can be set according to the inner diameter of the hole, thereby controlling the range of the elastic scraper 472 to expand the cleaning area outward. This allows for multiple small-scale cleaning of the plastic sheet, reducing the amount of residue. Small particles can enter the collection pipe 44 with the airflow during the operation of the external equipment, reducing their residue inside the plastic frame. During the scraping and cleaning process, the metal plate can limit the deformation of the elastic scraper 472 under centrifugal force, reducing the possibility of poor cleaning effect.

[0049] Finally, during the cleaning process, the protruding docking tube of the upper plastic frame can be clamped inside the correction ring at the top of the clamping shaft 491. This allows for observation of whether its position is corrected and aligned, reducing the possibility of defective products shifting or tilting, which could affect the quality of subsequent installation and reduce wear caused by forced pressing. When the docking tube enters the correction ring, it can interact with the internal abrasive plate to clean the plastic pieces remaining on the outer wall, reducing the possibility of jamming during the pressing process in subsequent docking. After cleaning, the movable plug rod 43 and the rotating shaft 42 can be reset to align the plastic frame. The hinged plug rod 52 extends and retracts, pulling the tension plate 51 to move, causing the positioning block 54 at the bottom of the adjusting shaft 53 to press against the top of the plastic frame, thus tightening it. This facilitates the removal of bolts from the loading slide plate 21 from the loading box 3 for insertion and tightening.

[0050] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An automatic installation device for battery cell mounting brackets, characterized in that: include, The mounting base (1) has a set of support vertical plates (11) connected to the fixed guide rail (12) at its top. The fixed guide rail (12) is provided with a transmission bracket (2) for conveying bolts. The mounting base (1) has a limit slide rail at its top and a feeding box (3) on the limit slide rail. The feeding box (3) is used for storing and feeding bolts. The feeding box (3) has positioning brackets (4) movably provided on both sides of the feeding box (3). The positioning brackets (4) are movably located inside the mounting base (1). The positioning bracket (4) is provided with a set of movable clamps (41), and a detachable rotating shaft (42) is movably provided on the movable clamps (41). A set of movable insert rods (43) is provided on the rotating shaft (42). A docking ring (45) for auxiliary correction is provided on one side of the top of the movable insert rod (43). The docking ring (45) can rotate and is used to clean plastic residue in the docking hole. A collection tube (44) for connecting to external equipment is provided on the other side of the movable insert rod (43). A positioning seat (5) is provided on one side of the positioning bracket (4). One end of the movable insert (43) is a ring, and the docking ring (45) is concentrically arranged with the ring. A set of symmetrically arranged drive slide plates (46) is provided at the bottom of the docking ring (45). Several docking shafts (451) are provided on the edge of the docking ring (45). A transmission shaft (47) is movably mounted on the docking shaft (451). The transmission shaft (47) is slidably mounted in the groove inside the docking ring (45). A fixed shaft is provided on the transmission shaft (47). The drive slide plate (46) is provided with a set of transmission slots, and the fixed shaft is locked inside the transmission slots. The drive slide plate (46) is movable to control the transmission shaft (47) to move within the transmission slots. The drive shaft (47) is connected to a connecting end block (471) at one end inside the docking ring (45). The bottom of the connecting end block (471) is provided with an inclined elastic scraper (472). The elastic scraper (472) is provided with a metal plate of the same shape inside, which is used to control the amount of plastic scraped off. The elastic scraper (472) can follow the docking ring (45) to move in a circular motion inside the docking hole to clean plastic residue. A sealing ring (48) is provided at the top of the collection tube (44), and a reset plate (49) is provided inside the sealing ring (48). An adsorption ring (492) located inside the collection tube (44) is connected to the bottom of the reset plate (49). Multiple mesh rings are provided on the adsorption ring (492) for trapping plastic fragments. An air extraction hole is provided on the outer wall of the collection tube (44), and the air extraction hole is connected to an external device to form a negative pressure inside the collection tube (44).

2. The automatic installation equipment for battery cell mounting brackets according to claim 1, characterized in that: The positioning bracket (4) is provided with a set of symmetrically arranged hollow plates (411). The hollow plates (411) are equipped with movable rods connected to movable clamps (41). Multiple rubber pads are attached to the inner wall of the movable clamps (41) for pressing against the outer wall of the battery cell bracket. A lifting plate (421) is connected to the rotating shaft (42). A set of conveying grooves is provided on the lifting plate (421). The movable insert rod (43) is movably set inside the conveying grooves and can replace the rotating shaft (42) according to different hole docking positions to adapt to different models of battery cell brackets.

3. The automatic installation equipment for battery cell mounting brackets according to claim 1, characterized in that: A reset ring (442) is installed at the air inlet of the collection pipe (44). The reset ring (442) is locked inside the ring at one end of the movable plug (43) and its outer diameter is smaller than the inner diameter of the ring. The reset ring (442) can be squeezed with the connecting end block (471) during the circumferential motion. Several transmission plates (441) are provided inside the reset ring (442). The transmission plates (441) can move with the reset ring (442).

4. The automatic installation equipment for battery cell mounting brackets according to claim 1, characterized in that: The reset plate (49) has multiple snap-fit ​​shafts (491) at its top. Each snap-fit ​​shaft (491) has a correction ring inside, and the correction ring has several frosted pieces inside, which are used to cooperate with the docking tube of the bracket shell for docking correction and to screen out defective products.

5. The automatic installation equipment for battery cell mounting brackets according to claim 1, characterized in that: A piston rod is movably inserted at the top of the positioning seat (5). A fixed shaft is installed on one side of the top of the positioning seat (5), and the fixed shaft is provided with a movable hinged rod (52). A tension plate (51) is hinged inside one end of the hinged rod (52). An adjustment shaft (53) is connected to the top of the tension plate (51). A positioning rod for connecting the positioning pressure block (54) is provided at the bottom of the adjustment shaft (53).

6. The automatic installation equipment for battery cell mounting brackets according to claim 1, characterized in that: The transmission bracket (2) is provided with a feeding slide plate (21) on the outside, and a tightening mechanism is provided at the bottom of the feeding slide plate (21) for conveying and tightening bolts.