A battery box processing positioning pin press-fitting equipment capable of detecting electric leakage in real time
By designing a conveyor belt, a leakage detection device, and a servo motor-driven pressing assembly, the problem of leakage caused by breakage of the battery box during the pressing process of the positioning pin was solved, realizing real-time detection and adaptive pressing, ensuring safety and flexibility.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- JIANGSU HENGYI IND TECH CO LTD
- Filing Date
- 2024-05-20
- Publication Date
- 2026-07-31
AI Technical Summary
The battery box is prone to breakage due to pressure issues during the positioning pin pressing process, which can lead to electrical leakage and pose a safety hazard.
A device comprising a conveyor belt, a leakage current detection device, an auxiliary frame, and a pressing assembly was designed. The device detects leakage current in real time through a metal sheet and an indicator light, uses a servo motor to drive the pressing screw and the pressing head for rotary pressing, and combines a barrier assembly to control the feeding of the positioning pin.
It enables real-time leakage detection of battery boxes during the press-fitting process, avoiding safety hazards caused by damage, adapting to the press-fitting requirements of positioning pins for battery boxes of different sizes, and controlling the material feeding of positioning pins.
Smart Images

Figure CN118385917B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of positioning pin press-fitting technology, specifically to a positioning pin press-fitting device for battery box processing capable of real-time leakage detection. Background Technology
[0002] When processing the battery box, after installing the required batteries into the battery box, a cover plate needs to be used to close it. When closing, a locating pin is used to fix it. The locating pin is installed and fixed in the pin hole of the part. The common installation method is to press the locating pin into the pin hole by pressing or hammering.
[0003] However, during the pressing of the battery box positioning pins, the battery box may break due to pressure issues, which could lead to battery leakage and pose a safety hazard.
[0004] Therefore, in view of this, we have studied and improved the existing structure and its shortcomings, and proposed a positioning pin press-fitting equipment for battery box processing that can perform real-time leakage detection. Summary of the Invention
[0005] To address the shortcomings of existing technologies, this invention provides a positioning pin press-fitting device for battery box processing that can perform real-time leakage detection, thus solving the problems mentioned in the background art.
[0006] To achieve the above objectives, the present invention provides the following technical solution: a positioning pin press-fitting device for battery box processing capable of real-time leakage detection, comprising a conveyor belt and an auxiliary frame. The outer surface of the conveyor belt is provided with a battery box. A leakage detection device for detecting leakage in the battery box is installed on one side of the conveyor belt. The leakage detection device includes an insulating mounting plate, an indicator light, a mounting tube, and a metal sheet. The outer surface of the insulating mounting plate is provided with a metal sheet, and one side of the metal sheet is connected to the mounting tube via a wire. An indicator light is threaded inside the mounting tube. A base plate is installed in the middle of one side of the conveyor belt, and a support frame is provided on the outer surface of the base plate. A slide rail is provided inside the support frame, and a slider is slidably mounted inside the slide rail. A fixing rod is provided on one outer surface of the slider. There are two sets of sliders, with a connecting rod between them. A connecting sleeve is installed at the end of the connecting rod, and a drive screw is installed inside the connecting sleeve. A first servo motor is installed at the top of the drive screw. An auxiliary frame is located at the end of the fixed rod, and an auxiliary positioning pin press-fitting auxiliary assembly is installed on one side of the auxiliary frame. The auxiliary assembly includes a connecting frame, a second servo motor, an internal groove, and a slide. The second servo motor is located on one side of the connecting frame, and the slide is installed at the output end of the second servo motor via a screw. An internal groove is opened inside the connecting frame, and a press-fitting assembly for pressing and positioning is installed inside the slide. The press-fitting assembly includes a third servo motor, a press-fitting screw, and a press head. The press-fitting screw is installed at the output end of the third servo motor, and a press head is installed outside the press-fitting screw.
[0007] Furthermore, the pressure head is equipped with a lifting structure consisting of a third servo motor and a pressing screw, and the bottom of the pressure head has a frustum-shaped structure.
[0008] Furthermore, the auxiliary frame is provided with a storage frame inside, and the storage frame has a placement cavity inside.
[0009] Furthermore, the placement cavities are evenly distributed around the inside of the storage frame, and the storage frame is engaged with the auxiliary frame.
[0010] Furthermore, one side surface of the auxiliary frame is provided with a barrier component for assisting material feeding, and the barrier component includes a fixing plate and a hydraulic rod, with the hydraulic rod provided on the outer surface of the fixing plate.
[0011] Furthermore, the barrier assembly also includes a horizontal plate and a baffle, with the horizontal plate installed at the output end of the hydraulic rod and a baffle provided inside the horizontal plate.
[0012] Furthermore, the baffles and the placement cavities are distributed in a one-to-one correspondence, and the baffles are slidably connected to the horizontal plate.
[0013] Furthermore, support plates are installed on both sides of the bottom of the conveyor belt, and the support plates and the bottom plate are integrated into one structure.
[0014] Furthermore, the insulating mounting plate is engaged with the conveyor belt, and the length of the insulating mounting plate is the same as the length of the metal sheet.
[0015] Furthermore, both the fixed rod and the slider are provided in two sets, and auxiliary frames are fixedly installed at the ends of the two sets of fixed rods.
[0016] This invention provides a positioning pin press-fitting device for battery box processing capable of real-time leakage detection, which has the following beneficial effects:
[0017] 1. This positioning pin pressing equipment for battery box processing, capable of real-time leakage detection, utilizes a leakage detection device. The battery box frame is bonded to a metal sheet and moves via a conveyor belt. The bonded metal sheet provides conductivity, enabling real-time detection of leakage caused by damage during pressing. This avoids safety hazards associated with using a battery box frame after pressing if leakage occurs. When the battery box frame leaks, it contacts the metal sheet, causing an indicator light connected to the metal sheet to illuminate as current flows through, facilitating timely detection of leakage by staff. The equipment also allows for follow-along leakage detection via the movement of the battery box frame.
[0018] 2. This positioning pin pressing equipment for battery box processing, capable of real-time leakage detection, utilizes auxiliary and pressing components. A third servo motor drives the pressing screw to rotate. Clockwise and counter-clockwise rotation of the pressing screw moves the external pressing head up and down, allowing for rotary pressing of the positioning pins inside the battery box frame as the pressing head moves downwards. The auxiliary components move the pressing components, positioning the pressing screw and pressing head to one side of the battery box frame. This facilitates left-right movement of the battery box frame relative to the conveyor belt as needed for pressing and leakage detection, enabling positioning pin pressing of battery box frames of different sizes.
[0019] 3. This positioning pin pressing equipment for battery box processing, which can perform real-time leakage detection, can open and close the material feeding status of the storage box through the design of the barrier component, which facilitates the control of the feeding status of the positioning pins inside the storage box. In addition, the design of the sliding connection between the baffle and the horizontal plate makes it easy to adjust the length of the baffle relative to the auxiliary frame bracket according to whether the internal placement cavity of the storage box is being fed. The independent control of the baffle makes it easy to press the missing positioning pins onto the battery box frame. Attached Figure Description
[0020] Figure 1 This is a schematic diagram of the southeast isometric structure of a positioning pin press-fitting equipment for battery box processing that can perform real-time leakage detection according to the present invention.
[0021] Figure 2 This is a schematic diagram of the isometric structure of a positioning pin press-fitting equipment for battery box processing that can perform real-time leakage detection according to the present invention.
[0022] Figure 3 This is a schematic diagram of the conveyor belt structure of a positioning pin pressing device for battery box processing that can perform real-time leakage detection according to the present invention.
[0023] Figure 4 This is a schematic diagram of the unfolded distribution structure of the auxiliary frame and storage frame of the positioning pin pressing equipment for battery box processing capable of real-time leakage detection according to the present invention.
[0024] Figure 5 This is a schematic diagram of the connection structure between the auxiliary frame and auxiliary components of a positioning pin press-fitting equipment for battery box processing capable of real-time leakage detection according to the present invention.
[0025] Figure 6 This is a schematic diagram of the connection structure between the auxiliary frame and the barrier component of a positioning pin press-fitting equipment for battery box processing capable of real-time leakage detection according to the present invention.
[0026] In the diagram: 1. Conveyor belt; 2. Support plate; 3. Base plate; 4. Support frame; 5. Battery box frame; 6. First servo motor; 7. Drive screw; 8. Connecting sleeve plate; 9. Auxiliary frame; 10. Storage box; 11. Leakage detection device; 1101. Insulating mounting plate; 1102. Indicator light; 1103. Mounting tube; 1104. Metal sheet; 12. Placement cavity; 13. Slide rail; 14. Auxiliary component; 1401. Connecting frame; 1402. Second servo motor; 1403. Internal groove; 1404. Slide seat; 15. Pressing component; 1501. Third servo motor; 1502. Pressing screw; 1503. Press head; 16. Barrier component; 1601. Fixing plate; 1602. Hydraulic rod; 1603. Horizontal plate; 1604. Baffle; 17. Connecting rod; 18. Slider; 19. Fixed rod body. Detailed Implementation
[0027] The embodiments of the present invention will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of the invention.
[0028] like Figure 1 , Figure 2 and Figure 3As shown, the present invention provides a technical solution: a positioning pin pressing device for battery box processing capable of real-time leakage detection, comprising a conveyor belt 1, a support plate 2, a base plate 3, a support frame 4, a battery box frame 5, a first servo motor 6, a drive screw 7, a connecting sleeve 8, an auxiliary frame 9, a storage frame 10, a leakage detection device 11, an insulating mounting plate 1101, an indicator light 1102, a mounting tube 1103, a metal sheet 1104, a placement cavity 12, a slide rail 13, auxiliary components 14, a connecting frame 1401, a second servo motor 1402, an internal groove 1403, a slide block 1404, and a pressing assembly 15. The conveyor belt 1 includes a third servo motor 1501, a press screw 1502, a press head 1503, a barrier assembly 16, a fixing plate 1601, a hydraulic rod 1602, a cross plate 1603, a baffle 1604, a connecting rod 17, a slider 18, and a fixing rod body 19. A battery box frame 5 is provided on the outer surface of the conveyor belt 1. Support plates 2 are installed on both sides of the bottom of the conveyor belt 1, and the support plates 2 and the bottom plate 3 are integrated. A leakage detection device 11 for detecting leakage current in the battery box frame 5 is installed on one side of the conveyor belt 1. The leakage detection device 11 includes an insulating mounting plate 1101, an indicator light 1102, and a mounting tube 1103. The insulating mounting plate 1101 has a metal sheet 1104 on its outer surface, and a mounting tube 1103 is installed on one side of the metal sheet 1104 via a wire. The insulating mounting plate 1101 is engaged with the conveyor belt 1, and the length of the insulating mounting plate 1101 is the same as the length of the metal sheet 1104. An indicator light 1102 is installed in the internal thread of the mounting tube 1103. A base plate 3 is installed in the middle of one side of the conveyor belt 1, and a support frame 4 is provided on the outer surface of the base plate 3. The design of the conveyor belt 1 enables the conveying of the battery box frame 5 to be processed. The battery box frame 5 is attached to the conveyor belt during transport. On one side of the conveyor belt 1, the battery box frame 5 is attached to the metal sheet 1104 and moves with the operation of the conveyor belt 1. The battery box frame 5 and the metal sheet 1104 are in contact and conductive, which can be detected in real time when the battery box frame 5 is damaged due to pressing and leakage. This avoids the safety hazards caused by the battery box frame 5 being put into use after the pressing is completed. When the battery box frame 5 leaks, it comes into contact with the metal sheet 1104, and the indicator light 1102 connected to the metal sheet 1104 will light up due to the current passing through it. This makes it easy for the staff to detect whether the battery box frame 5 is leaking in time, and facilitates leakage detection by following the movement of the battery box frame 5.
[0029] like Figure 1 , Figure 2 , Figure 4 and Figure 5As shown, the support frame 4 has a slide rail 13 inside, and a slider 18 is slidably installed inside the slide rail 13. A fixed rod 19 is provided on one outer surface of the slider 18. There are two sets of fixed rods 19 and sliders 18. An auxiliary frame 9 is fixedly installed at the end of the two sets of fixed rods 19. There are two sets of sliders 18. A connecting rod 17 is provided between the two sets of sliders 18. A connecting sleeve 8 is installed at the end of the connecting rod 17, and a drive screw 7 is provided inside the connecting sleeve 8. A first servo motor 6 is installed on the top of the drive screw 7. The design of the first servo motor 6 can drive the drive screw 7 to rotate. The rotation of the drive screw 7 can drive the connecting sleeve 8, the connecting rod 17 and the slider 18 to move up and down inside the slide rail 13, which is beneficial for the battery box frame 5. The height can be adjusted adaptively for flexible use. The auxiliary frame 9 is set at the end of the fixed rod 19, and an auxiliary positioning pin press-fitting auxiliary component 14 is installed on one side of the auxiliary frame 9. The auxiliary component 14 includes a connecting frame 1401, a second servo motor 1402, an internal groove 1403, and a slide 1404. The second servo motor 1402 is set on one side of the connecting frame 1401. The output end of the second servo motor 1402 is mounted on the slide 1404 through a lead screw. The internal groove 1403 is opened inside the connecting frame 1401. The press-fitting component 15 for pressing and positioning is installed inside the slide 1404. The press-fitting component 15 includes a third servo motor 1501, a press-fitting lead screw 1502, and a press head 1503. The output of the third servo motor 1501 is... A pressing screw 1502 is installed at the output end, and a pressing head 1503 is provided on the outside of the pressing screw 1502. The pressing head 1503 forms a lifting structure with the pressing screw 1502 via a third servo motor 1501, and the bottom of the pressing head 1503 is a frustum-shaped structure. Through the operation of the conveyor belt 1 on the battery box frame 5, when the positioning pin is placed in the positioning pin hole inside the battery box frame 5, the design of the first servo motor 6 can drive the drive screw 7 to rotate. The rotation of the drive screw 7 can drive the connecting sleeve 8, connecting rod 17 and slider 18 to move up and down inside the slide rail 13, so that the auxiliary frame 9 can perform preliminary pressing and positioning of the positioning pin placed inside the battery box frame 5 during the pressing process. As the conveyor belt 1 operates, the battery box frame 5 is positioned in the pressing assembly 1502. Below, the design of the second servo motor 1402 drives the lead screw to rotate. The rotation of the lead screw drives the slide 1404 to move horizontally within the built-in groove 1403, facilitating the synchronous movement of the pressing assembly 15 inside the slide 1404. This allows for adaptive adjustments based on the pressing position of the positioning pins inside the battery box frame 5. The design of the third servo motor 1501 drives the pressing lead screw 1502 to rotate. The clockwise and counterclockwise rotation of the pressing lead screw 1502 drives the pressing head 1503 outside the pressing lead screw 1502 to move up and down. This allows for rotary pressing of the positioning pins inside the battery box frame 5 when the pressing head 1503 moves downward. In addition, the position of the pressing assembly 15 is moved by the auxiliary component 14.This design allows the pressing screw 1502 and the pressing head 1503 to be positioned on one side of the battery box frame 5, facilitating the left and right movement of the battery box frame 5 relative to the conveyor belt 1 as needed for pressing and leakage detection. It also facilitates the pressing of positioning pins onto battery box frames 5 of different sizes.
[0030] like Figure 4 and Figure 6 As shown, the auxiliary frame 9 has a storage frame 10 inside, and the storage frame 10 has a placement cavity 12 inside. The placement cavities 12 are evenly distributed around the inside of the storage frame 10, and the storage frame 10 is snap-fitted to the auxiliary frame 9. The user can place the positioning pin to be used inside the placement cavity 12 inside the storage frame 10. The positioning pin is exclusively located inside the placement cavity 12, which facilitates the pre-storage of the positioning pin. The snap-fit connection between the storage frame 10 and the auxiliary frame 9 allows the user to choose a storage frame 10 with a suitable diameter for the positioning pin. The structure is simple and easy for the user to replace. One side surface of the auxiliary frame 9 is provided with a barrier component 16 for assisting in feeding. The barrier component 16 includes a fixing plate 1601 and a hydraulic rod 1602. The outer surface of the fixing plate 1601 is provided with the hydraulic rod 1602. The barrier component 16 also includes a horizontal plate 1603 and a baffle 1604. A horizontal plate 1603 is installed at the output end of 1602, and a baffle 1604 is provided inside the horizontal plate 1603. The baffle 1604 and the placement cavity 12 are distributed in a one-to-one correspondence, and the baffle 1604 and the horizontal plate 1603 are slidably connected. Through the design of the fixed plate 1601 and the hydraulic rod 1602, the horizontal plate 1603 and the baffle 1604 connected to the hydraulic rod 1602 can be moved back and forth about the auxiliary frame 9. The position movement of the baffle 1604 can open and close the material feeding status of the storage box 10, which is convenient for controlling the feeding status of the positioning pin inside the storage box 10. In addition, the design of the sliding connection between the baffle 1604 and the horizontal plate 1603 makes it convenient to adjust the length of the baffle 1604 about the support of the auxiliary frame 9 according to whether the placement cavity 12 inside the storage box 10 is feeding. The baffle 1604 is independently controlled, which is convenient for pressing the missing positioning pins about the battery box frame 5.
[0031] In summary, as Figures 1-6As shown, this positioning pin pressing equipment for battery box processing, capable of real-time leakage detection, allows the user to place the required positioning pin inside the placement cavity 12 within the storage frame 10. The positioning pin is confined to the placement cavity 12, facilitating pre-storage. The storage frame 10 and auxiliary frame 9 are interlocked, allowing the user to select a suitable diameter storage frame 10 for the positioning pin. The simple structure facilitates easy replacement. Furthermore, the design of the fixing plate 1601 and hydraulic rod 1602 enables the horizontal plate 1603 and baffle 1604 connected to the hydraulic rod 1602 to move back and forth relative to the auxiliary frame 9. The movement of the baffle 1604 controls the feeding of the storage frame 10. The storage box 10 can be opened and closed to facilitate control over the feeding of the positioning pins inside. Furthermore, the sliding connection between the baffle 1604 and the horizontal plate 1603 allows for adjustment of the length of the baffle 1604 relative to the auxiliary frame 9 support based on whether the internal placement cavity 12 of the storage box 10 is being fed. The independent control of the baffle 1604 facilitates pressing of any missing positioning pins onto the battery box frame 5. The conveyor belt 1 transports the battery box frame 5 to be processed. During transport, the battery box frame 5 adheres to one side of the conveyor belt 1, and is attached to the metal sheet 1104, moving with the operation of the conveyor belt 1. The battery box frame 5 and the metal sheet 1104 are conductive, allowing for intervention in case of leakage due to damage caused by pressing. Real-time detection is performed to avoid safety hazards caused by leakage after the battery box frame 5 is pressed and put into use. When the battery box frame 5 leaks, it comes into contact with the metal plate 1104, and the indicator light 1102 connected to the metal plate 1104 will light up due to the current passing through it, making it easy for staff to detect whether the battery box frame 5 is leaking. It is convenient to follow the movement of the battery box frame 5 to detect leakage. Then, the operation of the battery box frame 5 by the conveyor belt 1 can drive the drive screw 7 to rotate when the positioning pin is placed in the positioning pin hole inside the battery box frame 5. The rotation of the drive screw 7 can drive the connecting sleeve 8, connecting rod 17 and slider 18 to move up and down inside the slide rail 13, so that the auxiliary frame 9 can move up and down. During the pressing process, the positioning pins inside the battery box frame 5 are initially pressed and positioned. As the conveyor belt 1 operates, the battery box frame 5 is positioned below the pressing assembly 15. The design of the second servo motor 1402 drives the lead screw to rotate. The rotation of the lead screw drives the slide 1404 to move horizontally within the built-in groove 1403, facilitating the synchronous movement of the pressing assembly 15 inside the slide 1404. This allows for adaptive adjustments based on the pressing position of the positioning pins inside the battery box frame 5. The design of the third servo motor 1501 drives the pressing lead screw 1502 to rotate. The clockwise and counterclockwise rotation of the pressing lead screw 1502 drives the pressing head 1503 outside the pressing lead screw 1502 to move up and down.This allows for rotary pressing of the internal positioning pins of the battery box frame 5 when the pressure head 1503 moves downward. Furthermore, by moving the position of the pressing assembly 15 via the auxiliary component 14, the pressing screw 1502 and the pressure head 1503 can be positioned on one side of the battery box frame 5. This facilitates left and right movement of the battery box frame 5 relative to the conveyor belt 1 as needed for pressing and leakage detection, and allows for pressing of positioning pins onto battery box frames 5 of different sizes.
[0032] The embodiments of the present invention are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the invention to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described in order to better illustrate the principles and practical application of the invention, and to enable those skilled in the art to understand the invention and to design various embodiments with various modifications suitable for a particular purpose.
Claims
1. A battery box processing positioning pin press-fitting equipment capable of real-time leakage detection, comprising a conveying belt (1) and an auxiliary frame (9), characterized in that: A battery box frame (5) is provided on the outer surface of the conveyor belt (1). A leakage detection device (11) for detecting leakage of the battery box frame (5) is installed on one side of the conveyor belt (1). The leakage detection device (11) includes an insulating mounting plate (1101), an indicator light (1102), a mounting tube (1103), and a metal sheet (1104). The outer surface of the insulating mounting plate (1101) is provided with a metal sheet (1104). The mounting tube (1103) is installed on one side of the metal sheet (1104) through a wire. The indicator light (1102) is provided in the internal thread of the mounting tube (1103). When the battery box frame (5) is conveyed, it is attached to one side of the conveyor belt (1). The battery box frame (5) is attached to the metal sheet (1104). When the battery box frame (5) leaks electricity, it comes into contact with the metal sheet (1104) as the battery moves along the conveyor belt (1). This causes the indicator light (1102) connected to the metal sheet (1104) to light up due to the current passing through it. A base plate (3) is installed in the middle of one side of the conveyor belt (1), and a support frame (4) is provided on the outer surface of the base plate (3). A slide rail (13) is provided inside the support frame (4), and a slider (18) is slidably installed inside the slide rail (13). A fixed rod (19) is provided on one side of the outer surface of the slider (18). Two sets of sliders (18) are installed, and a connecting rod (17) is provided between the two sets of sliders (18). A connecting sleeve plate (8) is installed at the end of the connecting rod (17), and the connecting sleeve plate (8) 8) is internally provided with a drive screw (7), and a first servo motor (6) is installed on the top of the drive screw (7). The auxiliary frame (9) is located at the end of the fixed rod (19), and an auxiliary positioning pin press-fit auxiliary assembly (14) is installed on one side of the auxiliary frame (9). The auxiliary assembly (14) includes a connecting frame (1401), a second servo motor (1402), an internal groove (1403), and a slide (1404). The second servo motor (1402) is located on one side of the connecting frame (1401), and the slide (1404) is installed on the output end of the second servo motor (1402) through the screw. An internal groove (1403) is opened inside the connecting frame (1401), and the slide (1404) is installed on the output end of the second servo motor (1402). The internal part of the auxiliary frame (9) is equipped with a pressing assembly (15) for pressing and positioning. The pressing assembly (15) includes a third servo motor (1501), a pressing screw (1502), and a pressing head (1503). The output end of the third servo motor (1501) is equipped with a pressing screw (1502), and the pressing head (1503) is provided on the outside of the pressing screw (1502). A blocking assembly (16) for auxiliary feeding is provided on one side surface of the auxiliary frame (9). The blocking assembly (16) includes a fixing plate (1601) and a hydraulic rod (1602). The outer surface of the fixing plate (1601) is provided with a hydraulic rod (1602). The blocking assembly (16) also includes a horizontal plate (1603) and a baffle (1604).The output end of the hydraulic rod (1602) is provided with a horizontal plate (1603), and the inside of the horizontal plate (1603) is provided with a baffle (1604), the baffle (1604) and the placing cavity (12) are one-to-one corresponding distribution, and the baffle (1604) and the horizontal plate (1603) are slidingly connected.
2. The battery box processing positioning pin press-fitting equipment capable of detecting electric leakage in real time according to claim 1, characterized in that: The pressure head (1503) forms a lifting structure through a third servo motor (1501) and a pressing screw (1502), and the bottom of the pressure head (1503) has a frustum-shaped structure.
3. The positioning pin pressing equipment for battery box processing capable of real-time leakage detection according to claim 1, characterized in that: The auxiliary frame (9) is provided with a storage frame (10) inside, and the storage frame (10) is provided with a placement cavity (12).
4. The battery box processing positioning pin press-fitting equipment capable of detecting electric leakage in real time according to claim 3, characterized in that: The placement cavity (12) is distributed at equal distances from the inside of the storage frame (10), and the storage frame (10) is engaged with the auxiliary frame (9).
5. The battery box processing positioning pin press-fitting equipment capable of detecting electric leakage in real time according to claim 1, characterized in that: Support plates (2) are installed on both sides of the bottom of the conveyor belt (1), and the support plates (2) and the bottom plate (3) are integrated.
6. The battery box processing positioning pin press-fitting equipment capable of detecting electric leakage in real time according to claim 1, characterized in that: The insulating mounting plate (1101) is engaged with the conveyor belt (1), and the length of the insulating mounting plate (1101) is the same as the length of the metal sheet (1104).
7. The battery box processing positioning pin press-fitting equipment capable of detecting electric leakage in real time according to claim 1, characterized in that: Both the fixed rod (19) and the slider (18) are provided in two sets, and the ends of the two sets of fixed rods (19) are fixedly installed with auxiliary frames (9).