Pole shaping device for solid-state battery

Through the improved pole column shaping device, the shaping push block pushes the pole column to the concentric position by using the sliding combination of the angle limiting column and the arc-shaped connecting hole, and the cylinder drives the chain to operate simultaneously, solving the problems of complex structure and poor versatility of the existing device, and achieving high-precision and versatility of the pole column shaping effect.

CN120527480AActive Publication Date: 2025-08-22ANHUI LEVINENG POWER BATTERY CO LTD
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Patent Information

Application Number
CN202510657407.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-21
Publication Date
2025-08-22
Estimated Expiration
2045-05-21

AI Technical Summary

Technical Problem

The existing pole column shaping device for solid-state batteries requires the coordinated operation of multiple cylinders, resulting in complex structures, easy to generate position errors, reduce positioning accuracy, affect the shaping effect, and poor versatility, making it unable to adapt to changes in battery specifications.

Method used

It adopts components such as assembly motherboard, plastic shaping plate, debugging screw, reverse chain ring, plastic shaping push block, transmission link, cylinder, chain, transmission connecting block, guide stapling, movable strip, tensioning wheel and positioning bolts. Through the angle limiting column and the arc connecting hole, the rotation angle of the chain ring is defined. The plastic shaping push block pushes the pole column to a concentric position. The cylinder drives the chain to operate simultaneously, realizes synchronous shaping of the pole column, and adapts to different models of batteries by adjusting the spacing between the plastic shaping plates.

Benefits of technology

It realizes high-precision shaping of solid-state battery pole, has excellent universal performance, can adapt to the plastic surgery needs of different models of batteries, and ensures the assembly effect of subsequent sealing rings and covers.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a pole shaping device for a solid-state battery, and relates to the technical field of solid-state battery manufacturing. Two shaping plates are mounted at the top of the assembly main plate, a debugging screw rod is connected to the bottom of the assembly main plate, and the debugging screw rod is connected with one shaping plate; the top of the shaping plate is connected with a clockwise and anticlockwise chain ring, five shaping push blocks are installed on the top of the shaping plate in a surrounding mode, and transmission connecting rods are connected outside the shaping push blocks. According to different models of solid-state batteries, adaptive adjustment can be carried out, the spacing distance between the centers of the two shaping holes is changed, the shaping device is better suitable for shaping use requirements of different models of solid-state battery poles, and the shaping device has excellent universality. The problems that in the design stage, an existing pole shaping device for the solid-state battery is customized for a single-specification solid-state battery, only pole shaping work of a specific-specification battery can be adapted, and once the specification of the battery is changed, the device cannot effectively play a role are solved.
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Description

Technical Field

[0001] The present invention relates to the technical field of solid-state battery manufacturing, and in particular to a pole shaping device for solid-state batteries. Background Art

[0002] The battery consists of a shell and a pole group inside the shell. The pole group needs to be cast-welded to form a lead path for conducting current and positive and negative poles. During the battery production process, after the battery is cast-welded, the battery poles are often deflected due to transportation and transfer, affecting the subsequent assembly of the sealing ring and the cover.

[0003] For example, Chinese invention CN111162238B discloses a lead-acid battery terminal pole shaping device, including a conveyor belt, a guide baffle, a lifting mechanism and a shaping mechanism, the lifting mechanism is used to lift the lead-acid battery off the conveyor belt; the shaping mechanism includes a shaping push plate, the shaping push plate includes two groups corresponding to the positive and negative terminal poles, each group of shaping push plates includes four pieces for horizontally pushing the top terminal pole from four directions; the lead-acid battery terminal pole shaping device conveys the lead-acid battery through the conveyor belt, and then the guide baffle limits the lead-acid battery in the vertical conveying direction, the lead-acid battery is lifted by the lifting plate, and the baffle limits the lead-acid battery along the conveying direction, and then the shaping mechanism shapes the lead-acid battery terminal pole, and the four shaping push plates push the terminal pole from four different directions, so that the position of the terminal pole on the lead-acid battery does not shift, which is convenient for the subsequent automatic insertion of the O-ring and the automatic welding connection terminal.

[0004] During the application of the existing pole shaping device for solid-state batteries, multiple cylinders are required to work together to complete the pole shaping. The complex multi-cylinder structure makes the overall architecture redundant, which is very prone to position errors and reduces positioning accuracy, thereby affecting the pole shaping effect. The quality of the finished product is unstable and the versatility is extremely poor. The device is tailored for a single specification of solid-state batteries during the design stage and can only adapt to the pole shaping work of batteries of a specific specification. Once the battery specifications change, the device will not be able to function effectively and it will be difficult to meet actual production needs. Summary of the Invention

[0005] The present invention relates to a pole shaping device for solid-state batteries, which solves the problem that the existing pole shaping devices for solid-state batteries need to shape the poles through the actions of multiple cylinders during use, making the overall structure relatively complex and prone to position errors, resulting in reduced positioning accuracy and affecting the overall pole shaping effect.

[0006] The first aspect of the present invention provides a pole shaping device for a solid-state battery, which specifically includes: an assembly mainboard, a shaping plate, a debugging screw, a forward and reverse chain ring, a shaping push block, a transmission connecting rod, a cylinder, a chain, a transmission connecting block, a guide fixed piece, a movable strip, a tensioning wheel and a positioning bolt; two shaping plates are installed on the top of the assembly mainboard, and a debugging screw is connected to the bottom of the assembly mainboard, and the debugging screw is connected to one of the shaping plates; the top of the shaping plate is connected to the forward and reverse chain rings, and five shaping push blocks are installed around the top of the shaping plate, and the shaping push blocks are externally connected to the transmission connecting rod, and the forward and reverse chain rings are connected to the five shaping push blocks through the transmission connecting rod; the top of the assembly mainboard is fixedly mounted with a cylinder, the forward and reverse chain rings are externally connected with a chain, the chain is externally connected with a transmission connecting block, and the transmission connecting block is connected to the cylinder; the top of the assembly mainboard is fixedly mounted with a guide fixed piece, the bottom of the guide fixed piece is connected to a movable strip, the top of the movable strip is connected to the tensioning wheel, and the inside of the guide fixed piece is connected with a positioning bolt.

[0007] Furthermore, a shaping hole is provided inside the shaping plate, and the shaping push block is rotatably connected to the shaping plate. The rotation angle of the shaping push block is 0 to 60 degrees. The five shaping push blocks are rotated and closed to form a circular hole structure. The aperture of the circular hole is equal to that of the pole, and the aperture of the shaping hole is larger than the aperture of the circular hole.

[0008] Furthermore, a limited angle column is arranged around the top of the shaping plate, and an arc-shaped connecting hole is arranged around the inside of the forward and reverse chain rings. The limited angle column is slidably connected to the arc-shaped connecting hole. One end of the transmission connecting rod is rotationally connected to the forward and reverse chain rings, and the other end of the transmission connecting rod is rotationally connected to the shaping push block. The rotation angle of the forward and reverse chain rings is limited by sliding cooperation between the limited angle column and the arc-shaped connecting hole.

[0009] Furthermore, when the clockwise and counterclockwise chain rings rotate clockwise, the shaping push block rotates outward to open and close, and when the clockwise and counterclockwise chain rings rotate counterclockwise, the shaping push block rotates inward to close. The center position of the two shaping holes is the shaping reset position required for the pole. When the pole is located in the shaping hole, the clockwise and counterclockwise chain rings drive the shaping push block to rotate inward through the transmission connecting rod. The shaping push block contacts the pole, and the shaping push block pushes the pole to move, so that the pole is moved to a position concentric with the shaping hole.

[0010] Furthermore, one of the shaping plates is fixedly connected to the assembly main board, a movable sliding hole is provided inside the other shaping plate, a distance limiting block is provided on the top of the assembly main board, the distance limiting block is slidably connected to the movable sliding hole, the distance limiting block and the movable sliding hole slide together to guide the movement of the shaping plate. The pole spacing distances of different models of solid-state batteries are different. According to the different models of solid-state batteries, one of the shaping plates can be moved and adjusted to change the spacing distance between the two shaping plates, thereby changing the hole center spacing distance of the two shaping holes.

[0011] Furthermore, a screw hole A is provided at the end of the assembly main board, and the debugging screw is threadedly connected to the screw hole A. The end of the debugging screw is rotatably connected to the shaping plate that can be slidably adjusted. By rotating the debugging screw, the debugging screw drives the shaping plate to move, thereby adjusting the distance between the two shaping holes.

[0012] Furthermore, one of the forward and reverse chain rings is connected to the other forward and reverse chain ring through a chain, the piston rod of the cylinder is fixedly connected to the transmission block, the cylinder drives the chain to run through the transmission block, and the chain drives the two forward and reverse chain rings to operate synchronously. When the piston rod of the cylinder extends outward, the chain drives the two forward and reverse chain rings to rotate synchronously clockwise. When the piston rod of the cylinder contracts inward, the chain drives the two forward and reverse chain rings to rotate synchronously counterclockwise.

[0013] Furthermore, the movable strip is slidingly connected to the guide fixed piece, the tensioning wheel is rotatably connected to the movable strip, the tensioning wheel is connected to the chain transmission, a screw hole B is provided on the top of the guide fixed piece, the positioning bolt is threadedly connected to the inside of the screw hole B, and the end of the positioning bolt contacts the top side of the movable strip. After the shaping plate is adjusted, the spacing between the two forward and reverse chain rings changes, and the movable strip can be moved and adjusted to make the tensioning wheel connected to the chain transmission, so that the chain is in a taut and stressed state.

[0014] The present invention provides a pole shaping device for solid-state batteries, which has the following beneficial effects:

[0015] When the present invention is in use, the rotation angle of the forward and reverse chain rings is limited by the sliding cooperation between the angle limiting column and the arc-shaped connecting hole; the center position of the two shaping holes is the required shaping and reset position of the pole, and when the pole is located in the shaping hole, the forward and reverse chain rings drive the shaping push block to rotate inward through the transmission connecting rod, and the shaping push block contacts the pole, and the shaping push block pushes the pole to move, so that the pole is moved to a position concentric with the shaping hole, thereby achieving a shaping effect on the solid-state battery pole, so as to facilitate the subsequent assembly of the sealing ring and the cover.

[0016] In addition, the distance limit block slides in conjunction with the movable sliding hole to guide the movement of the shaping plate, thereby limiting the movement and adjustment distance of the shaping plate. The pole spacing distances of different types of solid-state batteries are different. According to the different types of solid-state batteries, one of the shaping plates can be moved and adjusted to change the spacing distance between the two shaping plates, thereby changing the hole center spacing distance of the two shaping holes. This is more suitable for the use of pole shaping of different types of solid-state batteries and has excellent universal performance.

[0017] In addition, by rotating the debugging screw, the debugging screw drives the shaping plate to move, thereby achieving the effect of adjusting the spacing between the two shaping holes; the cylinder drives the chain to run through the transmission block, and the chain drives the two forward and reverse chain rings to operate synchronously, thereby ensuring the synchronous shaping effect of the two poles of the solid-state battery; when the piston rod of the cylinder extends outward, the chain drives the two forward and reverse chain rings to rotate synchronously clockwise, thereby achieving the synchronous shaping operation of the two poles; when the piston rod of the cylinder contracts inward, the chain drives the two forward and reverse chain rings to rotate synchronously counterclockwise, and the shaping push block is separated from the pole, so that the pole shaping operation of the next solid-state battery can be carried out; after the shaping plate is adjusted, the spacing between the two forward and reverse chain rings changes, and the movable strip plate can be moved and adjusted to connect the tensioning wheel to the chain transmission, and the chain is in a taut and stressed state to ensure the transmission effect of the chain and the two forward and reverse chain rings, and tighten the positioning bolt so that the end of the positioning bolt contacts the movable strip plate, and the movable strip plate is fixed by the positioning bolt to ensure the stability of the tensioning wheel in the state.

[0018] Other advantages, objectives and features of the present invention will be reflected in part through the following description, and in part will be understood by those skilled in the art through study and practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings of the embodiments are briefly introduced below.

[0020] The drawings described below only relate to some embodiments of the present invention, but are not intended to limit the present invention.

[0021] In the attached figure:

[0022] Figure 1 A schematic diagram of the overall top axial structure of the pole shaping device for solid-state batteries of the present application is shown;

[0023] Figure 2 A schematic diagram of the overall bottom axis structure of the pole shaping device for solid-state batteries of the present application is shown;

[0024] Figure 3 A schematic diagram showing the disassembly structure of the assembly main board and the shaping board of the pole shaping device for solid-state batteries of the present application is shown;

[0025] Figure 4 A schematic diagram of the top axis side structure of the assembly mainboard of the pole shaping device for solid-state batteries of the present application is shown;

[0026] Figure 5 A schematic diagram of the axial structure of the pole shaping device for solid-state batteries of the present application is shown, with the shaping push block rotating inward;

[0027] Figure 6A schematic diagram of the shaft-side structure of the pole shaping device for solid-state batteries of the present application is shown, with the shaping push block rotating outward;

[0028] Figure 7 A schematic diagram of the split structure of the shaping plate and the forward and reverse chain rings of the pole shaping device for solid-state batteries of the present application is shown;

[0029] Figure 8 A schematic diagram of the disassembled structure of the guide fixed member, movable strip plate and positioning bolt of the pole shaping device for solid-state batteries of the present application is shown.

[0030] Reference numerals:

[0031] 1. Assemble the main board; 101. Limit block; 102. Screw hole A; 2. Shaping plate; 201. Shaping hole; 202. Angle limit column; 203. Movable sliding hole; 3. Debugging screw; 4. Clockwise and counterclockwise chain rings; 401. Arc-shaped connecting hole; 5. Shaping push block; 6. Transmission connecting rod; 7. Cylinder; 8. Chain; 9. Transmission connecting block; 10. Guide fixed piece; 1001. Screw hole B; 11. Movable strip plate; 12. Tensioner; 13. Positioning bolt. DETAILED DESCRIPTION

[0032] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions of the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the described embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0033] Please refer to Figures 1 to 8 :Example 1:

[0034] The present invention proposes a pole shaping device for solid-state batteries, comprising: an assembly mainboard 1, a shaping plate 2, a debugging screw 3, a forward and reverse chain ring 4, a shaping push block 5, a transmission connecting rod 6, a cylinder 7, a chain 8, a transmission connecting block 9, a guide fixed piece 10, a movable strip plate 11, a tensioning wheel 12 and a positioning bolt 13; two shaping plates 2 are installed on the top of the assembly mainboard 1, and a debugging screw 3 is connected to the bottom of the assembly mainboard 1, and the debugging screw 3 is connected to one of the shaping plates 2; the top of the shaping plate 2 is connected to the forward and reverse chain ring 4, and the top of the shaping plate 2 is surrounded by a There are five shaping push blocks 5, the shaping push blocks 5 are externally connected to the transmission connecting rod 6, the forward and reverse chain rings 4 are connected to the five shaping push blocks 5 through the transmission connecting rod 6; a cylinder 7 is fixedly installed on the top of the assembly main board 1, the forward and reverse chain rings 4 are externally connected to the chain 8, the chain 8 is externally connected to the transmission connecting block 9, and the transmission connecting block 9 is connected to the cylinder 7; a guide fixed piece 10 is fixedly installed on the top of the assembly main board 1, the bottom of the guide fixed piece 10 is connected to a movable strip plate 11, the top of the movable strip plate 11 is connected to a tensioning wheel 12, and the inside of the guide fixed piece 10 is connected to a positioning bolt 13.

[0035] In this embodiment, a shaping hole 201 is provided inside the shaping plate 2, and the shaping push block 5 is rotatably connected to the shaping plate 2. The rotation angle of the shaping push block 5 is 0 to 60 degrees. The five shaping push blocks 5 are rotated and closed to form a circular hole structure. The aperture of the circular hole is equal to the pole. The aperture of the shaping hole 201 is larger than the aperture of the circular hole. A limited angle column 202 is arranged around the top of the shaping plate 2, and an arc-shaped connecting hole 401 is arranged around the inside of the forward and reverse chain rings 4. The angle-limiting column 202 is slidably connected to the arc-shaped connecting hole 401. One end of the transmission connecting rod 6 is rotatably connected to the forward and reverse chain rings 4, and the other end of the transmission connecting rod 6 is rotatably connected to the shaping push block 5;

[0036] By adopting the above technical solution, the angle limiting column 202 and the arc-shaped connecting hole 401 are slidably matched to limit the rotation angle of the forward and reverse chain rings 4.

[0037] In this embodiment, when the chain ring 4 rotates clockwise, the shaping push block 5 rotates outward to open and close, and when the chain ring 4 rotates counterclockwise, the shaping push block 5 rotates inward to close;

[0038] By adopting the above technical solution, the center positions of the two shaping holes 201 are the required shaping and resetting positions of the pole. When the pole is located in the shaping hole 201, the forward and reverse chain rings 4 drive the shaping push block 5 to rotate inward through the transmission connecting rod 6. The shaping push block 5 contacts the pole and pushes the pole to move through the shaping push block 5, so that the pole is moved to a position concentric with the shaping hole 201, thereby achieving the shaping effect of the solid-state battery pole, so as to facilitate the subsequent assembly of the sealing ring and the cover.

[0039] In this embodiment, one of the shaping plates 2 is fixedly connected to the assembly main board 1, and a movable sliding hole 203 is provided inside the other shaping plate 2. A distance limiting block 101 is provided on the top of the assembly main board 1, and the distance limiting block 101 is slidably connected to the movable sliding hole 203;

[0040] By adopting the above technical solution, the distance limit block 101 slides with the movable sliding hole 203 to guide the movement of the shaping plate 2 and limit the movement adjustment distance of the shaping plate 2; the pole spacing distances of different types of solid-state batteries are different. According to the different types of solid-state batteries, one of the shaping plates 2 can be moved and adjusted to change the spacing distance between the two shaping plates 2, thereby changing the hole center spacing distance of the two shaping holes 201, which is better suitable for the use of different types of solid-state battery pole shaping needs and has excellent universal performance.

[0041] In this embodiment, a screw hole A102 is provided at the end of the assembly main board 1, and the debugging screw 3 is threadedly connected to the screw hole A102. The end of the debugging screw 3 is rotatably connected to the shaping plate 2 that can be slidably adjusted;

[0042] By adopting the above technical solution, by rotating the debugging screw 3, the debugging screw 3 drives the shaping plate 2 to move, thereby achieving the effect of adjusting the distance between the two shaping holes 201.

[0043] In this embodiment, one of the forward and reverse chain rings 4 is connected to the other forward and reverse chain ring 4 through a chain 8, and the piston rod of the cylinder 7 is fixedly connected to the transmission block 9;

[0044] By adopting the above technical solution, the cylinder 7 drives the chain 8 to run through the transmission connecting block 9, and the chain 8 drives the two forward and reverse chain rings 4 to operate synchronously, thereby ensuring the synchronous shaping effect of the two poles of the solid-state battery; when the piston rod of the cylinder 7 extends outward, the chain 8 drives the two forward and reverse chain rings 4 to rotate synchronously clockwise, thereby realizing the synchronous shaping operation of the two poles; when the piston rod of the cylinder 7 contracts inward, the chain 8 drives the two forward and reverse chain rings 4 to rotate synchronously counterclockwise, and the shaping push block 5 is separated from the pole, and the pole shaping operation of the next solid-state battery can be carried out.

[0045] Example 2, based on Example 1, the movable strip 11 is slidably connected to the guide fixed member 10, the tensioning wheel 12 is rotatably connected to the movable strip 11, the tensioning wheel 12 is transmission-connected to the chain 8, a screw hole B1001 is provided on the top of the guide fixed member 10, a positioning bolt 13 is threadedly connected to the inside of the screw hole B1001, and the end of the positioning bolt 13 is in contact with the top side of the movable strip 11;

[0046] By adopting the above technical solution, after the shaping plate 2 is adjusted, the distance between the two forward and reverse chain rings 4 changes, and the movable strip plate 11 can be moved and adjusted to make the tensioning wheel 12 connected to the chain 8 in transmission. The chain 8 is in a taut and stressed state to ensure the transmission effect of the chain 8 and the two forward and reverse chain rings 4, and tighten the positioning bolt 13 so that the end of the positioning bolt 13 contacts the movable strip plate 11. The movable strip plate 11 is fixed by the positioning bolt 13 to ensure the stability of the tensioning wheel 12 in the state it is in.

[0047] The working principle of this embodiment is as follows: first, according to the pole spacing distance of the solid-state battery of this model, the debugging screw 3 is rotated, and the debugging screw 3 drives the shaping plate 2 to move, thereby changing the spacing distance between the two shaping plates 2, thereby changing the hole center spacing distance of the two shaping holes 201, which is better suitable for the shaping of different models of solid-state battery poles; after the shaping plate 2 is adjusted, the spacing between the two forward and reverse chain rings 4 is changed, and the movable strip plate 11 is moved and adjusted to make the tensioning wheel 12 connected to the chain 8 in a transmission connection, and the chain 8 is in a taut stress state to ensure the transmission effect of the chain 8 and the two forward and reverse chain rings 4; and tighten the positioning bolt 13 so that the end of the positioning bolt 13 contacts the movable strip plate 11, and the movable strip plate 11 is fixed by the positioning bolt 13 to ensure the tensioning wheel 12 Stability in the state; the center position of the two shaping holes 201 is the required shaping reset position of the pole. When the pole of the solid-state battery is located in the shaping hole 201, the piston rod of the cylinder 7 extends outward, and the chain 8 drives the two forward and reverse chain rings 4 to rotate synchronously clockwise. The forward and reverse chain rings 4 drive the shaping push block 5 to rotate inward through the transmission connecting rod 6. The shaping push block 5 contacts the pole and pushes the pole to move through the shaping push block 5, so that the pole is moved to a position concentric with the shaping hole 201, thereby achieving the shaping effect of the solid-state battery pole, so as to facilitate the subsequent assembly of the sealing ring and the cover; the piston rod of the cylinder 7 contracts inward, and the chain 8 drives the two forward and reverse chain rings 4 to rotate synchronously counterclockwise, and the shaping push block 5 is separated from the pole, and the pole shaping operation of the next solid-state battery can be carried out.

[0048] In this article, there are several points to note:

[0049] 1. The drawings of the embodiments of the present invention only relate to the structures related to the embodiments of the present invention. Other structures may refer to conventional designs.

[0050] 2. In the absence of conflict, the embodiments of the present invention and the features therein may be combined with each other to form new embodiments.

[0051] The above are merely specific embodiments of the present invention, but the scope of protection of the present invention is not limited thereto. Any modifications or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in the present invention should be included within the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be based on the scope of protection of the claims.

Claims

1. A pole shaping device for a solid-state battery, comprising: The assembly main board (1), the shaping plate (2), the debugging screw (3), the forward and reverse chain ring (4), the shaping push block (5), the transmission connecting rod (6), the cylinder (7), the chain (8), the transmission connecting block (9), the guide fixed piece (10), the movable strip plate (11), the tension wheel (12) and the positioning bolt (13); characterized in that two shaping plates (2) are installed on the top of the assembly main board (1), the debugging screw (3) is connected to the bottom of the assembly main board (1), and the debugging screw (3) is connected to one of the shaping plates (2); the top of the shaping plate (2) is connected to the forward and reverse chain ring (4), and five shaping push blocks (5) are installed around the top of the shaping plate (2). ), the shaping push block (5) is externally connected to a transmission connecting rod (6), and the forward and reverse chain rings (4) are connected to the five shaping push blocks (5) through the transmission connecting rod (6); a cylinder (7) is fixedly installed on the top of the assembly main board (1), the forward and reverse chain rings (4) are externally connected to a chain (8), the chain (8) is externally connected to a transmission connecting block (9), and the transmission connecting block (9) is connected to the cylinder (7); a guide fixed piece (10) is fixedly installed on the top of the assembly main board (1), the bottom of the guide fixed piece (10) is connected to a movable strip (11), the top of the movable strip (11) is connected to a tensioning wheel (12), and the inside of the guide fixed piece (10) is connected to a positioning bolt (13).

2. The pole shaping device for solid-state batteries according to claim 1, characterized in that: A shaping hole (201) is provided inside the shaping plate (2), and the shaping push block (5) is rotatably connected to the shaping plate (2). The shaping push block (5) has a rotation angle of 0 to 60 degrees. The five shaping push blocks (5) form a circular hole structure in a rotationally closed state. The aperture of the circular hole is equal to that of the pole, and the aperture of the shaping hole (201) is larger than the aperture of the circular hole.

3. The pole shaping device for solid-state batteries according to claim 1, characterized in that: A limited angle column (202) is arranged around the top of the shaping plate (2), an arc-shaped connecting hole (401) is arranged around the interior of the forward and reverse chain rings (4), the limited angle column (202) is slidably connected to the arc-shaped connecting hole (401), one end of the transmission connecting rod (6) is rotationally connected to the forward and reverse chain rings (4), and the other end of the transmission connecting rod (6) is rotationally connected to the shaping push block (5).

4. The pole shaping device for solid-state batteries according to claim 3, characterized in that: When the clockwise and counterclockwise chain rings (4) rotate clockwise, the shaping push block (5) rotates outward to open and close; when the clockwise and counterclockwise chain rings (4) rotate counterclockwise, the shaping push block (5) rotates inward to close.

5. The pole shaping device for solid-state batteries according to claim 1, characterized in that: One of the shaping plates (2) is fixedly connected to the assembly main board (1), a movable sliding hole (203) is provided inside the other shaping plate (2), a distance limiting block (101) is provided on the top of the assembly main board (1), and the distance limiting block (101) is slidably connected in the movable sliding hole (203).

6. The pole shaping device for solid-state batteries according to claim 5, characterized in that: The end of the assembly main board (1) is provided with a screw hole A (102), the debugging screw (3) is threadedly connected in the screw hole A (102), and the end of the debugging screw (3) is rotationally connected to the shaping plate (2) that can be slidably adjusted.

7. The pole shaping device for solid-state batteries according to claim 1, characterized in that: One of the forward and reverse chain rings (4) is connected to the other forward and reverse chain ring (4) through a chain (8), and the piston rod of the cylinder (7) is fixedly connected to the transmission connecting block (9).

8. The pole shaping device for solid-state batteries according to claim 7, characterized in that: The movable strip (11) is slidably connected to the guide fixed member (10), the tensioning wheel (12) is rotationally connected to the movable strip (11), the tensioning wheel (12) is transmission-connected to the chain (8), a screw hole B (1001) is provided on the top of the guide fixed member (10), a positioning bolt (13) is threadedly connected to the inside of the screw hole B (1001), and the end of the positioning bolt (13) contacts the top side of the movable strip (11).

Citation Information

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