A button type super capacitor sealing ring assembly device

By designing a combination device of sieve plate and flip box, the efficient assembly of button-type supercapacitor sealing rings was achieved, solving the problems of high labor intensity and low production efficiency in the existing technology, and improving production efficiency and product consistency.

CN115966416BActive Publication Date: 2026-01-23CHANGXING CHAONENG ELECTRONICS
View PDF 3 Cites 0 Cited by

Patent Information

Application Number
CN202111189428.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-10-12
Publication Date
2026-01-23
Estimated Expiration
2041-10-12

AI Technical Summary

Technical Problem

In the production of button-type supercapacitors, existing technologies suffer from high labor intensity, low production efficiency, and poor product consistency. In particular, the low overall production efficiency occurs when assembling materials such as the positive electrode shell, negative electrode cover, and sealing ring one by one.

Method used

A button-type supercapacitor sealing ring assembly device is designed, including a sieve plate and a flipping box. The sealing ring is embedded into the sieve position in an upright state through the sieve plate, and the sealing ring is flipped to an inverted state by the flipping box and then assembled into a sealing ring tray, realizing efficient whole tray assembly of sealing rings.

Benefits of technology

This improved the assembly efficiency of the sealing rings, ensured ease of operation and assembly accuracy, and enhanced the overall production efficiency and product consistency.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN115966416B_ABST
    Figure CN115966416B_ABST
Patent Text Reader

Abstract

A kind of button type supercapacitor sealing ring assembly device, including sieve plate and turnover box.The core component of sieve plate is sieve site.The structure design of sieve site makes the components of sealing ring in upright state closely fit the corresponding components of sieve site, and makes sieve plate do fast reciprocating motion in horizontal direction during sieve ring process, and sealing ring in upright state will be completely embedded in sieve site, to realize the screening of sealing ring position state.Insert sieve plate completing sieve ring process into turnover box, and insert 3 sealing ring trays with the side of sealing ring assembly site downward into turnover box, then overturn turnover box as a whole, and all sealing rings will fall into the assembly site of sealing ring tray in inverted way, to complete the assembly of 3 trays of sealing ring at one time.The present application has the characteristics of simple structure, accurate alignment and high assembly efficiency.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of super capacitor manufacturing, in particular to a sealing ring assembling device for button-type super capacitor. BACKGROUND

[0002] The button-type super capacitor production has the characteristics of large quantity and small size. In the initial stage of super capacitor production, the button-type super capacitor is assembled by hand, and the positive shell, negative cover and sealing ring are assembled one by one to form a capacitor. The obvious disadvantage of this production method is high labor intensity, low production efficiency and poor product consistency. With the progress of technology, production enterprises gradually use machines to replace manual production, but still use the one-by-one assembling method, so the production efficiency needs to be further improved. If the positive shell, negative cover and sealing ring can be assembled into a material tray first, and then the materials are assembled in an entire tray, the production efficiency will be greatly improved. However, the prerequisite for the entire tray production is to assemble the materials into the material tray. If the materials are assembled into the material tray one by one, the material assembling efficiency is low, which leads to the decrease of the total production efficiency. SUMMARY

[0003] The present application is a sealing ring assembling device for button-type super capacitor, which can assemble the sealing ring into three sealing ring trays at one time while meeting the convenience of operation.

[0004] The button-type super capacitor is produced in an entire tray, and the sealing ring is assembled into the sealing ring tray in an inverted manner. However, the structure of the sealing ring determines that the sealing ring cannot be assembled into the sealing ring tray in an inverted manner at one time, otherwise the sealing ring in the sealing ring tray will be in both upright and inverted positions. Therefore, the present application first assembles all the sealing rings into the screen plate in an upright state, and then transfers them to the sealing ring tray after being inverted by the turnover box. In this way, the sealing ring is assembled into the sealing ring tray in an inverted state.

[0005] The technical scheme of the present application is a sealing ring assembling device for button-type super capacitor, which includes a screen plate (1) and a turnover box (2). The screen plate (1) includes a holding area (11), two limiting areas (12) and three screen ring areas (13). The screen ring area (13) includes screen positions (131) arranged in an array. The screen position (131) includes a plate body (1311), a ring table (1312), a circular table (1313), an outer groove (1314), an inner groove (1315) and a top groove (1316). The turnover box (2) includes a bottom plate (21), a screen plate limiting frame (22), a tray plate limiting frame (23) and a top plate (24) from bottom to top.

[0006] In the structure, the length and width of the screen ring area (13) are the same as the length and width of the sealing ring tray (4), and the number and arrangement of the screen positions (131) are the same as the number and arrangement of the sealing ring assembly positions on the sealing ring tray (4).

[0007] In the structure, the width of the outer groove (1314) is equal to the thickness of the outer wall (33) of the sealing ring, and the depth of the outer groove (1314) is equal to the height of the outer wall (33) of the sealing ring.

[0008] In the structure, the width of the inner groove (1315) is equal to the thickness of the inner wall (32) of the sealing ring, and the depth of the inner groove (1315) is equal to the height of the inner wall (32) of the sealing ring.

[0009] In the structure, the width of the top groove (1316) is equal to the width of the top ring (31) of the sealing ring, and the depth of the top groove (1316) is equal to the thickness of the top ring (31) and the height difference between the top of the ring platform (1312) and the top of the circular platform (1313). The top of the circular platform (1313) is flush with the upper surface of the screen plate (1).

[0010] In the structure, the screen plate limiting frame (22) includes screen plate side stops (221) and screen plate back stops (222). The distance between the screen plate side stops (221) is equal to the length of the screen plate (1), and the thickness of the screen plate side stops (221) and the screen plate back stops (222) is equal to the thickness of the screen plate (1).

[0011] In the structure, the disc plate limiting frame (23) includes disc plate side stops (231) and disc plate back stops (232). The distance between the disc plate side stops (231) is equal to three times the width of the sealing ring tray (4), and the thickness of the disc plate side stops (231) and the disc plate back stops (232) is equal to the thickness of the sealing ring tray (4).

[0012] In the structure, the inner width of the screen plate limiting frame (22) and the disc plate limiting frame (23) is less than the length of the sealing ring tray (4).

[0013] The advantages and effects of the present application are that the screen plate has three screen ring areas, and the sealing ring can be assembled into the assembly positions of three sealing ring trays at one time with the help of the turnover box, which is convenient to operate and has high assembly efficiency.

[0014] The special structure of the screen position on the screen plate allows the sealing ring to be embedded in the screen position in an upright state, and the components of the sealing ring can be closely fitted with the corresponding components of the screen position to prevent displacement. Sealing rings in inverted or other positions cannot be embedded in the screen position, ensuring the accuracy of the screen ring process.

[0015] The structure design of the turnover box can accurately position the sealing ring tray and the screen ring area, and prevent relative displacement between the sealing ring tray and the screen ring area during the turnover process, ensuring accurate and efficient turnover of the sealing ring. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 Schematic diagram of screen plate structure.

[0017] Figure 2 Schematic diagram of screen position structure.

[0018] Figure 3 Sectional view of screen position.

[0019] Figure 4 Schematic diagram of sealing ring structure.

[0020] Figure 5 Radial sectional view of sealing ring in upright state.

[0021] Figure 6 Schematic diagram of structure of each part of turnover box.

[0022] Figure 7 Schematic diagram of overall structure of turnover box.

[0023] Figure 8 Position relationship diagram of screen plate and turnover box.

[0024] Figure 9 Position relationship diagram of screen plate, sealing ring tray and turnover box.

[0025] In the drawings: 1-screen plate; 11-holding area; 12-limiting area; 13-screen ring area; 131-screen position; 1311-plate body; 1312-ring table; 1313-circular table; 1314-outer groove; 1315-inner groove; 1316-top groove; 2-turnover box; 21-bottom plate; 22-screen plate limiting frame; 221-screen plate side stop; 222-screen plate back stop; 23-disk plate limiting frame; 231-disk plate side stop; 232-disk plate back stop; 24-top plate; 3-sealing ring; 31-top ring; 32-inner wall; 33-outer wall; 4-sealing ring tray. DETAILED DESCRIPTION

[0026] The application will be further described below in conjunction with the drawings and specific embodiments.

[0027] The sealing ring assembly process includes two steps of screen ring and sealing ring turnover. The screen ring is to embed the sealing ring (3) in the screen position (131) of the screen ring area (13) in the upright state through the screen plate (1). The sealing ring turnover is to use the turnover box (2) to turn over the sealing ring (3) in the upright state in the three screen ring areas (13) and load it into the sealing ring assembly position of the sealing ring tray (4).

[0028] As Figure 1As shown, the screen plate (1) includes a holding area (11), two limiting areas (12) and three screen ring areas (13); the holding area (11) is used for holding the screen plate (1) with both hands during the screen ring process, so that the screen plate (1) makes reciprocating motion in the horizontal plane, and is used for inserting and withdrawing the screen plate (1) into and out of the turnover box (2) during the turnover process of the sealing ring (3).

[0029] The limiting area (12) is mainly used for limiting the vertical direction of the screen plate (1) during the insertion of the screen plate (1) into the turnover box (2), so as to prevent the screen plate (1) from tilting when the screen plate (1) is inserted into the turnover box (2) and the sealing ring tray (4) has not been inserted into the turnover box (2).

[0030] The screen plate (1) is provided with three screen ring areas (13), so that three sealing ring trays (4) can be assembled at one time, so as to maximize the assembly efficiency, and at the same time, the screen plate (1) is not too large in size and is not convenient to operate. The length and width of the screen ring area (13) are the same as the length and width of the sealing ring tray (4), so that the three screen ring areas (13) can be accurately aligned with the three sealing ring trays (4) during the later turnover.

[0031] The most core component of the screen plate (1) is the screen position (131). The screen position (131) is the nesting position of the sealing ring (3) on the screen plate (1). The screen position (131) ensures that the sealing ring (3) can only be embedded in a vertical state, and the sealing ring (3) in other position states cannot be embedded, thereby playing a role in screening the position state of the sealing ring (3). The screen position (131) and the sealing ring assembly position on the sealing ring tray (4) have the same number and arrangement, so that the sealing ring (3) in the screen position (131) can accurately fall into the sealing ring assembly position on the sealing ring tray (4) during the later turnover.

[0032] As shown in Figure 2 and Figure 3 , the screen position (131) includes a plate body (1311), a ring table (1312), a circular table (1313), an outer groove (1314), an inner groove (1315) and a top groove (1316).

[0033] As shown in Figure 4 and Figure 5 , the sealing ring (3) includes a top ring (31), an inner wall (32) and an outer wall (33).

[0034] The screen position (131) requires that the sealing ring (3) can be embedded in a vertical state during the position screening process of the sealing ring (3), and each part of the structure of the sealing ring (3) can be closely attached to the corresponding structure of the screen position (131).

[0035] The outer groove (1314) is used to nest the outer wall (33) of the sealing ring (3), thus the width of the outer groove (1314) is equal to the thickness of the outer wall (33) of the sealing ring, and the depth of the outer groove (1314) is equal to the height of the outer wall (33) of the sealing ring.

[0036] The inner groove (1315) is used to nest the inner wall (32) of the sealing ring (3), thus the width of the inner groove (1315) is equal to the thickness of the inner wall (32) of the sealing ring, and the depth of the inner groove (1315) is equal to the height of the inner wall (32) of the sealing ring.

[0037] The top groove (1316) is used to nest the top ring (31) of the sealing ring (3), thus the width of the top groove (1316) is equal to the width of the top ring (31) of the sealing ring, and the depth of the top groove (1316) is equal to the thickness of the top ring (31).

[0038] The ring table (1312) is used to support the bottom of the top ring (31), in order to make the upper surface of the top ring (31) flush with the upper surface of the sieve plate (1), the depth of the top groove (1316) is also equal to the height difference between the top of the ring table (1312) and the top of the circular table (1313), and the top of the circular table (1313) is flush with the upper surface of the sieve plate (1).

[0039] As shown in Figure 6 and Figure 7 , the turnover box (2) includes a bottom plate (21), a sieve plate limiting frame (22), a disc plate limiting frame (23), and a top plate (24) from bottom to top.

[0040] The sieve plate limiting frame (22) includes sieve plate side stops (221) and sieve plate back stops (222). The distance between the sieve plate side stops (221) is equal to the length of the sieve plate (1), limiting the sieve plate (1) in the length direction. The thickness of the sieve plate side stops (221) and the sieve plate back stops (222) is equal to the thickness of the sieve plate (1), limiting the sieve plate (1) in the thickness direction.

[0041] The disc plate limiting frame (23) includes disc plate side stops (231) and disc plate back stops (232). The distance between the disc plate side stops (231) is 3 times the width of the sealing ring tray (4), so that 3 sealing ring trays (4) can be inserted into the disc plate limiting frame (23). The thickness of the disc plate side stops (231) and the disc plate back stops (232) is equal to the thickness of the sealing ring tray (4), limiting the sealing ring tray (4) in the thickness direction.

[0042] In order to make the sealing ring tray (4) still partially exposed in the length direction after being inserted into the turnover box (2), facilitating the extraction of the sealing ring tray (4) after the end of the turnover process, the inner width of the sieve plate limiting frame (22) and the disc plate limiting frame (23) is less than the length of the sealing ring tray (4).

[0043] Specific operating method: With the side of the sieve plate (1) with the sieve position (131) facing upwards, pour a certain amount of sealing rings (3) onto the sieve plate (1). Hold the gripping area (11) of the sieve plate (1) with both hands and quickly move the sieve plate (1) back and forth in all directions in the horizontal plane. The sealing rings (3) in the upright position will be embedded in the sieve position (131) due to the back and forth movement of the sieve plate (1). The sealing rings (3) in the inverted or other positions will not be embedded. Slightly tilt the sieve plate (1) so that the sealing rings (3) that cannot be embedded in the sieve position (131) slide down into the sealing ring storage container. Pour sealing rings (3) onto the sieve plate (1) again and repeat the above sieve ring process until all sieve positions (131) on the sieve plate (1) are nested with sealing rings (3), thus completing the sieve ring process.

[0044] Insert the sieve plate (1) into the sieve plate limiting frame (22) of the flip box (2) (as shown in the image). Figure 8 As shown), place the three blank sealing ring trays (4) with the assembled side facing down and insert them into the tray plate limiting frame (23) (as shown). Figure 9 As shown), at this time, the three sealing ring trays (4) will be accurately aligned with the three screen ring areas (13) of the screen plate (1). Turn the flip box (2) over as a whole and tap the top plate (24). The sealing rings (3) in all the screen positions (131) of the three screen ring areas (13) will fall into the assembly positions of the three sealing ring trays (4) in an inverted state, completing the assembly process of the sealing rings (3).

Claims

1. A button-type supercapacitor sealing ring assembly device, characterized in that... The device includes a sieve plate (1) and a flipping box (2). The sieve plate (1) includes a gripping area (11), two limiting areas (12) and three sieve ring areas (13). The sieve ring areas (13) include sieve positions (131) arranged in an array. Each sieve position (131) includes a plate body (1311), a ring platform (1312), a frustum (1313), an outer groove (1314), an inner groove (1315) and a top groove (1316). The flipping box (2) includes, from bottom to top, a bottom plate (21), a sieve plate limiting frame (22), a disc plate limiting frame (23) and a top plate (24). The width of the outer groove (1314) is equal to the thickness of the outer wall (33) of the sealing ring, and the depth of the outer groove (1314) is equal to the height of the outer wall (33) of the sealing ring; The width of the inner groove (1315) is equal to the thickness of the inner wall (32) of the sealing ring, and the depth of the inner groove (1315) is equal to the height of the inner wall (32) of the sealing ring; The width of the top groove (1316) is equal to the width of the top ring (31) of the sealing ring; the depth of the top groove (1316) is equal to the thickness of the top ring (31), and is also equal to the height difference between the top of the ring platform (1312) and the top of the truncated cone (1313); the top of the truncated cone (1313) is flush with the upper surface of the sieve plate (1).

2. The button-type supercapacitor sealing ring assembly device according to claim 1, characterized in that... The length and width of the screen ring area (13) are the same as the length and width of the sealing ring tray (4), and the number and arrangement of the screen position (131) and the sealing ring assembly position on the sealing ring tray (4) are the same.

3. The button-type supercapacitor sealing ring assembly device according to claim 1, characterized in that... The screen plate limiting frame (22) includes a screen plate side guard (221) and a screen plate back guard (222). The distance between the screen plate side guards (221) is equal to the length of the screen plate (1), and the thickness of the screen plate side guards (221) and the screen plate back guard (222) is equal to the thickness of the screen plate (1).

4. The button-type supercapacitor sealing ring assembly device according to claim 1, characterized in that... The plate limiting frame (23) includes a plate side guard (231) and a plate back guard (232). The distance between the plate side guards (231) is equal to 3 times the width of the sealing ring tray (4). The thickness of the plate side guards (231) and the plate back guard (232) is equal to the thickness of the sealing ring tray (4).

5. The button-type supercapacitor sealing ring assembly device according to claim 1, characterized in that... The inner width of the sieve plate limiting frame (22) and the disc plate limiting frame (23) is smaller than the length of the sealing ring tray (4).

Citation Information

Patent Citations

  • Supercapacitor negative electrode cover assembling device

    CN209388896U

  • Efficient chip mounting device for chip type ceramic dielectric capacitor

    CN209929153U

  • Button type super capacitor sealing ring assembling device

    CN216250433U