Sealing structure of aluminum electrolytic capacitor

By designing components such as lifting and adjusting mechanisms, the sealing of capacitors at different heights and the adjustment of wire angles are achieved, solving the problem of the inability to adjust the sealing structure, improving sealing efficiency and uniformity, and preventing capacitor damage.

CN223728614UActive Publication Date: 2025-12-26SUQIAN HUAHONG ELECTRONIC IND CO LTD
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Patent Information

Application Number
CN202423201422.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2025-12-26
Estimated Expiration
2034-12-25

AI Technical Summary

Technical Problem

The existing sealing structure cannot be adjusted for capacitors of different sizes, resulting in low sealing efficiency and uneven wire sealing, which affects the use of capacitors.

Method used

The device employs a lifting mechanism, an adjusting mechanism, a pressing component, a rotating component, and a transmission component to achieve the sealing of capacitors at different heights and the adjustment of wire angles. The operation of each component is controlled by a drive motor and a motor control system.

Benefits of technology

This improves the practicality of the sealing device, adapts to the sealing process of different capacitors, and avoids capacitor damage caused by uneven sealing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a sealing structure of an aluminum electrolytic capacitor, which relates to the technical field of aluminum electrolytic capacitors, and comprises a transmission sleeve, a transmission rod and a transmission plate, by arranging a lifting mechanism, a sliding component and an extrusion assembly, a lifting motor is started to drive a lifting shaft to rotate, so that a lifting gear rotates, and a sliding rack is driven to slide in a first lifting groove; according to the sealing device, the sliding block slides in the second lifting groove, the extrusion air cylinder is started, the extrusion rod moves in the direction away from the extrusion air cylinder, and therefore the extrusion plates fixedly connected with the extrusion rod get close to each other, the wires of the capacitors are sealed, and sealing of the capacitors of different heights is achieved; by arranging the adjusting mechanism, the rotating component, the connecting component and the transmission assembly, the angle of the wire of the capacitor is adjusted, by arranging the lifting mechanism and the adjusting mechanism, the practicability of the sealing device is improved, and the situation that the capacitor is not sealed uniformly and damaged is avoided.
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Description

TECHNICAL FIELD

[0001] The utility model relates to aluminum electrolytic capacitor technical field especially relates to a sealing structure of aluminum electrolytic capacitor. BACKGROUND

[0002] Two conductors close to each other, sandwiching a layer of non-conductive insulating medium, which constitutes a capacitor. When the voltage between the two plates of the capacitor is applied, the capacitor will store electric charge. The capacitance of the capacitor is equal to the amount of charge on a conductive plate and the voltage between the two plates. The basic unit of capacitance is farad. In the circuit diagram, the letter C usually represents the capacitor element. Capacitors play an important role in tuning, bypass, coupling, filtering and other circuits. The tuning circuit of the transistor radio uses it, and the coupling circuit, bypass circuit, etc. of the color TV also uses it. With the rapid development of electronic information technology, the update speed of digital electronic products is getting faster and faster. The production and sales of consumer electronic products such as flat panel TVs, notebook computers and digital cameras continue to grow, driving the growth of the capacitor industry.

[0003] The existing sealing structure needs to press the wire on the capacitor when sealing the capacitor, so as to seal, but the existing sealing structure is fixed and cannot be adjusted according to capacitors of different sizes, so that the practicability of the sealing device is not high, which affects the sealing efficiency of the capacitor. And the wires on the capacitor are irregularly placed when the capacitor is transported, which will make the wire sealing uneven when the wire is extruded, thereby affecting the use of the capacitor, so it needs to be improved. UTILITY MODEL CONTENT

[0004] In view of the defects in the prior art, the purpose of the utility model is to provide a sealing structure of aluminum electrolytic capacitor, which aims at solving the above technical problems.

[0005] In order to achieve the above purpose, the utility model adopts the following technical scheme:

[0006] A sealing structure of aluminum electrolytic capacitor, comprising a frame and a supporting leg, the supporting leg is fixedly connected with the frame; further comprising:

[0007] A drive motor is arranged on the frame and is detachably fixedly connected with the frame;

[0008] A drive shaft is detachably fixedly connected with the output end of the drive motor;

[0009] A first drive wheel is fixedly connected with the drive shaft;

[0010] A drive rod is fixedly connected with the frame;

[0011] A second driving wheel is rotatably connected with the driving rod;

[0012] A driving belt is rotatably connected with the first driving wheel;

[0013] A lifting mechanism is arranged on the frame body and used for adjusting capacitors of different heights;

[0014] An adjusting mechanism is arranged on the frame body and used for adjusting the angle of the capacitor lead.

[0015] Preferably, the lifting mechanism comprises:

[0016] A first lifting plate is arranged on the frame body and fixedly connected with the frame body;

[0017] A plurality of fixing plates are arranged on the first lifting plate and fixedly connected with the first lifting plate;

[0018] A lifting frame is fixedly connected with the fixing plates;

[0019] A lifting motor is fixedly connected with the lifting frame;

[0020] A lifting shaft is detachably fixedly connected with the output end of the lifting motor;

[0021] A lifting gear is fixedly connected with the lifting shaft;

[0022] A sliding component is arranged on the frame body.

[0023] Preferably, the sliding component comprises:

[0024] A second lifting plate is arranged on the frame body and fixedly connected with the frame body;

[0025] A first lifting groove is arranged on the first lifting plate;

[0026] A second lifting groove is arranged on the second lifting plate;

[0027] A sliding rack is arranged in the first lifting groove and slidably connected with the first lifting groove, and is engaged with the lifting gear;

[0028] A sliding block is slidably connected with the second lifting groove;

[0029] A sliding plate has one end fixedly connected with the sliding rack and the other end fixedly connected with the sliding block;

[0030] A pressing assembly is arranged on the sliding rack.

[0031] Preferably, the pressing assembly comprises:

[0032] The extrusion cylinder is arranged on the sliding rack and fixedly connected with the sliding rack.

[0033] The extrusion rod is slidably connected with the extrusion cylinder.

[0034] The extrusion plate is fixedly connected with the extrusion rod.

[0035] Preferably, the adjusting mechanism comprises:

[0036] The adjusting frame is arranged on the frame and fixedly connected with the frame.

[0037] The detection block is arranged on the adjusting frame and detachably fixedly connected with the adjusting frame.

[0038] The adjusting box is fixedly connected with the adjusting frame.

[0039] The adjusting motor is fixedly connected with the adjusting box.

[0040] The adjusting shaft is detachably fixedly connected with the output end of the adjusting motor.

[0041] The rotating part is arranged on the adjusting shaft.

[0042] Preferably, the rotating part comprises:

[0043] The rotating disc is fixedly connected with the adjusting shaft.

[0044] The rotating shaft is eccentrically arranged on the rotating disc and fixedly connected with the rotating disc.

[0045] The rotating plate is rotatably connected with the rotating shaft.

[0046] The connecting part is arranged on the rotating plate.

[0047] Preferably, the connecting part comprises:

[0048] The first connecting shaft is arranged on the rotating plate and rotatably connected with the rotating plate.

[0049] The first connecting plate is provided with a plurality of first connecting plates, and the plurality of first connecting plates are uniformly arranged on the first connecting shaft and rotatably connected with the first connecting shaft.

[0050] The second connecting shaft is rotatably connected with the first connecting plate.

[0051] The second connecting plate is rotatably connected with the second connecting shaft.

[0052] The third connecting shaft is rotatably connected with the second connecting plate.

[0053] The connecting groove is arranged on the adjusting frame.

[0054] A connecting block is fixedly connected to the second connecting shaft and slidably connected to the connecting groove;

[0055] The transmission component is mounted on the second connecting shaft.

[0056] Preferably, the transmission assembly includes:

[0057] A transmission sleeve is disposed on the second connecting shaft and is fixedly connected to the second connecting shaft;

[0058] The transmission rod is slidably connected to the transmission sleeve;

[0059] The transmission plate is fixedly connected to the transmission rod.

[0060] In summary, due to the adoption of the above technical solution, the beneficial effects of this utility model are:

[0061] By incorporating a lifting mechanism, sliding components, and a pressing assembly, the device enables the sealing of capacitors at different heights. Furthermore, by incorporating an adjustment mechanism, rotating components, connecting components, and a transmission assembly, the angle of the capacitor's leads can be adjusted. The lifting and adjustment mechanisms enhance the practicality of the sealing device, allowing it to adapt to different capacitor sealing processes and preventing uneven sealing that could damage the capacitors. Attached Figure Description

[0062] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0063] Figure 1 A three-dimensional structural diagram of the sealing structure of an aluminum electrolytic capacitor is shown.

[0064] Figure 2 A top view schematic diagram of the sealing structure of an aluminum electrolytic capacitor is shown.

[0065] Figure 3 It shows Figure 2 A schematic diagram of the cross-sectional structure of AA.

[0066] Figure 4 It shows Figure 2 A schematic diagram of the cross-sectional structure of BB.

[0067] Figure 5 An exploded view of the adjustment mechanism of the sealing structure of an aluminum electrolytic capacitor is shown.

[0068] Figure 6An explosion view of a lifting mechanism of a sealing structure of an aluminum electrolytic capacitor is shown.

[0069] Legend:

[0070] 1, frame; 2, support leg; 3, drive motor; 4, drive shaft; 5, first drive wheel; 6, drive rod; 7, second drive wheel; 8, drive belt; 9, first lifting plate; 10, fixed plate; 11, lifting frame; 12, lifting motor; 13, lifting shaft; 14, lifting gear; 15, second lifting plate; 16, first lifting groove; 17, second lifting groove; 18, sliding rack; 19, sliding block; 20, sliding plate; 21, extrusion cylinder; 22, extrusion rod; 23, extrusion plate; 24, adjusting frame; 25, detection block; 26, adjusting frame; 27, adjusting motor; 28, adjusting shaft; 29, rotating disc; 30, rotating shaft; 31, rotating plate; 32, first connecting shaft; 33, first connecting plate; 34, second connecting shaft; 35, second connecting plate; 36, third connecting shaft; 37, connecting groove; 38, connecting block; 39, transmission sleeve; 40, transmission rod; 41, transmission plate. DETAILED DESCRIPTION

[0071] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0072] In the description of the present application, it should be understood that the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application.

[0073] It should be noted that when a component is referred to as being "fixed" to another component, it can be directly on the other component or there can be a middle component. When a component is referred to as being "connected" to another component, it can be directly connected to the other component or there can be a middle component. When a component is referred to as being "provided" to another component, it can be directly provided on the other component or there can be a middle component. The terms "vertical", "horizontal", "left", "right" and the like used herein are only for the purpose of illustration.

[0074] Furthermore, the terms "first", "second", etc. are used only for descriptive purposes and are not to be construed as indicating or implying relative importance or an ordered ranking of the indicated technical features. Thus, features defined with "first", "second" can explicitly or implicitly include one or more of such features. In the description of the present application, the meaning of "a plurality of" is two or more, unless otherwise explicitly and specifically limited.

[0075] With reference to Figures 1 to 6 Further description is made to the sealing structure of the aluminum electrolytic capacitor according to the present application.

[0076] The sealing structure of the aluminum electrolytic capacitor comprises a frame 1 and a supporting leg 2, the supporting leg 2 is fixedly connected with the frame 1; further comprising: a driving motor 3, which is arranged on the frame 1 and is detachably fixedly connected with the frame 1; a driving shaft 4, which is detachably fixedly connected with the output end of the driving motor 3; a first driving wheel 5, which is fixedly connected with the driving shaft 4; a driving rod 6, which is fixedly connected with the frame 1; a second driving wheel 7, which is rotatably connected with the driving rod 6; a driving belt 8, which is rotatably matched with the first driving wheel 5; a lifting mechanism, which is arranged on the frame 1 and is used for adjusting the capacitors of different heights; an adjusting mechanism, which is arranged on the frame 1 and is used for adjusting the angle of the capacitor lead.

[0077] With reference to Figure 1 and Figure 6 As a preferred embodiment, the lifting mechanism comprises: a first lifting plate 9, which is arranged on the frame 1 and is fixedly connected with the frame 1; a plurality of fixed plates 10, which are evenly arranged on the first lifting plate 9 and are fixedly connected with the first lifting plate 9; a lifting frame 11, which is fixedly connected with the fixed plates 10; a lifting motor 12, which is fixedly connected with the lifting frame 11; a lifting shaft 13, which is detachably fixedly connected with the output end of the lifting motor 12; a lifting gear 14, which is fixedly connected with the lifting shaft 13; and a sliding component, which is arranged on the frame 1.

[0078] In this way, when the lifting motor 12 is running, the lifting shaft 13, which is detachably fixedly connected with the output end of the lifting motor 12, is driven to rotate, so that the lifting gear 14, which is fixedly connected with the lifting shaft 13, is rotated to provide power for the operation of the sliding component.

[0079] With reference to Figure 1 and Figure 6, as a preferred embodiment, the sliding component comprises: a second lifting plate 15 arranged on the frame 1 and fixedly connected with the frame 1; a first lifting groove 16 arranged on the first lifting plate 9; a second lifting groove 17 arranged on the second lifting plate 15; a sliding rack 18 arranged in the first lifting groove 16 and slidably connected with the first lifting groove 16 and engaged with the lifting gear 14; a sliding block 19 slidably connected with the second lifting groove 17; a sliding plate 20 fixedly connected with one end of the sliding rack 18 and the other end of the sliding block 19; and a pressing assembly arranged on the sliding rack 18.

[0080] In this way, the sliding rack 18 engaged with the lifting gear 14 slides in the first lifting groove 16, the sliding block 19 fixedly connected with the sliding plate 20 slides in the second lifting groove 17, and the pressing cylinder 21 is driven to lift.

[0081] Referring to Figure 1 and Figure 6 , as a preferred embodiment, the pressing assembly comprises: a pressing cylinder 21 arranged on the sliding rack 18 and fixedly connected with the sliding rack 18; a pressing rod 22 slidably connected with the pressing cylinder 21; and a pressing plate 23 fixedly connected with the pressing rod 22.

[0082] In this way, when the capacitor is transmitted to the pressing plate 23, the pressing cylinder 21 is activated, the pressing rod 22 slidably connected with the pressing cylinder 21 moves away from the pressing cylinder 21, and the pressing plate 23 fixedly connected with the pressing rod 22 is close to each other, so as to seal the lead wire of the capacitor.

[0083] Referring to Figure 5 , as a preferred embodiment, the adjusting mechanism comprises: an adjusting frame 24 arranged on the frame 1 and fixedly connected with the frame 1; a detection block 25 arranged on the adjusting frame 24 and detachably fixedly connected with the adjusting frame 24; an adjusting frame 26 fixedly connected with the adjusting frame 24; an adjusting motor 27 fixedly connected with the adjusting frame 26; an adjusting shaft 28 detachably fixedly connected with the output end of the adjusting motor 27; and a rotating component arranged on the adjusting shaft 28.

[0084] Referring to Figure 5 , as a preferred embodiment, the rotating component comprises: a rotating disc 29 fixedly connected with the adjusting shaft 28; a rotating shaft 30 eccentrically arranged on the rotating disc 29 and fixedly connected with the rotating disc 29; a rotating plate 31 rotatably connected with the rotating shaft 30; and a connecting component arranged on the rotating plate 31.

[0085] In this way, when the adjusting motor 27 is in operation, the adjusting motor 27 drives the adjusting shaft 28 connected with the output end of the adjusting motor 27 to rotate, so that the rotating plate 31 connected with the adjusting shaft 28 rotates, thereby driving the rotating plate 31 connected with the rotating shaft 30 to rotate, and power is provided for the operation of the connecting component.

[0086] With reference to Figure 3 and Figure 5 As a preferred embodiment, the connecting component comprises: a first connecting shaft 32 arranged on the rotating plate 31 and rotatably connected with the rotating plate 31; a plurality of first connecting plates 33 arranged on the first connecting shaft 32 and rotatably connected with the first connecting shaft 32; a second connecting shaft 34 rotatably connected with the first connecting plate 33; a second connecting plate 35 rotatably connected with the second connecting shaft 34; a third connecting shaft 36 rotatably connected with the second connecting plate 35; a connecting groove 37 arranged on the adjusting frame 24; a connecting block 38 fixedly connected with the second connecting shaft 34 and slidably connected with the connecting groove 37; and a transmission assembly arranged on the second connecting shaft 34.

[0087] In this way, the first connecting plate 33 rotatably connected with the first connecting shaft 32 rotates, so that the second connecting plate 35 rotatably connected with the second connecting shaft 34 rotates, thereby driving the connecting block 38 fixedly connected with the second connecting shaft 34 to slide in the connecting groove 37.

[0088] With reference to Figure 5 As a preferred embodiment, the transmission assembly comprises: a transmission sleeve 39 arranged on the second connecting shaft 34 and fixedly connected with the second connecting shaft 34; a transmission rod 40 slidably connected with the transmission sleeve 39; and a transmission plate 41 fixedly connected with the transmission rod 40.

[0089] In this way, when the detection block 25 detects the change of the height of the capacitor, the transmission rod 40 slidably connected with the transmission sleeve 39 slides in the transmission sleeve 39, thereby driving the transmission plate 41 fixedly connected with the transmission rod 40 to move, so that the angle of the wire on the capacitor is adjusted, thereby achieving the adjustment of the angle of the wire on the capacitor.

[0090] Working principle: in working, firstly, the driving motor 3 is started, the driving shaft 4 fixedly connected with the output end of the driving motor 3 is driven to rotate, the first driving wheel 5 fixedly connected with the driving shaft 4 is driven to rotate, the driving belt 8 is driven to rotate, the second driving wheel 7 is driven to rotate on the driving rod 6, then the capacitor to be sealed is placed on the driving belt 8, thereby completing the transmission of the capacitor, when the detection block 25 detects the capacitor, the adjusting motor 27 is started, the adjusting shaft 28 fixedly connected with the output end of the adjusting motor 27 is driven to rotate, the rotating plate 31 fixedly connected with the adjusting shaft 28 is driven to rotate, the first connecting plate 33 rotatably connected with the rotating shaft 30 is driven to rotate, the second connecting plate 35 rotatably connected with the second connecting shaft 34 is driven to rotate, the connecting block 38 fixedly connected with the second connecting shaft 34 is driven to slide in the connecting groove 37, the transmission sleeve 39 fixedly connected with the second connecting shaft 34 is moved, when the detection block 25 detects the height change of the capacitor, the transmission rod 40 slidably connected with the transmission sleeve 39 is driven to slide in the transmission sleeve 39, the transmission plate 41 fixedly connected with the transmission rod 40 is moved, thereby adjusting the wire angle on the capacitor;

[0091] Then the lifting motor 12 is started, the lifting shaft 13 fixedly connected with the output end of the lifting motor 12 is driven to rotate, the lifting gear 14 fixedly connected with the lifting shaft 13 is driven to rotate, the sliding rack 18 engaged with the lifting gear 14 is driven to slide in the first lifting groove 16, the sliding block 19 fixedly connected with the sliding plate 20 is driven to slide in the second lifting groove 17, the extrusion cylinder 21 is driven to lift, when the capacitor is transmitted to the extrusion plate 23, the extrusion cylinder 21 is started, the extrusion rod 22 slidably connected with the extrusion cylinder 21 is moved away from the extrusion cylinder 21, thereby the extrusion plate 23 fixedly connected with the extrusion rod 22 is close to each other, thereby sealing the wire of the capacitor.

[0092] The above description of the embodiments enables those skilled in the art to implement or use the present application. Various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present application. Accordingly, the present application is not to be limited to the embodiments shown herein but is to be accorded the broadest scope consistent with the principles and novel features disclosed herein.

Claims

1. A sealing structure of an aluminum electrolytic capacitor, comprising a frame (1) and a supporting leg (2), the supporting leg (2) being fixedly connected with the frame (1); characterized in that, Also include: Drive motor (3) is arranged on the frame (1), with frame (1) can be detached fixedly connected; Drive shaft (4) is detachably fixedly connected with the output end of the drive motor (3); First drive wheel (5) is fixedly connected with the drive shaft (4); Drive rod (6) is fixedly connected with the frame (1); Second drive wheel (7) is rotatably connected with the drive rod (6); Drive belt (8) is rotatably connected with the first drive wheel (5) pulley; Lifting mechanism, arranged on the frame (1), for adjusting according to different height of capacitor; Adjusting mechanism, arranged on the frame (1), for adjusting the angle of capacitor wire.

2. The seal structure of an aluminum electrolytic capacitor according to claim 1, wherein The lifting mechanism comprises: First lifting plate (9) is arranged on the frame (1), and is fixedly connected with the frame (1); Fixed plate (10) has a plurality of, and the plurality of fixed plate (10) is evenly arranged on the first lifting plate (9), and is fixedly connected with the first lifting plate (9); Lifting frame (11) is fixedly connected with the fixed plate (10); Lifting motor (12) is fixedly connected with the lifting frame (11); Lifting shaft (13) is detachably fixedly connected with the output end of the lifting motor (12); Lifting gear (14) is fixedly connected with the lifting shaft (13); Sliding component, arranged on the frame (1).

3. The seal structure of an aluminum electrolytic capacitor according to claim 2, wherein The sliding component comprises: Second lifting plate (15) is arranged on the frame (1), and is fixedly connected with the frame (1); First lifting groove (16) is arranged on the first lifting plate (9); Second lifting groove (17) is arranged on the second lifting plate (15); Sliding rack (18) is arranged in the first lifting groove (16), and is slidably connected with the first lifting groove (16), and is engaged with the lifting gear (14); Sliding block (19) is slidably connected with the second lifting groove (17); Sliding plate (20) is fixedly connected with the sliding rack (18) at one end, and is fixedly connected with the sliding block (19) at the other end; Extrusion assembly, arranged on the sliding rack (18).

4. The seal structure of an aluminum electrolytic capacitor according to claim 3, wherein The extrusion assembly comprises: Extrusion cylinder (21) is arranged on the sliding rack (18), and is fixedly connected with the sliding rack (18); Extrusion rod (22) is slidably connected with the extrusion cylinder (21); Extrusion plate (23) is fixedly connected with the extrusion rod (22).

5. The seal structure of an aluminum electrolytic capacitor according to claim 4, wherein The adjusting mechanism comprises: Adjusting frame (24) is arranged on the frame (1), and is fixedly connected with the frame (1); Detection block (25) is arranged on the adjusting frame (24), and is detachably fixedly connected with the adjusting frame (24); Adjusting frame (26) is fixedly connected with the adjusting frame (24); Adjusting motor (27) is fixedly connected with the adjusting frame (26); Adjusting shaft (28) is detachably fixedly connected with the output end of the adjusting motor (27); Rotating component, arranged on the adjusting shaft (28).

6. The seal structure of an aluminum electrolytic capacitor according to claim 5, wherein The rotating component comprises: Rotating disc (29) is fixedly connected with the adjusting shaft (28); A rotating shaft (30) is eccentrically arranged on the rotating disc (29) and fixedly connected with the rotating disc (29); A rotating plate (31) is rotatably connected with the rotating shaft (30); A connecting component is arranged on the rotating plate (31).

7. The seal structure of an aluminum electrolytic capacitor according to claim 6, wherein The connecting component comprises: A first connecting shaft (32) is arranged on the rotating plate (31) and rotatably connected with the rotating plate (31); A plurality of first connecting plates (33) are uniformly arranged on the first connecting shaft (32) and rotatably connected with the first connecting shaft (32); A second connecting shaft (34) is rotatably connected with the first connecting plate (33); A second connecting plate (35) is rotatably connected with the second connecting shaft (34); A third connecting shaft (36) is rotatably connected with the second connecting plate (35); A connecting groove (37) is arranged on the adjusting frame (24); A connecting block (38) is fixedly connected with the second connecting shaft (34) and slidably connected with the connecting groove (37); A transmission assembly is arranged on the second connecting shaft (34).

8. The seal structure of an aluminum electrolytic capacitor according to claim 7, wherein The transmission assembly comprises: A transmission sleeve (39) is arranged on the second connecting shaft (34) and fixedly connected with the second connecting shaft (34); A transmission rod (40) is slidably connected with the transmission sleeve (39); A transmission plate (41) is fixedly connected with the transmission rod (40).