Winding device for SMD (Surface Mount Device) aluminum electrolytic capacitor
By introducing cleaning and limiting components into the winding device, and using soft brushes and a dust collection system to clean impurities from the aluminum patch surface, the problem of inconvenient cleaning in existing devices is solved, and the winding quality and applicability are improved.
Patent Information
- Application Number
- CN202520609107.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-02
- Publication Date
- 2026-03-17
- Estimated Expiration
- 2035-04-02
AI Technical Summary
Existing winding devices are not convenient for cleaning impurities from the aluminum surface of the patch, causing dust and impurities to fall off and affect the winding quality and performance.
A device comprising a base box, a worktable, a cleaning component, a limiting component, and a winding component was designed. Dust on the surface of the aluminum patch is cleaned by a soft brush on the mounting frame and a vacuum pipe system. The height and position are adjusted by a cylinder and an electric telescopic column to ensure cleaning effectiveness.
It effectively cleans dust from the aluminum surface of the patch, avoiding entanglement damage caused by impurities, and improving the entanglement quality and the applicability of the device.
Smart Images

Figure CN224005790U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of winding device technology, and in particular to a winding device for surface-mount aluminum electrolytic capacitors. Background Technology
[0002] With the continuous progress of society, surface mount aluminum electrolytic capacitors have been widely used in various industries. Finished surface mount aluminum electrolytic capacitors are processed through many steps, among which winding is an important part. This involves interlacing electrolytic paper and aluminum foil and winding them around the ends of the leads to ensure capacitance.
[0003] Chinese Patent CN221079844U discloses a winding device for surface-mount aluminum electrolytic capacitors, including an operating table. A groove is formed on the upper surface of the operating table, and an I-beam is installed on the inner wall of the groove. A motor is installed on one side of the top of the I-beam, and a rotating rod is installed on the output shaft of the motor. A protective cover is installed on the outside of the motor, and a connecting frame is provided on the back of the protective cover. Springs are installed on both sides of the crossbar, and a fixing block is installed at the bottom of the spring. A foam roller is installed inside the fixing block, and a fixing rod is provided on the left side of the support plate. This invention, through the sliding connection between the I-beam and the groove, makes the adjustment of the clamping force more convenient. It can be adjusted according to specific processing requirements and the size of the surface-mount aluminum to obtain the best clamping effect and processing results. The fit between the I-beam and the groove ensures that the I-beam maintains a stable position during clamping, which helps to prevent the surface-mount aluminum from shifting or tilting during processing.
[0004] Existing winding equipment is not convenient for cleaning impurities on the surface of chip aluminum. The equipment is usually used to wind and process chip aluminum electrolytic capacitors in the workshop. However, there are impurities in the air in the workshop environment. If impurities fall onto the surface of the chip aluminum during chip aluminum processing, the chip aluminum will be wrapped with dust on the surface and then squeezed by the upper layer of chip aluminum, which will damage the chip aluminum and affect the subsequent use quality of the chip aluminum. Utility Model Content
[0005] To address the problems existing in the background technology, a winding device for surface-mount aluminum electrolytic capacitors is proposed.
[0006] This utility model proposes a winding device for surface-mount aluminum electrolytic capacitors, comprising: a base box, a worktable, a mounting bracket, a cleaning assembly, a limiting assembly, and a winding assembly;
[0007] The worktable is connected to the base box;
[0008] The cleaning component is connected to the workbench; the cleaning component includes two mounting brackets, each with a guide groove and an inner wall connected to a lower mounting frame and an upper mounting frame. The lower and upper mounting frames are hollow inside with identical structures and one end is connected to a vacuum pipe. The vacuum pipe is connected to a pipe interface and has a telescopic part.
[0009] The top end of the two mounting brackets is connected to the top plate, the top plate is connected to the cylinder, and the driving end of the cylinder passes through the top plate and connects to the upper mounting frame.
[0010] Both the lower and upper mounting frames are connected to connecting pipes inside. The connecting pipes have openings that connect to the outside. Several sleeves are connected to the inner wall of the openings, and several sleeves are connected to soft brushes. The connecting nodes of several sleeves and the connecting nodes of the openings form through holes, which are used to clean dust from the surface of the aluminum patch.
[0011] The limit switch assembly is connected to the worktable;
[0012] The winding assembly is connected to one side of the limiting assembly and to the worktable.
[0013] Preferably, the base box is connected to an electric telescopic column a inside and has connecting blocks on both sides. The connecting blocks are connected to telescopic rods, and the upper end of the telescopic rods is connected to the bottom of the workbench.
[0014] Preferably, the workbench is connected to the base for supporting the winding assembly, the workbench is connected to the vertical plate, the vertical plate is connected to the support plate, and the support plate is connected to the drive end of the electric telescopic column a.
[0015] Preferably, the workbench is connected to the base for supporting the winding assembly, the workbench is connected to the vertical plate, the vertical plate is connected to the support plate, and the support plate is connected to the drive end of the electric telescopic column a.
[0016] Preferably, the limiting plate a and the limiting plate b form a moving channel.
[0017] Preferably, the winding assembly includes a support frame connected to the worktable, the support frame is connected to a motor, the motor drive end passes through the support frame and is connected to a roller, and an annular sleeve is connected to the periphery of one end of the roller;
[0018] The roller is connected to a limiting sleeve, and support rods are connected to both sides of the limiting sleeve. The support rods are connected to connecting sleeves, and the connecting sleeves are connected to an electric telescopic column c.
[0019] Preferably, the electric telescopic column c is connected to the base via a support seat, and the spacing between the limiting sleeve and the annular sleeve is the same as the spacing of the moving channel.
[0020] Compared with the prior art, the present invention has the following beneficial technical effects:
[0021] This invention connects two mounting brackets to a workbench, which are respectively connected to a lower mounting frame and an upper mounting frame. Identical connection structures are installed inside both the lower and upper mounting frames, allowing connecting pipes to be positioned internally. These connecting pipes communicate with the outside through openings, which in turn connect to several sleeves. Each sleeve is connected to a soft brush. During the winding process of surface-mount aluminum electrolytic capacitors, the surface-mount aluminum passes between the upper and lower mounting frames. The soft brushes then clean dust from the upper and lower surfaces of the surface-mount aluminum, preventing dust and impurities from falling onto the surface and affecting winding efficiency. This effectively avoids damage to the surface-mount aluminum and improves the subsequent quality of the wound surface-mount aluminum. Furthermore, the upper mounting frame is adjusted to a suitable height via a cylinder, with the suction pipe telescopic section also adjusting accordingly. This allows for adjustments based on the surface-mount aluminum, expanding the applicability of the winding device for surface-mount aluminum electrolytic capacitors. Attached Figure Description
[0022] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0023] Figure 2 This is a schematic diagram of the cleaning component structure in this utility model;
[0024] Figure 3 This is a schematic diagram of the connecting pipe structure in this utility model;
[0025] Figure 4 This is a schematic diagram of the sleeve structure in this utility model;
[0026] Figure 5 This is a schematic diagram of the winding assembly structure in this utility model.
[0027] Reference numerals: 1. Base box; 101. Electric telescopic column a; 102. Connecting block; 103. Telescopic rod; 2. Workbench; 201. Base; 202. Vertical plate; 203. Support plate; 3. Mounting frame; 301. Guide groove; 302. Lower mounting frame; 303. Upper mounting frame; 304. Dust suction pipe; 305. Pipe interface; 306. Top plate; 307. Cylinder; 308. Connecting pipe; 309. Opening; 310. Sleeve; 311. Soft brush; 4. Limiting plate a; 401. Connecting plate; 402. Electric telescopic column b; 403. Limiting plate b; 5. Winding assembly; 501. Support frame; 502. Motor; 503. Roller; 504. Limiting sleeve; 505. Support rod; 506. Connecting sleeve; 507. Electric telescopic column c. Detailed Implementation
[0028] The specific embodiments of this disclosure will be described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are for illustration and explanation only and are not intended to limit this disclosure.
[0029] Example 1
[0030] like Figure 1 - Figure 5 As shown, the present invention proposes a winding device for surface-mount aluminum electrolytic capacitors, comprising: a base box 1, a workbench 2, a mounting frame 3, a cleaning component, a limiting component, and a winding component 5; the workbench 2 is connected to the base box 1; the cleaning component is connected to the workbench 2; the cleaning component includes two mounting frames 3, each mounting frame 3 having a guide groove 301 and its inner wall connected to a lower mounting frame 302 and an upper mounting frame 303, the lower mounting frame 302 and the upper mounting frame 303 having identical hollow internal structures and one end connected to a suction pipe 304, the suction pipe 304 having a pipe interface 305 and a telescopic part; the upper ends of the two mounting frames 3 are connected to A top plate 306 is connected to a cylinder 307. The drive end of the cylinder 307 passes through the top plate 306 and connects to the upper mounting frame 303. Both the lower mounting frame 302 and the upper mounting frame 303 are internally connected to connecting pipes 308. The connecting pipes 308 are provided with openings 309 to connect to the outside. Several sleeves 310 are connected to the inner wall of the openings 309, and several sleeves 310 are connected to soft brushes 311. The connecting nodes of several sleeves 310 and the connecting nodes of the openings 309 form a through hole for cleaning dust from the surface of the aluminum patch. The limiting component is connected to the worktable 2. The winding component 5 is connected to one side of the limiting component and connected to the worktable 2. Guide blocks are connected to the inner wall of the guide groove 301. By starting the cylinder 307, the driving end of the cylinder 307 adjusts the height of the upper mounting frame 303. The guide blocks are connected to both sides of the outer wall of the upper mounting frame 303 and adjust the upper mounting frame 303 synchronously, which facilitates the increase of the stability of the adjustment of the upper mounting frame 303. The tube interface 305 is connected to the dust collection equipment, which facilitates the cleaning of impurities and dust on the upper and lower surfaces of the surface-mount aluminum, and facilitates the use of the winding device for surface-mount aluminum electrolytic capacitors.
[0031] To further explain, the limiting assembly includes a limiting plate a4 and a limiting plate b403 connected to the worktable 2. Limiting plate a4 is connected to a connecting plate 401, which in turn is connected to an electric telescopic column b402. The electric telescopic column b402 is connected to the vertical plate 202 and supported by a support plate 203. Limiting plate b403 is connected to the worktable 2, and a moving channel is formed between limiting plate a4 and limiting plate b403. The limiting assembly is connected between the cleaning assembly and the winding assembly 5, facilitating the limiting of the aluminum patch conveying and winding to the periphery of the roller 503, preventing translational displacement of the aluminum patch, and improving the winding effect of the aluminum patch.
[0032] Example 2
[0033] like Figure 1 and Figure 5 As shown, the present invention proposes a winding device for surface-mount aluminum electrolytic capacitors. Based on the above embodiments, this embodiment also details the specific components of the base box 1, the worktable 2, and the winding assembly 5, as well as their cooperation methods.
[0034] Further explanation: The winding assembly 5 includes a support frame 501 connected to the worktable 2. The support frame 501 is connected to a motor 502. The drive end of the motor 502 passes through the support frame 501 and connects to a roller 503. One end of the roller 503 is connected to an annular sleeve. A limiting sleeve 504 is connected to the outer periphery of the roller 503. Support rods 505 are connected to both sides of the limiting sleeve 504. A connecting sleeve 506 is connected to the support rod 505. The connecting sleeve 506 is connected to an electric telescopic column c507. The electric telescopic column c507 is connected to the base 201 through a support seat. The distance between the limiting sleeve 504 and the annular sleeve is the same as the distance of the moving channel. The worktable 2 is provided with a square through hole, which allows the connecting plate 401 to pass through and connect to the electric telescopic column b402, facilitating the use of the winding device for surface-mount aluminum electrolytic capacitors.
[0035] To further explain, the base box 1 is internally connected to an electric telescopic column a101, and connecting blocks 102 are connected to both sides. Connecting blocks 102 are connected to telescopic rods 103, the upper ends of which are connected to the bottom of the worktable 2. The worktable 2 is connected to a base 201 to support the winding assembly 5. The worktable 2 is connected to a vertical plate 202, which is connected to a support plate 203. The support plate 203 is connected to the drive end of the electric telescopic column a101. By activating the electric telescopic column a101, the support plate 203 is adjusted to its working height. The support plate 203, through the vertical plate 202, drives the worktable 2 to adjust, facilitating an increase in the applicable height of the worktable 2. Simultaneously, the telescopic rods 103 on both sides extend and retract, improving support for the worktable 2.
[0036] The working principle of this utility model is as follows: When the winding device for surface-mount aluminum electrolytic capacitors is in use, the surface-mount aluminum passes through the gap between the lower mounting frame 302 and the upper mounting frame 303, the moving channel, and the outer connection of the roller 503 to achieve the winding processing of the surface-mount aluminum. As the surface-mount aluminum passes through the lower mounting frame 302 and the upper mounting frame 303, the upper and lower soft brushes 311 clean the dust and impurities on the upper and lower surfaces of the surface-mount aluminum. Then, the tube interface 305 connects to the vacuum cleaner. When the vacuum cleaner is started, it works with the through hole, tube interface 305, vacuum pipe 304, and connecting pipe 308. The opening 309 of the connecting pipe 308 sucks the dust into the vacuum cleaner. Then, the vacuum cleaner is operated to process the collected dust, facilitating secondary use. Simultaneously, the moving channel adjusts the spacing according to the aluminum substrate. By activating the electric telescopic column b402, the driving end of the electric telescopic column b402 moves the limiting plate a4 toward the limiting plate b403, thereby adjusting the spacing of the moving channel. Then, the electric telescopic column c507 is activated, and the driving end of the electric telescopic column c507 moves the connecting sleeve 506 toward the roller 503. The connecting sleeve 506 drives the support rod 505, and the support rod 505 drives the limiting sleeve 504. The limiting sleeve 504 moves around the roller 503, which is convenient for adjustment according to the aluminum substrate. This, in conjunction with the moving channel, facilitates the limiting of the aluminum substrate during the movement, increases the winding effect, and improves the performance of the winding device for aluminum substrate electrolytic capacitors.
[0037] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited thereto. Various changes can be made within the scope of knowledge possessed by those skilled in the art without departing from the spirit of the present invention.
Claims
1. A winding device for a patch type aluminum electrolytic capacitor, characterized by comprising: The utility model relates to a kind of aluminum surface cleaning device, including: Base box (1); Workbench (2), connect on base box (1); Cleaning assembly, connect on workbench (2);Cleaning assembly includes two mounting frames (3), mounting frame (3) is provided with guide slot (301) and inner wall is connected lower mounting frame (302) and upper mounting frame (303), lower mounting frame (302) and upper mounting frame (303) inside hollow set structure same and one end is connected dust extraction pipe (304), dust extraction pipe (304) is connected with pipe body interface (305) and set telescopic part; Two mounting frames (3) upper end connects top plate (306), top plate (306) connects cylinder (307), cylinder (307) drive end passes through top plate (306) and connects upper mounting frame (303); Lower mounting frame (302) and upper mounting frame (303) inside are connected with connecting pipe (308), connecting pipe (308) is provided with opening (309) and is communicated with outside, opening (309) inner wall is connected with several sleeve bodies (310), and several sleeve bodies (310) are connected with soft hair brush (311);Several sleeve bodies (310) connection node and opening (309) connection node constitute through-hole, for cooperating with the surface dust cleaning of patch aluminum; Limiting component, connect on workbench (2); And winding assembly (5), connect on one side of limiting component and connect on workbench (2).
2. The winding device for a patch aluminum electrolytic capacitor according to claim 1, wherein Base box (1) inside is connected with electric telescopic column a (101), and both sides are connected with connecting block (102) respectively, connecting block (102) is connected with telescopic rod (103), and telescopic rod (103) upper end is connected below workbench (2).
3. The winding device for a patch aluminum electrolytic capacitor according to claim 2, wherein Workbench (2) is connected with base (201), for cooperating with the support winding assembly (5), workbench (2) is connected with vertical plate (202), vertical plate (202) is connected with support plate (203), and support plate (203) is connected on the drive end of electric telescopic column a (101).
4. The winding device for a patch aluminum electrolytic capacitor according to claim 3, wherein Limiting component includes limiting plate a (4) and limiting plate b (403) connected on workbench (2), limiting plate a (4) is connected with connecting plate (401), connecting plate (401) is connected with electric telescopic column b (402), and electric telescopic column b (402) is connected on vertical plate (202) and is supported through support plate (203); Limiting plate b (403) is connected on workbench (2).
5. The winding device for a patch aluminum electrolytic capacitor according to claim 4, wherein Limiting plate a (4) and limiting plate b (403) constitute moving channel between them.
6. The winding device for a patch aluminum electrolytic capacitor according to claim 4, wherein Winding assembly (5) includes support frame (501) connected on workbench (2), support frame (501) is connected with motor (502), motor (502) drive end passes through support frame (501) and connects roller (503), and roller (503) one end periphery is connected with annular sleeve; Roller (503) periphery is connected with limiting sleeve (504), and the both sides of limiting sleeve (504) are connected with support rod (505) respectively, support rod (505) is connected with connecting sleeve (506), and connecting sleeve (506) is connected with electric telescopic column c (507).
7. The winding device for a patch aluminum electrolytic capacitor according to claim 6, wherein Electric telescopic column c (507) is connected on base (201) through support seat, and the distance between limiting sleeve (504) and annular sleeve is same with the distance between moving channel.
Citation Information
Patent Citations
Winding device for SMD (Surface Mount Device) aluminum electrolytic capacitor
CN221079844U