Inductance coil winding device capable of adjusting tightness

By designing an inductor coil wire winding device containing multiple components, the problem of untight wire winding in the prior art is solved, and a fast and dense wire winding effect is achieved.

CN222896601UActive Publication Date: 2025-05-23GUANGDONG ZHONGXILI IND CO LTD
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Patent Information

Application Number
CN202421816254.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-30
Publication Date
2025-05-23
Estimated Expiration
2034-07-30

AI Technical Summary

Technical Problem

The existing inductor coil wire winding device is not convenient for assisting with manual rapid winding, and it is difficult to adjust the tightness of the wire winding, resulting in insufficient tightness of the wire winding.

Method used

An inductor coil wire winding device is designed including a support assembly, a rotating assembly, a clamping assembly, a wire feeding assembly, a first limit assembly and a second limit assembly. Through the coordinated work of these components, stable clamping of the inductor coil and limit winding of the wire are achieved, making it easier to manually adjust the tightness of the wound wire.

Benefits of technology

This device enables manual winding to quickly and tightly, solves the problem of untight wire wound in the prior art, and improves the efficiency and quality of wire wounding.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of inductance coil winding devices, in particular to an inductance coil winding device with adjustable tightness. The technical problems that in the prior art, an inductance coil wire winding device usually inconveniently assists manual work to conduct quick wire winding, the wire winding tightness is difficult to adjust, and wire winding is difficult to be denser are solved. According to the technical scheme, the inductance coil winding device capable of adjusting the tightness degree comprises a supporting assembly. The direction of the inductance coil is adjusted by starting the clamping assembly, after several coils are wound manually, a silk thread in the thread feeding assembly is cut off, on the basis that several circles of silk threads are wound on the inner wall and the outer wall of the inductance coil, the remaining silk thread can be conveniently and manually wound manually, and the winding efficiency is improved. In addition, due to the fact that the first limiting assembly and the second limiting assembly limit the initial silk thread to a certain degree, the tightness of the silk winding head can be conveniently and manually adjusted, and the technical problem is solved.
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Description

Technical Field

[0001] The utility model belongs to the field of inductor coil wire winding devices, and in particular relates to an inductor coil wire winding device with adjustable tightness. Background Art

[0002] In the field of electronic technology, inductor coils, as an important electronic component, are widely used in circuit design and product manufacturing. The main functions of inductor coils are energy storage and electromagnetic interference filtering. Their performance depends to a large extent on the winding quality and structural design of the coils. At present, traditional inductor coil winding devices generally use inductor coil winding machines. However, the inductor coil winding devices in the prior art are usually not convenient for assisting manual rapid winding, and it is difficult to adjust the tightness of the winding and make the winding denser, which needs further improvement. Utility Model Content

[0003] In order to overcome the problems that the inductor coil winding device in the prior art is usually inconvenient to assist manual labor in rapid winding, it is difficult to adjust the tightness of the winding, and it is difficult to make the winding denser.

[0004] The technical solution of the utility model is: an inductor coil wire winding device with adjustable tightness, comprising a support assembly; also comprising a rotating assembly, a clamping assembly, a wire feeding assembly, a first limiting assembly and a second limiting assembly; a rotating assembly for rotation is provided at the upper end of the support assembly; a clamping assembly for clamping the inductor coil is provided on the rotating assembly; a wire feeding assembly for feeding the wire is provided on the support assembly; a first limiting assembly for limiting the position of the wire is provided on the wire feeding assembly; and a second limiting assembly is provided on the first limiting assembly.

[0005] Preferably, when in use, the inductor coil is first put on the wire feeding assembly, the wire feeding assembly is placed in the supporting assembly, and then the clamping assembly is opened to clamp the inductor coil, and then the silk wire is passed through the wire feeding assembly and the first limiting assembly and wound around the inside of the inductor coil, and then the silk wire is continued to be manually pulled so that the silk wire already wound around the inside of the inductor coil passes through the second limiting assembly and then wound around the outside of the inductor coil, and then the clamping assembly is opened to adjust the direction of the inductor coil, and after manually winding a few coils, the silk wire in the wire feeding assembly is cut, and on the basis of several turns of silk wire already wound around the inner and outer walls of the inductor coil, it is convenient to continue to manually wind the remaining silk wire, and because the first limiting assembly and the second limiting assembly have already limited the initial silk wire to a certain extent, it is convenient to manually adjust the tightness of the winding wire, which solves the problem that the inductor coil winding device in the prior art is usually not convenient to assist manual rapid winding, it is difficult to adjust the tightness of the winding wire, and it is difficult to make the winding wire denser.

[0006] Preferably, the support assembly includes a supporting plate, a first supporting column, a fixed body, a first groove body, a first fixed block and a limiting cylinder; the upper end of the supporting plate is fixedly connected to the first supporting column; the upper end of the first supporting column is fixedly connected to the fixed body; the front and rear ends of the fixed body are penetrated by a first groove body; the rear end of the fixed body is fixedly connected to two first fixed blocks symmetrically about the center of the first groove body; one end of the two first fixed blocks close to each other is fixedly connected to the limiting cylinder; the central axis of the limiting cylinder is colinear with the central axis of the first groove body, and the setting of the limiting cylinder can limit the line feeding assembly, which is convenient for the stable placement of the line feeding assembly.

[0007] Preferably, the rotating assembly includes a second support column, a fixed cylinder, a motor, a rotating column and a sleeve block; the second support column is threadedly mounted on the upper end of the supporting plate; the upper end of the second support column is fixedly connected to the fixed cylinder; the inner wall of the fixed cylinder is fixedly connected to the motor; the rear end of the output shaft of the motor is fixedly connected to the rotating column; the outer wall of the rotating column is fixedly connected to the sleeve block. When in use, the motor is turned on to rotate the rotating column, which can facilitate the rotation of the sleeve block.

[0008] Preferably, the clamping assembly includes an L-shaped block, a connecting block, a second fixed block, an electric cylinder and a clamping block; the lower end of the sleeve block is fixedly connected to the L-shaped block; the connecting block is fixedly connected to the L-shaped block; the other end of the connecting block is fixedly connected to the second fixed block; the front end of the second fixed block is fixedly connected to the electric cylinder; the rear end of the output shaft of the electric cylinder passes through the second fixed block and is fixedly connected to the clamping block, and the clamping block can be conveniently moved back and forth by opening the electric cylinder, so that the inductor coil can be quickly squeezed, clamped and fixed between the second fixed block and the clamping block.

[0009] Preferably, the wire feeding assembly includes a wire feeding column, a first groove and a first limiting strip; the inner wall of the limiting cylinder is movably provided with the wire feeding column; the upper end of the wire feeding column is provided with a first groove; the upper part of the inner wall of the first groove is fixedly connected with a first limiting strip; the front end of the first limiting strip passes through the first groove and extends to the front of the wire feeding column, and the wire is passed through the first groove. Since the wire is blocked and limited by the first limiting strip, it is beneficial to the stable movement and placement of the wire.

[0010] Preferably, the first limiting assembly includes a U-shaped block, a second groove, a first limiting column and a second limiting strip; the front end of the wire feeding column is fixedly connected to the U-shaped block; the inner wall of the U-shaped block is provided with a second groove; the inner wall of one of the arc-shaped portions of the second groove is fixedly connected with evenly distributed first limiting columns; the inner wall of the second groove is also fixedly connected with two second limiting strips, and the multiple first limiting columns and the two second limiting strips all play a limiting role on the wire. The wire is passed through the first groove and the second groove so that the wire is controlled by the two second limiting strips and the multiple first limiting columns, so that the wire can be wound around the outside of the outer wall of the inductor coil, which is convenient for quickly limiting and winding the wire.

[0011] Preferably, the second limiting assembly includes a C-shaped block, a third groove, a second limiting column and a third limiting column; the second limiting strip in the middle of the U-shaped block is fixedly connected to the C-shaped block at one end near the center of the U-shaped block; a third groove is opened on the inner wall of the C-shaped block; the inner wall of the third groove is fixedly connected with evenly distributed second limiting columns; the inner wall of the third groove is fixedly connected with a third limiting column near one of the ends; the length of the third limiting column is half of the length of the second limiting column, and the wire passing through the second groove is placed into the inner wall of the third groove. After passing through multiple second limiting columns and the third limiting columns, the wire can be wound around the internal space of the inner wall of the inductor coil, so that the wire can be limitedly wound inside and outside the inductor coil, and then the angle of the inductor coil is changed, which is convenient for the user to manually wind it.

[0012] Beneficial effects of the utility model:

[0013] 1. By putting the inductor coil on the wire feeding assembly, placing the wire feeding assembly in the supporting assembly, and then opening the clamping assembly to clamp the inductor coil, the silk thread is then passed through the wire feeding assembly and the first limiting assembly and wound around the inside of the inductor coil, and then the silk thread is manually pulled so that the silk thread already wound around the inside of the inductor coil passes through the second limiting assembly and then wound around the outside of the inductor coil, and then the clamping assembly is opened to adjust the direction of the inductor coil, and after manually winding a few coils, the silk thread in the wire feeding assembly is cut off, and on the basis of the several turns of silk thread already wound around the inner and outer walls of the inductor coil, it is convenient to manually continue to manually wind the remaining silk thread, and because the first limiting assembly and the second limiting assembly have already limited the initial silk thread to a certain extent, it is convenient to manually adjust the tightness of the winding amount, thereby solving the problem that the inductor coil winding device in the prior art is usually not convenient for assisting manual rapid winding, it is difficult to adjust the tightness of the winding, and it is difficult to make the winding denser;

[0014] 2. The setting of the limiting cylinder can limit the feeding assembly, which is convenient for the stable placement of the feeding assembly. By turning on the motor to rotate the rotating column, the sleeve block can be rotated conveniently. By turning on the electric cylinder, the clamping block can be moved forward and backward conveniently, so that the inductor coil can be quickly squeezed and clamped between the second fixed block and the clamping block;

[0015] 3. By passing the wire through the first groove, the wire is blocked and limited by the first limiting strip, which is conducive to the stable movement and placement of the wire. The multiple first limiting posts and the two second limiting strips all play a limiting role on the wire. The wire is passed through the first groove and the second groove, so that the wire is blocked by the two second limiting strips and the multiple first limiting posts, and the wire can be wound around the outer wall of the inductor coil, which is convenient for the rapid limiting and winding of the wire.

[0016] 4. Place the wire that passes through the second groove into the inner wall of the third groove. After passing through multiple second limiting posts and the third limiting posts, the wire can be wound around the internal space of the inner wall of the inductor coil, so that the wire can be limited and wound inside and outside the inductor coil, and then the angle of the inductor coil can be changed, which can facilitate manual winding by the user. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 What is shown is a three-dimensional structural schematic diagram of an inductor coil winding device with adjustable tightness of the utility model;

[0018] Figure 2 The present invention shows a three-dimensional structure schematic diagram of a support component and a rotating component of an inductor coil winding device with adjustable tightness;

[0019] Figure 3 The three-dimensional structure schematic diagram of a clamping assembly of an inductor coil winding device with adjustable tightness of the utility model is shown;

[0020] Figure 4 The three-dimensional structure schematic diagram of a wire feeding assembly and a first limit assembly of an inductor coil winding device with adjustable tightness of the utility model is shown;

[0021] Figure 5 What is shown is a three-dimensional structural schematic diagram of a first limit component and a second limit component of an inductor coil winding device with adjustable tightness according to the utility model.

[0022] The markings in the attached drawings are: 1. Support assembly; 101. Loading plate; 102. First support column; 103. Fixed body; 104. First trough; 105. First fixed block; 106. Limit cylinder; 2. Rotating assembly; 201. Second support column; 202. Fixed cylinder; 203. Motor; 204. Rotating column; 205. Bushing block; 3. Clamping assembly; 301. L-shaped block; 302. Connecting block; 303. Second fixed block Fixed block; 304, electric cylinder; 305, clamping block; 4, wire feeding assembly; 401, wire feeding column; 402, first groove; 403, first limiting strip; 5, first limiting assembly; 501, U-shaped block; 502, second groove; 503, first limiting column; 504, second limiting strip; 6, second limiting assembly; 601, C-shaped block; 602, third groove; 603, second limiting column; 604, third limiting column. DETAILED DESCRIPTION

[0023] The utility model is further described below in conjunction with the accompanying drawings and embodiments.

[0024] See also Figure 1The utility model provides an embodiment: an inductor coil wire winding device with adjustable tightness, comprising a support assembly 1; further comprising a rotating assembly 2, a clamping assembly 3, a wire feeding assembly 4, a first limiting assembly 5 and a second limiting assembly 6; a rotating assembly 2 for rotation is provided at the upper end of the support assembly 1; a clamping assembly 3 for clamping the inductor coil is provided on the rotating assembly 2; a wire feeding assembly 4 for feeding wire is provided on the support assembly 1; a first limiting assembly 5 for limiting the position of the wire is provided on the wire feeding assembly 4; a second limiting assembly 6 is provided on the first limiting assembly 5.

[0025] See also Figure 2 In this embodiment, the support assembly 1 includes a bearing plate 101, a first support column 102, a fixed body 103, a first slot body 104, a first fixed block 105 and a limiting cylinder 106; the upper end of the bearing plate 101 is fixedly connected to the first support column 102; the upper end of the first support column 102 is fixedly connected to the fixed body 103; the front and rear ends of the fixed body 103 are penetrated by the first slot body 104; the rear end of the fixed body 103 is fixedly connected to two first fixed blocks 105 symmetrically about the center of the first slot body 104; the two first fixed blocks 105 are close to each other. One end is fixedly connected to the limiting cylinder 106; the central axis of the limiting cylinder 106 is colinear with the central axis of the first slot body 104; the rotating assembly 2 includes a second support column 201, a fixed cylinder 202, a motor 203, a rotating column 204 and a sleeve 205; the second support column 201 is threadedly installed on the upper end of the supporting plate 101; the upper end of the second support column 201 is fixedly connected to the fixed cylinder 202; the inner wall of the fixed cylinder 202 is fixedly connected to the motor 203; the rear end of the output shaft of the motor 203 is fixedly connected to the rotating column 204; the outer wall of the rotating column 204 is fixedly connected to the sleeve 205.

[0026] See also Figure 3 In this embodiment, the clamping assembly 3 includes an L-shaped block 301, a connecting block 302, a second fixed block 303, an electric cylinder 304 and a clamping block 305; the lower end of the sleeve block 205 is fixedly connected to the L-shaped block 301; the connecting block 302 is fixedly connected to the L-shaped block 301; the other end of the connecting block 302 is fixedly connected to the second fixed block 303; the front end of the second fixed block 303 is fixedly connected to the electric cylinder 304; the rear end of the output shaft of the electric cylinder 304 passes through the second fixed block 303 and is fixedly connected to the clamping block 305.

[0027] See also Figure 4 and 5In this embodiment, the wire feeding assembly 4 includes a wire feeding column 401, a first groove 402 and a first limiting strip 403; the inner wall of the limiting cylinder 106 is movably provided with a wire feeding column 401; the upper end of the wire feeding column 401 is provided with a first groove 402; the upper part of the inner wall of the first groove 402 is fixedly connected with a first limiting strip 403; the front end of the first limiting strip 403 passes through the first groove 402 and extends to the front of the wire feeding column 401; the first limiting assembly 5 includes a U-shaped block 501, a second groove 502, a first limiting column 503 and a second limiting strip 504; the front end of the wire feeding column 401 is fixedly connected with a U-shaped block 501; the inner wall of the U-shaped block 501 is provided with a second groove 502; one of the arc-shaped The inner wall of the U-shaped block 501 is fixed with evenly distributed first limiting columns 503; the inner wall of the second groove 502 is also fixed with two second limiting strips 504; the second limiting assembly 6 includes a C-shaped block 601, a third groove 602, a second limiting column 603 and a third limiting column 604; the second limiting strip 504 in the middle of the U-shaped block 501 is fixed with the C-shaped block 601 at one end close to the center of the U-shaped block 501; the inner wall of the C-shaped block 601 is provided with a third groove 602; the inner wall of the third groove 602 is fixed with evenly distributed second limiting columns 603; the inner wall of the third groove 602 is fixed with a third limiting column 604 near one of the ends; the length of the third limiting column 604 is half of the length of the second limiting column 603.

[0028] When working, first, the inductor coil is sleeved on the outer wall of the feed column 401, so that the inductor coil is located between the first limit assembly 5 and the second limit assembly 6, and then the feed column 401 is passed through the first slot 104 from front to back and placed on the inner wall of the limit cylinder 106, and then the second support column 201 is threadedly installed on the upper end of the bearing plate 101, and then the electric cylinder 304 is turned on to move the clamping block 305 back and forth, and the inductor coil is quickly squeezed and clamped and fixed between the second fixing block 303 and the clamping block 305;

[0029] Next, the wire is passed through the first groove 402. Since the wire is blocked and limited by the first limiting strip 403, it is conducive to the stable movement and placement of the wire. The wire passes through the first groove 402 and enters the inner wall of the second groove 502. Since the multiple first limiting posts 503 and the two second limiting strips 504 both limit the wire, the wire is passed through the first groove 402 and the second groove 502, so that the wire is blocked by the two second limiting strips 504 and the multiple first limiting posts 503, and the wire can be wound around the outside of the outer wall of the inductor coil.

[0030] Afterwards, the wire that passes through the second groove 502 is placed into the inner wall of the third groove 602. After passing through multiple second limiting columns 603 and the third limiting columns 604, the wire can be wound around the internal space of the inner wall of the inductor coil, so that the wire can be limited and wound inside and outside the inductor coil. Then, the motor 203 is turned on to adjust the angle of the rotating column 204, so that the angle of the clamping component 3 can be adjusted, and then the angle of the clamped inductor coil can be adjusted, which can facilitate the user to perform manual winding.

[0031] Through the above steps, when in use, first put the inductor coil on the wire feeding component 4, place the wire feeding component 4 in the support component 1, then open the clamping component 3 to clamp the inductor coil, then pass the wire feeding component 4 and the first limiting component 5 to wind around the inside of the inductor coil, then continue to manually pull the wire so that the wire already wound around the inside of the inductor coil passes through the second limiting component 6 and then winds around the outside of the inductor coil, then open the clamping component 3 to adjust the direction of the inductor coil, and after manually winding a few coils, cut the wire in the wire feeding component 4, and on the basis of several turns of wire already wound around the inner and outer walls of the inductor coil, it is convenient to continue to manually wind the remaining wire, and because the first limiting component 5 and the second limiting component 6 have already limited the initial wire to a certain extent, it is convenient to manually adjust the tightness of the wire winding, which solves the problem that the inductor coil winding device in the prior art is usually not convenient to assist manual rapid winding, it is difficult to adjust the tightness of the wire winding, and it is difficult to make the wire winding denser.

[0032] The embodiments of the present invention are described in detail above in conjunction with the accompanying drawings, but the present invention is not limited to the above embodiments, and various changes can be made within the knowledge scope of those skilled in the art without departing from the purpose of the present invention.

Claims

1. An inductor coil winding device with adjustable tightness, comprising a support assembly (1); characterized in that: The invention also comprises a rotating assembly (2), a clamping assembly (3), a wire feeding assembly (4), a first limiting assembly (5) and a second limiting assembly (6); the upper end of the support assembly (1) is provided with a rotating assembly (2) for rotating; the rotating assembly (2) is provided with a clamping assembly (3) for clamping the inductor coil; the support assembly (1) is provided with a wire feeding assembly (4) for feeding the wire; the wire feeding assembly (4) is provided with a first limiting assembly (5) for limiting the position of the wire; and the first limiting assembly (5) is provided with a second limiting assembly (6).

2. The inductor coil winding device with adjustable tightness according to claim 1, characterized in that: The support assembly (1) comprises a bearing plate (101), a first supporting column (102), a fixing body (103), a first slot body (104), a first fixing block (105) and a limiting cylinder (106); the upper end of the bearing plate (101) is fixedly connected to the first supporting column (102); the upper end of the first supporting column (102) is fixedly connected to the fixing body (103); the first slot body (104) is penetrated through the front and rear ends of the fixing body (103); the rear end of the fixing body (103) is fixedly connected to two first fixing blocks (105) symmetrical about the center of the first slot body (104); one end of the two first fixing blocks (105) close to each other is fixedly connected to the limiting cylinder (106); the central axis of the limiting cylinder (106) and the central axis of the first slot body (104) are collinear.

3. The inductor coil wire winding device with adjustable tightness according to claim 2, characterized in that: The rotating assembly (2) comprises a second supporting column (201), a fixed cylinder (202), a motor (203), a rotating column (204) and a sleeve (205); the second supporting column (201) is threadedly mounted on the upper end of the bearing plate (101); the fixed cylinder (202) is fixedly connected to the upper end of the second supporting column (201); the motor (203) is fixedly connected to the inner wall of the fixed cylinder (202); the rotating column (204) is fixedly connected to the rear end of the output shaft of the motor (203); and the sleeve (205) is fixedly connected to the outer wall of the rotating column (204).

4. The inductor coil wire winding device with adjustable tightness according to claim 3, characterized in that: The clamping assembly (3) comprises an L-shaped block (301), a connecting block (302), a second fixed block (303), an electric cylinder (304) and a clamping block (305); the lower end of the sleeve block (205) is fixedly connected to the L-shaped block (301); the connecting block (302) is fixedly connected to the L-shaped block (301); the other end of the connecting block (302) is fixedly connected to the second fixed block (303); the front end of the second fixed block (303) is fixedly connected to the electric cylinder (304); and the rear end of the output shaft of the electric cylinder (304) passes through the second fixed block (303) and is fixedly connected to the clamping block (305).

5. The inductor coil winding device with adjustable tightness according to claim 2, characterized in that: The wire feeding assembly (4) comprises a wire feeding column (401), a first groove (402) and a first limiting strip (403); the wire feeding column (401) is movably arranged on the inner wall of the limiting cylinder (106); the first groove (402) is provided at the upper end of the wire feeding column (401); the first limiting strip (403) is fixedly connected to the upper part of the inner wall of the first groove (402); the front end of the first limiting strip (403) passes through the first groove (402) and extends to the front of the wire feeding column (401).

6. The inductor coil wire winding device with adjustable tightness according to claim 5, characterized in that: The first limiting assembly (5) comprises a U-shaped block (501), a second groove (502), a first limiting column (503) and a second limiting strip (504); the front end of the feeder column (401) is fixedly connected to the U-shaped block (501); the inner wall of the U-shaped block (501) is provided with a second groove (502); the inner wall of one of the arc-shaped portions of the second groove (502) is fixedly connected to uniformly distributed first limiting columns (503); and the inner wall of the second groove (502) is also fixedly connected to two second limiting strips (504).

7. The inductor coil wire winding device with adjustable tightness according to claim 6, characterized in that: The second limiting assembly (6) comprises a C-shaped block (601), a third groove (602), a second limiting column (603) and a third limiting column (604); the second limiting strip (504) in the middle of the U-shaped block (501) is fixedly connected to the C-shaped block (601) at one end close to the center of the U-shaped block (501); the inner wall of the C-shaped block (601) is provided with a third groove (602); the inner wall of the third groove (602) is fixedly connected to uniformly distributed second limiting columns (603); the inner wall of the third groove (602) is fixedly connected to a third limiting column (604) close to one end; the length of the third limiting column (604) is half the length of the second limiting column (603).