Electronic element double-punching device and full-automatic forming braiding machine

By designing a double punching device for electronic components, including adjustment parts and tailoring parts, the problem of uneven cuts in existing shear machines and only one length is solved, and the production of sleeves of different lengths is achieved and the incisions is ensured to be flat.

CN222957301UActive Publication Date: 2025-06-10DONGGUAN YICHUAN JINPIN MASCH CO LTD
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Patent Information

Application Number
CN202421715257.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-19
Publication Date
2025-06-10
Estimated Expiration
2034-07-19

AI Technical Summary

Technical Problem

The distance between the cutting mechanism and the clamping mechanism of the existing shear machine is fixed, resulting in uneven cuts when cutting the material pipes of different materials, and can only be cut with one length of casing.

Method used

A double punching device for electronic components is designed, including a support base, a feeding member, a fixing member, a cutting member and an adjusting member. By adjusting the distance between the fixed part and the tailoring part, the production of sleeves of different lengths is achieved, and the bending changes of sleeves are reduced through optimized design to ensure smooth cuts.

Benefits of technology

The production of casings of different lengths is achieved to ensure that the notches of each casing are flat and consistent, and solve the problem of uneven cuts and only one length in the prior art.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an electronic element double-punching device and a full-automatic forming braiding machine. The electronic element double-punching device comprises a supporting seat, and a feeding component for driving a sleeve to move and a fixing component for stabilizing the sleeve are arranged on the supporting seat; a cutting part used for cutting the sleeve located on the feeding part and the fixing part is arranged between the fixing part and the feeding part, and an adjusting part used for adjusting the distance between the cutting part and the fixing part is arranged on the supporting base. Sleeves with different lengths can be produced by adjusting the distance between the fixing component and the cutting component through the adjusting component; when the cutting component cuts the sleeve, it is guaranteed that the bending change of the sleeve is smaller; therefore, the gap of each sleeve is smooth and consistent.
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Description

Technical Field

[0001] The utility model relates to the technical field of resistor sleeve production equipment, especially an electronic component double punching device. Background Art

[0002] With the increasing safety protection requirements of equipment and facilities, as well as the increasing requirements of the communication industry, automotive industry, and home appliance industry for varistors and thermistors to have explosion-proof functions, the demand for sleeves to be sleeved on varistors and thermistors is also increasing. Before the sleeve is sleeved on the varistor and thermistor, a whole roll of rubber tube needs to be sheared by a shearing machine. The shearing machine includes feeding, clamping, cutting, and other mechanisms. The feeding mechanism feeds the tube into the clamping mechanism, and then the cutting mechanism cuts the tube into multiple equal-length sleeves, and then the sleeves are sleeved on the varistor or thermistor. However, the distance between the cutting mechanism and the clamping mechanism of the existing shearing machine is fixedly set, and this design is likely to cause uneven cuts when cutting tubes of different materials. There is also a shearing machine where the distance between clamping and cutting is the length of the sleeve. Since the position of the cutting mechanism is fixed, it can only cut sleeves of one length. Summary of the Invention

[0003] The purpose of the utility model is to provide an electronic component double punching device to solve the problems mentioned in the above background art.

[0004] To achieve the above purpose, the technical solution adopted by the utility model is: an electronic component double punching device, including a support base,

[0005] a feeding component, which is arranged on the support base and used to drive the sleeve to move;

[0006] a fixing component, which is arranged on the support base and used to stabilize the sleeve;

[0007] a cutting component, which is located between the fixing component and the feeding component and used to cut the sleeve between the feeding component and the fixing component;

[0008] an adjusting component, which is arranged on the support base and used to adjust the distance between the cutting component and the fixing component.

[0009] Compared with the prior art, by adjusting the distance between the fixing component and the cutting component through the adjusting component, sleeves of different lengths can be produced; and when the cutting component cuts the sleeve, it can prevent the bending change of the sleeve from being too large, so as to ensure that the notches of each sleeve are flat and consistent.

[0010] In a preferred technical solution of the present utility model, the feeding component includes a connecting seat arranged on the support seat, and an active wheel and a fine-tuning seat are rotatably installed on the connecting seat; a clamping wheel is rotatably installed on the fine-tuning seat, and the clamping wheel and the active wheel are located in the same plane; a gap is provided between the active wheel and the clamping wheel; the fine-tuning seat is used to adjust the width of the gap between the active wheel and the clamping wheel.

[0011] In a preferred technical solution of the present utility model, the cutting component includes a cutting seat fixedly installed at the bottom of the connecting seat. One end of the cutting seat is provided with a through hole coaxially arranged with the above-mentioned gap. A cutting rod is rotatably installed at the bottom of the cutting seat, and a cutter is arranged at one end of the cutting rod; the other end of the cutting rod is rotatably connected to a connecting rod, and a cylinder is fixedly connected to the connecting rod.

[0012] In a preferred technical solution of the present utility model, the fixing component includes a fixing seat arranged on the support seat and a driving block rotatably arranged on the surface of the fixing seat. A first sliding rod and a second sliding rod are slidably arranged on the fixing seat, and fixing rods are arranged on both the first sliding rod and the second sliding rod. The two fixing rods are adjacent and located on the same side of the fixing seat; when the driving block rotates, it synchronously drives the fixing rods on the first sliding rod and the fixing rods on the second sliding rod to move in opposite directions.

[0013] In a preferred technical solution of the present utility model, an auxiliary shaft is arranged on the surface of the fixing seat, the driving block is rotatably installed on the auxiliary shaft, driving grooves are provided at both ends of the driving block, driving rods adapted to the driving grooves are arranged on both the first sliding rod and the second sliding rod, and the ends of the two driving rods are respectively inserted into the driving grooves at both ends of the driving plate.

[0014] In a preferred technical solution of the present utility model, a cylinder is fixedly installed on the fixing seat and a push rod is fixedly installed on the first sliding rod, and the conveying end of the cylinder on the fixing seat abuts against the push rod.

[0015] In a preferred technical solution of the present utility model, a baffle is fixedly installed on the first sliding rod; the baffle and the fixing rod are located on both sides of the fixing seat; an elastic element is arranged between the second sliding rod and the baffle.

[0016] In a preferred technical solution of the present utility model, the adjusting component includes two adjusting seats fixedly installed on the support seat. A rotating shaft is rotatably installed between the two adjusting seats, and a suitable connecting piece is sleeved on the rotating shaft. The connecting piece is preferably a driving nut; when the rotating shaft rotates, the connecting piece reciprocates up and down along the rotating shaft between the two adjusting seats.

[0017] In a preferred technical solution of the present utility model, a material pulling component is further arranged between the fixing component and the cutting component, and the material pulling component is slidably connected to the support seat.

[0018] A fully automatic forming taping machine includes the above-mentioned double punching device for electronic components.

[0019] In addition to the technical problems solved by the present invention, the technical features constituting the technical solution, and the advantages brought by these technical features described above, other technical problems that the present utility model can solve, other technical features included in the technical solution, and the advantages brought by these technical features will be further described in detail with reference to the accompanying drawings. Description of the Drawings

[0020] Figure 1 is an isometric view of the present utility model.

[0021] Figure 2 is a rear view of the present utility model.

[0022] Figure 3 is an isometric view of the feeding component of the present utility model.

[0023] Figure 4 is an isometric view of the cutting component of the present utility model.

[0024] Figure 5 is an exploded isometric view of the fixing component of the present utility model.

[0025] Figure 6 is a front view of the fixing component in the open state of the present utility model.

[0026] Figure 7 is a front view of the fixing component in the clamped state of the present utility model.

[0027] Explanation of the reference numerals in the drawings: 01. Support base,

[0028] 02. Fixing component, 201. Fixing seat, 202. Sliding groove, 203. First sliding rod, 204. Second sliding rod, 205. Fixing rod, 206. Auxiliary shaft, 207. Driving block, 208. Driving groove, 209. Driving rod, 210. Push rod, 211. Baffle, 212. Elastic element, 213. Cover plate, 214. Strip-shaped hole, 215. Auxiliary seat, 216. Rotating groove,

[0029] 03. Feeding component, 301. Connecting seat, 302. Driving shaft, 303. Driving wheel, 304. Driving source, 305. Groove, 306. Fine-tuning seat, 307. Connecting shaft, 308. Clamping wheel, 309. Card slot, 310. Screw rod,

[0030] 04. Cutting component, 401. Cutting seat, 402. Through hole, 403. Cutting rod, 404. Cutter, 405. Connecting rod,

[0031] 05. Adjusting component, 501. Adjusting seat, 502. Rotating shaft, 503. Connecting piece,

[0032] 06. Material pulling component

[0033] 07. Cylinder. Specific implementation mode

[0034] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention.

[0035] As Figures 1-7 shown, the double punching device for electronic components of the present invention is used to cut a whole sleeve into sleeves of the same length, which is convenient for taking and using in subsequent processes. It includes a support base 01 fixedly connected to an external machine table. An upper feeding component 03 for driving the sleeve to move and a fixing component 02 for stabilizing the sleeve are provided on the support base 01. A cutting component 04 for cutting the sleeve located between the upper feeding component 03 and the fixing component 02 is provided between the fixing component 02 and the upper feeding component 03.

[0036] During use, since the fixing component 02 of the present invention is located below the upper feeding component 03. Therefore, the end of the sleeve is inserted from the top of the upper feeding component 03. The sleeve moves towards the fixing component 02 under the action of the upper feeding component 03. When the end of the sleeve moves to the set position, the upper feeding component 03 stops working, and the fixing component 02 clamps and fixes the end of the sleeve, so that the sleeve located between the upper feeding component 03 and the fixing component 02 is in a stopped state. The cutting component 04 cuts the sleeve located between the upper feeding component 03 and the fixing component 02. After cutting, the fixing component 02 is loosened and the sleeve is taken by an external device. At the same time as the fixing component 02 is loosened, the upper feeding component 03 continues to start. The above actions are repeated for the next cutting. To achieve the effect of continuous production.

[0037] As Figure 3As shown in the figure, the feeding component 03 includes a connecting seat 301 arranged on the support seat 01. A driving shaft 302 is rotatably connected to the connecting seat 301 through a rolling bearing. One end of the driving shaft 302 is fixedly installed with a driving wheel 303, and the other end of the driving wheel 303 is fixedly installed with a driving source 304. The driving source 304 is fixedly installed on the connecting seat 301 through a fastener. The driving source 304 is preferably a servo motor. An arc-shaped groove 305 is arranged on the outer surface of the driving wheel 303 to prevent the sleeve from separating from the driving wheel 303 during movement. A fine-tuning seat 306 is arranged on one side of the driving shaft 302. One end of the fine-tuning seat 306 is rotatably connected to the connecting seat 301 through the cooperation of a shaft and a hole. A connecting shaft 307 is rotatably installed in the middle of the fine-tuning seat 306 through a rolling bearing. A clamping wheel 308 is fixedly connected to the connecting shaft 307 and is in the same plane as the driving wheel 303. When the driving source 304 is started, the driving wheel 303 rotates, and the friction between the driving wheel 303 and the sleeve is used to drive the sleeve to move between the driving wheel 303 and the clamping wheel 308. A clamping groove 309 is arranged at the other end of the fine-tuning seat 306. A screw rod 310 is arranged on the connecting seat 301 and is in threaded connection with two nuts. The two nuts are located on both sides of the fine-tuning seat 306 and are in contact with the fine-tuning seat 306.

[0038] During use, the clamping groove 309 on the fine-tuning seat 306 is sleeved on the screw rod 310, and the fine-tuning seat 306 is rotated. When the fine-tuning seat 306 rotates towards the driving shaft 302, the clamping wheel 308 moves towards the driving wheel 303, so that the gap width between the clamping wheel 308 and the driving wheel 303 becomes smaller, which is suitable for sleeves with a small diameter. On the contrary, the gap width between the clamping wheel 308 and the driving wheel 303 becomes larger, which is suitable for sleeves with a large diameter. After rotating to the set position, the fine-tuning seat 306 is fixed by the two nuts on the screw rod 310, so that the gap between the driving wheel 303 and the clamping wheel 308 no longer changes. Therefore, the driving wheel 303 and the fine-tuning seat 306 are rotatably installed on the connecting seat 301, and the clamping wheel 308 is rotatably installed on the fine-tuning seat 306, so that the clamping wheel 308 and the driving wheel 303 are in the same plane. A gap for the sleeve to pass through is arranged between the driving wheel 303 and the clamping wheel 308. The rotation of the driving wheel 303 drives the sleeve to move in the gap. The rotation of the fine-tuning seat 306 adjusts the gap width, which is suitable for sleeves with different diameters.

[0039] As Figure 4As shown, the cutting component 04 includes a cutting seat 401 fixedly installed at the bottom of the connecting seat 301. One end of the cutting seat 401 is provided with a through hole 402 coaxially arranged with the above-mentioned gap, which plays a role of preliminary guidance when the sleeve passes through the through hole 402 and also provides support for subsequent cutting. A cutting rod 403 is rotatably installed at the bottom of the cutting seat 401, and a cutter 404 is provided at one end of the cutting rod 403. The other end of the cutting rod 403 is rotatably connected to a connecting rod 405, and a cylinder 07 is fixedly connected to the connecting rod 405. Here, the cylinder 07 is fixedly installed on the above-mentioned connecting seat 301 through fasteners. When the output end of the cylinder 07 extends, the connecting rod 405 pushes the cutting rod 403 to rotate, causing the cutter 404 to move towards the sleeve to cut the sleeve. When the output end of the cylinder 07 retracts, the connecting rod 405 drives the cutting rod 403 to rotate, causing the cutter 404 to move away from the sleeve, enabling the sleeve to pass through the cutting component 04 smoothly.

[0040] As Figures 5-7 shown, the fixing component 02 includes a fixing seat 201 arranged on the support seat 01. A through sliding groove 202 is arranged in the fixing seat 201. A first sliding rod 203 and a second sliding rod 204 are arranged in the sliding groove 202 in sequence. Fixing rods 205 are arranged on both the first sliding rod 203 and the second sliding rod 204. The two fixing rods 205 are adjacent and on the same side of the fixing seat 201. An auxiliary shaft 206 is arranged on the surface of the fixing seat 201, and a driving block 207 is rotatably installed on the auxiliary shaft 206. Driving grooves 208 are arranged at both ends of the driving block 207. Driving rods 209 adapted to the driving grooves 208 are arranged on both the first sliding rod 203 and the second sliding rod 204. The end parts of the two driving rods 209 are respectively inserted into the driving grooves 208 at both ends of the driving plate.

[0041] During use, when the driving block 207 rotates counterclockwise around the auxiliary shaft 206 (as Figure 6 shown), the driving rod 209 on the first sliding rod 203 pushes the first sliding rod 203 to move in the sliding groove 202, causing the fixing rod 205 on the first sliding rod 203 to move away from the fixing seat 201. At the same time, the driving rod 209 on the second sliding rod 204 drives the second sliding rod 204 to move in the sliding groove 202 in the direction opposite to the moving direction of the first sliding rod 203 (towards the fixing seat 201). Thus, the fixing rod 205 on the second sliding rod 204 moves towards the fixing seat 201, causing the two fixings to be in an open state, and the sleeve can move freely within the fixing component 02. On the contrary, when the driving block 207 rotates clockwise around the auxiliary shaft 206 (as Figure 7As shown). The fixed rod 205 on the second sliding rod 204 moves away from the fixed seat 201, and the fixed rod 205 on the first sliding rod 203 moves towards the fixed seat 201, so that the two fixings are in a closed state, thereby realizing the clamping of the sleeve. Therefore, by slidably arranging the first sliding rod 203 and the second sliding rod 204 on the fixed seat 201, and simultaneously rotatably arranging the driving block 207 on the fixed seat 201, when the driving block 207 rotates, it synchronously drives the fixed rod 205 on the first sliding rod 203 and the fixed rod 205 on the second sliding rod 204 to move in opposite directions, thereby realizing the clamping and loosening of the sleeve.

[0042] A cylinder 07 is fixedly installed on the fixed seat 201 through a fastener and a push rod 210 fixedly installed on the first sliding rod 203 through a fastener. The conveying end of the cylinder 07 on the fixed seat 201 abuts against the push rod 210. When the output end of the cylinder 07 on the fixed seat 201 extends, the thrust generated acts on the push rod 210, and the first sliding rod 203 is driven to move in the sliding groove 202 by the push rod 210. During the movement of the first sliding rod 203, the driving rod 209 located on the first sliding rod 203 drives the driving block 207 to rotate (counterclockwise). When the driving block 207 rotates, the driving rod 209 on the second slider synchronously moves in the sliding groove 202, and the moving direction of the second sliding rod 204 is opposite to that of the first sliding rod 203. It should be noted that in this application, the cylinder 07 can be fixed on the fixed seat 201, or the cylinder 07 can be fixed on the support seat 01. This will not be elaborated here. At the same time, the above-mentioned cylinder 07 can be replaced by a linear motor, an oil cylinder or other mechanical structures (such as a crank connecting rod structure).

[0043] A baffle 211 is fixedly installed on the first sliding rod 203 by means of fasteners or welding. The baffle 211 and the fixed rod 205 are located on both sides of the fixed seat 201. An elastic element 212 is arranged between the second sliding rod 204 and the baffle 211, and the elastic element 212 is preferably a spring. One end of the elastic element 212 abuts against the second sliding rod 204, and the other end of the elastic element 212 abuts against the baffle 211. Since the air cylinder 07 and the push rod 210 are in abutment, when the output end of the air cylinder 07 retracts, the push rod 210 is separated from the output end of the air cylinder 07. The elastic force released by the elastic element 212 acts on the first sliding rod 203 and the second sliding rod 204. The fixed rod 205 on the second sliding rod 204 moves away from the fixed seat 201, and the fixed rod 205 on the first sliding rod 203 moves towards the fixed seat 201, so that the two fixing rods are in a closed state, realizing clamping and fixing of the sleeve. The elastic element 212 is used to clamp and fix the sleeve to prevent damage to the sleeve during the clamping process. Since the spring force of the elastic element 212 is proportional to the compression amount, and at the same compression distance, the length of the spring directly determines the compression amount. Therefore, during the actual movement, the length of the spring is adjusted at all times to ensure the clamping force between the two fixed rods 205. Thus, it is ensured that the sleeve will not be damaged. Compared with other methods of driving the two fixed rods 205 to clamp, the use of the elastic element 212 has a lower cost and a faster adjustment speed.

[0044] In order to reduce the processing difficulty of the sliding groove 202 on the fixed seat 201 during the production process. A cover plate 213 is fixedly installed on the fixed seat 201 by means of fasteners. The cover plate 213 covers the sliding groove 202. The above-mentioned auxiliary shaft 206 is fixedly installed on the cover plate 213. A strip-shaped hole 214 corresponding to the driving rod 209 is arranged on the cover plate 213, and the driving rod 209 passes through the strip-shaped hole 214 and is inserted into the driving groove 208.

[0045] In order to protect the driving block 207 and prevent the driving block 207 from being interfered by external objects during rotation and improve the stability of the auxiliary shaft 206, an auxiliary seat 215 is fixedly installed on the cover plate 213 by means of fasteners. A rotating groove 216 is arranged between the auxiliary seat 215 and the cover plate 213. One end of the auxiliary shaft 206 is connected to the cover plate 213, and the other end is connected to the auxiliary seat 215, so that the driving block 207 rotates in the rotating groove 216. Both ends of the auxiliary shaft 206 are fixed to the cover plate 213 and the auxiliary seat 215 respectively, improving the stability of the auxiliary shaft 206.

[0046] As Figure 2As shown in the figure, an adjusting component 05 for adjusting the distance between the adjusting and cutting component 04 and the fixing component 02 is provided on the support base 01. The adjusting component 05 includes two adjusting seats 501 fixedly installed on the support base 01. A rotating shaft 502 is rotatably installed between the two adjusting seats 501 through a rolling bearing. The rotating shaft 502 is preferably a driving lead screw. An adapted connecting member 503 is sleeved on the rotating shaft 502. The connecting member 503 is preferably a driving nut. Thus, when the rotating shaft 502 rotates, the connecting member 503 reciprocates up and down along the rotating shaft 502 between the two adjusting seats 501. In this application, the connecting seat 301 of the feeding component 03 is fixedly connected to the connecting member 503, and at the same time, the feeding component 03 and the support base 01 are connected by a linear guide rail, so that the connecting seat 301 is slidably connected to the support base 01. When a rotating force is applied to the rotating shaft 502 to make it rotate, the rotating force comes from a handle or a motor fixedly connected to the rotating shaft 502. The connecting member 503 moves on the rotating shaft 502, thereby driving the feeding component 03 to move up and down along the linear guide rail. Since the cutting component 04 of this application is fixedly installed on the feeding component 03, when the feeding component 03 moves up and down, the distance between the adjusting and cutting component 04 and the fixing component 02 is adjusted.

[0047] It should be noted that the adjusting component 05 can be arranged on one side of the fixing component 02, and the connecting member 503 of the adjusting component 05 is fixedly connected to the fixing seat 201 of the fixing component 02. The fixing component 02 and the support base 01 are slidably connected through a support guide rail. Or the adjusting component 05 can be arranged on one side of the cutting component 04. The connecting member 503 of the adjusting component 05 is fixedly connected to the cutting seat 401 of the cutting component 04. The cutting component 04 and the support base 01 are slidably connected through a support guide rail. Similarly, the distance between the adjusting and cutting component 04 and the fixing component 02 can be adjusted.

[0048] The function of the adjusting component 05 in this application is as follows. If the distance between the cutting component 04 and the fixing component 02 is the designed length of the sleeve, when the end of the sleeve enters the fixing component 02, the fixing component 02 clamps and fixes the sleeve, and the feeding component 03 stops working, so that the sleeve located between the feeding component 03 and the fixing component 02 is in a stopped state. The cutting component 04 cuts the sleeve located between the feeding component 03 and the fixing component 02. By adjusting the distance between the fixing component 02 and the cutting component 04 through the adjusting component 05, sleeves of different lengths can be produced.

[0049] When the distance between the cutting part 04 and an external sensor (such as a position sensor) is equal to the designed length of the sleeve, when the end of the sleeve contacts the external sensor, the feeding part 03 stops working, and the fixing part 02 clamps and fixes the end of the sleeve. The cutting part 04 cuts the sleeve located between the feeding part 03 and the fixing part 02. By adjusting the distance between the fixing part 02 and the cutting part 04 through the adjusting part 05, sleeves made of different materials can be produced. Since items made of the same material are fixed at two points, when a pressure is applied to the sleeve, the greater the distance between the two points, the greater the bending change of the material, and the smaller the distance between the two points, the smaller the bending change of the material. Therefore, the adjusting part is used to shorten the distance between the cutting part 04 and the fixing part 02. This prevents the cutting part 04 from causing excessive bending of the sleeve during cutting, ensuring that the notch of each sleeve is flat and consistent.

[0050] It should be noted that controlling the start and stop of the feeding part 03 through a sensor is prior art for those skilled in the art.

[0051] As Figure 2 shown, to ensure that the sleeve sent out by the feeding part 03 can smoothly enter or pass through the fixing part 02, a pulling part 06 is provided between the fixing part 02 and the cutting part 04. The pulling part 06 is connected to the support base 01 through a linear guide sliding rod. The pulling part 06 is the same as the above-mentioned fixing part 02 and will not be elaborated here. After the cutting part 04 finishes cutting the sleeve, the feeding part 03 starts again, causing the sleeve to continue moving towards the fixing part 02 for a certain distance. Then, the pulling part 06 guides the sleeve to move towards the fixing part 02, enabling the end of the sleeve to accurately penetrate into the fixing part 02.

[0052] This utility model also provides a fully automatic forming and taping machine, which includes the above-mentioned double punching device for electronic components.

[0053] It should be noted that for the sake of clear description, the fasteners described in this application are any one of screws, bolts, and screws. At the same time, "cylinders" installed in different positions and of different models are identified with the same reference numeral "07".

[0054] If there are directional indications (such as up, down, left, right, front, back...) involved in the embodiments of this utility model, then such directional indications are only used to explain the relative positional relationship and movement conditions between components in a specific posture (as shown in the drawings). If this specific posture changes, then the directional indications will also change accordingly.

[0055] The above embodiments are only descriptions of the preferred embodiments of the present utility model, and do not limit the scope of the present utility model. Without departing from the design spirit of the present utility model, various deformations and improvements made by those of ordinary skill in the art to the technical solutions of the present utility model shall fall within the protection scope determined by the claims of the present utility model.

Claims

1. A double punching device for electronic components, comprising a support seat, characterized in that: A feeding component, which is arranged on the support seat and is used to drive the sleeve to move; A fixing component, which is arranged on the support seat and is used to stabilize the sleeve; A cutting component, located between the fixing component and the feeding component, and used for cutting the sleeves of the feeding component and the fixing component; The adjusting component is arranged on the supporting seat and is used for adjusting the distance between the cutting component and the fixing component.

2. The electronic component double punching device according to claim 1, characterized in that: The feeding component includes a connecting seat arranged on the supporting seat, on which a driving wheel and a fine-tuning seat are rotatably mounted; a clamping wheel is rotatably mounted on the fine-tuning seat, and the clamping wheel and the driving wheel are located on the same plane; a gap is arranged between the driving wheel and the clamping wheel; the fine-tuning seat is used to adjust the gap width between the driving wheel and the clamping wheel.

3. The electronic component double punching device according to claim 2, characterized in that: The cutting component includes a cutting seat fixedly installed at the bottom of the connecting seat, one end of the cutting seat is provided with a through hole coaxially arranged with the above-mentioned gap, a cutting rod is rotatably installed at the bottom of the cutting seat, one end of the cutting rod is provided with a cutting knife; the other end of the cutting rod is rotatably connected to a connecting rod, and a cylinder is fixedly connected to the connecting rod.

4. The electronic component double punching device according to claim 1, characterized in that: The fixing component includes a fixing seat arranged on the supporting seat and a driving block rotatably arranged on the surface of the fixing seat, a first sliding rod and a second sliding rod are slidingly arranged on the fixing seat, and a fixing rod is arranged on the first sliding rod and the second sliding rod, and the two fixing rods are adjacent and located on the same side of the fixing seat; when the driving block rotates, the fixing rod on the first sliding rod and the fixing rod of the second sliding rod are synchronously driven to move in opposite directions.

5. The electronic component double punching device according to claim 4, characterized in that: An auxiliary shaft is arranged on the surface of the fixed seat, and the driving block is rotatably mounted on the auxiliary shaft. Both ends of the driving block are provided with driving grooves, and the first sliding rod and the second sliding rod are provided with driving rods adapted to the driving grooves, and the ends of the two driving rods are respectively inserted into the driving grooves at both ends of the driving plate.

6. The electronic component double punching device according to claim 5, characterized in that: A cylinder and a push rod fixedly mounted on the first slide bar are fixedly mounted on the fixed seat, and a delivery end of the cylinder on the fixed seat abuts against the push rod.

7. The electronic component double punching device according to claim 6, characterized in that: A baffle is fixedly mounted on the first slide bar; the baffle and the fixing bar are located on both sides of the fixing seat; and an elastic element is arranged between the second slide bar and the baffle.

8. The electronic component double punching device according to claim 1, characterized in that: The adjusting component includes two adjusting seats fixedly mounted on the supporting seat, a rotating shaft is rotatably mounted between the two adjusting seats, and an adaptable connecting piece is sleeved on the rotating shaft, which is a driving nut; when the rotating shaft rotates, the connecting piece moves back and forth up and down between the two adjusting seats along the rotating shaft.

9. The electronic component double punching device according to claim 1, characterized in that: A material pulling component is also arranged between the fixing component and the cutting component, and the material pulling component is slidably connected to the supporting seat.

10. A fully automatic forming tape braiding machine, characterized in that: The invention comprises the electronic component double punching device as described in any one of claims 1 to 9.