Magnetic bar winding device

The magnetic rod winding device, which integrates a vibratory feeder and adhesive components, achieves automatic feeding and adhesive bonding of magnetic rods, solving the problem of low efficiency in traditional manual feeding and improving production efficiency and winding quality.

CN223728597UActive Publication Date: 2025-12-26SUZHOU YAST AUTOMATION EQUIP CO LTD
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Patent Information

Application Number
CN202423317439.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2025-12-26
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

In the traditional magnetic rod winding process, the feeding of magnetic rods relies on manual operation, which leads to low efficiency, high labor costs, and problems such as inaccurate positioning.

Method used

A magnetic rod winding device integrating a vibratory feeder, a magnetic rod carrier, and an adhesive assembly was designed. The device achieves automatic feeding and adhesive bonding of magnetic rods through a magnetic rod drive mechanism and a carrier driver, avoiding manual intervention.

Benefits of technology

The entire process from magnetic rod feeding to winding has been automated, which has improved production efficiency, reduced human error, and ensured winding quality and efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of winding machines, in particular to a magnetic bar winding device. Comprising a winding machine, a magnetic bar feeding assembly and a gluing assembly, wherein the magnetic bar feeding assembly supplies magnetic bars to the winding machine; the magnetic bar feeding device is provided with a vibration disc and a magnetic bar carrier, a magnetic bar driving mechanism is arranged at the discharging end of the vibration disc, the magnetic bar carrier is arranged on a feeding station and a discharging station which are arranged corresponding to the vibration disc and the winding machine in a sliding mode, and the magnetic bar driving mechanism pushes magnetic bars output by the vibration disc to the magnetic bar carrier. The gluing assembly is arranged close to the winding machine and provided with a gluing arm, and the gluing arm is driven by a gluing driver to move towards the magnetic bar in the discharging station to glue the magnetic bar.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a winding machine field especially relates to a magnetic rod winding device. BACKGROUND

[0002] The winding machine is the key equipment of electronic, electric appliance, automobile and communication industry, and its main function is to wind wire, enameled wire and other wire materials on various electronic components or products to form the required inductance, transformer and other structures. The magnetic rod winding machine is a kind of winding machine, and is specially used to wind wire on magnetic rod to meet specific application requirements.

[0003] In the traditional magnetic rod winding process, the feeding of magnetic rod mainly relies on manual operation. This production mode has many deficiencies, such as low efficiency, high labor cost, large operation error and the like. Especially in the magnetic rod feeding link, manual operation not only consumes time and effort, but also is prone to cause inaccurate magnetic rod position due to improper operation, thereby affecting subsequent winding quality and production efficiency. UTILITY MODEL CONTENTS

[0004] The utility model aims at providing a magnetic rod winding device to solve the problem of manual feeding of magnetic rod and skeleton in the prior art.

[0005] The technical scheme of the utility model is: a magnetic rod winding device, comprising:

[0006] a winding machine;

[0007] a magnetic rod feeding assembly for supplying magnetic rod to the winding machine;It has a vibrating disc and a magnetic rod carrier, a magnetic rod driving mechanism is arranged at the discharging end of the vibrating disc, the magnetic rod carrier is slidingly arranged at the feeding station and the discharging station corresponding to the vibrating disc and the winding machine respectively, and the magnetic rod driving mechanism pushes the magnetic rod output by the vibrating disc onto the magnetic rod carrier;

[0008] a glue sticking assembly is arranged near the winding machine, and has a glue sticking arm, which moves towards the magnetic rod in the discharging station under the driving of a glue sticking driver, and sticks glue on the magnetic rod.

[0009] Preferably, the magnetic rod carrier is arranged on a carrier track, one end of the carrier track corresponds to the vibrating disc, the other end corresponds to the winding machine, and a carrier driver is arranged on the carrier track, and the magnetic rod carrier slides along the carrier track under the traction of the carrier driver.

[0010] Preferably, the magnetic rod carrier has a carrying end for carrying magnetic rod, the carrying end is connected with the carrier driver through a feeding driving module, the feeding driving module includes a jacking mechanism and a pushing mechanism, the jacking mechanism drives the carrying end to perform lifting action, so that the carrying end has a first height and a second height corresponding to the feeding station and the discharging station respectively.

[0011] Preferably, the magnetic rod driving mechanism comprises a feeding auxiliary block arranged near the discharge end of the vibration disc, the feeding auxiliary block has a feeding channel coaxial with the loading end in the feeding station, a first driver is arranged corresponding to the discharge end of the vibration disc and the feeding channel, and the first driver pushes the magnetic rod output by the vibration disc into the feeding channel.

[0012] Preferably, a second driver is arranged at the end of the feeding channel away from the magnetic rod carrier, and the second driver pushes the magnetic rod entering the feeding channel into the magnetic rod carrier.

[0013] Preferably, a glue nozzle is arranged on the glue arm, and a glue stick is detachably arranged in the glue nozzle, and the glue driving device drives the glue nozzle to move, so that the magnetic rod dips the glue liquid on the glue stick.

[0014] Compared with the prior art, the advantages of the present application are that: the magnetic rod feeding assembly, the winding machine and the glue assembly are integrated, the whole process automation from automatic feeding to winding and then to gluing of the magnetic rod is realized, and the production efficiency is significantly improved. The vibration disc and the magnetic rod driving mechanism in the magnetic rod feeding assembly work cooperatively, can stably push the magnetic rod into the magnetic rod carrier, and avoid the tediousness and error of manual feeding. BRIEF DESCRIPTION OF DRAWINGS

[0015] The present application will be further described below in combination with the drawings and embodiments:

[0016] Figure 1 A structure diagram of the magnetic rod winding device is shown in the present application;

[0017] Figure 2 A structure diagram of the magnetic rod carrier is shown in the present application;

[0018] Figure 3 A structure diagram of the magnetic rod driving structure is shown in the present application;

[0019] Figure 4 A structure diagram of the glue assembly is shown in the present application;

[0020] Wherein: 1, winding machine, 2, magnetic rod feeding assembly, 21, vibration disc, 22, magnetic rod carrier, 221, loading end, 222, feeding driving module, 2221, feeding mechanism, 2222, jacking mechanism, 23, magnetic rod driving mechanism, 231, feeding auxiliary block, 232, first driver, 233, second driver, 234, feeding channel, 3, glue assembly, 31, glue arm, 32, glue nozzle, 33, glue driving device, 4, carrier track. DETAILED DESCRIPTION

[0021] The content of the present application will be further described in combination with specific embodiments:

[0022] As shown in Figure 1 A magnetic rod winding device, comprising a winding machine 1, a magnetic rod feeding assembly 2 and a glue assembly 3.

[0023] The magnetic rod feeding assembly 2 is used to supply the magnetic rod for the winding machine 1, and has a vibration disc 21 for outputting the magnetic rod and a magnetic rod carrier 22 for transferring the magnetic rod output from the vibration disc 21 to the winding machine 1. The magnetic rod in the vibration disc 21 is pushed into the magnetic rod carrier 22 by a magnetic rod driving mechanism 23. As shown in Figure 4 The glue assembly 3 is arranged near the winding machine 1, and has a glue arm 31, the glue arm 31 is provided with glue nozzles 32, each glue nozzle 32 is detachably installed with a glue stick, and the glue arm 31 is driven by a glue driver 33 to make the glue nozzle 32 abut against the magnetic rod placed in the winding machine 1, so that the magnetic rod dips the glue liquid on the glue stick, thereby facilitating the subsequent winding work of the magnetic rod.

[0024] Specifically, as shown in Figure 2 The magnetic rod carrier 22 is arranged on a carrier track 4, one end of the carrier track 4 corresponds to the vibration disc 21, the other end corresponds to the winding machine 1, and the carrier track 4 is provided with a carrier driver, and the magnetic rod carrier 22 slides along the carrier track 4 under the traction of the carrier driver. In this embodiment, the carrier driver is composed of a servo motor, a synchronous belt and a synchronous pulley, the magnetic rod carrier 22 is fixed with the synchronous belt and operates under the drive of the servo motor.

[0025] The magnetic rod carrier 22 comprises a carrying end 221 for carrying the magnetic rod, and the carrying end 221 can clamp the magnetic rod in the horizontal direction. Therefore, the carrying end 221 is connected with the carrier driver through a feeding driving module 222, and the feeding driving module 222 comprises a pushing mechanism 2221 composed of a cylinder and a guide rail. When the carrying end 221 enters the feeding station corresponding to the winding machine 1, the pushing mechanism 2221 acts to make the carrying end 221 run towards the winding machine 1, so as to insert the magnetic rod into the winding machine 1. Because the installation position of the magnetic rod on the winding machine 1 is inconsistent with the height of the carrying end 221 in the feeding station, the feeding driving module 222 further comprises a jacking mechanism 2222 for driving the carrying end 221 to perform lifting action, so that the carrying end 221 has a first height corresponding to the feeding station and a second height corresponding to the discharging station.

[0026] As shown in Figure 3As shown, the magnetic rod driving mechanism 23 comprises a feeding auxiliary block 231 arranged near the discharge end of the vibration disc 21, the feeding auxiliary block 231 has a feeding channel 234 coaxial with the loading end 221 in the feeding station, a first driver 232 is arranged corresponding to the discharge end of the vibration disc 21 and the feeding channel 234, for pushing the magnetic rod output by the vibration disc 21 into the feeding channel 234. The first driver 232 is arranged perpendicular to the feeding channel 234, and a containing groove is arranged at the execution end, which corresponds to the discharge end of the vibration disc 21 at the initial position, so that the magnetic rod output by the vibration disc 21 can enter the containing groove. After the first driver 232 acts, the magnetic rod is brought into the feeding channel 234 through the containing groove, and the second driver 233 is arranged at the end of the feeding channel 234 away from the magnetic rod carrier 22, which pushes the magnetic rod entering the feeding channel 234 into the magnetic rod carrier 22.

[0027] When working:

[0028] 1. The vibration disc 21 works to output the magnetic rods one by one.

[0029] 2. The first driver 232 of the magnetic rod driving mechanism 23 is started to push the magnetic rod output by the vibration disc 21 into the feeding channel 234 perpendicular to the feeding channel 234. Then, the second driver 233 at the end of the feeding channel 234 away from the magnetic rod carrier 22 is started to push the magnetic rod entering the feeding channel 234 into the loading end 221 of the magnetic rod carrier 22 waiting on the carrier track 4.

[0030] 3. The magnetic rod carrier 22 is pulled by the carrier driver to slide along the carrier track 4 from one end of the vibration disc 21 to one end of the winding machine 1.

[0031] 4. When the magnetic rod carrier 22 slides to the feeding station corresponding to the winding machine 1, the jacking mechanism 2222 is started to drive the loading end 221 to rise to the first height corresponding to the feeding station, and the pushing mechanism 2221 of the feeding driving module 222 is started to make the loading end 221 run towards the winding machine 1, preparing to insert the magnetic rod into the winding machine 1.

[0032] 5. After the magnetic rod is connected with the winding machine 1, the adhesive assembly 3 acts to stick glue on the magnetic rod.

[0033] The above examples are only for illustrating the technical concept and characteristics of the present application, and the purpose is to enable those skilled in the art to understand the content of the present application and to implement it, and cannot limit the protection scope of the present application. For those skilled in the art, it is obvious that the present application is not limited to the details of the above exemplary embodiments, and the present application can be implemented in other specific forms without departing from the spirit or basic characteristics of the present application, therefore, from any point of view, the examples should be regarded as exemplary and non-limiting, the scope of the present application is defined by the appended claims rather than the above description, therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present application.

Claims

1. A magnetic rod winding device, characterized by, The application relates to a winding machine (1) and a magnetic rod feeding assembly (2) for supplying the winding machine (1) with magnetic rods. The magnetic rod feeding assembly (2) comprises a vibrating disc (21) and a magnetic rod carrier (22), the discharging end of the vibrating disc (21) is provided with a magnetic rod driving mechanism (23), the magnetic rod carrier (22) is slidably arranged in a feeding station and a discharging station which are respectively arranged corresponding to the vibrating disc (21) and the winding machine (1), and the magnetic rod driving mechanism (23) pushes the magnetic rods output by the vibrating disc (21) to the magnetic rod carrier (22). A glue sticking assembly (3) is arranged close to the winding machine (1) and comprises a glue sticking arm (31), the glue sticking arm (31) is driven by a glue sticking driver (33) to move towards the magnetic rod in the discharging station and stick glue on the magnetic rod. The magnetic rod carrier (22) is arranged on a carrier track (4), one end of the carrier track (4) corresponds to the vibrating disc (21), the other end of the carrier track (4) corresponds to the winding machine (1), and a carrier driver is arranged on the carrier track (4), and the magnetic rod carrier (22) slides along the carrier track (4) under the traction of the carrier driver. The magnetic rod carrier (22) has a carrying end (221) for carrying the magnetic rod, the carrying end (221) is connected with the carrier driver through a feeding driving module (222), the feeding driving module (222) comprises a jacking mechanism (2222) and a pushing mechanism (2221), the jacking mechanism (2222) drives the carrying end (221) to perform lifting action, so that the carrying end (221) has a first height and a second height corresponding to the feeding station and the discharging station respectively.

2. A magnetic rod winding device according to claim 1, characterized in that The magnetic rod driving mechanism (23) comprises an auxiliary feeding block (231) arranged close to the discharging end of the vibrating disc (21), the auxiliary feeding block (231) has a feeding channel (234) coaxial with the carrying end (221) in the feeding station, a first driver (232) is arranged corresponding to the discharging end of the vibrating disc (21) and the feeding channel (234), and the first driver (232) pushes the magnetic rods output by the vibrating disc (21) into the feeding channel (234).

3. A magnetic rod winding device according to claim 2, wherein A second driver (233) is arranged at the end of the feeding channel (234) away from the magnetic rod carrier (22), and the second driver (233) pushes the magnetic rods entering the feeding channel (234) into the magnetic rod carrier (22).

4. A magnetic rod winding device according to claim 3, wherein A glue nozzle (32) is arranged on the glue sticking arm (31), a glue stick is detachably arranged in the glue nozzle (32), and the glue sticking driver (33) drives the glue nozzle (32) to move, so that the magnetic rod dips the glue liquid on the glue stick.

5. A magnetic rod winding device according to claim 4, wherein ​ 6. A magnetic rod winding device according to claim 1, wherein ​