Feeding mechanism for multifunctional winding machine

By designing a split track structure and direct vibration drive, the difficulty of replacing the material feeding mechanism of the winding machine and the problem of poor transportation have been solved, realizing convenient replacement and smooth transportation, which is suitable for multi-functional winding machines.

CN224105320UActive Publication Date: 2026-04-10DONGGUAN ZHONGHAI AUTOMATION TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-30
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

The feeding mechanism of the existing winding machine has problems such as difficulty in replacement, unsmooth transportation, and failure to meet the requirements of cleanroom during the replacement process.

Method used

The feeding and discharging components are composed of a long feeding track, a short feeding track, a long discharging track, and a short discharging track, respectively. The driving force is provided by a direct vibration drive component. The short track structure is replaceable, while the long track is fixed. The support body and conveying port design can adapt to different skeletons.

Benefits of technology

It enables convenient replacement, reduces costs, ensures smooth transportation, and meets the requirements of cleanrooms.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of winding machine equipment structures, and particularly relates to a feeding mechanism for a multifunctional winding machine, the feeding mechanism comprises a feeding assembly and a discharging assembly which are oppositely arranged, the feeding assembly comprises a long feeding rail and a short feeding rail which are sequentially arranged on a first straight vibration driving part in a split mode, and the discharging assembly comprises a second straight vibration driving part; the discharging assembly comprises a discharging short rail and a discharging long rail which are arranged on the second straight vibration driving part in sequence in a split mode. When the winding machine is used for winding skeletons of different structures, only the feeding short track and the discharging short track need to be replaced in a fool mode through the feeding mechanism, the feeding long track and the discharging long track do not need to be replaced, cost is saved, and meanwhile smooth conveying can be guaranteed through the position arrangement of the winding machine.
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Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of winding machine equipment structure, and particularly relates to a feeding mechanism for a multifunctional winding machine. BACKGROUND

[0002] At present, a winding machine is a device for winding a linear object on a specific workpiece, and is usually used for copper wire winding. In order to cope with the rising labor force and the high requirements of product quality, the existing winding machine realizes automation, and is a device with high automation degree which is combined by a motor, an electric element, a pneumatic element, a transmission device, a sensor and a control system. The winding machine can usually automatically arrange wires, wind heads, clamp wires, twist wires and feed materials.

[0003] In order to meet the production requirements, a skeleton or a mold is usually used for winding to obtain a finished product with a set shape. Under the background of automatic production, a feeding mechanism is needed to complete the conveying of the skeleton. The skeleton shape required for processing each finished product is different, and a new feeding mechanism needs to be replaced each time a new product is produced.

[0004] In order to solve the above problems, in the existing technical scheme, a conveying component is usually added at one end of the conveying track close to the processing part to cooperate with the conveying track. The conveying component is directly connected with the bottom plate through an adjusting assembly, so that only the conveying component needs to be replaced. However, this raises new problems. First, after replacement, the adjusting assembly needs to be adjusted to communicate with the conveying track, increasing the difficulty of replacement. Second, the conveying component is hard connected with the bottom plate, and the conveying component lacks driving force for straight vibration during work, resulting in unsmooth conveying. In addition, a blowing device is usually needed in the existing technical scheme, which does not meet the requirements of a dust-free workshop. There is an urgent need for a solution to solve the above problems. SUMMARY

[0005] The application aims at the deficiencies of the prior art, and provides a feeding mechanism for a multifunctional winding machine, which can ensure smooth conveying and facilitate replacement and cost saving in actual application.

[0006] In order to achieve the above purpose, the application adopts the following technical scheme:

[0007] A feeding mechanism for a multifunctional winding machine, comprising an inlet assembly and an outlet assembly arranged oppositely, the inlet assembly comprising an inlet long track and an inlet short track arranged in sequence and separately on a first straight vibration driving member, and the outlet assembly comprising an outlet short track and an outlet long track arranged in sequence and separately on a second straight vibration driving member.

[0008] As an improvement of the feeding mechanism for the multifunction winding machine, the length L1 of the feeding long track and the length L2 of the feeding short track satisfy the relationship L1>L2 in the conveying direction.

[0009] As an improvement of the feeding mechanism for the multifunction winding machine, the length L3 of the feeding short track and the length L4 of the feeding long track satisfy the relationship L3

[0010] As an improvement of the feeding mechanism for the multifunction winding machine, the feeding short track and the feeding long track are the same in structure, and each has a support body and a conveying port, the support body is arranged inside the groove, and the conveying port is arranged on the side facing the processing equipment.

[0011] As an improvement of the feeding mechanism for the multifunction winding machine, the feeding short track and the feeding long track are the same in structure, and each has a support body and a conveying port, the support body is arranged inside the groove, and the conveying port is arranged on the side facing the processing equipment.

[0012] The beneficial effects of the present application are that in actual use, the feeding assembly and the discharging assembly each have a straight vibration conveying force, the feeding assembly is provided with a feeding short track and a feeding long track, the discharging assembly is provided with a discharging short track and a discharging long track, so that when different structures of the skeleton need to be replaced, only the feeding short track and the discharging short track need to be replaced, and the entire groove body does not need to be replaced, thereby saving costs; the feeding short track and the feeding long track are arranged on the first support frame, and the placing groove and the discharging long track are arranged on the second support frame, the feeding short track and the placing groove can still be aligned with the feeding short track and the discharging long track after installation, and only simple installation is required, without the need for position adjustment, thereby reducing the difficulty of replacement, and the feeding short track and the placing groove can also have a straight vibration driving force, thereby ensuring the normal operation of the feeding mechanism. BRIEF DESCRIPTION OF DRAWINGS

[0013] The features, advantages, and technical effects of the exemplary embodiments of the present application will be described below with reference to the accompanying drawings.

[0014] Figure 1 The structure of the embodiment of the present application is shown in the schematic diagram.

[0015] Figure 2 The structure of the feeding short track and the discharging short track in the embodiment of the present application is shown in the schematic diagram.

[0016] Among them, the reference signs are explained as follows:

[0017] 1. Feeding assembly; 11. First direct vibration drive component; 12. Long feeding track; 13. Short feeding track;

[0018] 2. Discharge assembly; 21. Second direct vibration drive component; 22. Short discharge track; 23. Long discharge track;

[0019] 3. Support structure;

[0020] 4. Delivery port;

[0021] 5. Adhesive components;

[0022] A. Conveying direction. Detailed Implementation

[0023] If certain terms are used in the specification and claims to refer to specific components, those skilled in the art will understand that hardware manufacturers may use different names to refer to the same component. This specification and claims do not distinguish components based on differences in name, but rather on differences in function. The term "comprising" throughout the specification and claims is an open-ended term and should be interpreted as "including but not limited to." "Approximately" means that within an acceptable margin of error, those skilled in the art can solve the technical problem and substantially achieve the technical effect within a certain margin of error. Furthermore, terms such as "first," "second," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0024] In the description of this application, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "horizontal", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.

[0025] In this application, unless otherwise expressly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection between two components. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.

[0026] The following is in conjunction with the appendix Figures 1-2 The present application will be further described in detail with reference to specific implementation methods, but this is not intended to limit the present application.

[0027] Implementation

[0028] As Figure 1 shown, a walking mechanism for a multifunctional winding machine, comprising a feeding assembly 1 and a discharging assembly 2 arranged oppositely, in actual work, the straight vibration driving element is connected with an external driving source, so that the walking mechanism has a driving force in the form of straight vibration, the skeleton is conveyed to one end close to the discharging assembly 2 in the feeding assembly 1, and the running mechanism detects and takes out the skeleton for winding, and after winding, the skeleton is put into the discharging assembly 2 and transported to a designated place.

[0029] Specifically, the feeding assembly 1 comprises a feeding long rail 12 and a feeding short rail 13 arranged in sequence and separately on a first straight vibration driving element 14, and in the conveying direction A, the length L1 of the feeding long rail 12 and the length L2 of the feeding short rail 13 satisfy the relationship: L1>L2.

[0030] Specifically, the discharging assembly 2 comprises a discharging short rail 22 and a discharging long rail 23 arranged in sequence and separately on a second straight vibration driving element 24, and in the conveying direction A, the length L3 of the discharging short rail 22 and the length L4 of the discharging long rail 23 satisfy the relationship: L3<L4.

[0031] When it is necessary to replace skeletons of different structures, the feeding short rail 13 and the discharging short rail 22 need to be disassembled, the feeding short rail 13 and the discharging short rail 22 with structures matched with the replaced skeleton are replaced, the whole groove body does not need to be disassembled and replaced, and when arranged, the lengths of the discharging long rail 23 and the feeding long rail 12 are longer, thereby saving cost; at the same time, the positions of the feeding short rail 13 and the discharging short rail 22 on the first support frame 11 and the second support frame 21 are fixed, so that after replacement, adjustment is not needed, and only a foolproof installation is needed, compared with the need to adjust the structure of the adjustment assembly, the replacement and installation difficulty is reduced, and the feeding short rail 13 and the discharging short rail 22 also have a driving force in the form of straight vibration, which can ensure smooth transportation.

[0032] As Figure 2 shown, the discharging short rail 22 and the feeding short rail 13 have the same structure, and both have a support body 3 and a conveying port 4 arranged correspondingly, the support body 3 is arranged inside the groove, the conveying port 4 is arranged on the side facing the processing equipment, the conveying port 4 is arranged above the support body 3, and the inner sides of the two have protruding abutting elements 5, the abutting elements 5 are used for matching with the skeleton, and the support body 3 and the conveying port 4 are used in cooperation, so that the skeleton is inclined to be taken away by the running mechanism of the winding machine, and it can be understood that the support body 3, the conveying port 4 and the abutting elements 5 can be adaptively adjusted according to the structure of the skeleton.

[0033] Meanwhile, the contents not described in detail in the specification all belong to the prior art known to those skilled in the art.

[0034] Those skilled in the art can make various modifications and variations to the above embodiments based on the disclosure and teachings of this specification. Therefore, the present application should not be limited to the above specific embodiments, and any obvious modifications, replacements or variations made by those skilled in the art based on the present application should fall within the scope of the present application. In addition, although some specific terms are used in this specification, these terms are only for the convenience of description and do not constitute any limitation on the present application.

Claims

1. A feed mechanism for a multi-functional winding machine, characterized by, The device comprises a feeding assembly (1) and a discharging assembly (2) arranged oppositely, the feeding assembly (1) comprises a feeding long track (12) and a feeding short track (13) arranged successively and separately on a first straight vibration driving member (11), and the discharging assembly (2) comprises a discharging short track (22) and a discharging long track (23) arranged successively and separately on a second straight vibration driving member (21).

2. The thread feeding mechanism for a multi-functional winding machine according to claim 1, wherein In the conveying direction (A), the length L1 of the feeding long track (12) and the length L2 of the feeding short track (13) satisfy the relationship L1>L2.

3. The thread feeding mechanism for a multi-functional winding machine according to claim 1, wherein In the conveying direction (A), the length L3 of the discharging short track (22) and the length L4 of the discharging long track (23) satisfy the relationship L3 4. The thread feeding mechanism for a multi-functional winding machine according to claim 1, wherein The discharging short track (22) and the feeding short track (13) are structurally identical, and each has a support body (3) and a conveying port (4) arranged correspondingly, the support body (3) is arranged inside the groove, the conveying port (4) is arranged on the side facing the processing equipment, and the conveying port (4) is arranged above the support body (3).

5. The thread feeding mechanism for a multi-functional winding machine according to claim 1, wherein The discharging short track (22) and the feeding short track (13) are structurally identical, and each has a protruding matching piece (5) on the inner side, and the matching piece (5) is used for matching with the framework.