Turnover machine for magnetic rings

By designing a magnetic ring flipping machine, the problem of low efficiency in manual flipping is solved by utilizing the synergistic effect of the flipping mechanism and clamping components, thus achieving automated flipping and improving production efficiency.

CN224046357UActive Publication Date: 2026-03-27ZHUHAI GERUN XINNA ELECTRONICS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-03
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

In the current magnetic ring production process, manual flipping is inefficient and costly, resulting in poor flipping efficiency.

Method used

Design a magnetic ring flipping machine, including a flipping mechanism, a placement frame, a blocking component, and a clamping component. The automatic flipping mechanism enables the simultaneous flipping of multiple magnetic rings, and the synergistic effect of the blocking component and the clamping component ensures a smooth and stable flipping process.

Benefits of technology

It automates the flipping of magnetic rings, improves flipping efficiency, reduces labor costs, and can flip multiple magnetic rings simultaneously, significantly improving production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a turnover machine for a magnetic ring. The turnover machine comprises a turnover mechanism, a placing frame, two blocking components and a clamping component, the placing frame is of a structure with two open ends, and a placing cavity is formed in the placing frame; the turnover mechanism comprises a first driving unit and a first rotating shaft, the first rotating shaft is fixedly connected with the placing frame, and the first driving unit drives the first rotating shaft to drive the placing frame to rotate; the blocking component comprises blocking pieces, the two blocking pieces are arranged at the two ends, provided with the openings, of the containing cavity respectively, and each blocking piece can move between the blocking position and the releasing position; the clamping component comprises a clamping piece, the clamping piece is arranged in the containing cavity, and the clamping piece can move between the inner surfaces of the two opposite sides of the containing cavity in the direction perpendicular to the extending direction of the containing cavity. The turnover mechanism is used for driving the placing frame to turn over, manpower is saved, turnover is fast, a plurality of magnetic rings can be turned over at the same time at a time, and production efficiency is greatly improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to automatic mechanical equipment technical field, concretely relates to a kind of turnover machine for magnetic ring. BACKGROUND

[0002] At present, there are amorphous materials and nanocrystalline materials used to make magnetic rings on the market. The strip of amorphous materials and nanocrystalline materials is usually rolled into a magnetic ring of a specific specification, and then magnetized to obtain an amorphous nanocrystalline magnetic ring. The amorphous nanocrystalline magnetic ring is usually encapsulated by spraying insulating paint or using an insulating sheath.

[0003] When spraying insulating paint, the surface of the magnetic ring needs to be sprayed with insulating paint. Therefore, in the existing production process, the staff manually turns each magnetic ring to ensure that the surface of the magnetic ring is covered with insulating paint. This operation is inefficient and labor-intensive. SUMMARY

[0004] The utility model aims to provide a kind of turnover machine for magnetic ring, to solve the problem of manual turning of existing magnetic ring, low turnover efficiency and high labor cost.

[0005] To achieve the purpose of the utility model, the utility model provides a kind of turnover machine for magnetic ring, which includes a turnover mechanism, a placing frame, two blocking components and a clamping component. The placing frame has an open structure at both ends, and a placing cavity is formed inside the placing frame. The turnover mechanism includes a first drive unit and a first rotating shaft, and the first rotating shaft is fixedly connected to the placing frame. The first drive unit drives the first rotating shaft to rotate the placing frame. The blocking component includes a blocking piece, and the two blocking components are arranged at the two ends of the placing cavity with openings. Each blocking piece can move between a blocking position and a release position. The clamping component includes a clamping piece, which is arranged in the placing cavity. The clamping piece can move perpendicular to the extension direction of the placing cavity between the inner surfaces of the two opposite sides of the placing cavity.

[0006] As can be seen from the above scheme, multiple magnetic rings are placed on a tray, and a layer of tray is added on the magnetic rings to form a structure that needs to be turned, with the magnetic rings sandwiched between the upper and lower trays. The structure that needs to be turned is placed in the placing cavity, and the clamping piece moves to displace the structure that needs to be turned during the turning process. The clamping piece on the side of the opening end close to the placing entrance is in the release position, allowing the structure that needs to be turned to smoothly enter the placing cavity. The clamping piece on the side of the opening end away from the placing entrance is in the blocking position, preventing the structure that needs to be turned from being transported out of the placing cavity from the exit opening end, affecting the turning. The placing frame is driven to turn by the turnover mechanism, saving manpower, turning quickly, and allowing multiple magnetic rings to be turned at once, greatly improving production efficiency.

[0007] Further, the blocking component further comprises a second driving unit, the second driving unit is connected with a second rotating shaft, the other end of the second rotating shaft is connected with the blocking piece, under the driving of the second driving unit, the blocking piece can rotate around the axis of the second rotating shaft.

[0008] From the above scheme, when the blocking piece rotates to the part of the structure located between the opening of the placement cavity, the blocking piece is in the blocking position; but when the blocking piece rotates to no longer be located between the opening of the placement cavity, the blocking piece is in the release position, the driving of release and blocking is simple, and the reaction speed is fast.

[0009] Further, the two blocking components are respectively arranged on the opposite two surfaces of the placement frame.

[0010] From the above scheme, the opposite two surfaces are provided with the blocking piece, so that the structure of the placement frame is more symmetrical, and the turnover process is more smooth.

[0011] Further, the clamping component comprises a first clamping piece and a second clamping piece, the first clamping piece is arranged in extension along a first direction, the second clamping piece is arranged in extension along a second direction, and the first direction and the second direction have an included angle.

[0012] From the above scheme, the arrangement of the clamping pieces in different directions makes the action force of the clamping piece on the structure to be turned over more uniform, and the clamping effect is better.

[0013] Further, the first direction is the extension direction of the placement cavity.

[0014] From the above scheme, the first clamping piece is arranged in the extension direction of the placement cavity to ensure the stability of the clamping effect and prevent the magnetic ring from being displaced during the turnover process.

[0015] Further, the number of the first clamping pieces is two, and the two first clamping pieces are arranged in parallel.

[0016] From the above scheme, the arrangement of the two first clamping pieces makes the action force of the clamping piece on the structure to be turned over more uniform, and the clamping effect is better.

[0017] Further, the clamping component further comprises a third driving unit, and the number of the third driving units is the same as the number of the clamping pieces.

[0018] From the above scheme, each clamping piece is correspondingly provided with a third driving unit, and the movement of each clamping piece does not affect each other.

[0019] Further, the third driving unit is arranged on the outer surface of the placement frame.

[0020] From the above scheme, the above arrangement reduces the size of the placement cavity, the clamping inside the placement cavity is more convenient, and the turnover is also easier.

[0021] Further, the placement cavity is further provided with a support channel, the support channel extends along the extension direction of the placement cavity, and the support channel is arranged on opposite two surfaces in the placement cavity.

[0022] According to the above scheme, the support channel can be composed of rollers, which supports the structure to be turned and facilitates the conveying of the structure to be turned.

[0023] Further, the magnetic ring turning machine further comprises a support, the placement frame is arranged on the support, and the support is provided with a conveying track arranged at two ends of the opening of the placement frame.

[0024] According to the above scheme, the conveying track at the two ends of the opening can also be composed of rollers, realizing fully automatic transportation and turning, and being higher in efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0025] Figure 1 is a structural diagram of the magnetic ring turning machine.

[0026] Figure 2 is a structural diagram of the magnetic ring turning machine in a first state of a hidden support.

[0027] Figure 3 is a structural diagram of the magnetic ring turning machine in a second state of a hidden support.

[0028] Figure 4 is a structural diagram of the magnetic ring turning machine in a third state of a hidden support.

[0029] The utility model will be further described below in combination with the drawings and embodiments. DETAILED DESCRIPTION

[0030] Referring to Figures 1 to 4 The magnetic ring turning machine provided by the embodiment comprises a turning mechanism 1, a placement frame 2, two blocking components 3, a clamping component and a support 5. The placement frame 2 is placed on the support 5. The support 5 is provided with a conveying track 51 arranged at two ends of the opening of the placement frame 2. Specifically, the conveying track 51 can be composed of rollers, and the structure to be turned is conveyed through the rollers.

[0031] The placement frame 2 is of an open structure at two ends, and the placement frame 2 is internally formed with a placement cavity 21. The placement cavity 21 is further provided with a support channel 22, the support channel 22 extends along the extension direction of the placement cavity 21, and the support channel 22 is arranged on opposite two surfaces in the placement cavity 21. Specifically, the support channel 22 can also be composed of rollers, and when the support channel 22 is parallel to the conveying track 51, the support track 22 is in communication with the conveying track 51.

[0032] The turnover mechanism 1 comprises a first driving unit 11 and a first rotating shaft 12, the first rotating shaft 12 is fixedly connected with the placing frame 2, the first driving unit 11 drives the first rotating shaft 12 to rotate the placing frame 2, so as to realize the turnover of the whole placing frame 2.

[0033] The blocking component 3 comprises a blocking piece 31, a second driving unit 32 and a second rotating shaft 33, the second driving unit 32 is connected with the second rotating shaft 33, the other end of the second rotating shaft 33 is connected with the blocking piece 31, under the driving of the second driving unit 32, the blocking piece 31 can rotate around the axis of the second rotating shaft 33.

[0034] Specifically, in the embodiment, two blocking pieces 31 are respectively arranged at the two ends of the placing cavity 21 provided with openings, and each blocking piece 31 can move between a blocking position and a release position. The two blocking pieces 31 are respectively arranged on the opposite two surfaces of the placing frame 2. Specifically, when the extension direction of the placing cavity 21 is parallel to the conveying track 51, the placing cavity 21 comprises an upper surface and a lower surface, the opening direction of the structure to be turned over is a first opening, and the opening direction of the other structure to be turned over is a second opening. One of the blocking pieces 31 is arranged on the upper surface of the first opening end, and the other blocking piece 31 is arranged on the lower surface of the second opening end. The blocking piece 31 rotates around the axial direction of the second rotating shaft 33 under the driving of the second driving unit 32, when a part of the blocking piece 31 is located between the upper surface and the lower surface, preferably, at the same time when the blocking piece 31 is perpendicular to the upper surface and the lower surface, the blocking piece 31 is in the blocking position; when the blocking piece 31 is not between the upper surface and the lower surface, preferably, when the blocking piece 31 is parallel to the upper surface and the lower surface, the blocking piece 31 is in the release position.

[0035] The clamping component comprises a clamping piece 41 and a third driving unit 42. The clamping piece 41 is arranged in the placing cavity 21, and the clamping piece 41 can move between the inner surfaces of the opposite two sides of the placing cavity 21 perpendicularly to the extension direction of the placing cavity 21. Specifically, when the extension direction of the placing cavity 21 is parallel to the conveying track 51, the placing cavity 21 comprises an upper surface and a lower surface, and the clamping piece 41 moves perpendicularly to the upper surface and the lower surface under the driving of the third driving unit 42. The clamping piece 41 comprises a first clamping piece 411 and a second clamping piece 412, the first clamping piece 411 is arranged in a first direction, the second clamping piece 412 is arranged in a second direction, the first direction and the second direction form an included angle, and preferably the first direction is perpendicular to the second direction. In the embodiment, the first direction is the extension direction of the placing cavity 21. The number of the first clamping pieces 411 is two, and the two first clamping pieces 411 are arranged in parallel. The number of the third driving units 42 is the same as the number of the clamping pieces 41, specifically, each clamping piece 41 has a corresponding third driving unit 42 arranged thereon, and the third driving unit 42 is arranged on the outer surface of the placing frame 2.

[0036] The magnetic ring turnover machine is mainly used for overturning the magnetic ring which needs to be sprayed with paint on the surface.

[0037] The working principle of the magnetic ring turnover machine is as follows: at the beginning, the extension direction of the placing cavity 21 is parallel to the conveying track 51, as shown in Figure 2 , the first opening is opposite to the second opening. The blocking piece 31 on the first opening side is rotated to the released position, the blocking piece 31 on the second opening end is rotated to the blocking position, the structure needing to be overturned enters the placing cavity 21 from the first opening, the support channel 22 supports the structure needing to be overturned, and the blocking piece 31 on the second opening end blocks the structure needing to be overturned from extending out of the placing cavity 21 from the second opening. When the structure needing to be overturned enters the placing cavity 21, the third driving unit 42 drives the clamping piece 41 to move downward to clamp the structure needing to be overturned, and then, as shown in Figure 3 , the first driving unit 11 drives the placing frame 2 to rotate, at this time, the blocking piece 31 is stationary, and the clamping piece 41 is in a state of clamping the structure needing to be overturned. As shown in Figure 4 , the placing frame 2 rotates 180° around the axis of the first rotating shaft 12 under the drive of the first driving unit 11, the third driving unit 42 drives the clamping piece 41 to move downward at this time, and the structure needing to be overturned is supported on the support channel 22 on the other side. At this time, the blocking piece 31 in the released position faces the conveying track 51 on the other side, and the structure needing to be overturned can be conveyed out of the placing cavity 21, that is, the simultaneous overturning of the plurality of magnetic rings is completed, so that the surface without paint spraying faces upward, and subsequent direct paint spraying can be performed to coat paint on both surfaces of the magnetic ring. The structure needing to be overturned in the subsequent process can enter the placing cavity 21 from the original second opening, and the state of the blocking pieces 31 at the original second opening and the first opening end also changes.

[0038] The turnover mechanism of the embodiment is used to drive the placing frame to overturn, saves manpower, overturns quickly, and can simultaneously overturn a plurality of magnetic rings at a time, so that the production efficiency is greatly improved.

[0039] It should be noted that the driving units in the embodiment are driving types familiar to those skilled in the art, such as cylinder driving and the like. The magnetic ring turnover machine of the embodiment further comprises an external control system, the control system is electrically connected with the first driving unit 11, the second driving unit 32 and the third driving unit 42, and controls the movement process of the entire magnetic ring turnover machine.

[0040] The above merely describes a preferred embodiment of the present application, and the protection scope of the present application is not limited thereto, and any skilled person in the art, according to the technical scheme and the inventive concept of the present application, can make equivalent substitutions or changes within the technical scope disclosed by the present application, which should be encompassed in the protection scope of the present application.

Claims

1.A turnover machine for magnetic ring, characterized in that: the turnover machine for magnetic ring comprises a turnover mechanism, a placing frame, two blocking components and a clamping component; the placing frame is of an open structure at both ends, and a placing cavity is formed in the placing frame; the turnover mechanism comprises a first driving unit and a first rotating shaft, the first rotating shaft is fixedly connected with the placing frame, and the first driving unit drives the first rotating shaft to rotate the placing frame; the blocking component comprises a blocking piece, and two blocking components are respectively arranged at the two ends of the placing cavity provided with openings, and each blocking piece can move between a blocking position and a release position; the clamping component comprises a clamping piece, the clamping piece is arranged in the placing cavity, and the clamping piece can move between the inner surfaces of the opposite sides of the placing cavity perpendicularly to the extension direction of the placing cavity. 2.The turnover machine for magnetic ring according to claim 1, characterized in that: the blocking component further comprises a second driving unit, the second driving unit is connected with a second rotating shaft, the other end of the second rotating shaft is connected with the blocking piece, and under the drive of the second driving unit, the blocking piece can rotate around the axis of the second rotating shaft. 3.The turnover machine for magnetic ring according to claim 1, characterized in that: two blocking components are respectively arranged on the opposite sides of the placing frame. 4.The turnover machine for magnetic ring according to claim 1, characterized in that: the clamping piece comprises a first clamping piece and a second clamping piece, the first clamping piece is arranged in a first direction, the second clamping piece is arranged in a second direction, and the first direction and the second direction form an angle. 5.The turnover machine for magnetic ring according to claim 4, characterized in that: the first direction is the extension direction of the placing cavity. 6.The turnover machine for magnetic ring according to claim 4, characterized in that: the number of the first clamping pieces is two, and the two first clamping pieces are arranged in parallel. 7.The turnover machine for magnetic ring according to any one of claims 4 to 6, characterized in that: the clamping component further comprises a third driving unit, and the number of the third driving units is the same as the number of the clamping pieces. 8.The turnover machine for magnetic ring according to claim 7, characterized in that: the third driving unit is arranged on the outer surface of the placing frame. 9.The turnover machine for magnetic ring according to any one of claims 1 to 6, characterized in that: a support channel is further arranged in the placing cavity, the support channel extends in the extension direction of the placing cavity, and the support channel is arranged on the opposite sides of the placing cavity. 10.The turnover machine for magnetic ring according to any one of claims 1 to 6, characterized in that: the turnover machine for magnetic ring further comprises a bracket, the placing frame is arranged on the bracket, a conveying track is arranged on the bracket, and the conveying track is arranged at the two ends of the opening of the placing frame.