Magnetic sheet conveying and magnetizing device

By using a vibratory feeder and pneumatic contact components, the magnetic sheets and spacers are transported vertically, solving the problems of low magnetization efficiency and large space occupation of traditional magnetic sheets, and realizing a highly efficient and stable magnetization process.

CN116081243BActive Publication Date: 2026-02-13NINGBO YUNSHENG MAGNET DEVICES TECH +1
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Patent Information

Application Number
CN202211629514.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-12-19
Publication Date
2026-02-13
Estimated Expiration
2042-12-19

AI Technical Summary

Technical Problem

In the traditional magnetic sheet magnetization process, the clamping and moving efficiency is low, the horizontal placement occupies a large space, the spacer utilization rate is low, and cutting and recycling are frequent.

Method used

Two vibratory feeders are used to convey magnetic sheets and spacers respectively. The vibratory track design ensures that the material is placed vertically. Combined with the pusher cylinder and fixed plate block, the material is stably and vertically stacked on the conveying track. The air pressure abutment component and check groove are used to control the separation of the material.

Benefits of technology

It reduces the space occupied by the conveyor, increases the utilization rate of the separator, reduces the frequency of separator recycling, and improves the magnetization efficiency and stability.

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    Figure CN116081243B_ABST
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Abstract

The application discloses a kind of magnetic sheet transmission magnetizing device, including two vibrating disk, conveying track, magnetizer and discharge assembly, two vibrating disk is located at the start end of conveying track, and two vibrating disk successively conveys material to conveying track, material includes magnetic sheet material and spacer material, one vibrating disk is used to screen magnetic sheet material, another vibrating disk is used to screen spacer material, conveying track passes through magnetizer, discharge assembly is located at the end of conveying track for receiving material, magnetic sheet material and spacer material are all sheet, on conveying track, magnetic sheet material and spacer material are vertically arranged along the width direction, and axis is arranged in parallel with conveying track. The application provides a kind of magnetic sheet transmission magnetizing device, which can keep magnetic sheet vertically placed on conveying track for transportation, to reduce the occupied space of conveying product, improve the use rate of spacer.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of magnetizing equipment, in particular to a magnetic sheet conveying and magnetizing device. BACKGROUND

[0002] In the conventional magnetic sheet magnetizing process, the purpose of conveying the magnetic sheet into the magnetizer is mainly achieved by the way of clamping the magnetic sheet to move and conveying the magnetic sheet horizontally placed. The clamping process is limited in quantity each time by the way of clamping the magnetic sheet to move, and after the magnetic sheet is clamped and placed for magnetizing, the process of clamping and taking out the material in the magnetizer is also needed, which leads to low efficiency of magnetizing and is not conducive to efficient production. The way of conveying the magnetic sheet horizontally placed is often the way of conveying the magnetic sheet with the head and tail ends connected, and in the conveying process, in order to ensure the stability of conveying and the accuracy during magnetizing, the magnetic sheets can only be conveyed in the way of horizontal stacking, and cannot be conveyed in the way of vertical stacking. The combination of horizontal placement and horizontal stacking causes the large space occupied after conveying, frequent cutting operation at the end of the conveying track, high frequency of separating the spacers between the magnetic sheets, low utilization rate of the spacers, and high frequency of recycling the spacers. SUMMARY

[0003] The technical problem to be solved by the present application is to provide a magnetic sheet conveying and magnetizing device which can convey the magnetic sheets vertically placed on the conveying track to reduce the space occupied by the conveyed products and improve the utilization rate of the spacers.

[0004] The technical scheme adopted by the present application to solve the above problems is as follows: a magnetic sheet conveying and magnetizing device, characterized in that it comprises two vibration discs, a conveying track, a magnetizer and a discharge assembly. The two vibration discs are arranged at the starting end of the conveying track, and are arranged on the two sides of the conveying track respectively to convey the material to the conveying track alternately. The material comprises magnetic sheet material and spacer material. One vibration disc is used for screening the magnetic sheet material, and the other vibration disc is used for screening the spacer material. The conveying track passes through the magnetizer, and the magnetization of the magnetic sheet material is completed in the magnetizer. The discharge assembly is arranged at the end of the conveying track to receive the material. The magnetic sheet material and the spacer material are both in the form of sheet. On the conveying track, the magnetic sheet material and the spacer material are arranged vertically along the width direction, and the axis is arranged in parallel with the conveying track.

[0005] Compared with the prior art, the advantages of the present application are that: through two vibrating discs, the magnetic sheet material and the spacer material are respectively and alternately conveyed to the conveying track, through the sieve design of the vibrating disc, the magnetic sheet material and the spacer material can be conveyed to the conveying track in a vertical manner, the vibrating disc is provided with a vibrating track, the width of the vibrating track is less than half the width of the material, when the material moves on the vibrating track in a horizontal manner, because the center of gravity of the material is located outside the vibrating track, the material is caused to separate from the vibrating track and return to the vibrating disc, at the same time, an arc-shaped sieve plate is arranged above the vibrating track, the height of the sieve plate is higher than the width of the material and lower than the length of the material, when the material is vertically arranged along the length direction, the material moves along the arc of the sieve plate and returns to the vibrating disc, so that only the material vertically placed along the width direction passes through the vibrating track, and the magnetic sheet material and the spacer material are sequentially stacked along the direction of the conveying track on the conveying track, so that the stacking is performed with the width of the material as the stacking thickness, compared with the conveying mode of stacking with the length or the width of the material as the stacking thickness, the horizontal space occupied in the conveying track is smaller, the total amount of the material that can be conveyed is more, and the material that can be placed at the discharging assembly is also more, at the same time, when the material is separated, the spacer is stripped less, the utilization rate of the spacer is higher, and the recycling period of the spacer is effectively reduced.

[0006] As an improvement of the present application, the starting end of the conveying track is provided with a material pushing cylinder, the pushing direction of the material pushing cylinder is coaxial with the material on the conveying track, the ends of the two vibrating discs are provided with stop switches, the stop switches are used to pause the material feeding of the vibrating discs, so as to ensure that the magnetic sheet material and the spacer material are alternately fed to the conveying track, through the improvement, the material pushing cylinder can push the material conveyed to the conveying track along the conveying track by a distance of one material thickness, so as to empty the space of the conveying track for receiving the next material, and the design of the stop switch can avoid that two materials on the same vibrating disc continuously enter the conveying track, so as to ensure that the materials on the conveying track are stacked in a layering direction of one magnetic sheet material and one spacer material.

[0007] As an improvement of the present application, the conveying track is movably connected with a fixed piece block, the material on the conveying track is arranged between the fixed piece block and the material pushing cylinder, through the improvement, because the material is conveyed in a vertical direction, the material arranged at the front end of the material is prone to fall, thereby causing the instability and inaccuracy of the material conveying on the conveying track, the design of the fixed piece block can support the front end of the material, thereby avoiding the falling of the material arranged at the front end, and the movable design of the fixed piece block can ensure that the material maintains a vertical state on the conveying track.

[0008] As a kind of improvement of the application, the starting end of the conveying track is provided with a rubber pad, and the two sides of the conveying track are provided with mounting grooves for mounting the rubber pad, by the improvement, the end of the material will exist a feeding space before the next piece of material enters due to the pushing of the pushing cylinder, so that the end of the material may be tilted, and the design of the rubber pad can prevent the end of the material from tilting, ensuring that the feeding space can smoothly receive the next piece of material, and because of the elastic effect of the rubber pad, the material can be directly pressed against the rubber pad under the action of the pushing cylinder, so that the material passes through the rubber pad and is stacked with the material on the conveying track.

[0009] As a kind of improvement of the application, the two sides of the conveying track are respectively fixedly connected with air pressure abutting components, the air pressure abutting components include air pressure guide rails and sliding blocks, the sliding blocks are movably connected on the air pressure guide rails, and the fixed blocks are fixedly connected on the sliding blocks, the air pressure guide rails are provided with threaded rods, the sliding blocks move on the air pressure guide rails by rotating the threaded rods, one end of the air pressure guide rails is provided with an air pump, and one end of the threaded rods is drivingly connected to the air pump, by the improvement, the air pump can always drive the sliding blocks to drive the material by the driving effect of the air pressure, so as to ensure that the fixed blocks abut against the material, thereby ensuring the stability of the vertical arrangement of the material, and the driving force of the air pump can be controlled by controlling the air pressure, so as to avoid that the driving force is too large to push the material in the opposite direction and exceed the deformation resistance of the rubber pad, thereby ensuring that the material is stably kept between the fixed blocks and the rubber pad, and both ends cannot be tilted, compared with the motor-driven sliding block abutting, the motor needs to be precisely controlled in steps, and the step distance setting parameters are more, and different parameters need to be set for materials of different thicknesses, if the thickness between the magnetic sheet material and the spacer material is different, the motion parameters will be more complex, the design of the air pump driving makes the abutting effect more simple, only the air pressure needs to be adjusted, without adjusting any parameters, suitable for magnetic sheet materials and spacer materials of any parameters, compared with the traditional flat air pressure guide rail and sliding block, the external air source needs to be connected with the sliding block on the flat air pressure guide rail, the air pipe needs to move with the sliding block, and the design protection measures are more complex, and the sliding block needs to be magnetized by a magnetizer, and the connection of the air pipe will seriously affect the layout of the magnetizing coil in the magnetizer.

[0010] As an improvement of the present application, the fixed piece block comprises a fixed part and an abutting part, the fixed part is fixedly connected to the sliding block, the abutting part is movably connected to the fixed part along the tangential direction of the conveying track, one end of the abutting part is provided with a wedge, and the end of the conveying track is provided with a stop block matched with the wedge to drive the abutting part to move. Through the improvement, after the magnetization of the magnetic sheet material is completed, the magnetic sheet materials can attract each other and be kept in a vertical state for conveying on the conveying track. At this time, when the materials are separated from the conveying track, the abutting of the materials needs to be cancelled. Through the cooperation of the wedge and the stop block, the fixed piece block and the materials are separated, and the materials can be smoothly discharged from the conveying track.

[0011] As an improvement of the present application, the end of the conveying track is also provided with a check groove, the abutting part is embedded into the check groove after moving along the tangential direction of the conveying track, and the check groove is provided with a stop switch for stopping the work of the air pump. Through the improvement, after the fixed piece block is separated from the materials, the fixed piece block has a tendency to reset to the starting end of the conveying track under the action of the air pump, and the fixed piece block is also prone to friction and interference with the materials during the resetting process, which is not conducive to the high-quality production of the materials and the long-term use of the fixed piece block. The design of the check groove can avoid the resetting tendency of the fixed piece block, and the design of the stop switch can timely stop the air pump after the fixed piece block enters the check groove, further avoiding the resetting movement of the fixed piece block.

[0012] As an improvement of the present application, the abutting parts on both sides abut at the starting end of the conveying track. Through the improvement, when the device is just started, the first material has no support and reference. If there is a gap between the abutting parts on both sides, the material may be inserted into the gap between the abutting parts when moving from the vibrating disc to the conveying track, thereby causing damage to the material or the abutting part. Therefore, the abutting parts on both sides are abutted to provide an accurate abutting surface and ensure the stability and accuracy of the feeding of the first material.

[0013] As an improvement of the present application, the number of the spacer materials is more than the number of the magnetic sheet materials, and the stacking length of the excess spacer materials is longer than the length of the conveying track. Through the improvement, after the magnetic sheet materials are completely fed on the conveying track, the magnetic sheet materials on the conveying track still need to be conveyed forward and complete the magnetization work. By increasing the number of the spacer materials, the continuous pushing work of the pushing cylinder can be maintained, thereby ensuring the processing integrity of the magnetic sheet materials.

[0014] As an improvement of the present application, the discharging assembly comprises a discharging tray, a recycling box and a cutting cylinder, the cutting cylinder is arranged downstream of the conveying track, when the material is separated from the conveying track to a specified length, the cutting cylinder cuts the material and pushes the material to the discharging tray, the recycling box is arranged below the position where the cutting cylinder cuts the material for recycling the spacers, through the improvement, the material is cut and separated, and the spacers at the cutting position are recycled, the cleanness of the whole process is ensured, because the material is arranged vertically, compared with the traditional discharging assembly, the number of recycled spacers will be greatly reduced. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 is a schematic diagram of the overall structure of the present application.

[0016] Figure 2 is a schematic diagram of three different situations of the material in the vibrating disc when screening.

[0017] Figure 3 is a schematic diagram of the structure of the starting end of the conveying track when the device is just started.

[0018] Figure 4 is a schematic diagram of the connection structure of the air pressure abutting assembly of the present application.

[0019] Figure 5 is a schematic diagram of the structure when the abutting part and the stop block just abut.

[0020] Figure 6 is a schematic diagram of the structure when the abutting part and the stop switch abut.

[0021] Figure 7 is a schematic diagram of the structure when the abutting part finally connects with the check groove.

[0022] Figure 8 is a schematic diagram of the connection structure of the fixed part and the abutting part.

[0023] Shown in the figure: 1, vibrating disc, 1.1, vibrating track, 1.2, screen piece, 1.3, stop switch, 2, conveying track, 2.1, mounting groove, 2.2, stop block, 3, magnetizer, 4, discharging assembly, 4.1, discharging tray, 4.2, recycling box, 4.3, cutting cylinder, 5, pushing cylinder, 6, fixed piece block, 6.1, fixed part, 6.2, abutting part, 6.2.1, wedge block, 6.2.2, buckle, 7, rubber pad, 8, air pressure abutting assembly, 8.1, air pressure guide rail, 8.2, sliding block, 8.3, threaded screw, 8.4, air pump, 9, check groove, 10, stop switch. DETAILED DESCRIPTION

[0024] The embodiments of the present application are further described below in conjunction with the drawings.

[0025] As Figures 1-3 shown, a magnetic sheet conveying and magnetizing device, characterized in that: comprising two vibrating discs 1, a conveying track 2, a magnetizer 3 and a discharge assembly 4, two vibrating discs 1 are arranged at the starting end of the conveying track 2, and two vibrating discs 1 are arranged on both sides of the conveying track 2 in turn to convey materials to the conveying track 2, the materials include magnetic sheet materials and spacer materials, one vibrating disc 1 is used for screening magnetic sheet materials, and the other vibrating disc 1 is used for screening spacer materials, the conveying track 2 passes through the magnetizer 3, and the magnetization of the magnetic sheet materials is completed in the magnetizer 3, the discharge assembly 4 is arranged at the end of the conveying track 2 for receiving materials, the magnetic sheet materials and the spacer materials are in sheet shape, on the conveying track 2, the magnetic sheet materials and the spacer materials are vertically arranged along the width direction, and the axis is arranged in parallel with the conveying track 2, the vibrating disc 1 is provided with a vibrating track 1.1, the width of the vibrating track 1.1 is less than half of the width of the material, when the material moves on the vibrating track 1.1 in a horizontal manner, because the center of gravity of the material is arranged on the outside of the vibrating track 1.1, the material is caused to separate from the vibrating track 1.1 and return to the vibrating disc 1, at the same time, an arc-shaped sieve plate 1.2 is arranged above the vibrating track 1.1, the height of the sieve plate 1.2 is higher than the width of the material and lower than the length of the material, when the material is vertically arranged along the length direction, the material will move along the arc of the sieve plate 1.2 and return to the vibrating disc 1, so that only the material vertically placed and vertically arranged along the width direction passes through the vibrating track 1.1, and the magnetic sheet materials and the spacer materials are sequentially stacked along the direction of the conveying track 2 on the conveying track 2, so as to realize the stacking with the width of the material as the stacking thickness.

[0026] The starting end of the conveying track 2 is provided with a material pushing cylinder 5, the pushing direction of the material pushing cylinder 5 is coaxial with the material on the conveying track 2, and the ends of the two vibrating discs 1 are provided with stop switches 1.3, the stop switches 1.3 are used to pause the material feeding of the vibrating disc 1, so as to ensure that the magnetic sheet materials and the spacer materials are loaded on the conveying track 2 in turn.

[0027] As Figure 3 , Figure 4As shown, the fixed piece block 6 is movably connected on the conveying track 2, the material on the conveying track 2 is arranged between the fixed piece block 6 and the pushing material cylinder 5, the starting end of the conveying track 2 is provided with a rubber pad 7, the two sides of the conveying track 2 are provided with mounting grooves 2.1 for mounting the rubber pad 7, the two sides of the conveying track 2 are respectively fixedly connected with air pressure abutting assemblies 8, the air pressure abutting assemblies 8 comprise air pressure guide rails 8.1 and sliding blocks 8.2, the sliding blocks 8.2 are movably connected on the air pressure guide rails 8.1, and the fixed piece block 6 is fixedly connected on the sliding blocks 8.2, the air pressure guide rails 8.1 are provided with threaded rods 8.3, the sliding blocks 8.2 move on the air pressure guide rails 8.1 by rotating the threaded rods 8.3, one end of the air pressure guide rails 8.1 is provided with an air pump 8.4, and one end of the threaded rods 8.3 is drivingly connected on the air pump 8.4.

[0028] As shown in the figure, Figures 5-8 The fixed piece block 6 comprises a fixed part 6.1 and an abutting part 6.2, the fixed part 6.1 is fixedly connected on the sliding block 8.2, the abutting part 6.2 is movably connected on the fixed part 6.1 along the tangential direction of the conveying track 2, one end of the abutting part 6.2 is provided with a wedge block 6.2.1, the end of the conveying track 2 is provided with a stop block 2.2 cooperating with the wedge block 6.2.1 to drive the abutting part 6.2 to move, and the end of the conveying track 2 is further provided with a check groove 9, the abutting part 6.2 is embedded in the check groove 9 after moving along the tangential direction of the conveying track 2, and the check groove 9 is provided with a stop switch 10 for closing the air pump 8.4.

[0029] The abutting parts 6.2 on the two sides abut at the starting end of the conveying track 2, a spring is arranged between the abutting part 6.2 and the fixed part 6.1, so as to ensure that the abutting parts 6.2 on the two sides keep abutting, a buckle 6.2.2 is further arranged between the abutting part 6.2 and the check groove 9, and the abutting part 6.2 is fixed with the check groove 9 by the buckle 6.2.2 after being embedded in the check groove 9, so as to prevent the abutting part 6.2 from being reset to the conveying track 2 under the action of the spring.

[0030] The number of the spacer materials is more than that of the magnetic materials, and the stacking length of the excess spacer materials is longer than the length of the conveying track 2.

[0031] As shown in the figure, Figure 1 The discharging assembly 4 comprises a discharging disc 4.1, a recycling box 4.2 and a cutting cylinder 4.3, the cutting cylinder 4.3 is arranged downstream of the conveying track 2, the cutting cylinder 4.3 cuts the material when the material is separated from the conveying track 2 to a specified length, pushes the material to the discharging disc 4.1, and the recycling box 4.2 is arranged below the position where the cutting cylinder 4.3 cuts the material to recycle the spacer.

[0032] The magnetic sheet material is used as the first piece into the conveying track 2, and the operation steps are as follows:

[0033] S1: Put the magnetic sheet material and the spacer material into the two vibration discs 1 respectively, start the air pump 8.4, and make the fixed piece block 6 at the starting end of the conveying track 2;

[0034] S2: The magnetic sheet material enters the conveying track 2, and the stop switch 1.3 on the vibration disc 1 where the magnetic sheet material is located is opened to prevent the next magnetic sheet material from moving;

[0035] S3: The pushing cylinder 5 is extended, and the magnetic sheet material moves along the conveying track 2 and pushes the fixed piece block 6 to move;

[0036] S4: The pushing cylinder 5 is retracted, and the magnetic sheet material is vertically fixed between the fixed piece block 6 and the rubber pad 7;

[0037] S5: The spacer material enters the conveying track 2, and the stop switch 1.3 on the vibration disc 1 where the spacer material is located is opened to prevent the next spacer material from moving, and the stop switch 1.3 on the vibration disc 1 where the magnetic sheet material is located is closed;

[0038] S6: The pushing cylinder 5 is extended, and the spacer material moves along the conveying track 2 and pushes the fixed piece block 6 at the front end and the magnetic sheet material to move;

[0039] S7: The pushing cylinder 5 is retracted, and the material is vertically fixed between the fixed piece block 6 and the rubber pad 7;

[0040] S8: Repeat the steps S2-S7;

[0041] S9: Until the material enters the magnetizer 3, the magnetization of the magnetic sheet material is completed;

[0042] S10: The material continues to be conveyed to the end of the conveying track 2, the wedge block 6.2.1 abuts against the stop block 2.2, and the abutting portions 6.2 on both sides move away from each other and move into the check groove 9 on both sides;

[0043] S11: The abutting portion 6.2 enters the check groove 9 and triggers the stop switch 10, and after 1 second, the air pump 8.4 is turned off, and the buckle 6.2.2 between the abutting portion 6.2 and the check groove 9 is buckled;

[0044] S12: The material is separated from the conveying track 2 and enters the discharge assembly 4;

[0045] S13: The cut-off cylinder 4.3 is extended every time the material moves a certain distance, and the material is cut off at the end of the conveying track 2, and the cut-off material moves to the discharge disc 4.1 under the action of the cut-off cylinder 4.3, and at the same time, one piece of spacer material falls into the recycling box 4.2 due to the lack of attraction and clamping of the two magnetic sheet materials.

[0046] S14: After all the magnetic sheet materials enter the conveying track 2, the detection probe can confirm that the stop switch 1.3 on the vibration disc 1 where the spacer materials are located is kept closed, so that the spacer materials are continuously fed until the last piece of magnetic sheet material is magnetized and enters the discharging assembly 4.

[0047] The control of the above-mentioned stop switch 1.3 and the stop switch 10 is controlled by the control system.

[0048] The air pump 8.4 is provided with an impeller. In the air supply state, the impeller rotates to drive the threaded screw rod 8.3 to rotate. The air pump 8.4 can be designed in a closed mode or in a pressure limiting mode. The closed mode refers to that the structure of the air pump 8.4 is a closed structure, so as to control the air pressure of the air source to adjust the pressure of the air pump 8.4. The pressure limiting mode refers to that the air pump 8.4 is provided with an air inlet connected with the air source and an air outlet for controlling the air pressure. The air outlet is provided with a pressure relief valve. When the pressure exceeds a specified pressure, the pressure relief valve is opened to discharge the excess gas, so as to keep the pressure of the air pump 8.4 balanced.

[0049] The above only describes the best embodiment of the present application, but cannot be understood as a limitation on the claims. The present application is not limited to the above embodiment, and the specific structure can be changed. Any change within the protection scope of the independent claim of the present application is within the protection scope of the present application.

Claims

1. A magnetic sheet transport magnetizing apparatus characterized by comprising: The utility model provides a kind of magnetic sheet material and spacer material conveying device, including two vibrating disk (1), conveying track (2), magnetizer (3) and discharge assembly (4), two the vibrating disk (1) is located conveying track (2) start end, and two the vibrating disk (1) is respectively located conveying track (2) two sides alternately to conveying track (2) material conveying, the material includes magnetic sheet material and spacer material, one the vibrating disk (1) is used for screening magnetic sheet material, another the vibrating disk (1) is used for screening spacer material, conveying track (2) passes through magnetizer (3), in magnetizer (3) complete to magnetic sheet material magnetization, discharge assembly (4) is located conveying track (2) end for receiving material, the magnetic sheet material and spacer material are all in sheet shape, on conveying track (2), the magnetic sheet material and spacer material are along width direction vertical arrangement, and axis is parallel with conveying track (2) arrangement, the start end of conveying track (2) is equipped with pusher cylinder (5), the pusher direction of pusher cylinder (5) is coaxial with the material on conveying track (2), the end of two the vibrating disk (1) is equipped with stop switch (1.3), stop switch (1.3) is used to pause the material feeding of the vibrating disk (1), to ensure that magnetic sheet material and spacer material alternately feed on conveying track (2), conveying track (2) is movably connected with fixed piece block (6), the material on conveying track (2) is arranged between fixed piece block (6) and pusher cylinder (5), the start end of conveying track (2) is equipped with rubber pad (7), the both sides of conveying track (2) are equipped with installation groove (2.1) for installing rubber pad (7), the both sides of conveying track (2) are respectively fixedly connected with air pressure abutment assembly (8), the air pressure abutment assembly (8) includes air pressure guide rail (8.1) and sliding block (8.2), the sliding block (8.2) is movably connected on air pressure guide rail (8.1), and the fixed piece block (6) is fixedly connected on sliding block (8.2), the fixed piece block (6) includes fixed part (6.1) and abutment part (6.2), the fixed part (6.1) is fixedly connected on sliding block (8.2), the abutment part (6.2) is movably connected on fixed part (6.1) along the tangential direction of conveying track (2), one end of the abutment part (6.2) is equipped with wedge block (6.2.1), the end of conveying track (2) is equipped with stop block (2.2) with wedge block (6.2.1) cooperation to drive abutment part (6.2) movement. Threaded screw rod (8.3) is arranged on the air pressure guide rail (8.1), the sliding block (8.2) moves on air pressure guide rail (8.1) by rotating threaded screw rod (8.3), one end of threaded screw rod (8.3) is drivingly connected on air pump (8.4), one end of threaded screw rod (8.3) is drivingly connected on air pump (8.4).

2. A device for transferring and magnetizing magnetic sheets according to claim 1, characterized in that: ​ 3. A device for transferring and magnetizing magnetic sheets according to claim 2, characterized in that: The end of the conveying track (2) is also provided with a check groove (9), the abutting part (6.2) is embedded into the check groove (9) after moving along the tangential direction of the conveying track (2), and the check groove (9) is provided with a stop switch (10) for closing the work of the air pump (8.4).

4. A device for transferring and magnetizing magnetic sheets according to claim 2, characterized in that: The abutting parts (6.2) on both sides abut at the starting end of the conveying track (2).

5. A device for transferring and magnetizing magnetic sheets according to claim 1, characterized in that: The number of the spacer materials is more than that of the magnetic materials, and the stacking length of the excess spacer materials is longer than the length of the conveying track (2).

6. A device for transferring and magnetizing magnetic sheets according to claim 1, characterized in that: The discharging assembly (4) comprises a discharging disc (4.1), a recycling box (4.2) and a cutting air cylinder (4.3), the cutting air cylinder (4.3) is arranged downstream of the conveying track (2), when the material is separated from the conveying track (2) to a specified length, the cutting air cylinder (4.3) cuts the material, pushes the material to the discharging disc (4.1), and the recycling box (4.2) is arranged below the position where the cutting air cylinder (4.3) cuts the material and is used for recycling the spacer.

Citation Information

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