Automatic magnetic shoe pushing device

By designing an automatic magnetic tile pushing device and utilizing the linkage of hydraulic telescopic rods and elastic parts, the automatic pushing of magnetic tiles is achieved, which solves the problem of low efficiency of manual operation, improves production efficiency and reduces costs.

CN223421762UActive Publication Date: 2025-10-10ANHUI GUANGYAO MAGNETIC IND CO LTD
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Patent Information

Application Number
CN202421702483.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-18
Publication Date
2025-10-10
Estimated Expiration
2034-07-18

AI Technical Summary

Technical Problem

The existing magnetic tile pushing process is mostly manual operation, with low production efficiency and high labor cost.

Method used

An automatic pushing device for magnetic tiles is designed, which uses the cooperation of hydraulic telescopic rods and elastic parts to realize the automatic pushing of magnetic tiles, and completes the automatic pushing work through the linkage of the push plate and the push plate.

Benefits of technology

It improves production efficiency, reduces labor costs, ensures the smoothness and stability of the pushing process, and avoids wear of magnetic tiles.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an automatic magnetic tile pushing device which comprises a base, a side supporting plate installed on the base, a hydraulic telescopic rod installed on the side wall of the side supporting plate and a containing plate for bearing magnetic tiles, a pushing mechanism comprises a pushing plate abutting against the side walls of the magnetic tiles, and the side wall of the pushing plate is connected with a pushing rod. The end of the push rod penetrates through an installation plate to be connected to a connecting plate, the installation plate is connected with a containing plate, the installation plate is connected with the connecting plate through a supporting rod, and a first elastic piece is connected between the installation plate and the connecting plate. Under the pushing action of elastic potential energy of the first elastic piece, the magnetic tile is matched with the pushing action of the pushing plate, and the pushing plate is driven to complete the automatic pushing work of the magnetic tile under the matched use of reciprocating lifting of the hydraulic telescopic rod, so that manual pushing is changed into automatic pushing, the production efficiency is improved, and the production cost is reduced. And the problem of high labor cost is effectively solved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of pushing mechanisms, in particular to an automatic magnetic tile pushing device. Background Art

[0002] Permanent magnet ferrite tile-shaped magnet, referred to as magnetic tile; magnetic tile is widely used in permanent magnet DC motor factories, automotive industry automation and other fields. Magnetic tile is different from magnetic copper tile and requires high performance and good consistency.

[0003] The existing magnetic tile pushing process is mostly manual operation, with low production efficiency and high labor cost. Utility Model Content

[0004] The present invention aims to solve the problems existing in the prior art and proposes the following technical solutions:

[0005] The automatic pushing device for magnetic tiles comprises a base, a side support plate mounted on the base, a hydraulic telescopic rod mounted on the side wall of the side support plate, and a placement plate for carrying magnetic tiles. The pushing mechanism comprises a push plate abutting against the side wall of the magnetic tile, and the side wall of the push plate is connected to a push rod, the end of the push rod passes through the mounting plate and is connected to the connecting plate, the mounting plate is connected to the placement plate, the mounting plate and the connecting plate are connected by a support rod, a first elastic member is connected between the mounting plate and the connecting plate, and the middle portion of the first elastic member surrounds the outer wall of the push rod;

[0006] The pushing mechanism includes a pushing plate connected to the bottom end of the hydraulic telescopic rod, and the bottom end of the pushing plate is attached to the top end of the magnetic tile away from the pushing plate.

[0007] Under the driving force of the elastic potential energy of the first elastic part, the magnetic tiles are pushed together with the pushing action of the push plate, and the reciprocating lifting and lowering of the hydraulic telescopic rod are used to drive the push plate to complete the automatic pushing of the magnetic tiles, thereby changing manual pushing to automatic pushing, thereby improving production efficiency and effectively solving the problem of high labor costs.

[0008] As a preferred embodiment of the above technical solution, a guide plate is connected to the side of the push plate away from the magnetic tile.

[0009] Since the guide plate is longer than the push plate, when the magnetic tile is pushed to the bottom end of the push plate by the first elastic member, the end of the magnetic tile is abutted and protected to prevent the magnetic tile from being pushed out too much.

[0010] As a preferred embodiment of the above technical solution, the side wall of the side support plate is provided with a first slide rail, and a first slider is slidably connected in the first slide rail, the first slider is connected to the end of the push plate, and a second slider is connected to the bottom end of the push plate, and the second slider slides in the second slide rail, and the second slide rail is provided on the placement plate.

[0011] Under the sliding action of the first slide rail and the first slider, the push plate and the guide plate move smoothly and efficiently. Similarly, under the sliding action of the second slider and the second slide rail, the push plate can move stably on the placement plate.

[0012] As a preferred embodiment of the above technical solution, a soft pad is glued to one end of the push plate away from the push rod, and the other end of the soft pad away from the push plate abuts against the side wall of the magnetic tile.

[0013] The use of the soft pad can prevent the side wall of the magnetic tile from directly contacting the side wall of the push plate and causing wear.

[0014] As a preferred embodiment of the above technical solution, the outer walls on the front and rear sides of the push plate are provided with limiting grooves, and a second elastic member is connected to the limiting groove, the second elastic member is connected to the mounting frame, a ball is embedded in the outer side of the mounting frame, and the outer wall of the ball is in contact with the inner wall of the placement plate, the inner wall of the limiting groove is symmetrically provided with a third slide rail, and a third slider is slidably connected to the third slide rail, and the third slider is connected to the side wall of the mounting frame.

[0015] With the combined use of the rolling action of the ball, the push plate can move further smoothly back and forth in the placement plate. At the same time, with the combined use of the elastic potential energy of the second elastic member and the sliding action of the third slider and the third slide rail, the smooth movement efficiency of the push plate is still guaranteed when the width of the groove in the placement plate is different.

[0016] The beneficial effects of the utility model are:

[0017] In the present application, under the driving action of the elastic potential energy of the first elastic member, the magnetic tiles are pushed together with the pushing action of the push plate, and with the coordinated use of the reciprocating lifting and lowering of the hydraulic telescopic rod, the push plate is driven to complete the automatic pushing of the magnetic tiles, thereby changing manual pushing to automatic pushing, thereby improving production efficiency and effectively solving the problem of high labor costs. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 The schematic diagram of the internal structure of the embodiment of the present invention in the front view state is shown;

[0019] Figure 2 The embodiment of the present invention provided by Figure 1 Schematic diagram of the internal structure of the placing plate and the pushing plate in a partial top-down state;

[0020] Figure 3 The embodiment of the present invention provided by Figure 2 Enlarged structural diagram at point A in the middle.

[0021] Legend:

[0022] 1. Base; 2. Side support plate; 3. First slide rail; 4. First slider; 5. Push plate; 6. Hydraulic telescopic rod; 7. Guide plate; 8. Magnetic tile; 9. Placement plate; 10. Second slide rail; 11. Second slider; 12. Push plate; 13. Cushion; 14. Mounting plate; 15. Support rod; 16. Connecting plate; 17. Push rod; 18. First elastic member; 19. Ball bearing; 20. Mounting frame; 21. Third slider; 22. Third slide rail; 23. Second elastic member; 24. Limiting groove. DETAILED DESCRIPTION

[0023] In order to make the purpose, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions of the present invention will be clearly and completely described below in conjunction with the embodiments.

[0024] This application addresses the problem in the prior art that the magnetic tile pushing process is mostly manual operation, with low production efficiency and high labor costs. Under the driving action of the elastic potential energy of the first elastic member 18, the magnetic tile 8 is pushed together with the pushing action of the push plate 12, and the reciprocating lifting and lowering of the hydraulic telescopic rod 6 is used to drive the push plate 5 to complete the automatic pushing of the magnetic tile 8, thereby changing manual pushing to automatic pushing, thereby improving production efficiency and effectively solving the problem of high labor costs.

[0025] like Figure 1 、 Figure 2 and Figure 3 As shown, in the embodiment of the utility model, the automatic pushing device for magnetic tiles includes a base 1, a side support plate 2 installed on the base 1, a hydraulic telescopic rod 6 installed on the side wall of the side support plate 2, and a placement plate 9 for supporting the magnetic tiles 8; the magnetic tiles 8 are placed stably on the placement plate 9, and with the cooperation of the pushing mechanism, after the limiting work of the magnetic tiles 8 in the placement plate 9 and the side support plate 2 is completed, the pushing mechanism is driven by the hydraulic telescopic rod 6 to complete the automatic pushing operation of the magnetic tiles.

[0026] like Figure 1 and Figure 2 As shown, the pushing mechanism includes a push plate 12 abutting against the side wall of the magnetic tile 8, and a push rod 17 is connected to the side wall of the push plate 12, the end of the push rod 17 passes through the mounting plate 14 and is connected to the connecting plate 16, the mounting plate 14 is connected to the placement plate 9, and the mounting plate 14 and the connecting plate 16 are connected by a support rod 15. A first elastic member 18 is connected between the mounting plate 14 and the connecting plate 16, and the middle part of the first elastic member 18 surrounds the outer wall of the push rod 17; because the first elastic member 18 has a certain elastic potential energy, the first elastic member 18 is compressed to move the push plate 12 to the side close to the mounting plate 14. At this time, a magnetic tile 8 is placed on the placement plate 9. Under the pushing action of the elastic potential energy of the first elastic member 18, the pushing operation of the magnetic tile 8 is completed;

[0027] The pushing mechanism includes a pushing plate 5 connected to the bottom end of the hydraulic telescopic rod 6, and the bottom end of the pushing plate 5 is in contact with the top of the magnetic tile 8 away from the pushing plate 12; after the magnetic tile 8 is pushed to the bottom end of the pushing plate 5, the hydraulic telescopic rod 6 is started to complete the pushing operation of a certain group of magnetic tiles 8. After the pushing is completed, the pushing plate 5 is brought back to its original position under the resetting action of the hydraulic telescopic rod 6; the side of the pushing plate 5 away from the magnetic tile 8 is connected to the guide plate 7; because the guide plate 7 is longer than the pushing plate 5, when the magnetic tile 8 is first rebounded When the member 18 is pushed to the bottom end of the push plate 5, the end of the magnetic tile 8 is abutted and protected to prevent the magnetic tile 8 from being pushed out too much; the side wall of the side support plate 2 is provided with a first slide rail 3, and the first slide rail 3 is slidably connected with the first slider 4, the first slider 4 is connected to the end of the push plate 5, and the bottom end of the push plate 12 is connected with a second slider 11, and the second slider 11 slides in the second slide rail 10, and the second slide rail 10 is provided on the placement plate 9; under the sliding action of the first slide rail 3 and the first slider 4, The smoothness and efficiency of the movement of the push plate 5 and the guide plate 7 are guaranteed. Similarly, the stability of the push plate 12 in moving on the placement plate 9 can be guaranteed under the sliding action of the second slider 11 and the second slide rail 10; the end of the push plate 12 away from the push rod 17 is glued with a soft pad 13, and the end of the soft pad 13 away from the push plate 12 is in contact with the side wall of the magnetic tile 8; under the use of the soft pad 13, the side wall of the magnetic tile 8 is prevented from directly contacting the side wall of the push plate 12 to cause wear.

[0028] like Figure 2 and Figure 3 As shown, the outer walls on the front and rear sides of the push plate 12 are provided with a limiting groove 24, and the limiting groove 24 is connected to a second elastic member 23, the second elastic member 23 is connected to the mounting frame 20, and the outer side of the mounting frame 20 is embedded with a ball 19, and the outer wall of the ball 19 abuts against the inner wall of the placement plate 9, and the inner wall of the limiting groove 24 is symmetrically provided with a third slide rail 22, and the third slide rail 22 is slidably connected to the third slider 21, and the third slider 21 is connected to the side wall of the mounting frame 20; with the combined use of the rolling action of the ball 19, the push plate 12 can be further smoothly moved forward and backward in the placement plate 9, and at the same time, with the combined use of the elastic potential energy of the second elastic member 23 and the sliding action of the third slider 21 and the third slide rail 22, when the width of the inner groove of the placement plate 9 is different, the smooth movement efficiency of the push plate 12 is still guaranteed.

[0029] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit the same.

Claims

1. A magnetic tile automatic pushing device, comprising a base (1), a side support plate (2) mounted on the base (1), a hydraulic telescopic rod (6) mounted on the side wall of the side support plate (2), a placement plate (9) for carrying magnetic tiles (8), and a pushing mechanism, characterized in that: The pushing mechanism includes a push plate (12) abutting against the side wall of the magnetic tile (8), and the side wall of the push plate (12) is connected to a push rod (17), the end of the push rod (17) passes through the mounting plate (14) and is connected to the connecting plate (16), the mounting plate (14) is connected to the placement plate (9), the mounting plate (14) and the connecting plate (16) are connected via a support rod (15), a first elastic member (18) is connected between the mounting plate (14) and the connecting plate (16), and the middle part of the first elastic member (18) surrounds the outer wall of the push rod (17); The pushing mechanism comprises a pushing plate (5) connected to the bottom end of the hydraulic telescopic rod (6), and the bottom end of the pushing plate (5) is attached to the top end of the magnetic tile (8) away from the pushing plate (12).

2. The magnetic tile automatic pushing device according to claim 1, characterized in that: A guide plate (7) is connected to the side of the push plate (5) away from the magnetic tile (8).

3. The magnetic tile automatic pushing device according to claim 1, characterized in that: The side support plate (2) has a first slide rail (3) on its side wall, and a first slider (4) is slidably connected to the first slide rail (3), the first slider (4) is connected to the end of the push plate (5), the bottom end of the push plate (12) is connected to a second slider (11), and the second slider (11) slides in the second slide rail (10), and the second slide rail (10) is provided on the placement plate (9).

4. The magnetic tile automatic pushing device according to claim 1, characterized in that: A soft pad (13) is glued to one end of the push plate (12) away from the push rod (17), and the other end of the soft pad (13) away from the push plate (12) abuts against the side wall of the magnetic tile (8).

5. The magnetic tile automatic pushing device according to claim 1, characterized in that: The outer walls of the front and rear sides of the push plate (12) are provided with limiting grooves (24), and a second elastic member (23) is connected in the limiting groove (24). The second elastic member (23) is connected to the mounting frame (20). A ball (19) is embedded in the outer side of the mounting frame (20) for rolling, and the outer wall of the ball (19) abuts against the inner wall of the placement plate (9). The inner wall of the limiting groove (24) is symmetrically provided with a third slide rail (22), and a third slider (21) is slidably connected in the third slide rail (22). The third slider (21) is connected to the side wall of the mounting frame (20).