Automatic arrangement device for annular gyromagnetic ferrite sheets
By designing an automatic arrangement device, the automatic single-row arrangement and collection of ring-rotating magnet ferrite sheets is achieved using components such as conveyor belts and rotating rollers, which solves the problem of inefficiency of traditional manual operation and achieves efficient and neat automated arrangement.
Patent Information
- Application Number
- CN202422288425.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-19
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-09-19
AI Technical Summary
The traditional collection and arrangement of ring-rotor ferrite sheets rely on manual operation, which is inefficient and can easily lead to damage or irregular arrangement of sheets.
An automatic arrangement device is designed to use components such as conveyor belts, rotating rollers and pressure sensors to realize the automatic single-row arrangement and collection of ring-rotating magnet ferrite sheets. A narrow opening is formed through the guide plate and gradually becomes a single-row. The rotating rollers limit the thickness of the single-sheet, and the pressure sensor controls the arrangement and removal of the collection cups.
The automatic and neat and efficient arrangement of ring-rotor magnet ferrite sheets is realized, which avoids artificial damage and improves production efficiency.
Smart Images

Figure CN223117404U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of ring-rotating ferrite sheet processing devices, and particularly relates to an automatic arranging device for ring-rotating ferrite sheets. Background Technique
[0002] Ferrite, especially ring-rotating ferrite, is an important magnetic material with excellent magnetic and dielectric properties, and is widely used in fields such as computers, microwave communications, televisions, automatic control, aerospace, etc. As a key component among them, the quality and arrangement neatness of ring-rotating ferrite sheets are crucial for subsequent application effects.
[0003] However, its traditional ferrite sheet collection and arrangement methods mainly rely on manual operations, which are not only inefficient but also prone to sheet damage or uneven arrangement due to human factors.
[0004] In view of this, this application is specifically proposed. Content of the Utility Model
[0005] The purpose of the utility model is to provide an automatic arranging device for ring-rotating ferrite sheets to solve the problems raised in the above background technique.
[0006] To solve the above technical problems, an automatic arranging device for ring-rotating ferrite sheets provided by the utility model includes a first conveyor belt. Two baffles are fixed to the top of the first conveyor belt. A guide plate is fixed to the inner wall of the end of the baffle. A second conveyor belt arranged in a T-shaped manner with the baffle is provided on one side of the end of the baffle. A second support column is provided between the first conveyor belt and the second conveyor belt. A support disk is fixed to the top of the second support column. A driving motor is fixed to the top of the support disk through a fixing rod. The output end of the driving motor is connected to a rotating roller through a rotating rod. A collecting cylinder fixed to the top of the support disk is provided below the rotating roller. A collecting cup is lapped on the top end of the collecting cylinder. A pressure sensor is embedded in the top of the support disk. An outlet channel is provided at the bottom of the collecting cylinder.
[0007] Further, a feeding hopper is provided at the bottom of the front end of the first conveyor belt. A first support column is fixed to the bottom of the feeding hopper. The first conveyor belt is driven by a track motor one, and the second conveyor belt is driven by a track motor two. The pressure sensor is electrically connected to the track motor two.
[0008] Further, a transverse movement mechanism mounting plate is provided on the side of the second conveyor belt away from the first conveyor belt. An electric push rod is fixed to the side wall of the transverse movement mechanism mounting plate facing the rotating roller. The electric push rod, the pressure sensor, and the collecting cylinder are located in the same vertical plane. Two limit columns located on both sides of the electric push rod are fixed to the top of the support disk.
[0009] Further, a storage passage is provided at the top of the collection cylinder. In the middle of the inner wall of the collection cylinder, a support inclined plate is connected by a spring and is inclined. The top of the support inclined plate is rotatably connected to the inner wall of the collection cylinder.
[0010] Further, the bottom of the collection cup located below the rotating roller is slidably connected to the top of the collection cylinder, and the bottom of the collection cup is lapped on the top of the support inclined plate.
[0011] Further, the number of the support inclined plates is thirty-six, and the plurality of support inclined plates are evenly distributed on the inner wall of the collection cylinder.
[0012] Further, the bottom of the rotating roller is located between the two guide plates, and the top cross-section of the guide plate is a trapezoidal structure.
[0013] Further, the two baffles are distributed in a V shape, and the end with a smaller distance between the two baffles is arranged close to the rotating roller.
[0014] Compared with the prior art, the beneficial effects of the utility model are as follows: The conveyor belt 1 pushes the ring-shaped ferrite sheet to gradually become a single row through the narrow opening formed by the guide plate; when the ring-shaped ferrite sheet becomes a single row but is stacked, the rotating roller restricts only the ring-shaped ferrite sheet with a single sheet thickness to pass through. The passed ring-shaped ferrite sheet falls into the collection cup. When the ring-shaped ferrite sheet with a fixed weight in the collection cup reaches a certain amount, it will fall onto the pressure sensor. The full collection cup is taken out through the collection passage at the bottom of the collection cylinder, realizing the automatic arrangement and collection of the ring-shaped ferrite sheet. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 is a schematic structural diagram of an automatic arrangement device for ring-shaped ferrite sheets;
[0016] Figure 2 is a schematic structural diagram of a conveyor belt and a gear in an automatic arrangement device for ring-shaped ferrite sheets;
[0017] Figure 3 is a schematic structural diagram of a collection cup and a limiting column in an automatic arrangement device for ring-shaped ferrite sheets;
[0018] Figure 4 is a schematic structural diagram of an inner support column and a support buckle in a limiting column of an automatic arrangement device for ring-shaped ferrite sheets.
[0019] In the figure:
[0020] 10, blanking hopper; 11, first support column;
[0021] 20, rotating roller; 21, driving motor; 22, rotating rod;
[0022] 30. Conveyor Belt 1; 31. Track Motor 1; 32. Guide Plate; 33. Baffle
[0023] 41. Transverse Movement Mechanism Mounting Plate; 42. Collection Cup; 43. Track Motor 2; 44. Conveyor Belt 2; 45. Limit Post; 46. Electric Push Rod
[0024] 51. Collection Cylinder; 52. Support Disk; 53. Pressure Sensor; 54. Support Post 2; 55. Support Inclined Plate; 56. Spring Detailed Implementation Manner
[0025] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0026] Please refer to Figures 1-4 , the present invention provides a technical solution:
[0027] Refer to Figures 1-4 As shown, an automatic arrangement device for annular spiral ferrite sheets includes a conveyor belt 1 (30). Two baffles (33) are fixed to the top of the conveyor belt 1 (30). A guide plate (32) is fixed to the inner wall of the end of the baffle (33). A conveyor belt 2 (44) arranged in a T-shape with it is provided on one side of the end of the baffle (33). A support post 2 (54) is provided between the conveyor belt 1 (30) and the conveyor belt 2 (44). A support disk (52) is fixed to the top of the support post 2 (54). A driving motor (21) is fixed to the top of the support disk (52) through a fixing rod. The output end of the driving motor (21) is connected to a rotating roller (20) through a rotating rod (22). A collection cylinder (51) fixed to the top of the support disk (52) is provided below the rotating roller (20). A collection cup (42) is lapped on the top end of the collection cylinder (51). A pressure sensor (53) is embedded in the top of the support disk (52). A discharge channel is provided at the bottom of the collection cylinder (51). A blanking hopper (10) is provided at the front bottom of the conveyor belt 1 (30). A support post 1 (11) is fixed to the bottom of the blanking hopper (10). The conveyor belt 1 (30) is driven by a track motor 1 (31), and the conveyor belt 2 (44) is driven by a track motor 2 (43). The pressure sensor (53) is electrically connected to the track motor 2 (43).
[0028] Refer to Figures 1-4As shown in the figure, an automatic arrangement device for ring-shaped ferrite sheets. On one side of conveyor belt two 44 away from conveyor belt one 30, there is a transverse movement mechanism mounting plate 41. On the side wall of the transverse movement mechanism mounting plate 41 facing the rotating roller 20, an electric push rod 46 is fixed. The electric push rod 46, the pressure sensor 53 and the collection cylinder 51 are located in the same vertical plane. On the top of the support disk 52, two limit posts 45 are fixed on both sides of the electric push rod 46. There is an object placement channel on the top of the collection cylinder 51. In the middle of the inner wall of the collection cylinder 51, there is an inclined support slant plate 55 connected by a spring 56. The top of the support slant plate 55 is rotatably connected to the inner wall of the collection cylinder 51. The bottom of the collection cup 42 located below the rotating roller 20 is slidably connected to the top of the collection cylinder 51. The bottom of the collection cup 42 is lapped on the top of the support slant plate 55. The number of the support slant plates 55 is thirty-six, and multiple support slant plates 55 are evenly distributed on the inner wall of the collection cylinder 51.
[0029] Refer to Figures 1-4 As shown in the figure, an automatic arrangement device for ring-shaped ferrite sheets. The bottom of the rotating roller 20 is located between two guide plates 32. The top cross-section of the guide plate 32 is a trapezoidal structure. Two baffle plates 33 are distributed in a V-shaped pattern. The end with a smaller distance between the two baffle plates 33 is arranged close to the rotating roller 20.
[0030] Working principle: Step 1: The ring-shaped ferrite sheets in the blanking hopper 10 move towards the narrow end at the other end through conveyor belt one 30. The baffle plates 33 fixed on conveyor belt one 30 prevent the ring-shaped ferrite sheets from falling out of the device. The multi-layer ring-shaped ferrite sheets are squeezed into a single row by the guide plates 32. The lowermost ring-shaped ferrite sheet will pass under the rotating roller 20 and fall into the collection cup 42. The ring-shaped ferrite sheets that are not in the lowermost layer will be swept back onto conveyor belt one 30 by the rotating roller 20;
[0031] Step 2: When the collection cup 42 is full of ring-shaped ferrite sheets, the support slant plates 55 in the lower collection cylinder 51 cannot bear the full weight, and the collection cup 42 will drop onto the pressure sensor 53, and then the collection cup 42 can be taken out;
[0032] Step 3: After the collection cup 42 drops, conveyor belt two 44 drives the collection cup 42 on its top to move, and the electric push rod 46 pushes the collection cup 42 to the top of the collection cylinder 51 under the rotating roller 20.
Claims
1. An automatic alignment device for ring-shaped ferrite sheets, comprising a first conveyor belt (30), characterized in that: Two baffles (33) are fixed to the top of the first conveyor belt (30). A guide plate (32) is fixed to the inner wall of the end of the baffle (33). A second conveyor belt (44) arranged in a T-shape with the baffle (33) is provided on one side of the end of the baffle (33). A second support column (54) is arranged between the first conveyor belt (30) and the second conveyor belt (44). A support disc (52) is fixed to the top of the second support column (54). A drive motor (21) is fixed to the top of the support disc (52) by a fixed rod. The output end of the drive motor (21) is connected to a rotating roller (20) through a rotating rod (22). A collection cylinder (51) fixed to the top of the support disc (52) is arranged below the rotating roller (20). A collection cup (42) is lapped on the top end of the collection cylinder (51). A pressure sensor (53) is embedded in the top of the support disc (52). A discharge channel is arranged at the bottom of the collection cylinder (51).
2. The automatic alignment device for a ring-shaped ferrite sheet according to claim 1, characterized in that: A feeding hopper (10) is arranged at the bottom of the front end of the first conveyor belt (30). A first support column (11) is fixed to the bottom of the feeding hopper (10). The first conveyor belt (30) is driven by a track motor one (31). The second conveyor belt (44) is driven by a track motor two (43). The pressure sensor (53) is electrically connected to the track motor two (43).
3. The automatic arrangement device for a ring-shaped ferrite sheet according to claim 1, characterized in that: A transverse movement mechanism mounting plate (41) is arranged on the side of the second conveyor belt (44) away from the first conveyor belt (30). An electric push rod (46) is fixed to the side wall of the transverse movement mechanism mounting plate (41) facing the rotating roller (20). The electric push rod (46), the pressure sensor (53) and the collection cylinder (51) are located in the same vertical plane. Two limit columns (45) located on both sides of the electric push rod (46) are fixed to the top of the support disc (52).
4. The automatic arrangement device of a ring-shaped rotary ferrite sheet according to claim 1, characterized in that: A placement channel is arranged at the top of the collection cylinder (51). A support inclined plate (55) arranged obliquely is connected to the middle of the inner wall of the collection cylinder (51) through a spring (56). The top of the support inclined plate (55) is rotatably connected to the inner wall of the collection cylinder (51).
5. The automatic alignment device for a ring-shaped ferrite sheet according to claim 4, characterized in that: The bottom of the collection cup (42) located below the rotating roller (20) is slidably connected to the top of the collection cylinder (51). The bottom of the collection cup (42) is lapped on the top of the support inclined plate (55).
6. The automatic arrangement device of a circumgyrate ferrite sheet according to claim 5, characterized in that: The number of the support inclined plates (55) is thirty-six. The multiple support inclined plates (55) are evenly distributed on the inner wall of the collection cylinder (51).
7. The automatic arrangement device of a ring-shaped rotary ferrite sheet according to claim 1, characterized in that: The bottom of the rotating roller (20) is located between the two guide plates (32). The top cross section of the guide plate (32) is a trapezoidal structure.
8. The automatic arrangement device of a ring-shaped rotary ferrite sheet according to claim 1, characterized in that: The two baffles (33) are distributed in a V-shape. The end with a smaller distance between the two baffles (33) is arranged close to the rotating roller (20).