Automatic feeding machine of kiln

By designing an automatic kiln feeder, the problem of low manual feeding efficiency in the production of manganese-zinc ferrite cores was solved, automatic feeding was achieved, production efficiency was improved and labor intensity was reduced.

CN223480109UActive Publication Date: 2025-10-28WUXI SPINEL MAGNETICS
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Patent Information

Application Number
CN202422682599.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-04
Publication Date
2025-10-28
Estimated Expiration
2034-11-04

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Abstract

The utility model discloses a kiln automatic feeding machine which comprises a main conveying assembly, a kiln is arranged at one end of the main conveying assembly, an auxiliary mounting assembly is arranged on one side of the main conveying assembly, an auxiliary guide assembly is arranged on the auxiliary mounting assembly, a moving plate is arranged at the moving position of the auxiliary guide assembly, and a feeding plate is arranged on the moving plate. A supporting assembly is arranged on the moving plate, a top frame is arranged on the supporting assembly, a longitudinal moving guide rail is arranged on the top frame, an auxiliary plate is arranged on the moving portion of the longitudinal moving guide rail, a lifting control assembly is arranged on the auxiliary plate, and a mounting plate is arranged at the output end of the lifting control assembly. And a clamping assembly is arranged on the mounting plate. According to the technical scheme, the automatic feeding machine is ingenious in structural design, high in practicability and stable in work and operation, manual feeding operation on the manganese zinc ferrite magnetic cores is replaced with the automatic feeding machine, and the feeding efficiency of the manganese zinc ferrite magnetic cores is effectively improved.
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Description

Technical Field

[0001] This utility model relates to the field of manganese-zinc ferrite core production technology, and in particular to an automatic kiln feeding machine. Background Technology

[0002] With the rapid pace of technological advancements in electronic products both domestically and internationally, the standards and requirements for electronic devices and transformers are becoming increasingly stringent. Power transformer designs are evolving towards higher efficiency, thinner profiles, and miniaturization. Manganese-zinc ferrite cores are one such core used in high-definition flat-screen TVs and power transformers.

[0003] During the production of manganese-zinc ferrite cores, a feeding operation is required. Currently, the feeding operation is carried out manually. This method is labor-intensive for workers and has low feeding efficiency, which cannot meet the production efficiency requirements of manganese-zinc ferrite cores. Therefore, an automatic kiln feeding machine has been designed. Utility Model Content

[0004] The purpose of this invention is to solve the above problems by designing an automatic kiln feeding machine.

[0005] To achieve the above objectives, the technical solution of this utility model is as follows: an automatic kiln feeding machine, comprising a main conveying component, a kiln being disposed at one end of the main conveying component, an auxiliary installation component being disposed on one side of the main conveying component, an auxiliary guide component being disposed on the auxiliary installation component, a moving plate being disposed on the moving part of the auxiliary guide component, a support component being disposed on the moving plate, a top frame being disposed on the support component, a longitudinal moving guide rail being disposed on the top frame, an auxiliary plate being disposed on the moving part of the longitudinal moving guide rail, a lifting control component being disposed on the auxiliary plate, an installation plate being disposed at the output end of the lifting control component, and a clamping component being disposed on the installation plate.

[0006] As a further description of this technical solution, the main conveying assembly includes a main conveying frame, a main conveyor belt is provided on the main conveying frame, a kiln is provided on one side of the main conveying frame, and an auxiliary installation assembly is provided on one side of the main conveying frame.

[0007] As a further description of this technical solution, the auxiliary installation assembly includes an auxiliary installation frame disposed on one side of the main conveying assembly, and an auxiliary guide assembly is disposed on the auxiliary installation frame.

[0008] As a further description of this technical solution, the auxiliary guide assembly includes an auxiliary guide rail disposed on the auxiliary mounting assembly, a transmission rack disposed on the side of the auxiliary mounting bracket, a power motor disposed on the movable plate, and a transmission gear disposed at the output end of the power motor, the transmission gear meshing with the transmission rack.

[0009] As a further description of this technical solution, the movable plate is provided with a transverse moving guide rail, and a movable product storage rack is provided on the transverse moving guide rail. An auxiliary rack is provided on the movable plate between the two transverse moving guide rails, and an auxiliary motor is provided on the product storage rack. An auxiliary gear is provided at the output end of the auxiliary motor, and the auxiliary gear meshes with the auxiliary rack.

[0010] As a further description of this technical solution, the lifting control assembly includes a lifting control cylinder mounted on an auxiliary plate, and the output end of the lifting control cylinder is provided with a mounting plate.

[0011] As a further description of this technical solution, the clamping assembly includes a clamping guide rail disposed on the mounting plate, a movable clamping arm disposed on the clamping guide rail, and a clamping control assembly disposed on one side of the clamping guide rail on the mounting plate.

[0012] As a further description of this technical solution, the clamping control assembly includes a clamping control cylinder disposed on the mounting plate on one side of the clamping guide rail, and the output end of the clamping control cylinder is connected to the clamping arm.

[0013] Its beneficial effects are that the automatic feeding machine of this technical solution has a clever structural design, strong practicality, and stable operation. Using this automatic feeding machine, the manual feeding operation of manganese zinc ferrite cores is replaced, which effectively improves the feeding efficiency of manganese zinc ferrite cores. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0015] Figure 2 This is a schematic diagram of the installation structure of the clamping assembly of this utility model;

[0016] Figure 3 This is a schematic diagram of the installation structure of the transmission gear of this utility model;

[0017] Figure 4 It is a schematic diagram of the overall structure of the utility model.

[0018] In the diagram, 1. Main conveyor assembly; 2. Kiln; 3. Auxiliary installation assembly; 4. Auxiliary guide assembly; 5. Moving plate; 6. Support assembly; 7. Top frame; 8. Longitudinal moving guide rail; 9. Auxiliary plate; 10. Lifting control assembly; 11. Mounting plate; 12. Clamping assembly; 13. Main conveyor frame; 14. Main conveyor belt; 15. Auxiliary mounting frame; 16. Auxiliary guide rail; 17. Transmission rack; 18. Power motor; 19. Transmission gear; 20. Lateral moving guide rail; 21. Product storage rack; 22. Auxiliary rack; 23. Auxiliary motor; 24. Auxiliary gear; 25. Lifting control cylinder; 26. Clamping guide rail; 27. Clamping arm; 28. Clamping control cylinder. Detailed Implementation

[0019] First, let me explain the design intention of this utility model. During the production process of manganese-zinc ferrite cores, a feeding operation is required. Currently, the feeding operation is carried out manually. This method is labor-intensive for workers and has low feeding efficiency, which cannot meet the production efficiency of manganese-zinc ferrite cores. Therefore, this utility model designs an automatic kiln feeding machine.

[0020] The present invention will now be described in detail with reference to the accompanying drawings, such as... Figure 1-Figure 4 As shown, an automatic kiln feeding machine includes a main conveyor assembly 1. The main conveyor assembly 1 will be described in detail below. The main conveyor assembly 1 includes a main conveyor frame 13, on which a main conveyor belt 14 is provided. A kiln 2 is provided on one side of the main conveyor frame 13, and an auxiliary installation assembly 3 is provided on one side of the main conveyor frame 13.

[0021] A kiln 2 is provided at one end of the main conveying component 1. In order to facilitate the installation of the auxiliary guide component 4, an auxiliary installation component 3 is provided on one side of the main conveying component 1. The auxiliary installation component 3 will be described in detail below. The auxiliary installation component 3 includes an auxiliary installation frame 15 provided on one side of the main conveying component 1, and the auxiliary guide component 4 is provided on the auxiliary installation frame 15.

[0022] To facilitate the movement and guidance of the movable plate 5, an auxiliary guide component 4 is provided on the auxiliary mounting component 3. The movable part of the auxiliary guide component 4 is provided with the movable plate 5. The auxiliary guide component 4 will be described in detail below. The auxiliary guide component 4 includes an auxiliary guide rail 16 provided on the auxiliary mounting component 3. A transmission rack 17 is provided on the side of the auxiliary mounting bracket 15. A power motor 18 is provided on the movable plate 5. A transmission gear 19 is provided at the output end of the power motor 18. The transmission gear 19 meshes with the transmission rack 17.

[0023] To facilitate the installation of the top frame 7, a support assembly 6 is provided on the movable plate 5, the top frame 7 is provided on the support assembly 6, a longitudinal moving guide rail 8 is provided on the top frame 7, and an auxiliary plate 9 is provided on the moving part of the longitudinal moving guide rail 8.

[0024] In order to control the lifting and lowering of the clamping assembly 12, a lifting control assembly 10 is provided on the auxiliary plate 9. The lifting control assembly 10 will be described in detail below. The lifting control assembly 10 includes a lifting control cylinder 25 provided on the auxiliary plate 9, and a mounting plate 11 is provided at the output end of the lifting control cylinder 25.

[0025] To facilitate the installation of the clamping assembly 12, a mounting plate 11 is provided at the output end of the lifting control assembly 10. The clamping assembly 12 is provided on the mounting plate 11. The clamping assembly 12 will be described in detail below. The clamping assembly 12 includes a clamping guide rail 26 provided on the mounting plate 11. A movable clamping arm 27 is provided on the clamping guide rail 26. A clamping control assembly is provided on one side of the clamping guide rail 26 on the mounting plate 11.

[0026] To facilitate the control of the clamping arm 27, the clamping control assembly includes a clamping control cylinder 28 located on one side of the clamping guide rail 26 on the mounting plate 11, and the output end of the clamping control cylinder 28 is connected to the clamping arm 27.

[0027] To facilitate the lateral movement of the product storage rack 21, a lateral movement guide rail 20 is provided on the moving plate 5. To facilitate the storage of products to be processed, a movable product storage rack 21 is provided on the lateral movement guide rail 20.

[0028] To facilitate the accurate movement of products on the product storage rack 21 to below the clamping assembly 12, an auxiliary rack 22 is provided on the moving plate 5 between the two transverse moving guide rails 20, and an auxiliary motor 23 is provided on the product storage rack 21. An auxiliary gear 24 is provided at the output end of the auxiliary motor 23, and the auxiliary gear 24 meshes with the auxiliary rack 22.

[0029] The specific structure of this utility model has been described in detail above. The working principle of this utility model will be explained below: The product to be processed is placed on the product storage rack 21. The power motor 18 drives the transmission gear 19 to rotate. With the cooperation of the transmission rack 17, the moving plate 5 is moved to the front end of the main conveyor frame 13. Then, the lifting control cylinder 25 drives the clamping assembly 12 to descend. The clamping control cylinder 28 controls the clamping arm 27 to clamp the product. After clamping, under the guidance of the longitudinal moving guide rail 8, the clamped product is moved above the main conveyor belt 14. The lifting control cylinder 25 controls the... As the clamped product descends, the clamping control cylinder 28 controls the clamping arm 27 to open, thus placing the clamped product onto the main drive belt. During this process, the auxiliary motor 23 drives the auxiliary gear 24 to rotate, and under the action of the auxiliary rack 22, the product on the product storage rack 21 is accurately moved to below the clamping assembly 12, waiting for the clamping assembly 12 to clamp and transport the product. The automatic feeding machine of this technical solution has a clever structural design, strong practicality, and stable operation. Using this automatic feeding machine, the manual feeding operation of manganese zinc ferrite cores is replaced, effectively improving the feeding efficiency of manganese zinc ferrite cores.

[0030] The above technical solution only embodies the preferred technical solution of this utility model. Any changes that may be made by those skilled in the art to certain parts of it embody the principle of this utility model and fall within the protection scope of this utility model.

Claims

1. An automatic kiln feeding machine, characterized in that, The system includes a main conveying component (1), a kiln (2) is provided at one end of the main conveying component (1), an auxiliary installation component (3) is provided on one side of the main conveying component (1), an auxiliary guide component (4) is provided on the auxiliary installation component (3), a moving plate (5) is provided on the moving part of the auxiliary guide component (4), a support component (6) is provided on the moving plate (5), a top frame (7) is provided on the support component (6), a longitudinal moving guide rail (8) is provided on the top frame (7), an auxiliary plate (9) is provided on the moving part of the longitudinal moving guide rail (8), a lifting control component (10) is provided on the auxiliary plate (9), an installation plate (11) is provided at the output end of the lifting control component (10), and a clamping component (12) is provided on the installation plate (11).

2. The automatic kiln feeding machine according to claim 1, characterized in that, The main conveying assembly (1) includes a main conveying frame (13), on which a main conveyor belt (14) is provided. A kiln (2) is provided on one side of the main conveying frame (13), and an auxiliary installation assembly (3) is provided on one side of the main conveying frame (13).

3. The automatic kiln feeding machine according to claim 1, characterized in that, The auxiliary installation component (3) includes an auxiliary mounting frame (15) disposed on one side of the main conveying component (1), and an auxiliary guide component (4) is disposed on the auxiliary mounting frame (15).

4. The automatic kiln feeding machine according to claim 1, characterized in that, The auxiliary guide assembly (4) includes an auxiliary guide rail (16) disposed on the auxiliary mounting assembly (3), a transmission rack (17) is disposed on the side of the auxiliary mounting bracket (15), a power motor (18) is disposed on the moving plate (5), and a transmission gear (19) is disposed at the output end of the power motor (18), and the transmission gear (19) meshes with the transmission rack (17).

5. The automatic kiln feeding machine according to claim 1, characterized in that, The movable plate (5) is provided with a transverse moving guide rail (20), and a movable product storage rack (21) is provided on the transverse moving guide rail (20). An auxiliary rack (22) is provided on the movable plate (5) between the two transverse moving guide rails (20). An auxiliary motor (23) is provided on the product storage rack (21). An auxiliary gear (24) is provided at the output end of the auxiliary motor (23). The auxiliary gear (24) meshes with the auxiliary rack (22).

6. The automatic kiln feeder according to claim 1, characterized in that, The lifting control assembly (10) includes a lifting control cylinder (25) mounted on an auxiliary plate (9), and the output end of the lifting control cylinder (25) is provided with a mounting plate (11).

7. The automatic kiln feeder according to claim 1, characterized in that, The clamping assembly (12) includes a clamping guide rail (26) disposed on the mounting plate (11), a movable clamping arm (27) is disposed on the clamping guide rail (26), and a clamping control assembly is disposed on one side of the clamping guide rail (26) on the mounting plate (11).

8. The automatic kiln feeder according to claim 7, characterized in that, The clamping control assembly includes a clamping control cylinder (28) disposed on the mounting plate (11) on one side of the clamping guide rail (26), and the output end of the clamping control cylinder (28) is connected to the clamping arm (27).