Quality-improving and impurity-reducing device for high-grade ferromolybdenum

Through the transmission system with adjustable crushing spacing and the effective impurity separation structure, the problem of unsatisfactory crushing in traditional devices is solved, and the efficient effect of improving the quality of ferromolybdenum and reducing impurities is achieved.

CN223439951UActive Publication Date: 2025-10-17CHAOYANG JINDA MOLYBDENUM IND
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Patent Information

Application Number
CN202422778511.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-14
Publication Date
2025-10-17
Estimated Expiration
2034-11-14

AI Technical Summary

Technical Problem

Traditional ferromolybdenum quality improvement and impurity reduction devices are unable to adjust the spacing between the crushing rollers according to the particle size, resulting in some ferromolybdenum not being effectively crushed or the crushing effect being unsatisfactory, affecting production efficiency and quality.

Method used

The first motor, the first gear, the first rack, the fixed block and the second motor structure are adopted, and the crushing distance can be adjusted through the transmission column and the crushing rod. Combined with the electric push rod, the second rack, the second gear and the rotating rod structure, the effective separation and discharge of molybdenum iron and impurities can be achieved.

Benefits of technology

It improves the crushing efficiency and impurity reduction effect, ensures the effective separation and thorough discharge of ferromolybdenum and impurities, and improves production efficiency and product purity.

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Abstract

The utility model relates to the technical field of impurity reducing devices, and discloses a high-grade ferromolybdenum quality improving and impurity reducing device which comprises a material frame, one side of the material frame is fixedly connected with a supporting plate, the top of the supporting plate is fixedly connected with a fixing plate, one side of the fixing plate is fixedly connected with a first motor, the output end of the first motor is fixedly connected with a first gear, and the output end of the first gear is fixedly connected with a second gear. The first gear is used for transmitting power; and the supporting rings are fixedly connected to the top of the supporting plate in a front-back symmetry mode, sliding columns are slidably connected to the interiors of the two supporting rings correspondingly, and first racks are fixedly connected to one ends of the two sliding columns correspondingly. According to the device, the first motor and the first gear drive the transmission column and the crushing roller structure to work, so that the effect of adjusting the crushing distance according to requirements is achieved, and the problem that some ferromolybdenum cannot be effectively crushed or the crushing effect is not ideal due to the fact that the distance between the crushing rollers cannot be adjusted according to the required particle size is solved; therefore, the impurity reducing efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of impurity removal device, especially to a high-grade molybdenum iron quality improvement and impurity removal device. BACKGROUND

[0002] Molybdenum iron is an alloy material mainly composed of molybdenum and iron, commonly used to improve the performance of steel. Molybdenum iron is used as an alloying additive in steel production to improve the strength, hardness and wear resistance of steel. As an alloying element, molybdenum can improve the high-temperature resistance and corrosion resistance of steel, while enhancing its stability under extreme conditions. The use of molybdenum iron can also increase the toughness of steel and reduce brittleness in high-temperature environments, ensuring excellent mechanical properties in various applications. Molybdenum iron may contain various impurities such as sulfur, phosphorus and carbon during production, which can affect the physical and chemical properties of molybdenum iron and reduce its performance in steel. A quality improvement and impurity removal device can effectively remove these impurities and improve the purity of molybdenum iron.

[0003] Traditional quality improvement and impurity removal devices are usually composed of a crusher and a magnetic separator. The crusher is used to preliminarily crush molybdenum ore or molybdenum iron blocks to reduce their particle size to a range suitable for subsequent processing, making the ore or alloy blocks easier to process and removing larger impurities. The crushed material enters the magnetic separator, where magnetic impurities are effectively separated and removed by the action of a strong magnetic field.

[0004] However, the crushing structure of traditional quality improvement and impurity removal devices is relatively simple. During use, the crushing rods can only rotate and crush at specific positions, and the distance between the crushing rods cannot be adjusted according to the required particle size, resulting in ineffective crushing or unsatisfactory crushing of some molybdenum iron, affecting overall production efficiency and quality. Therefore, a high-grade molybdenum iron quality improvement and impurity removal device is proposed to solve the above problems. UTILITY MODEL CONTENTS

[0005] To overcome the above shortcomings, the utility model provides a high-grade molybdenum iron quality improvement and impurity removal device, aiming to improve the problem that the distance between the crushing rods cannot be adjusted according to the required particle size in the prior art, resulting in ineffective crushing or unsatisfactory crushing of some molybdenum iron.

[0006] To achieve the above purpose, the utility model adopts the following technical solutions:

[0007] A high-grade molybdenum iron quality improvement and impurity removal device, comprising:

[0008] A material frame, one side of the material frame is fixedly connected with a support plate, the top of the support plate is fixedly connected with a fixed plate, one side of the fixed plate is fixedly connected with a first motor, the output end of the first motor is fixedly connected with a first gear, and the first gear is used to transmit power;

[0009] Supporting ring, the supporting ring is front and back symmetry fixedly connected at the top of the supporting plate, two the slide column is slidably connected in the inside of the supporting ring, one end of two the slide column is fixedly connected with first rack, two the first rack is engaged with first gear, two the first rack is fixedly connected with fixed block on one side, the fixed block is used for providing support;

[0010] Second motor, the second motor is fixedly connected on one side of the fixed block, the transmission column is fixedly connected on the output end of the second motor, the crushing assembly is arranged on the outer wall of the transmission column, and the crushing assembly is used for crushing the molybdenum iron;

[0011] As a further description of the above technical solution:

[0012] The crushing assembly comprises a crushing rod, the crushing rod is fixedly connected to the outer wall of the transmission column, and the transmission column is slidably connected in the inside of the material frame;

[0013] As a further description of the above technical solution:

[0014] The inside of the material frame is fixedly connected with a slag removal tank, and the inside of the slag removal tank is provided with a separator;

[0015] As a further description of the above technical solution:

[0016] The inside of the slag removal tank is fixedly connected with a slag removal pipe, and the inside of the slag removal tank is fixedly connected with a support frame;

[0017] As a further description of the above technical solution:

[0018] The side of the support frame is fixedly connected with an electric push rod, and the output end of the electric push rod is fixedly connected with a second rack;

[0019] As a further description of the above technical solution:

[0020] The side of the support frame is fixedly connected with a fixed frame, the second rack is slidably connected in the inside of the fixed frame, and the inside of the support frame is slidably connected with a sealing cover;

[0021] As a further description of the above technical solution:

[0022] The side of the sealing cover is rotatably connected with a rotating rod, the side of the rotating rod is fixedly connected with a second gear, and the second gear is engaged with the second rack;

[0023] As a further description of the above technical solution:

[0024] The side of the sealing cover is rotatably connected with a connecting rod, and the connecting rod is rotatably connected on one side of the support frame.

[0025] The utility model has the advantages of the following:

[0026] 1. In the utility model, the first motor, the first gear, the first rack, the fixed block and the second motor structure drive the transmission column and the crushing stick structure to work, so that the crushing interval can be adjusted according to requirements, the interval between the crushing sticks can be adjusted according to the required particle size, some molybdenum iron cannot be effectively crushed or the crushing effect is not ideal, and the efficiency of removing impurities is improved.

[0027] 2. In the utility model, the cooperation of the electric push rod, the second rack, the second gear, the rotating rod and the connecting rod structure enables the sealing cover to work, so that the molybdenum iron and impurities can be effectively distinguished and discharged, the molybdenum iron and impurities cannot be effectively distinguished and discharged outside the device after the molybdenum iron is removed of impurities, which causes the impurities to be mixed into the molybdenum iron again during the discharging process, and the flexibility of the impurity removal device is improved. BRIEF DESCRIPTION OF DRAWINGS

[0028] Figure 1 A three-dimensional schematic view of the high-grade molybdenum iron quality improvement and impurity reduction device is provided.

[0029] Figure 2 A schematic view of the internal structure of the material frame of the high-grade molybdenum iron quality improvement and impurity reduction device is provided.

[0030] Figure 3 A schematic view of the internal structure of the impurity removal tank of the high-grade molybdenum iron quality improvement and impurity reduction device is provided.

[0031] Figure 4 A schematic view of the internal structure of the support frame of the high-grade molybdenum iron quality improvement and impurity reduction device is provided.

[0032] LEGEND:

[0033] 1. Material frame; 2. Support plate; 3. Fixed plate; 4. First motor; 5. First gear; 6. Support ring; 7. Slide column; 8. First rack; 9. Fixed block; 10. Second motor; 11. Transmission column; 12. Crushing stick; 13. Impurity removal tank; 14. Separator; 15. Slag discharge pipe; 16. Support frame; 17. Electric push rod; 18. Second rack; 19. Fixed frame; 20. Sealing cover; 21. Rotating rod; 22. Second gear; 23. Connecting rod. DETAILED DESCRIPTION

[0034] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the utility model.

[0035] With reference to Figure 1 and Figure 2 An embodiment provided by the utility model: a high-grade molybdenum iron quality improving and impurity reducing device, comprising:

[0036] The material frame 1 is fixedly connected with the support plate 2 on one side, the support plate 2 is fixedly connected with the fixed plate 3 on the top, the fixed plate 3 is fixedly connected with the first motor 4 on one side, the first motor 4 is fixedly connected with the first gear 5 on the output end, and the first gear 5 is used for power transmission.

[0037] The support ring 6 is fixedly connected on the top of the support plate 2 in a front-rear symmetry mode, the two support rings 6 are both slidably connected with the slide column 7 inside, the two slide columns 7 are both fixedly connected with the first rack 8 on one end, the two first racks 8 are both engaged with the first gear 5, the two first racks 8 are both fixedly connected with the fixed block 9 on one side, and the fixed block 9 is used for providing support.

[0038] The second motor 10 is fixedly connected on one side of the fixed block 9, the second motor 10 is fixedly connected with the transmission column 11 on the output end, the transmission column 11 is provided with the crushing assembly on the outer wall, the crushing assembly is used for crushing molybdenum iron, and the crushing assembly comprises the crushing stick 12.

[0039] Specifically, when the impurity reducing device is used, the molybdenum iron is first placed into the material frame 1, then the second motor 10 drives the transmission column 11 to rotate, the transmission column 11 drives the crushing stick 12 connected on the outer wall to rotate, the crushing stick 12 exerts a crushing action on the molybdenum iron in the rotating process, so that the molybdenum iron is crushed into smaller particles, so as to facilitate subsequent processing, when it is necessary to adjust the crushing distance, the output end of the first motor 4 drives the first gear 5 to rotate, the first gear 5 drives the two first racks 8 engaged therewith to move in opposite directions, the two first racks 8 are connected with the fixed block 9 on one side respectively, the fixed block 9 drives the second motor 10 connected on one side to move in the moving process, and the movement of the second motor 10 further drives the transmission column 11 to slide in the material frame 1, so that the distance between the crushing sticks 12 is adjusted, and then the crushing degree of the molybdenum iron is controlled.

[0040] With reference to Figure 3 and Figure 4The inside of the material frame 1 is fixedly connected with a impurity removal tank 13, the inside of the impurity removal tank 13 is provided with a separator 14, the inside of the impurity removal tank 13 is fixedly connected with a residue discharge pipe 15, the inside of the impurity removal tank 13 is fixedly connected with a supporting frame 16, one side of the supporting frame 16 is fixedly connected with an electric push rod 17, and the output end of the electric push rod 17 is fixedly connected with a second rack 18.

[0041] Specifically, the crushed molybdenum iron falls into the inside of the impurity removal tank 13, at this time, the separator 14 in the inside of the impurity removal tank 13 starts to work to separate the impurities in the molybdenum iron, the separator 14 separates the impurities from the molybdenum iron through its function, the separated impurities are discharged through the residue discharge pipe 15, so that the impurities in the molybdenum iron are effectively removed, after the impurities are discharged, in order to take out the cleaned molybdenum iron, the output end of the electric push rod 17 starts to work to drive the second rack 18 to move, the second rack 18 drives the second gear 22 engaged therewith to rotate in the moving process, so that the motion transmission effect is achieved.

[0042] Referring to Figure 3 and Figure 4 , one side of the supporting frame 16 is fixedly connected with a fixed frame 19, the second rack 18 is slidingly connected in the inside of the fixed frame 19, the inside of the supporting frame 16 is slidingly connected with a sealing cover 20, one side of the sealing cover 20 is rotatably connected with a rotating rod 21, one side of the rotating rod 21 is fixedly connected with the second gear 22, the second gear 22 is engaged with the second rack 18, one side of the sealing cover 20 is rotatably connected with a connecting rod 23, and the connecting rod 23 is rotatably connected at one side of the supporting frame 16.

[0043] Specifically, the rotation of the second gear 22 further drives the rotating rod 21 connected to the outer wall thereof to rotate, the rotating force of the rotating rod 21 makes the sealing cover 20 connected at one side to slide in the inside of the supporting frame 16, in the sliding process of the sealing cover 20, the sealing cover 20 drives the connecting rod 23 connected at one side to rotate, so that the sealing cover 20 is opened from the inside of the supporting frame 16, in this way, the treated molybdenum iron can be smoothly taken out from the inside of the impurity removal tank 13, so that the effective impurity removal effect is achieved, and the complete removal of the impurities and the smooth taking out of the molybdenum iron are ensured.

[0044] Working principle: in using the impurity reducing device, first put molybdenum into the frame 1 inside, through the second motor 10 drive transmission column 11 rotation, transmission column 11 drive the outer wall connected broken stick 12 rotation, make broken stick 12 to molybdenum for broken, when need to adjust the broken interval between broken stick 12, through the first motor 4 output end drive first gear 5 rotation, first gear 5 drive two first rack 8 with it meshing move in opposite directions, two first rack 8 respectively drive the fixed block 9 connected on one side move, make fixed block 9 respectively drive the second motor 10 connected on one side move, further drive transmission column 11 in the frame 1 inside slide, so as to reach the effect that can according to the demand to adjust the broken interval, the broken molybdenum falls into the impurity removal tank 13 inside, through the separator 14 in the impurity removal tank 13 to the impurity in molybdenum separation, then the impurity in molybdenum is discharged through the slag discharge pipe 15, after the impurity is discharged, at this time through the electric push rod 17 output end drive second rack 18 move, second rack 18 drive second gear 22 with it meshing rotation, second gear 22 drive the outer wall connected rotating rod 21 rotation, rotating rod 21 drive the sealing cover 20 connected on one side slide in the support frame 16 inside, sealing cover 20 drive the connecting rod 23 connected on one side rotation, further make sealing cover 20 open the support frame 16, take out molybdenum from the impurity removal tank 13 inside, so as to reach the effect that can effectively reduce the impurity.

[0045] Finally, it should be noted that: the above only for the preferred embodiments of the utility model, and not for limiting the utility model, although the utility model is described in detail with reference to the foregoing embodiments, for the person skilled in the art, it still can modify the technical scheme recorded in the foregoing each embodiment, or make equivalent replacement to part of the technical features, any modification, equivalent replacement, improvement etc. made within the spirit and principles of the utility model, should be included in the protection scope of the utility model.

Claims

1. A high-grade ferromolybdenum quality improvement and impurity reduction device, characterized by: include: A material frame (1), wherein one side of the material frame (1) is fixedly connected to a support plate (2), the top of the support plate (2) is fixedly connected to a fixing plate (3), one side of the fixing plate (3) is fixedly connected to a first motor (4), an output end of the first motor (4) is fixedly connected to a first gear (5), and the first gear (5) is used to transmit power; A support ring (6), wherein the support ring (6) is fixedly connected to the top of the support plate (2) in a front-to-back symmetrical manner, a sliding column (7) is slidably connected inside the two support rings (6), one end of each of the two sliding columns (7) is fixedly connected to a first rack (8), the two first racks (8) are meshed with the first gear (5), and one side of each of the two first racks (8) is fixedly connected to a fixed block (9), and the fixed block (9) is used to provide support; A second motor (10) is fixedly connected to one side of the fixed block (9); an output end of the second motor (10) is fixedly connected to a transmission column (11); an outer wall of the transmission column (11) is provided with a crushing assembly, and the crushing assembly is used to crush ferromolybdenum.

2. The high-grade ferromolybdenum quality improvement and impurity reduction device according to claim 1, characterized in that: The crushing assembly comprises a crushing rod (12), wherein the crushing rod (12) is fixedly connected to the outer wall of the transmission column (11), and the transmission column (11) is slidably connected to the inside of the material frame (1).

3. The high-grade ferromolybdenum quality improvement and impurity reduction device according to claim 1, characterized in that: The material frame (1) is fixedly connected to a de-impurity tank (13) inside, and a separator (14) is provided inside the de-impurity tank (13).

4. The high-grade ferromolybdenum quality improvement and impurity reduction device according to claim 3, characterized in that: A slag discharge pipe (15) is fixedly connected to the interior of the impurity removal tank (13), and a support frame (16) is fixedly connected to the interior of the impurity removal tank (13).

5. The high-grade ferromolybdenum quality improvement and impurity reduction device according to claim 4, characterized in that: One side of the support frame (16) is fixedly connected to an electric push rod (17), and the output end of the electric push rod (17) is fixedly connected to a second rack (18).

6. The high-grade ferromolybdenum quality improvement and impurity reduction device according to claim 5, characterized in that: One side of the support frame (16) is fixedly connected to a fixed frame (19), the second rack (18) is slidably connected to the inside of the fixed frame (19), and a sealing cover (20) is slidably connected to the inside of the support frame (16).

7. The high-grade ferromolybdenum quality improvement and impurity reduction device according to claim 6, characterized in that: One side of the sealing cover (20) is rotatably connected to a rotating rod (21), and one side of the rotating rod (21) is fixedly connected to a second gear (22), and the second gear (22) is meshed with the second rack (18).

8. The high-grade ferromolybdenum quality improvement and impurity reduction device according to claim 7, characterized in that: One side of the sealing cover (20) is rotatably connected to a connecting rod (23), and the connecting rod (23) is rotatably connected to one side of the supporting frame (16).