Molybdenum concentrate class-by-class storage device

By designing a molybdenum concentrate separating storage device, using material guide components and drive motors to realize separating materials, the problem of inconvenient material transport in the prior art is solved, and the accuracy and production efficiency of quality traceability are improved.

CN223238105UActive Publication Date: 2025-08-19LIAONING XINTAI MOLYBDENUM CO LTD
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Patent Information

Application Number
CN202422935240.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-29
Publication Date
2025-08-19
Estimated Expiration
2034-11-29

AI Technical Summary

Technical Problem

The existing molybdenum concentrate storage device is not convenient for material transfer in shifts, resulting in difficulty in tracing quality problems and difficulty in achieving accurate quality inspection and supervision.

Method used

A molybdenum concentrate separating storage device is designed to realize the shift conveying of materials between the guide trough and the storage box through the coordination of the guide assembly and the driving motor, and the rotation of the sealing plate and the reinforcement guide plate is used to realize the shift storage of materials.

Benefits of technology

It realizes convenient batch storage of materials, improves the accuracy and production efficiency of quality traceability, and simplifies the material transfer process.

✦ Generated by Eureka AI based on patent content.

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Abstract

A molybdenum concentrate class-by-class storage device particularly relates to the technical field of concentrate class-by-class storage and comprises a base, a material guiding assembly is arranged on the base and comprises a protection box arranged at the top of the base, a base plate is arranged in the protection box, and a material guiding groove is formed in the top of the base plate. A first discharging hole is formed in one side of the inner wall of the guide groove in a penetrating mode. According to the material guiding device, the material guiding assembly is arranged, when a blocking plate rotates, the blocking plate drives a second discharging hole to pull materials to move in a material guiding groove, the blocking plate makes contact with the bottom of a discharging guide pipe to block the discharging guide pipe, and a reinforcing guide plate is started and driven by a second driving motor to rotate; and when the reinforcing guide plate rotates, the bottom of the reinforcing guide plate faces the different storage boxes, the function of storing the materials in different classes is achieved, use is convenient, and meanwhile good practicability is achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of concentrated ore storage in shifts, in particular to a molybdenum concentrated ore storage device in shifts. Background Art

[0002] A polymetallic mine is a mine where the raw ore contains multiple metals with extraction value, and is often accompanied by the presence of associated minerals during the mining process. For common small and medium-sized polymetallic mines, the associated mineral content is low, and the final output is also low, which leads to large errors in tailings testing. For example, during the production of copper concentrate, associated molybdenum is often contained, and a copper-molybdenum separation process that suppresses copper and floats molybdenum is often used to recover the associated molybdenum. However, due to the low content of associated molybdenum minerals, the associated molybdenum tailings content is low (as low as about 0.005%), resulting in a large deviation between the theoretical and actual indicators of the associated molybdenum recovery rate in the production report. Therefore, in order to improve production efficiency and accuracy, it is necessary to strictly and accurately test and supervise the mineral processing production indicators of associated minerals and the actual working conditions at each stage of the production process;

[0003] Molybdenum concentrate quality indicators, such as grade (molybdenum content) and impurity composition, can vary depending on shift-by-shift production parameters, such as beneficiation reagent dosage, equipment status, and operating procedures. Separate shift storage allows for precise alignment of product quality between shifts. Any quality issues (such as substandard grade) can be quickly traced back to the specific shift. Currently, molybdenum concentrate separation boxes are typically single boxes, making it difficult to manage material and inconvenient for transfer between shifts. Utility Model Content

[0004] The utility model is to solve the above technical problems and provides a molybdenum concentrate storage device in shifts.

[0005] The technical solution of this utility model is:

[0006] A molybdenum concentrate storage device comprises a base, on which a material guide assembly is provided;

[0007] The material guide assembly includes a protective box arranged on the top of the base, a pad is arranged in the protective box, a material guide trough is opened on the top of the pad, and a first material discharge hole is opened through one side of the inner wall of the material guide trough;

[0008] A sealing plate is provided on the top of the pad, and a second material discharge hole is opened on the sealing plate. The second material discharge hole is located in the material guide trough. A reinforcing guide plate is provided at one end of the pad, and the reinforcing guide plate is located at the bottom of the first material discharge hole. Several storage boxes are provided at the bottom of the reinforcing guide plate, and each of the storage boxes is provided on the base.

[0009] Preferably, a first drive motor for driving the sealing plate to rotate is provided at the bottom of the sealing plate, a second drive motor for driving the reinforcing guide plate to rotate is provided at the bottom of the reinforcing guide plate, and a reinforcing support plate is provided at the bottom of the pad, the first drive motor and the second drive motor. The reinforcing support plate is installed on the protective box, and a discharge conduit is provided on the protective box. The bottom of the discharge conduit passes through the protective box and extends to the second discharge hole.

[0010] The beneficial effects of the utility model are:

[0011] By setting up the material guide assembly, compared with the existing technology, the overall design is simple and the structure is reasonable. Through the corresponding coordinated use of various structures, the material is transported to the discharge conduit, dredged through the discharge conduit, and transported to the guide trough through the second discharge hole. When the blocking plate rotates, the blocking plate drives the second discharge hole to pull the material to move in the guide trough, and the blocking plate contacts the bottom of the discharge conduit to block the discharge conduit, thereby preventing the remaining material from falling.

[0012] When the sealing plate rotates, the material will be guided by the guide trough and fall into the first discharge hole into the reinforced guide plate, and then transported to the storage box through the reinforced guide plate. At the same time, the second drive motor is started to drive the reinforced guide plate to rotate. When the reinforced guide plate rotates, the bottom of the reinforced guide plate will be directed to different storage boxes, realizing the function of storing materials in shifts. It is convenient to use and has good practicality. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 It is the main view of the utility model.

[0014] Figure 2 It is a side view of the present utility model.

[0015] Figure 3 It is a three-dimensional diagram of the base, protection box, storage box, reinforcement support plate and discharge pipe of the utility model.

[0016] Figure 4 It is a three-dimensional diagram of the material guide component of the present utility model.

[0017] Figure 5 This is an exploded view of the material guide assembly of the present invention.

[0018] In the figure: 1. Base; 2. Protective box; 3. Pad; 4. Material guide trough; 5. First material discharge hole; 6. Sealing plate; 7. Second material discharge hole; 8. Reinforced guide plate; 9. Storage box; 10. First drive motor; 11. Second drive motor; 12. Reinforced support plate; 13. Material discharge conduit. DETAILED DESCRIPTION

[0019] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0020] As attached Figure 1-5 As shown, a molybdenum concentrate storage device for different shifts is provided. Through the material guide assembly provided on the base 1, the sealing plate 6 can drive the second discharge hole 7 to pull the material to move in the guide trough 4 when the sealing plate 6 rotates, and the upper surface of the sealing plate 6 contacts the bottom of the pad 3 to block the pad 3. The material is guided by the guide trough 4 and falls into the first discharge hole 5 into the reinforced guide plate 8, and is transported to the storage box 9 through the reinforced guide plate 8. At the same time, the second drive motor 11 is started to drive the reinforced guide plate 8 to rotate. When the reinforced guide plate 8 rotates, the bottom of the reinforced guide plate 8 will be directed to different storage boxes 9, thereby realizing the function of storing the material in different shifts. The specific structure of the assembly is set as follows;

[0021] The material guide assembly includes a protective box 2 arranged on the top of the base 1, a pad 3 is arranged in the protective box 2, a material guide trough 4 is opened on the top of the pad 3, and a first material discharge hole 5 is opened through one side of the inner wall of the material guide trough 4;

[0022] A sealing plate 6 is provided on the top of the pad 3, and a second discharge hole 7 is opened on the sealing plate 6. The second discharge hole 7 is located in the guide trough 4. A reinforcing guide plate 8 is provided at one end of the pad 3. The reinforcing guide plate 8 is located at the bottom of the first discharge hole 5. Several storage boxes 9 are provided at the bottom of the reinforcing guide plate 8, and each storage box 9 is provided on the base 1.

[0023] A first drive motor 10 for driving the sealing plate 6 to rotate is provided at the bottom of the sealing plate 6, and a second drive motor 11 for driving the reinforcing guide plate 8 to rotate is provided at the bottom of the reinforcing guide plate 8. A reinforcing support plate 12 is provided at the bottom of the pad 3, the first drive motor 10 and the second drive motor 11. The reinforcing support plate 12 is installed on the protective box 2, and a discharge conduit 13 is provided on the protective box 2. The bottom of the discharge conduit 13 passes through the protective box 2 and extends to the second discharge hole 7.

[0024] When using the above structure, the staff installs the device at a designated position. When conveying materials, the materials are conveyed into the discharge pipe 13, dredged through the discharge pipe 13, and conveyed into the guide trough 4 through the second discharge hole 7. The first drive motor 10 is started to drive the blocking plate 6 to rotate. When the blocking plate 6 rotates, the blocking plate 6 drives the second discharge hole 7 to pull the material to move in the guide trough 4, and the blocking plate 6 contacts the bottom of the discharge pipe 13 to block the discharge pipe 13.

[0025] When the blocking plate 6 rotates, the material will be guided by the guide trough 4 and fall into the first discharge hole 5 into the reinforced guide plate 8, and then transported to the storage box 9 through the reinforced guide plate 8. At the same time, the second drive motor 11 is started to drive the reinforced guide plate 8 to rotate. When the reinforced guide plate 8 rotates, the bottom of the reinforced guide plate 8 will be directed toward different storage boxes 9, realizing the function of storing materials in shifts.

[0026] Different from the existing technology, the present application discloses a molybdenum concentrate storage device in shifts. When the sealing plate 6 rotates, the sealing plate 6 drives the second discharge hole 7 to pull the material to move in the guide trough 4, and the upper surface of the sealing plate 6 contacts the bottom of the pad 3 to seal the pad 3. The material is guided by the guide trough 4 and falls into the reinforced guide plate 8 through the first discharge hole 5, and is transported to the storage box 9 through the reinforced guide plate 8. At the same time, the second drive motor 11 starts to drive the reinforced guide plate 8 to rotate. When the reinforced guide plate 8 rotates, the bottom of the reinforced guide plate 8 will be directed to different storage boxes 9, thereby realizing the function of storing materials in shifts.

[0027] The above are only preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A molybdenum concentrate storage device comprising a base (1), characterized in that: A material guide component is provided on the base (1); The material guide assembly comprises a protective box (2) arranged on the top of the base (1), a pad (3) is arranged in the protective box (2), a material guide trough (4) is provided on the top of the pad (3), and a first material discharge hole (5) is provided through one side of the inner wall of the material guide trough (4); A blocking plate (6) is provided on the top of the backing plate (3), and a second material discharge hole (7) is provided on the blocking plate (6), and the second material discharge hole (7) is located in the material guide trough (4).

2. The molybdenum concentrate storage device according to claim 1, characterized in that: A reinforcing guide plate (8) is provided at one end of the pad (3), and the reinforcing guide plate (8) is located at the bottom of the first discharge hole (5).

3. The molybdenum concentrate storage device according to claim 2, characterized in that: A plurality of storage boxes (9) are provided at the bottom of the reinforcing guide plate (8), and each of the storage boxes (9) is provided on the base (1).

4. The molybdenum concentrate storage device according to claim 3 is characterized in that: A first drive motor (10) for driving the sealing plate (6) to rotate is provided at the bottom of the sealing plate (6), and a second drive motor (11) for driving the reinforcing guide plate (8) to rotate is provided at the bottom of the reinforcing guide plate (8).

5. The molybdenum concentrate storage device according to claim 4 is characterized in that: The bottoms of the pad (3), the first drive motor (10) and the second drive motor (11) are all provided with a reinforcing support plate (12), and the reinforcing support plate (12) is mounted on the protective box (2).

6. The molybdenum concentrate storage device according to claim 1, characterized in that: The protection box (2) is provided with a discharge conduit (13), and the bottom of the discharge conduit (13) passes through the protection box (2) and extends to the second discharge hole (7).