Beneficiation purification device
By designing a grinding chamber and an electromagnet layer within the casing to create a cyclic grinding and separation mechanism, the problem of poor separation effect in existing devices was solved, achieving a highly efficient iron ore purification effect.
Patent Information
- Application Number
- CN202421957794.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-14
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2034-08-14
AI Technical Summary
Existing mineral processing and purification equipment has poor iron ore separation and purification effects and cannot meet the usage requirements.
A mineral processing and purification device was designed, comprising a housing, a grinding chamber, an electromagnet layer, and a circulation mechanism. The device separates metallic and non-metallic materials through multiple cycles of grinding and the magnetic attraction of the electromagnet layer, and utilizes a vibrating motor to accelerate the separation efficiency.
It achieves efficient separation of iron ore from other ores, improving the purification quality.
Smart Images

Figure CN223491040U_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of mineral processing and purification equipment, and particularly to a mineral processing and purification apparatus. Background Technology
[0002] The ore obtained after mining is a mixed ore, containing various minerals with different properties. It is necessary to separate and purify the metallic and non-metallic minerals before they can be used. Therefore, mineral processing and purification equipment is needed to separate the iron ore. However, the existing mineral processing and purification equipment has poor iron ore separation and purification effect, and the quality of the purified ore is generally poor and cannot meet people's needs. Summary of the Invention
[0003] The purpose of this invention is to provide a mineral processing and purification device.
[0004] The technical problem of this invention is mainly solved by the following technical solution:
[0005] A mineral processing and purification device includes a housing:
[0006] The housing contains two longitudinally arranged strip seats, I and II, with strip seat I located directly above strip seat II. A circulation mechanism is provided on both sides between strip seat I and strip seat II.
[0007] The strip seat I is longitudinally provided with a grinding chamber, in which a grinding roller driven by a drive motor is provided. The bottom of the grinding chamber is provided with a discharge channel. The top of the strip seat I is provided with a feed opening communicating with the top of the grinding chamber. Electric push rods are provided on the top of the strip seat I on both sides of the feed opening.
[0008] The top of the strip seat II is provided with an isosceles triangular mounting base, wherein a vibration motor is provided at the bottom of the mounting base, and an electromagnet layer is provided on the inclined surface at the top of the mounting base;
[0009] The circulation mechanism includes a box body with its open end fastened to strip seat I and strip seat II. The box body is driven by a hydraulic rod, and a baffle located below the mounting base is hinged to the bottom of the open end of the box body. A fixing rod is provided inside the box body, and an electromagnet block magnetically connected to the baffle is provided on the fixing rod.
[0010] Preferably, the baffle is tightly attached to the end face corresponding to the strip seat II, wherein the width of the strip seat I is not greater than the width of the strip seat II.
[0011] Preferably, the top of the strip seat II is provided with a groove for accommodating the vibration motor, and the outer side of the strip seat II is provided with a protrusion supporting the bottom of the box.
[0012] Preferably, the box body seals the opening between the strip seat I and the strip seat II. The two sides of the strip seat II below the box body are inclined downwards and connected to the inner side wall of the box. The box body side walls on the upper and lower sides of the inclined plate are provided with discharge pipes. The bottom of the inclined plate is provided with a discharge pipe, and a solenoid valve is provided on the discharge pipe.
[0013] Preferably, a feeding hopper is provided on the top cover plate of the box, wherein the feeding hopper extends to the middle of the top of the feeding opening.
[0014] Preferably, the feed opening has a triangular cross-section, and the output shaft of the electric push rod extends into the feed opening.
[0015] The beneficial effects of this invention are as follows: In this invention, the ground material is transported back to the grinding chamber for cyclic grinding through a circulation mechanism. When the ground material falls onto the electromagnet layer, the electromagnet layer is energized and can magnetically attract the metal material in the material, while the non-metal material will flow into the box along its inclined surface. When the circulation mechanism moves upward and guides the material into the feed opening, the electromagnet layer is de-energized. Then, the metal material adsorbed on its top will flow through its inclined surface into the box outside the strip seat II. At this time, the separation efficiency of the metal material and the electromagnet layer can be accelerated by the vibration motor. After the metal material falls onto the inclined plate, it can enter the box below the inclined plate through the opened discharge pipe for temporary storage. By repeating the above steps multiple times, the metal material inside the material can be separated while the material is cyclically ground multiple times. Finally, the non-metal material that has been ground multiple times can flow into the box above the inclined plate for temporary storage after the box moves upward and passes through the opening between the strip seat I and the strip seat II. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the structure of the present invention;
[0017] Figure 2 This is a schematic diagram of the structure under another state of the present invention.
[0018] In the diagram: 1. Box body, 2. Strip seat I, 3. Strip seat II, 4. Circulation mechanism, 41. Box body, 42. Hydraulic rod, 43. Baffle, 44. Fixing rod, 45. Electromagnetic block, 5. Grinding chamber, 6. Grinding roller, 7. Discharge channel, 8. Feed opening, 9. Electric push rod, 10. Mounting base, 11. Vibration motor, 12. Electromagnetic layer, 13. Groove, 14. Protrusion, 15. Inclined plate, 16. Discharge pipe, 17. Unloading pipe, 18. Feed hopper. Detailed Implementation
[0019] The following examples, in conjunction with the appendix, illustrate the concepts. Figure 1-2 The technical solution of the present invention will be further described in detail below.
[0020] A mineral processing and purification device includes a housing 1, within which strip-shaped seats I2 and II3 are longitudinally arranged. Strip seat I2 is located directly above strip seat II3, and circulation mechanisms 4 are provided on both sides between strip seat I2 and strip seat II3.
[0021] The strip seat I2 is longitudinally provided with a grinding chamber 5, wherein a grinding roller 6 driven by a drive motor is provided in the grinding chamber 5, and a discharge channel 7 is provided at the bottom of the grinding chamber 5. The top of the strip seat I2 is provided with a feeding opening 8 that communicates with the top of the grinding chamber 5. Electric push rods 9 are provided at the top of the strip seat I2 on both sides of the feeding opening 8.
[0022] The top of the strip seat II3 is provided with an isosceles triangular mounting base 10, wherein a vibration motor 11 is provided at the bottom of the mounting base 10, an electromagnet layer 12 is provided on the inclined surface at the top of the mounting base 10, and a groove 13 is provided at the top of the strip seat II3 to accommodate the vibration motor 11, wherein a protrusion 14 is provided on the outer side of the strip seat II3 to support the bottom of the box body 41.
[0023] The circulation mechanism 4 includes a box 41 with its open end fastened to the strip seat I2 and the strip seat II3. The box 41 is driven by a hydraulic rod 42, and a baffle 43 located below the mounting base 10 is hinged to the bottom of the open end of the box 41. A fixing rod 44 is provided inside the box 41, and an electromagnet block 45 magnetically connected to the baffle 43 is provided on the fixing rod 44.
[0024] like Figure 1 , 2 As shown, the baffle 43 is tightly attached to the end face of the strip seat II3, wherein the width of the strip seat I2 is not greater than the width of the strip seat II3.
[0025] The box body 41 seals the opening between the strip seat I2 and the strip seat II3. The strip seat II3 below the box body 41 is provided with inclined plates 15 on both sides, which are connected to the inner side wall of the box body 1. The box body 1 side wall on both sides of the inclined plate 15 is provided with a discharge pipe 16. The bottom end of the inclined plate 15 is provided with a discharge pipe 17, which is equipped with a solenoid valve.
[0026] like Figure 1 , 2 As shown, a feed hopper 18 is provided on the top cover plate of the box 1, wherein the feed hopper 18 extends to the middle of the top of the feed opening 8.
[0027] In this embodiment, the feed opening 8 has a triangular cross-section, and the output shaft of the electric push rod 9 extends into the feed opening 8.
[0028] The method of using the present invention is as follows: The material is dropped into the feed opening 8 through the feed hopper 18 and slides into the gap between the grinding chamber 5 and the grinding roller 6. At this time, the rotating grinding roller 6 grinds the material and drives the material to flow in the grinding chamber 5. The ground material is discharged through the discharge channel 7 and falls onto the electromagnet layer 12 on the top of the mounting base 10. Then, it flows along the top slope of the electromagnet layer 12 to its bottom sides and finally flows into the cavity formed between the side wall of the box 41 and the baffle 43 for temporary storage. At this time, the vibration motor 11 drives the mounting base 10 and the electromagnet layer 12 to vibrate slightly, so that the material on the top flows into the box 41 quickly.
[0029] After the material at the top of the electromagnet layer 12 flows down, the hydraulic rod 42 drives the box 41 and the baffle 43 to move upward, thereby moving the material stored in the box 41 to above the strip seat I2. At this time, the electromagnet block 45 is de-energized. Without the pulling force of the electromagnet block 45, and under the pressure of the material in the box 41, the baffle 43 will rotate around the hinge and lean against the inclined wall of the feed opening 8, allowing the material in the box 41 to flow smoothly into the feed opening 8 through its opening and the inclined baffle 43. Inside the material opening 8, after the material in the box 41 is drained, the output shaft of the electric push rod 9 moves upward to push the baffle 43 to rotate around the hinge, so that it is close to the electromagnet block 45. At this time, the attraction generated by the working electromagnet block 45 can make the baffle 43 vertically set and magnetically connected with the electromagnet block 45, thereby sealing the bottom opening of the box 41. At the same time, the hydraulic rod 42 drives the box 41 to move downward and reset. Then the grinding roller 6 continues to work to perform a second grinding operation on the material to improve the grinding effect of the material.
[0030] When the ground material falls onto the electromagnet layer 12, the electromagnet layer 12 is energized and can magnetically attract the metal material in the material, while the non-metal material will flow into the box 41 along its inclined surface. When the circulation mechanism 4 moves upward and guides the material into the feed opening 8, the electromagnet layer 12 is de-energized. Then the metal material adsorbed on its top will flow through its inclined surface into the box 1 outside the strip seat II3. At this time, the separation efficiency of the metal material and the electromagnet layer 12 can be accelerated by the vibration motor 11. After the metal material falls onto the inclined plate 15, it can enter the box 1 below the inclined plate 15 through the opened discharge pipe 17 for temporary storage. By repeating the above steps multiple times, the metal material inside the material can be separated while the material is repeatedly circulated and ground. Finally, the non-metal material that has been ground multiple times can flow through the opening between the strip seat I2 and the strip seat II3 into the box 1 above the inclined plate 15 for temporary storage after the box 41 moves upward.
[0031] The present invention has been described in detail above, but the content described is only a preferred embodiment of the present invention and should not be considered as limiting the scope of the present invention. All equivalent changes and improvements made within the scope of the present invention should still fall within the patent coverage of the present invention.
Claims
1. A mineral processing and purification device, comprising a housing, characterized in that: The housing contains two longitudinally arranged strip seats, I and II, with strip seat I located directly above strip seat II. A circulation mechanism is provided on both sides between strip seat I and strip seat II. The strip seat I is longitudinally provided with a grinding chamber, in which a grinding roller driven by a drive motor is provided. The bottom of the grinding chamber is provided with a discharge channel. The top of the strip seat I is provided with a feed opening communicating with the top of the grinding chamber. Electric push rods are provided on the top of the strip seat I on both sides of the feed opening. The top of the strip seat II is provided with an isosceles triangular mounting base, wherein a vibration motor is provided at the bottom of the mounting base, and an electromagnet layer is provided on the inclined surface at the top of the mounting base; The circulation mechanism includes a box body with its open end fastened to strip seat I and strip seat II. The box body is driven by a hydraulic rod, and a baffle located below the mounting base is hinged to the bottom of the open end of the box body. A fixing rod is provided inside the box body, and an electromagnet block magnetically connected to the baffle is provided on the fixing rod.
2. The mineral processing and purification apparatus according to claim 1, characterized in that: The baffle is tightly attached to the end face of the strip seat II, wherein the width of the strip seat I is not greater than the width of the strip seat II.
3. The mineral processing and purification apparatus according to claim 1, characterized in that: The top of the strip seat II is provided with a groove to accommodate the vibration motor, and the outer side of the strip seat II is provided with a protrusion to support the bottom of the box.
4. The mineral processing and purification apparatus according to claim 1, characterized in that: The box body seals the opening between strip seat I and strip seat II. Both sides of strip seat II below the box body are inclined downwards and connected to the inner side wall of the box. The box body side walls on the upper and lower sides of the inclined plate are equipped with discharge pipes. The bottom of the inclined plate is equipped with a discharge pipe, and a solenoid valve is installed on the discharge pipe.
5. A mineral processing and purification device according to claim 1, characterized in that: The top cover of the box is provided with a feeding hopper, which extends to the middle of the top of the feeding opening.
6. The mineral processing and purification apparatus according to claim 1, characterized in that: The feed opening has a triangular cross-section, and the output shaft of the electric push rod extends into the feed opening.