Purification device for mineral processing
The multi-directional stirring structure solves the problem of insufficient contact between materials and solutions in mineral processing, thereby improving purification efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-24
- Publication Date
- 2026-03-20
AI Technical Summary
In existing mineral processing and purification equipment, heavier materials are difficult to fully contact with the solution during stirring, resulting in low purification efficiency.
A multi-directional stirring structure was designed, which uses a combination of a rotating shaft, helical gears and adjusting screws to achieve multi-directional rotation and up-and-down reciprocating movement of the stirring paddle, ensuring full contact between the material and the solution.
It improves the purification efficiency of mineral processing and ensures the dissolution efficiency of the target metal.
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Figure CN224009797U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to technical field, especially related to a kind of purification device for mineral processing. BACKGROUND
[0002] Mineral processing refers to the process of treating raw ore mined from a mine through a series of physical, chemical and mechanical methods to extract valuable mineral components therein and remove or reduce useless impurities, which generally includes crushing, grinding, sorting, purification and other steps, and purification is a key link for improving mineral grade or removing impurities.
[0003] The existing purification device for mineral processing adds mineral raw materials needing purification into the interior of the purification device, then adds acid, alkali or cyanide solution, dissolves target metals with acid, alkali or cyanide solution, and then recovers by replacement or adsorption, but in actual use, the mineral raw materials to be purified have a certain weight, which will be concentrated and deposited at the bottom end of the purification cylinder during purification, and the stirring direction of the stirring module is relatively single, mostly horizontal direction for stirring solution and mineral raw materials, which makes it difficult for part of heavy materials to fully contact with solution, which affects the processing and purification efficiency of minerals. SUMMARY
[0004] Therefore, the utility model provides a purification device for mineral processing, which can uniformly and quickly stir the raw materials in the interior of the purification cylinder in multiple directions during mineral processing and purification, so that the materials can fully contact with the solution, the dissolution efficiency of target metals can be ensured, and the purification efficiency can be ensured.
[0005] To solve the above technical problems, the utility model adopts the technical scheme of a purification device for mineral processing, which comprises a support, a purification cylinder is arranged at the upper end of the support, a rotating shaft is rotatably arranged at the middle of the top end of the interior of the purification cylinder, a rotating seat is arranged at the bottom end of the rotating shaft, a plurality of support columns are arranged on the outer side of the rotating seat, an activity table is arranged at one end of each support column away from the rotating seat, a sliding cylinder is arranged on the lower surface of each activity table, a sliding column is slidably arranged in each sliding cylinder, and a stirring paddle is arranged at the bottom end of each sliding column.
[0006] As further improvement of the utility model, the inside of the sliding cylinder is rotationally provided with an adjusting screw rod, and the adjusting screw rod is threadedly connected with the adjacent slide post respectively; the top end of the adjusting screw rod is provided with a bevel gear one, the inside of the support is rotationally provided with a rotating rod, the end of the rotating rod close to the adjusting screw rod is provided with a bevel gear two, the bevel gear two is meshingly connected with the adjacent bevel gear one respectively, the end of the rotating rod close to the rotating shaft is provided with a bevel gear three, and the inside top end of the purification cylinder is provided with a bevel gear four through a fixing column, and the bevel gear four is meshingly connected with the bevel gear three.
[0007] As further improvement of the utility model, the upper surface of the purification cylinder is provided with a motor, and the output shaft of the motor is fixed with the rotating shaft through a shaft coupling; the front side of the support is provided with a control panel, and the motor, the electromagnetic valve one, the electromagnetic valve two and the electromagnetic valve three are electrically connected with the control panel.
[0008] As further improvement of the utility model, the bottom end of the support is provided with the fixing plate which is uniformly distributed.
[0009] Compared with the prior art, the utility model has the beneficial effects as follows:
[0010] Firstly, the motor is controlled by the control panel to drive the rotating shaft to rotate reversely and circularly, so that the stirring paddle rotates around the vertical center of the purification cylinder.
[0011] Secondly, in the rotating process of the rotating seat, the bevel gear three is driven to rotate through the meshing relationship between the bevel gear four and the bevel gear three, the slide post and the sliding cylinder are driven to slide through the thread relationship between the adjusting screw rod and the slide post, and the stirring paddle at the bottom end of the slide post moves up and down reciprocatingly in the rotating process of the stirring paddle around the vertical center of the purification cylinder.
[0012] Thirdly, the raw materials in the purification cylinder can be uniformly and quickly stirred in multiple directions when the mineral is processed and purified, the material can be fully contacted with the solution, the dissolution efficiency of the target metal can be ensured, and the purification efficiency can be ensured.
[0013] Fourthly, the fixing plate is connected with the ground by the bolt driven by the external tool, so that the position of the purification cylinder can be effectively prevented from moving easily in the using process. DRAWINGS
[0014] The utility model will be further explained in detail in combination with the drawings and specific embodiments.
[0015] Figure 1 It is the structural schematic diagram of the utility model;
[0016] Figure 2 It is the internal sectional structure schematic diagram of the utility model;
[0017] Figure 3The enlarged structure schematic view of the utility model is shown at A.
[0018] Figure 4 The plane structure schematic view of the utility model is shown.
[0019] In the figure: 101, support; 102, purification cylinder; 103, feed pipe one; 104, electromagnetic valve one; 105, feed pipe two; 106, electromagnetic valve two; 107, electromagnetic valve three; 108, fixed plate; 201, rotating shaft; 202, rotating seat; 203, support column; 204, movable table; 205, sliding cylinder; 206, sliding column; 207, stirring paddle; 208, adjusting screw; 209, bevel gear one; 210, rotating rod; 211, bevel gear two; 212, bevel gear three; 213, bevel gear four; 214, motor; 301, control panel. DETAILED DESCRIPTION
[0020] In order to better understand the utility model, the content of the utility model is further clarified below in conjunction with examples, but the protection content of the utility model is not limited to the following examples only. In the following description, a large number of specific details are given in order to provide a more thorough understanding of the utility model. However, it is obvious to those skilled in the art that the utility model can be implemented without one or more of these details.
[0021] As shown in the figure, including support 101, the upper end of support 101 is provided with purification cylinder 102, the inside top end of purification cylinder 102 is rotationally provided with rotating shaft 201, the bottom end of rotating shaft 201 is provided with rotating seat 202, the outside of rotating seat 202 is provided with a plurality of support columns 203, the end of support column 203 away from rotating seat 202 is provided with movable table 204, the lower surface of movable table 204 is provided with sliding cylinder 205, the inside of sliding cylinder 205 is slidingly provided with sliding column 206, the bottom end of sliding column 206 is provided with stirring paddle 207.
[0022] As shown in the figure, the inside of sliding cylinder 205 is rotationally provided with adjusting screw 208, adjusting screw 208 is respectively threadedly connected with adjacent sliding column 206; the top end of adjusting screw 208 is provided with bevel gear one 209, the inside of support column 203 is rotationally provided with rotating rod 210, the end of rotating rod 210 close to adjusting screw 208 is provided with bevel gear two 211, bevel gear two 211 is respectively meshingly connected with adjacent bevel gear one 209, the end of rotating rod 210 close to rotating shaft 201 is provided with bevel gear three 212, the inside top end of purification cylinder 102 is provided with bevel gear four 213 through fixed column, bevel gear four 213 is meshingly connected with bevel gear three 212; the upper surface of purification cylinder 102 is provided with motor 214, the output shaft of motor 214 and rotating shaft 201 are fixed through a shaft coupling.
[0023] As shown in the figure, the upper end of the purification cylinder 102 is provided with a feeding pipe one 103 and a feeding pipe two 105, the top end of the feeding pipe one 103 is provided with a solenoid valve one 104, the top end of the feeding pipe two 105 is provided with a solenoid valve two 106, and the bottom end of the purification cylinder 102 is provided with a solenoid valve three 107.
[0024] As shown in the figure, the front side of the support 101 is provided with a control panel 301, and the motor 214, the solenoid valve one 104, the solenoid valve two 106 and the solenoid valve three 107 are all electrically connected with the control panel 301.
[0025] In use, the solenoid valve one 104 and the solenoid valve two 106 are controlled to operate by the control panel 301, so that the solenoid valve one 104 controls the feeding pipe one 103 to open, and the solenoid valve two 106 controls the feeding pipe two 105 to open, so that the mineral raw materials and the solution enter the inside of the purification cylinder 102.
[0026] The motor 214 is controlled to operate by the control panel 301, so that the motor 214 drives the rotating shaft 201 to rotate in reverse rotation cycle, the rotating seat 202 is driven to rotate by the rotating shaft 201, the movable table 204 is driven to rotate around the vertical center of the purification cylinder 102 by the rotating seat 202 through the support column 203, and the stirring paddle 207 is driven to rotate around the vertical center of the purification cylinder 102; in the rotating process of the rotating seat 202, the bevel gear three 212 is driven to rotate through the meshing relationship between the bevel gear four 213 and the bevel gear three 212, the bevel gear two 211 is driven to rotate by the bevel gear three 212 through the rotating rod 210, the bevel gear one 209 is driven to rotate through the meshing relationship between the bevel gear two 211 and the bevel gear one 209, the bevel gear one 209 drives the adjusting screw 208 to rotate, the sliding column 206 and the sliding cylinder 205 are driven to slide through the screw thread relationship between the adjusting screw 208 and the sliding column 206, and the stirring paddle 207 at the bottom end of the sliding column 206 is driven to rotate around the vertical center of the purification cylinder 102 and reciprocate up and down, so that the raw materials in the inside of the purification cylinder can be quickly and uniformly stirred in multiple directions when the mineral is processed and purified, the material can be fully contacted with the solution, the dissolution efficiency of the target metal can be ensured, and the purification efficiency can be ensured.
[0027] According to another embodiment of the utility model, as shown in the figure, the bottom end of the support 101 is provided with evenly distributed fixing plates 108.
[0028] Finally, it is explained that the above embodiments are only used to illustrate the technical solutions of the present application and are not limited, and other modifications or equivalent replacements of the technical solutions of the present application made by those skilled in the art should be covered in the scope of the claims of the present application, as long as they do not deviate from the spirit and scope of the technical solutions of the present application.
Claims
1. A purification apparatus for mineral processing, comprising a support (101), wherein a purification cylinder (102) is disposed at the upper end of the support (101), characterized in that: The purification cylinder (102) has a rotating shaft (201) rotatably mounted at the top center. The bottom end of the rotating shaft (201) is provided with a rotating seat (202). Multiple support columns (203) are provided on the outside of the rotating seat (202). Each support column (203) has a movable platform (204) at the end away from the rotating seat (202). Each movable platform (204) has a sliding cylinder (205) on its lower surface. Each sliding cylinder (205) has a sliding column (206) slidably mounted inside it. Each sliding column (206) has a stirring paddle (207) at its bottom end.
2. The purification apparatus for mineral processing as described in claim 1, characterized in that: Each of the slide cylinders (205) is equipped with an adjusting screw (208) that is rotatably installed inside. The adjusting screw (208) is threadedly connected to the adjacent slide column (206).
3. The purification apparatus for mineral processing as described in claim 2, characterized in that: The top of each adjusting screw (208) is provided with a helical gear 1 (209), and the inside of each support column (203) is provided with a rotating rod (210). The end of the rotating rod (210) near the adjusting screw (208) is provided with a helical gear 2 (211). The helical gear 2 (211) meshes with the adjacent helical gear 1 (209). The end of the rotating rod (210) near the rotating shaft (201) is provided with a helical gear 3 (212). The top of the inside of the purification cylinder (102) is provided with a helical gear 4 (213) through a fixed column. The helical gear 4 (213) meshes with the helical gear 3 (212).
4. The purification apparatus for mineral processing as described in claim 1, characterized in that: The upper surface of the purification cylinder (102) is provided with a motor (214), and the output shaft of the motor (214) is fixed to the rotating shaft (201) by a coupling.
5. The purification apparatus for mineral processing as described in claim 4, characterized in that: The upper outer side of the purification cylinder (102) is provided with a feed pipe 1 (103) and a feed pipe 2 (105). The top end of the feed pipe 1 (103) is provided with a solenoid valve 1 (104), the top end of the feed pipe 2 (105) is provided with a solenoid valve 2 (106), and the bottom end of the purification cylinder (102) is provided with a solenoid valve 3 (107).
6. The purification apparatus for mineral processing as described in claim 5, characterized in that: A control board (301) is provided on the front side of the bracket (101), and the motor (214), solenoid valve one (104), solenoid valve two (106) and solenoid valve three (107) are all electrically connected to the control board (301).
7. The purification apparatus for mineral processing as described in claim 1, characterized in that: The bottom end of the bracket (101) is provided with evenly distributed fixing plates (108).