Device for keeping efficient extraction of indium

By combining multiple sets of rotating rods and stirring blades, along with the relative rotation of the separation cylinder, the problem of uneven mixing of the liquid was solved, thus improving the efficiency and effectiveness of indium extraction.

CN224091968UActive Publication Date: 2026-04-07RONGAN RUIZHI ENVIRONMENTAL PROTECTION TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-30
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

Existing equipment results in uneven and insufficient mixing of the feed solution during indium extraction, leading to reduced extraction efficiency and effectiveness.

Method used

The design employs multiple sets of rotating rods and stirring blades, achieving multi-mode mixing through the combined rotation of the main and auxiliary stirring blades. The relative rotation of the separation cylinder and the synchronous wheel assembly improve the mixing efficiency, while the material feeding mechanism prevents sedimentation and ensures uniform mixing.

Benefits of technology

This method achieves efficient and uniform mixing of the liquid, improving the efficiency and effectiveness of indium extraction and avoiding the problem of insufficient mixing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a device for keeping efficient extraction of indium. The device comprises a base and a fixed plate fixedly mounted on the base through a supporting rod, the separating cylinder is rotationally connected to the base and is movably connected with the fixing plate; the stirring shaft rod is rotationally connected to the fixed plate in a penetrating manner and extends into the separation barrel, and a power mechanism for driving the stirring shaft rod is arranged on the fixed plate. The motor is matched with the bevel gear to drive the stirring shaft rod to rotate, so that the main rotating rod and the main stirring blades revolve around the stirring shaft rod to stir feed liquid, the main stirring blades can rotate around the main rotating rod to stir the feed liquid during revolution, and meanwhile, the feed liquid flows back and forth at the auxiliary stirring blades, so that the auxiliary rotating rod and the auxiliary stirring blades rotate to stir the feed liquid again; therefore, the effect of efficiently and uniformly stirring and mixing the feed liquid is achieved, and the efficiency and the effect of indium extraction work are effectively improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to indium extraction technical field, concretely relates to a device that keeps indium high -efficient extraction. BACKGROUND

[0002] Indium is a metal element, element symbol is In, atomic number is 49, is located in the element periodic table fifth period IIIA group (boron element). Its single element is a kind of silver white and slightly bluish metal, texture is very soft, can be scratched with fingernail. Plasticity is strong, there is ductility, can be pressed into sheet. Metal indium is mainly used to manufacture low-melting alloy, bearing alloy, semiconductor, electric light source and raw material.

[0003] It is known that the authorized patent with application number CN202321558275.8 discloses a new extractor, and the background technology proposes the problem that "1, the feeding amount of the existing equipment cannot be timely controlled, and the concentration ratio of the organic phase solution after preliminary extraction cannot be distinguished", to solve the problem, the technical scheme for solving the problem is "including separation bin, the inside of separation bin is inserted with rotating shaft, one end of rotating shaft is fixedly connected with rotating drum, the other end of rotating shaft is rotatably connected with motor output shaft, the inner wall of separation bin is installed with liquid level sensor, the side of separation bin is inserted with feeding pipe" and the like.

[0004] However, in the implementation of the related technology, it is found that the above technical scheme has the following problems: when using, it is not convenient to carry out efficient and uniform stirring and mixing of the material liquid, the stirring mode of the material liquid is relatively single, which can easily cause the mixing ratio of the material liquid to be uneven and insufficient, and can easily increase the mixing time of the material liquid, thereby reducing the efficiency and effect of indium extraction work. UTILITY MODEL CONTENT

[0005] The utility model provides a device that keeps indium high -efficient extraction, solve the problem that related art is not convenient for efficient and uniform stirring and mixing of material liquid.

[0006] The technical scheme of the utility model is as follows: a device that keeps indium high -efficient extraction, comprising: base and the fixed plate of being fixedly installed on it by support rod;

[0007] The separation cylinder that is rotatably connected on the base and is movably connected with the fixed plate;

[0008] The stirring shaft rod that is rotatably connected on the fixed plate and extends to the separation cylinder, the fixed plate is equipped with the power mechanism for driving stirring shaft rod;

[0009] The multiple groups of main rotating rods that are rotatably connected on the surface of stirring shaft rod;

[0010] The multiple main stirring leaves of being fixedly installed on the surface of main rotating rod, the surface of main stirring leaf is equipped with multiple notches.

[0011] Rotate the auxiliary rotating rod connected inside the slot;

[0012] Multiple auxiliary stirring blades are fixedly installed on the surface of the auxiliary rotating rod;

[0013] And a linkage mechanism mounted on the base for driving the separation cylinder to rotate.

[0014] Preferably, the power mechanism includes a motor fixedly mounted on the top of the fixed plate by a bracket, and two bevel gears fixedly connected to the top of the stirring shaft and the output end of the motor, respectively, with the two bevel gears meshing together.

[0015] Preferably, the linkage mechanism includes a gear ring fixedly mounted on the surface of the separation cylinder, a movable rod rotatably connected to the top of the base, a gear fixedly mounted on the surface of the movable rod and meshing with the gear ring, and a synchronous wheel assembly that is provided between the movable rod and the stirring shaft for transmission.

[0016] Preferably, a discharge cylinder is rotatably connected to the top side of the fixed plate, and a feed pipe is rotatably connected to the top of the discharge cylinder. A synchronous wheel assembly for transmission is provided between the discharge cylinder and the stirring shaft.

[0017] Preferably, a discharge pipe is fixedly installed at the bottom of the separation cylinder, and a valve is provided on the surface of the discharge pipe.

[0018] Preferably, the stirring shaft is provided with a feeding mechanism to prevent sedimentation of the liquid.

[0019] The feeding mechanism includes multiple arc-shaped blocks fixedly installed on the bottom of the fixed plate and arranged in a ring, a fixed block fixedly installed on the surface of the stirring shaft, a sliding rod slidably connected through the fixed block, a feeding plate fixedly connected to the bottom end of the sliding rod, and a spring sleeved on the surface of the sliding rod. The two ends of the spring are respectively connected to the fixed block and the top end of the sliding rod. The top end of the sliding rod is provided with a ball bearing that contacts the fixed plate.

[0020] The working principle and beneficial effects of this utility model are as follows:

[0021] 1. The motor, in conjunction with a bevel gear, drives the stirring shaft to rotate, causing the main rotating rod and main stirring blades to revolve around the stirring shaft to stir the liquid. Simultaneously, the main stirring blades rotate around the main rotating rod while stirring, and the liquid flows back and forth at the secondary stirring blades, causing the secondary rotating rod and secondary stirring blades to rotate and stir the liquid again. This multi-mode stirring achieves efficient and uniform mixing of the liquid, avoiding the incomplete and uneven mixing that can occur with a single stirring method, thus effectively improving the efficiency and effectiveness of indium extraction.

[0022] Second, while the stirring shaft rotates, the movable rod can be driven to rotate synchronously through the synchronous wheel assembly, which in turn drives the gear to rotate, and the gear drives the gear ring to rotate, thereby causing the separation cylinder to rotate on the base. This achieves the effect of relative rotation between the separation cylinder and the stirring shaft, which can further improve the mixing efficiency of the liquid. Attached Figure Description

[0023] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0024] Figure 1 This is a schematic diagram of the overall three-dimensional structure of this utility model;

[0025] Figure 2 This is a cross-sectional three-dimensional structural diagram of the separation cylinder of this utility model;

[0026] Figure 3 This is a partial three-dimensional structural diagram of the main rotating rod of this utility model;

[0027] Figure 4 This is a partial three-dimensional structural diagram of the fixing plate of this utility model;

[0028] Figure 5 This is a partial three-dimensional structural diagram of the sliding rod of this utility model.

[0029] In the diagram: 1. Base; 2. Separation cylinder; 3. Stirring shaft; 4. Main rotating rod; 5. Main stirring blade; 6. Secondary rotating rod; 7. Secondary stirring blade; 8. Motor; 9. Bevel gear; 10. Gear ring; 11. Movable rod; 12. Gear; 13. Synchronous pulley assembly one; 14. Discharge cylinder; 15. Feed pipe; 16. Discharge pipe; 17. Synchronous pulley assembly two; 18. Arc-shaped block; 19. Fixed block; 20. Sliding rod; 21. Feeding plate; 22. Spring; 23. Fixed plate. Detailed Implementation

[0030] The technical solutions of this utility model will be clearly and completely described below with reference to the embodiments of this utility model. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this utility model.

[0031] Example 1

[0032] Please see Figure 1 - Figure 5 The present invention provides a device for maintaining efficient indium extraction, comprising: a base 1 and a fixing plate 23 fixedly mounted thereon by a support rod;

[0033] The separation cylinder 2 is rotatably connected to the base 1 and movably connected to the fixed plate 23;

[0034] A stirring shaft 3 is rotatably connected to the fixed plate 23 and extends into the separation cylinder 2. The fixed plate 23 is provided with a power mechanism for driving the stirring shaft 3.

[0035] Multiple sets of main rotating rods 4 are rotatably connected to the surface of the stirring shaft 3;

[0036] Multiple main stirring blades 5 are fixedly installed on the surface of the main rotating rod 4, and multiple slots are opened on the surface of the main stirring blades 5;

[0037] Rotate the auxiliary rotating rod 6 connected inside the slot;

[0038] Multiple auxiliary stirring blades 7 are fixedly installed on the surface of the auxiliary rotating rod 6;

[0039] And a linkage mechanism provided on the base 1 for driving the separation cylinder 2 to rotate.

[0040] The power mechanism includes a motor 8 fixedly mounted on the top of the fixed plate 23 by a bracket, and two bevel gears 9 fixedly connected to the top of the stirring shaft 3 and the output end of the motor 8, respectively, with the two bevel gears 9 meshing with each other.

[0041] The technical solution provided in this embodiment is as follows: During use, the liquid enters the separation cylinder 2, and the motor 8 drives the bevel gear 9 at its output end to rotate, which in turn drives the bevel gear 9 on the stirring shaft 3 to rotate. This causes the stirring shaft 3 to drive the main rotating rod 4 to revolve around it, and the main stirring blade 5 to revolve and stir the liquid. At the same time, the main stirring blade 5 can rotate and stir around the main rotating rod 4. Simultaneously, as the liquid flows back and forth from the gap between the tank opening and the auxiliary stirring blade 7, it can drive the auxiliary rotating rod 6 and the auxiliary stirring blade 7 to rotate and stir the liquid again. This allows for multi-mode stirring of the liquid, thus achieving efficient and uniform mixing of the liquid. This avoids the situation where a single stirring method can easily lead to insufficient or uneven mixing of the liquid, effectively improving the efficiency and effect of indium extraction.

[0042] Furthermore, the linkage mechanism includes a gear ring 10 fixedly mounted on the surface of the separation cylinder 2, a movable rod 11 rotatably connected to the top of the base 1, a gear 12 fixedly mounted on the surface of the movable rod 11 and meshing with the gear ring 10, and a synchronous wheel assembly 13 that is provided between the movable rod 11 and the stirring shaft 3 for transmission.

[0043] It should be noted that the timing pulley assembly 13 can be any combination of timing pulley and timing belt or pulley and belt, and there is no limitation on its use. The timing pulley assembly 13 specifically includes two timing pulleys mounted on the top of the movable rod 11 and the stirring shaft 3, and a timing belt tensioned and meshing with the surfaces of the two timing pulleys.

[0044] Specifically, while the stirring shaft 3 rotates, the movable rod 11 can be driven to rotate synchronously via the synchronous wheel assembly 13, which in turn drives the gear 12 to rotate, and the gear 12 drives the gear ring 10 to rotate, thereby causing the separation cylinder 2 to rotate on the base 1. This achieves the effect of relative rotation between the separation cylinder 2 and the stirring shaft 3, which can further improve the mixing efficiency of the liquid.

[0045] Furthermore, a discharge cylinder 14 is rotatably connected through one side of the top of the fixed plate 23, and a feed pipe 15 is rotatably connected to the top of the discharge cylinder 14. A synchronous wheel assembly 2 17 for cooperating transmission is provided between the discharge cylinder 14 and the stirring shaft 3.

[0046] It should be noted that the bottom surface of the discharge cylinder 14 has multiple discharge holes. The second synchronous pulley assembly 17 is located below the first synchronous pulley assembly 13, and the second synchronous pulley assembly 17 can be any combination of a synchronous pulley and a synchronous belt, or a pulley and a belt; there are no limitations on its use. Specifically, the second synchronous pulley assembly 17 includes two second synchronous pulleys mounted on the discharge cylinder 14 and the stirring shaft 3, and a second synchronous belt tensioned and meshing with the surfaces of the two second synchronous pulleys.

[0047] Specifically, the raw material can be transported to the discharge cylinder 14 through the feed pipe 15, and the liquid material can be discharged through the discharge hole. At the same time, during feeding, the stirring shaft 3 can be driven to rotate by the power mechanism, and under the action of the synchronous wheel assembly 17, the discharge cylinder 14 can be driven to rotate. Thus, under the action of centrifugal force, the liquid material entering the discharge cylinder 14 can be evenly thrown out, so as to evenly disperse the liquid material in various positions in the separation cylinder 2, which helps to ensure the sufficiency of the subsequent liquid material.

[0048] Furthermore, a discharge pipe 16 is fixedly installed at the bottom of the separation cylinder 2, and a valve is provided on the surface of the discharge pipe 16.

[0049] Specifically, by setting up the discharge pipe 16, the mixed raw liquid in the separation cylinder 2 can be discharged for subsequent extraction processing.

[0050] Example 2

[0051] Based on Example 1, in this example: the stirring shaft 3 is provided with a feeding mechanism to prevent the liquid from settling.

[0052] The feeding mechanism includes multiple arc-shaped blocks 18 fixedly installed at the bottom of the fixed plate 23 and arranged in a ring, a fixed block 19 fixedly installed on the surface of the stirring shaft 3, a sliding rod 20 slidably connected through the fixed block 19, a feeding plate 21 fixedly connected to the bottom end of the sliding rod 20, and a spring 22 sleeved on the surface of the sliding rod 20. The two ends of the spring 22 are respectively connected to the fixed block 19 and the top end of the sliding rod 20. The top end of the sliding rod 20 is provided with a ball bearing that contacts the fixed plate 23.

[0053] It should be noted that the cross-section of the sliding rod 20 is T-shaped, and the sliding rod 20 is engaged with the ball bearing and the arc-shaped block 18 so that the sliding rod 20 can slide vertically.

[0054] The technical solution provided in this embodiment is as follows: When the stirring shaft 3 rotates, the sliding rod 20 can be driven to rotate synchronously around the stirring shaft 3 via the fixed block 19, and the sliding rod 20 can slide against the fixed plate 23 via the ball bearings. At the same time, the ball bearings can intermittently contact the arc-shaped block 18. When the ball bearings and the arc-shaped block 18 are in contact, the sliding rod 20 can be driven to move down under the guidance of the arc surface of the arc-shaped block 18 and compress the spring 22, thereby causing the material feeding plate 21 to move down. After the ball bearings and the arc-shaped block 18 separate, the sliding rod 20 is driven to move up and reset via the spring 22, causing the material feeding plate 21 to move up. In this way, the material feeding plate 21 can be moved up and down repeatedly to move the liquid at the bottom of the separation cylinder 2 upward, which helps to prevent the liquid from settling at the bottom of the separation cylinder 2 and is conducive to further ensuring the mixing effect of the liquid.

[0055] The above are merely preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. An apparatus for maintaining efficient indium extraction, characterized in that, include: The base (1) and the fixing plate (23) fixedly mounted thereon by means of a support rod; Rotary separation cylinder (2) is connected to the base (1) and movably connected to the fixed plate (23); A stirring shaft (3) is rotatably connected to a fixed plate (23) and extends into the separation cylinder (2). The fixed plate (23) is provided with a power mechanism for driving the stirring shaft (3). Multiple sets of main rotating rods (4) are rotatably connected to the surface of the stirring shaft (3); Multiple main stirring blades (5) are fixedly installed on the surface of the main rotating rod (4), and multiple slots are opened on the surface of the main stirring blades (5); Rotate the auxiliary rotating rod (6) connected in the slot; Multiple auxiliary stirring blades (7) are fixedly installed on the surface of the auxiliary rotating rod (6); And a linkage mechanism provided on the base (1) for driving the separation cylinder (2) to rotate.

2. The apparatus for maintaining efficient indium extraction according to claim 1, characterized in that, The power mechanism includes a motor (8) fixedly mounted on the top of the fixed plate (23) by a bracket, and two bevel gears (9) fixedly connected to the top of the stirring shaft (3) and the output end of the motor (8) respectively, with the two bevel gears (9) meshing with each other.

3. The apparatus for maintaining efficient indium extraction according to claim 1, characterized in that, The linkage mechanism includes a gear ring (10) fixedly installed on the surface of the separation cylinder (2), a movable rod (11) rotatably connected to the top of the base (1), a gear (12) fixedly installed on the surface of the movable rod (11) and meshing with the gear ring (10), and a synchronous wheel assembly (13) that is provided between the movable rod (11) and the stirring shaft (3) for transmission.

4. The apparatus for maintaining efficient indium extraction according to claim 1, characterized in that, The top side of the fixed plate (23) is rotatably connected to the discharge cylinder (14), the top of the discharge cylinder (14) is rotatably connected to the feed pipe (15), and a synchronous wheel assembly (17) for cooperating transmission is provided between the discharge cylinder (14) and the stirring shaft (3).

5. The apparatus for maintaining efficient indium extraction according to claim 1, characterized in that, A discharge pipe (16) is fixedly installed at the bottom of the separation cylinder (2), and a valve is provided on the surface of the discharge pipe (16).

6. The apparatus for maintaining efficient indium extraction according to claim 1, characterized in that, The stirring shaft (3) is equipped with a feeding mechanism to prevent the liquid from settling.

7. The apparatus for maintaining efficient indium extraction according to claim 6, characterized in that, The feeding mechanism includes multiple arc-shaped blocks (18) fixedly installed on the bottom of the fixed plate (23) and arranged in a ring, a fixed block (19) fixedly installed on the surface of the stirring shaft (3), a sliding rod (20) slidably connected through the fixed block (19), a feeding plate (21) fixedly connected to the bottom end of the sliding rod (20), and a spring (22) sleeved on the surface of the sliding rod (20). The two ends of the spring (22) are respectively connected to the top of the fixed block (19) and the top of the sliding rod (20). The top of the sliding rod (20) is provided with a ball bearing that contacts the fixed plate (23).

Citation Information

Patent Citations

  • Novel extraction machine

    CN220149632U