Dehydration device for terbium fluoride raw material

By designing complex control components to achieve intermittent agitation and multi-zone flow of terbium fluoride feedstock, the problem of uneven dehydration was solved, and the dehydration efficiency and uniformity were improved.

CN224262111UActive Publication Date: 2026-05-19SANMING RUIXIN NEW MATERIAL CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SANMING RUIXIN NEW MATERIAL CO LTD
Filing Date
2025-06-25
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

In existing terbium fluoride dehydration devices, the single agitation method leads to uneven dehydration and residual moisture in some areas.

Method used

A control assembly including a stirring rod, gears, support rods, racks, and oscillating components was designed. The motor drives a circular plate to move the movable rod and the sliding rod in complex motions, realizing the intermittent forward and reverse rotation of the stirring rod and the multi-zone flow of powder, thus breaking up powder agglomeration.

Benefits of technology

It improves the uniformity of dehydration, avoids uneven dehydration, enhances the dehydration effect, and ensures that the terbium fluoride raw material is fully evaporated at high temperature.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of terbium fluoride raw material dehydration, and discloses a terbium fluoride raw material dehydration device, which comprises a dehydration tank, the dehydration tank is arranged at the top of a heating seat, and a top plate is fixedly arranged at the top of the dehydration tank. When an output shaft of a motor drives a circular plate to rotate at the top of a fixing frame, a movable rod hinged to the surface of the circular plate can push a movable rod to slide in the fixing frame, and when the movable rod moves, a push rod hinged to the surface of the movable rod can push a rack to transversely move on the surface of a supporting rod; the gear can be stressed to drive the stirring rod to stir in the dehydration tank, and as the movable rod reciprocates, the gear can drive the stirring rod to intermittently rotate forwards and backwards in the dehydration tank, so that powder agglomeration is broken, the dehydration uniformity is improved, and the condition of non-uniform dehydration caused by single stirring is avoided.
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Description

Technical Field

[0001] This utility model relates to the field of terbium fluoride raw material dehydration technology, specifically a terbium fluoride raw material dehydration device. Background Technology

[0002] Terbium fluoride is a colorless hexagonal crystal with a density of 7.2, a melting point of 1172°C, and a boiling point of 2280°C. It is stable at room temperature and pressure. It is insoluble in cold water, hot water, and dilute acids. Terbium fluoride requires dehydration treatment, which is generally carried out at high temperatures.

[0003] According to a public notice (CN220696754U) regarding a dehydration device for preparing terbium fluoride, when the heat pipe starts heating the terbium fluoride in the reaction vessel, the stirring component can stir the terbium fluoride in the vessel, allowing the terbium fluoride to react fully and increase working efficiency. However, this stirring method is relatively simple, and simple stirring will cause uneven dehydration of the terbium fluoride raw material, resulting in residual moisture in local areas. To address this problem, we propose a dehydration device for terbium fluoride raw material. Utility Model Content

[0004] The purpose of this invention is to provide a dehydration device for terbium fluoride raw materials to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a dehydration device for terbium fluoride raw materials, comprising a dehydration tank, the dehydration tank being disposed on top of a heating base, a top plate being fixedly installed on the top of the dehydration tank, a sieve hole being formed in the top plate, a fixing frame being fixedly installed on the top of the top plate, and a control component being disposed within the fixing frame and the top plate, the control component comprising:

[0006] A stirring rod, which is connected to the top plate via gears;

[0007] A support rod, which is used to support the movement of the rack;

[0008] The oscillating component is used to agitate the raw materials, thereby breaking up powder agglomeration, improving the uniformity of dehydration, and avoiding uneven dehydration caused by a single agitation.

[0009] Preferably, a gear is fixedly installed on the top of the stirring rod, the bottom of the gear is rotatably connected to the top of the top plate, the stirring rod passes through the top plate and is rotatably connected to the top plate, and when the gear is subjected to force, it can drive the stirring rod to rotate on the top of the top plate.

[0010] Preferably, a support rod is fixedly installed on the top of the top plate. The support rod passes through the rack and is slidably connected to the rack. The rack meshes with a gear. When the rack moves on the surface of the support rod, the gear meshing with the rack can be rotated under force.

[0011] Preferably, the swinging component includes a push rod, one end of which is hinged to the side of the rack, and the other end of which is hinged to the side of the moving rod. When the moving rod moves, the push rod can be folded to push the rack to slide.

[0012] Preferably, the movable rod passes through the fixed frame and is slidably connected to the fixed frame. The top of the movable rod is hinged to one end of the movable rod, and the other end of the movable rod is hinged to the top of the circular plate. When the circular plate rotates, the movable rod can be folded to push the movable rod to slide within the fixed frame.

[0013] Preferably, the bottom of the circular plate is rotatably connected to the top of the fixed frame, a motor is fixedly installed at the bottom of the fixed frame, the output shaft of the motor is fixedly connected to the bottom of the circular plate, and the output shaft of the motor can drive the circular plate to perform circumferential motion at the top of the fixed frame.

[0014] Preferably, the movable rod passes through the top plate and is slidably connected to the top plate. A perforated plate is fixedly installed at the bottom of the movable rod, and an inclined rod is fixedly installed on the side of the perforated plate. When the movable rod moves inside the top plate, the perforated plate fixed at the bottom of the movable rod and the inclined rod can move synchronously.

[0015] Compared with the prior art, this utility model provides a dehydration device for terbium fluoride raw materials, which has the following beneficial effects:

[0016] 1. The dehydration device for terbium fluoride raw material is equipped with a control component. When the output shaft of the motor drives the circular plate to rotate at the top of the fixed frame, the movable rod hinged to the surface of the circular plate can push the moving rod to slide within the fixed frame. When the moving rod moves, the push rod hinged to the surface of the moving rod can push the rack to move laterally on the surface of the support rod. When the rack moves, the gear can be forced to drive the stirring rod to stir in the dehydration tank. Since the moving rod is in reciprocating motion, the gear can drive the stirring rod to perform intermittent forward and reverse operation in the dehydration tank, thereby breaking up powder agglomeration, improving the uniformity of dehydration, and avoiding uneven dehydration caused by a single stirring.

[0017] 2. The dehydration device for terbium fluoride raw material is equipped with a swinging component. During the movement of the moving rod, the perforated plate fixed at the bottom of the moving rod can drive the inclined rod to swing synchronously in the dehydration tank. The horizontally swinging perforated plate and the inclined rod can cooperate with the stirring rod to make the terbium fluoride raw material form a multi-zone flow in the dehydration tank, thereby enhancing its dehydration effect after heating. Attached Figure Description

[0018] Figure 1 This is a front view structural diagram of the present invention;

[0019] Figure 2 This is a top view of the structure of this utility model;

[0020] Figure 3 This is a frontal cross-sectional view of the present invention.

[0021] Figure 4 This is a schematic diagram of the control component structure of this utility model.

[0022] In the diagram: 1. Dehydration tank; 2. Heating base; 3. Top plate; 4. Screen hole; 5. Fixing frame; 6. Control components; 61. Stirring rod; 62. Gear; 63. Support rod; 64. Rack; 65. Swinging component; 651. Push rod; 652. Moving rod; 653. Movable rod; 654. Circular plate; 655. Motor; 656. Perforated plate; 657. Inclined rod. Detailed Implementation

[0023] like Figures 1-4 As shown, this utility model provides a technical solution: a dehydration device for terbium fluoride raw materials, including a dehydration tank 1, which is set on top of a heating base 2. A top plate 3 is fixedly installed on the top of the dehydration tank 1, and a sieve hole 4 is opened in the top plate 3. A fixing frame 5 is fixedly installed on the top of the top plate 3. A control component 6 is set in the fixing frame 5 and the top plate 3. The control component 6 includes: a stirring rod 61, a gear 62, a support rod 63, a rack 64, and a swinging component 65. When the circular plate 654 rotates, the movable rod 653 hinged to the surface of the circular plate 654 can be folded, pushing the moving rod. 652 slides within the fixed frame 5. When the moving rod 652 moves, the push rod 651 hinged to the surface of the moving rod 652 can push the rack 64 to move laterally on the surface of the support rod 63. When the rack 64 moves, the gear 62 can be forced to drive the stirring rod 61 to stir in the dehydration tank 1. Since the moving rod 652 is in reciprocating motion, the gear 62 can drive the stirring rod 61 to perform intermittent forward and reverse operations in the dehydration tank 1, thereby breaking up powder agglomeration, improving dehydration uniformity, and avoiding uneven dehydration caused by a single stirring.

[0024] A gear 62 is fixedly mounted on the top of the stirring rod 61. The bottom of the gear 62 is rotatably connected to the top of the top plate 3. The stirring rod 61 passes through the top plate 3 and is rotatably connected to it. When the gear 62 is subjected to force, it can drive the stirring rod 61 to rotate on the top of the top plate 3. A support rod 63 is fixedly mounted on the top of the top plate 3. The support rod 63 passes through the rack 64 and is slidably connected to it. The rack 64 meshes with the gear 62. When the rack 64 moves on the surface of the support rod 63, the gear 62 meshing with the rack 64 can be subjected to force and rotate. The oscillating component 65 includes a push rod 651. One end of the push rod 651 is hinged to the side of the rack 64, and the other end is hinged to the side of the moving rod 652. When the moving rod 652 moves, the push rod 651 can be folded to push the rack 64 to slide. The movable rod 652 passes through the fixed frame 5 and is slidably connected to it. The top of the movable rod 652 is hinged to one end of the movable rod 653, and the other end of the movable rod 653 is hinged to the top of the circular plate 654. When the circular plate 654 rotates, the movable rod 653 can be folded to push the movable rod 652 to slide within the fixed frame 5. The bottom of the circular plate 654 is rotatably connected to the top of the fixed frame 5. A motor 655 is fixedly installed at the bottom of the fixed frame 5. The output shaft of the motor 655 is fixedly connected to the bottom of the circular plate 654. The output shaft of the motor 655 can drive the circular plate 654 to perform circular motion at the top of the fixed frame 5. The movable rod 652 passes through the top plate 3 and is slidably connected to the top plate 3. A perforated plate 656 is fixedly installed at the bottom of the movable rod 652, and a diagonal rod 657 is fixedly installed on the side of the perforated plate 656. When the movable rod 652 moves within the top plate 3, the perforated plate 656 and the diagonal rod 657 fixed at the bottom of the movable rod 652 can move synchronously.

[0025] In this invention, during use, terbium fluoride raw material is poured into the sieve holes 4 on the surface of the top plate 3. The sieve holes 4 perform preliminary filtration of the terbium fluoride raw material. The filtered terbium fluoride raw material enters the dehydration tank 1. After entering, the heat conduction pipe in the heating seat 2 is activated to heat the terbium fluoride raw material in the dehydration tank 1. During the heating process, the motor 655 at the bottom of the fixed frame 5 is activated. The output shaft of the motor 655 is driven by force to rotate the circular plate 654 on the top of the fixed frame 5. When the circular plate 654 rotates, the movable rod 653 hinged to the surface of the circular plate 654 can be folded, pushing the moving rod 652 to slide within the fixed frame 5. When the moving rod 652 moves, the push rod 651 hinged to the surface of the moving rod 652 can push the rack 64 to move laterally on the surface of the support rod 63. When the rack 64 moves... The gear 62 can drive the stirring rod 61 to stir in the dehydration tank 1. Since the moving rod 652 is reciprocating, the gear 62 can drive the stirring rod 61 to perform intermittent forward and reverse operation in the dehydration tank 1, thereby breaking up powder agglomeration, improving the uniformity of dehydration, and avoiding uneven dehydration caused by single stirring. During the movement of the moving rod 652, the perforated plate 656 fixed at the bottom of the moving rod 652 can drive the inclined rod 657 to swing synchronously in the dehydration tank 1. The horizontally swinging perforated plate 656 and inclined rod 657 can cooperate with the stirring rod 61 to make the terbium fluoride raw material form multi-zone flow in the dehydration tank 1, thereby enhancing its dehydration effect after heating. The high temperature continuously evaporates the water in the terbium fluoride raw material, thereby achieving dehydration treatment.

[0026] The present invention has been described in detail above. However, modifications or improvements can be made to it, which will be obvious to those skilled in the art. Therefore, any modifications or improvements that do not depart from the spirit of the present invention are within the protection scope of the present invention.

Claims

1. A dehydration device for terbium fluoride raw material, comprising a dehydration tank (1), characterized in that: The dehydration tank (1) is located on top of the heating base (2). A top plate (3) is fixedly installed on the top of the dehydration tank (1). A sieve hole (4) is opened in the top plate (3). A fixing frame (5) is fixedly installed on the top of the top plate (3). A control component (6) is provided in the fixing frame (5) and the top plate (3). The control component (6) includes: A stirring rod (61) is connected to the top plate (3) via a gear (62); Support rod (63), the support rod (63) is used to support the movement of rack (64); A oscillating element (65) is used to agitate the raw materials.

2. The dehydration device for terbium fluoride raw material according to claim 1, characterized in that: A gear (62) is fixedly installed on the top of the stirring rod (61), and the bottom of the gear (62) is rotatably connected to the top of the top plate (3). The stirring rod (61) passes through the top plate (3) and is rotatably connected to the top plate (3).

3. The dehydration device for terbium fluoride raw material according to claim 1, characterized in that: A support rod (63) is fixedly installed on the top of the top plate (3). The support rod (63) passes through the rack (64) and is slidably connected to the rack (64). The rack (64) meshes with the gear (62).

4. The dehydration device for terbium fluoride raw material according to claim 1, characterized in that: The swing member (65) includes a push rod (651), one end of which is hinged to the side of the rack (64), and the other end of which is hinged to the side of the moving rod (652).

5. The dehydration device for terbium fluoride raw material according to claim 4, characterized in that: The movable rod (652) passes through the fixed frame (5) and is slidably connected to the fixed frame (5). The top of the movable rod (652) is hinged to one end of the movable rod (653), and the other end of the movable rod (653) is hinged to the top of the circular plate (654).

6. The dehydration device for terbium fluoride raw material according to claim 5, characterized in that: The bottom of the circular plate (654) is rotatably connected to the top of the fixed frame (5), and a motor (655) is fixedly installed on the bottom of the fixed frame (5). The output shaft of the motor (655) is fixedly connected to the bottom of the circular plate (654).

7. The dehydration apparatus for terbium fluoride raw material according to claim 5, characterized in that: The movable rod (652) passes through the top plate (3) and is slidably connected to the top plate (3). A perforated plate (656) is fixedly installed at the bottom of the movable rod (652), and a diagonal rod (657) is fixedly installed on the side of the perforated plate (656).