Fluorite powder dehydration device

By employing a combination of multi-layer heating and drying with stirring and shaking in the fluorite powder dehydration device, the problem of poor dehydration effect of traditional fluorite powder dehydration equipment has been solved, achieving more efficient fluorite powder dehydration and reducing residue.

CN223814918UActive Publication Date: 2026-01-20YONGFENG COUNTY TIANBAO MINING IND CO LTD
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Patent Information

Application Number
CN202520469593.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-18
Publication Date
2026-01-20
Estimated Expiration
2035-03-18

AI Technical Summary

Technical Problem

Traditional fluorite powder dehydration equipment has poor dehydration effect, and the centrifugal dehydration method easily causes fluorite powder to remain in the dehydration tank, resulting in poor dehydration effect.

Method used

The bottom and top boxes are stacked and combined with heating tanks and heating elements for multi-layer heating and drying. The motor agitation and vibration motor shaking are used to ensure that the fluorite powder is heated evenly and dispersed. The guide plate and discharge port achieve efficient dehydration.

Benefits of technology

It improves the heating and drying efficiency of fluorite powder, reduces adhesion, enhances dehydration, and improves work efficiency and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a fluorite powder dewatering device which structurally comprises a bottom box and a top box, fluorite powder is input into the top box through a feeding port, a first heating piece in a first heating groove in the top box is used for drying the fluorite powder, a motor drives a rotating shaft to enable a connecting rod to stir the fluorite powder in the fluorite powder, and the fluorite powder is conveyed into the top box. The fluorite powder can be prevented from being adhered to the inner wall of the top box under a scraping plate on the side edge, then the fluorite powder is input into the bottom box after an electromagnetic valve in a discharging opening in the lower end is opened, and the fluorite powder flows downwards under the action of a guide plate; and in the process of slowly flowing downwards, the flowing fluorite powder is heated and dried under the action of a second heating piece in a second heating groove in a guide plate, so that drying treatment is conducted again, the drying effect is better, a bottom box is shaken under the action of a vibration motor, and the drying effect is better. Therefore, the fluorite powder on the guide plate is more diffused, and the drying effect is enhanced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to fluorite powder production equipment technical field especially relates to a fluorite powder dewatering device. BACKGROUND

[0002] Fluorite can often form massive, granular aggregates, or cubic and octahedral single crystals, and has various colors, such as purple red, blue, green and colorless. Fluorite is an alkaline diluent. It is named because it emits fluorescent light like fireflies under ultraviolet or cathode ray irradiation. However, when fluorite contains some rare earth elements, it will emit phosphorescence, that is, fluorite can still emit light for a long period of time after leaving the ultraviolet or cathode ray irradiation.

[0003] In the production process of fluorite powder, dehydration equipment is needed for dehydration treatment. However, the traditional fluorite powder dewatering equipment has poor dehydration effect and the dehydration effect is not ideal. Moreover, the centrifugal dehydration method is prone to cause a large amount of fluorite powder to be inside the dehydration barrel, resulting in poor dehydration effect.

[0004] Therefore, a fluorite powder dewatering device is proposed. SUMMARY

[0005] (I) Technical problem to be solved

[0006] In order to overcome the shortcomings of the prior art, a fluorite powder dewatering device is proposed to solve the problem of poor dehydration effect of the traditional fluorite powder dewatering equipment, and the problem of poor dehydration effect caused by a large amount of fluorite powder inside the dehydration barrel due to the use of centrifugal dehydration method.

[0007] (II) Technical scheme

[0008] The utility model discloses a fluorite powder dewatering device, which comprises

[0009] The bottom box and the top box are stacked and installed, and the controller is installed on the outside of the bottom box.

[0010] The top end of the top box is provided with a feed inlet, and the bottom end of the top box is provided with a discharge port penetratingly connected to the top end of the bottom box, and an electromagnetic valve is installed inside the discharge port.

[0011] A first heating groove is arranged around the inner wall of the top box, a first heating element is installed inside the first heating groove, a plurality of layers of inclined downward guide plates are arranged inside the bottom box in a staggered and mirror image manner, a second heating groove is arranged inside the guide plate, a second heating element is installed inside the second heating groove, and a discharge port inclined downward and penetrating through the bottom box is arranged at the bottom end of the guide plate.

[0012] Further, the bottom box top end side is equipped with a plurality of second exhaust holes, and the top box top end side is equipped with a plurality of first exhaust holes.

[0013] Further, the top box top end is provided with a motor, the inside of the top box is rotatably connected with a rotating shaft, and a plurality of connecting rods are installed on the outside of the rotating shaft.

[0014] Further, the connecting rod outside is connected with a scraper in contact with the inner wall of the top box.

[0015] Further, the bottom end of the rotating shaft is connected with a screw push rod inside the discharge port.

[0016] Further, the bottom box and the top box are connected through a damping shock absorber, the bottom end of the discharge port is provided with a connecting ring connected with the bottom box, a vibration motor is installed on the outside of the bottom box, a plurality of damping shock absorbers two are installed on the bottom end of the bottom box, and a support column is connected with the bottom end of the damping shock absorber two.

[0017] (Three) beneficial effects

[0018] Compared with the prior art, the utility model has the following beneficial effects:

[0019] 1、 in the utility model, the fluorite powder is inputted into the inside of the top box through the feeding port, the inside fluorite powder is heated and dried under the action of the first heating piece in the inside first heating groove, and after a period of heating and drying, the fluorite powder can be dropped on the guide plate in the bottom box through the discharge port, so that the fluorite powder is continuously heated and dried under the action of the second heating piece in the guide plate flowing downward, so that the fluorite powder heating and drying effect is better, the drying efficiency of fluorite powder is strengthened, and the working effect is better.

[0020] 2、 in the utility model, the fluorite powder in the top box is agitated by the connecting rod driven by the motor, so that the heating is more uniform, and the bottom box at the bottom is shaken under the action of the vibration motor, so that the fluorite powder is more dispersed when falling on the guide plate, the heating effect is better, the fluorite powder is more efficient when heated and dried, the condition of adhering to the guide plate is reduced, and the processing effect is better. BRIEF DESCRIPTION OF DRAWINGS

[0021] Other features, objects and advantages of the utility model will become more apparent by reading the following detailed description of non-limiting embodiments with reference to the accompanying drawings:

[0022] Figure 1 It is the internal structure schematic view of the utility model;

[0023] Figure 2 It is the structure schematic view of the bottom box of the utility model;

[0024] Figure 3 It is the structure schematic view of the top box of the utility model;

[0025] In the figure: bottom box-1, top box-2, damping shock absorber one-3, damping shock absorber two-4, support column-5, feed inlet-6, discharge outlet-7, connecting ring-8, rotating shaft-9, motor-10, connecting rod-11, scraper-12, first exhaust hole-13, first heating groove-14, first heating piece-15, screw push rod-16, guide plate-17, second heating groove-18, second heating piece-19, discharge outlet-110, second exhaust hole-111, vibration motor-112, controller-113. DETAILED DESCRIPTION

[0026] In order to make the utility model's purpose, technical scheme and advantage more clearly clear, following combining with the drawing and example, this utility model carries out further detailed explanation. It should be understood that the specific example described here is only used to explain the utility model, and is not used to limit the utility model.

[0027] Please refer to Figure 1 、 Figure 2 With Figure 3 The utility model provides a kind of fluorite powder dewatering device, including the bottom box 1 and top box 2 of stacked installation, so that heating drying treatment is carried out up and down, so that heating effect is better, and bottom box 1 outside installation has controller 113, by the controller 113 of external purchase, it is convenient for staff to operate electrical device in device, so that operation is more convenient, and bottom box 1 top end side is equipped with a plurality of second exhaust hole 111, top box 2 top end side is equipped with a plurality of first exhaust hole 13, under the action of first exhaust hole 13 and second exhaust hole 111, steam and the like produced in heating drying can be discharged outward, so that dewatering effect is better.

[0028] The top box 2 is provided with a feeding port 6 at the top end for feeding the fluorite powder into the top box 2 for storage, and is provided with a discharging port 7 at the bottom end penetrating through the top end of the bottom box 1, so as to facilitate the fluorite powder heated, dried and dehydrated in the top box 2 to be discharged downward for treatment, and the discharging port 7 is provided with a solenoid valve inside, so as to facilitate the fluorite powder to be heated, dried and dehydrated for a longer time in the top box 2, so that the drying effect is better. The top box 2 is provided with a motor 10 at the top end, and is rotatably connected with a rotating shaft 9 inside, and a plurality of connecting rods 11 are installed outside the rotating shaft 9. The motor 10 drives the rotating shaft 9 to make the connecting rods 11 agitate the fluorite powder in the top box 2, so that the heating effect of the fluorite powder inside and outside is better, and the drying and dehydration effect is enhanced. The connecting rods 11 are connected with scrapers 12 outside, which are in contact with the inner wall of the top box 2. In the process of agitation, the inner wall of the top box 2 can be scraped by the scrapers 12 to prevent the fluorite powder from adhering to the inner wall of the top box 2, so as to facilitate the discharge treatment. The rotating shaft 9 is connected with a screw push rod 16 at the bottom end, which is located inside the discharging port 7. Under the rotation of the screw push rod 16, the fluorite powder can be pushed downward, so that the fluorite powder is prevented from blocking the discharging port 7, and the discharging effect is better.

[0029] The inner wall of the top box 2 is provided with a first heating groove 14, and the first heating groove 14 is provided with a first heating element 15 inside. The first heating element 15 heats and dries the fluorite powder inside the top box 2, so that the fluorite powder is heated, dried and dehydrated. The bottom box 1 is provided with a plurality of layers of inclined guide plates 17 inside in a staggered and mirror image manner, so as to facilitate slow and continuous downward flow and discharge. The guide plate 17 is provided with a second heating groove 18 inside, and the second heating groove 18 is provided with a second heating element 19 inside. In this way, the fluorite powder is heated and dried again by the second heating element 19 during the downward flow through the guide plate 17, so that the fluorite powder is dehydrated better under the double-layer heating and drying, and the working efficiency is higher. The guide plate 17 is provided with a discharging port 110 at the bottom end, which penetrates through the bottom box 1 in an inclined downward manner, so as to facilitate the fluorite powder after dehydration and drying to be discharged downward, and facilitate the fluorite powder to be concentrated and treated.

[0030] And the bottom box 1 and top box 2 through the damping shock absorber 3 is connected, so that in the bottom box 1 vibration can reduce the impact on the upper end top box 2, so that the security is high, and the blanking 7 bottom end is provided with the connecting ring 8 and the bottom box 1 is connected, so that the connecting ring 8 has elasticity, so as to facilitate the stretching work when vibrating, reduce the influence of shaking on the top box 2, the bottom box 1 outside is provided with vibration motor 112, in the case of vibration motor 112 driven bottom box 1 shaking makes the fluorite powder moves on the guide plate 17 can be more dispersed, so as to make the heating effect better, and avoid the fluorite powder attached to the guide plate 17, so that the blanking effect is better, the bottom box 1 bottom end is provided with a plurality of damping shock absorber two 4 reduces the influence of vibration, and the damping shock absorber two 4 bottom end is connected with the support column 5, so that the bottom of the bottom box 1 is high, so as to facilitate the discharge port 110 to carry out the blanking work.

[0031] Working principle: in use, first motor 10, first heating piece 15, second heating piece 19, vibration motor 112 and controller 113 are connected, and they are connected to the external power supply, then the fluorite powder is input into the top box 2 through the feed port 6, under the action of the first heating piece 15 in the first heating groove 14 in the top box 2, the inside is heated and dried, and under the action of the motor 10, the rotating shaft 9 rotates, so that the connecting rod 11 on the side stirs the fluorite powder inside, after the top box 2 is heated and dried for a period of time, the electromagnetic valve in the blanking port 7 is opened, so that the fluorite powder falls down to the guide plate 17 in the bottom box 1 under the action of the screw push rod 16, under the action of the second heating piece 19 in the second heating groove 18, the fluorite powder is heated and dried, and under the action of the vibration motor 112, the bottom box 1 is shaken to make the fluorite powder flow downward, so that the heating and drying effect is better, the fluorite powder is heated and dehydrated, and then discharged through the discharge port 110, so as to complete the work.

[0032] The above shows and describes the basic principle, main features and advantages of the present application. Those skilled in the art should understand that the present application is not limited to the above examples, and the above examples and descriptions in the specification are only preferred examples of the present application, and are not intended to limit the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the present application. The scope of protection of the present application is defined by the appended claims and their equivalents.

Claims

1. A device for dewatering fluorite powder, characterized by, Comprising The bottom box (1) and the top box (2) are stacked and mounted, and the controller (113) is mounted outside the bottom box (1); The top end of the top box (2) is provided with a feeding port (6), and the bottom end of the top box (2) is provided with a discharging port (7) penetrating through the top end of the bottom box (1), and the electromagnetic valve is mounted inside the discharging port (7); A first heating groove (14) is arranged around the inner wall of the top box (2), a first heating element (15) is mounted inside the first heating groove (14), a plurality of layers of inclined downward guide plates (17) are arranged inside the bottom box (1) in a staggered mirror image manner, a second heating groove (18) is arranged inside the guide plate (17), a second heating element (19) is mounted inside the second heating groove (18), and the bottom end of the guide plate (17) is provided with a discharging port (110) inclined downward penetrating through the bottom box (1).

2. A device for dewatering fluorite powder according to claim 1, characterized in that: A plurality of second exhaust holes (111) are arranged on one side of the top end of the bottom box (1), and a plurality of first exhaust holes (13) are arranged on one side of the top end of the top box (2).

3. A device for dewatering fluorite powder according to claim 1, characterized in that: A motor (10) is mounted at the top end of the top box (2), a rotating shaft (9) is rotatably connected inside the top box (2), and a plurality of connecting rods (11) are mounted outside the rotating shaft (9).

4. A device for dewatering fluorite powder according to claim 3, characterized in that: The connecting rod (11) is connected with a scraper (12) in contact with the inner wall of the top box (2).

5. A device for dewatering fluorite powder according to claim 3, characterized in that: The bottom end of the rotating shaft (9) is connected with a screw push rod (16) located inside the discharging port (7).

6. A device for dewatering fluorite powder according to claim 1, characterized in that: The bottom box (1) and the top box (2) are connected through a damping shock absorber (3), the bottom end of the discharging port (7) is provided with a connecting ring (8) connected with the bottom box (1), a vibration motor (112) is mounted outside the bottom box (1), a plurality of damping shock absorbers (4) are mounted at the bottom end of the bottom box (1), and the bottom end of the damping shock absorber (4) is connected with a supporting column (5).