Titanium concentrate energy-saving drying device

By designing a combination of drying box, screening mechanism and hot air circulation, the problems of poor material mobility and difficult cleaning in titanium concentrate drying equipment are solved, and efficient and energy-saving titanium concentrate drying effect is achieved.

CN224108471UActive Publication Date: 2026-04-10JIANGSU FREESTYLE NEW MATERIAL CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-16
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Existing titanium concentrate drying equipment suffers from problems such as poor material mobility, insufficient screening, easy damage to components, and difficulty in cleaning, resulting in low drying efficiency and inconvenience in operation.

Method used

An energy-saving drying device was designed, which includes a drying box, a dehumidification box, an inclined plate and a screening mechanism. The device utilizes a motor to drive the screening mechanism to vibrate and screen, and a crushing wheel to pre-treat the material. Combined with the hot air circulation of heating pipes and a fan, the device achieves efficient separation and drying of materials.

Benefits of technology

It improves the drying efficiency and material separation effect of titanium concentrate, simplifies the cleaning process, reduces energy consumption and labor costs, and ensures the continuity and economy of drying.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an energy-saving titanium concentrate drying device which comprises a drying box, a dehumidifying box and an inclined plate. A funnel is arranged at the top of the drying box; a heating pipe is arranged on the inner top wall of the drying box; the dehumidification box is arranged on the side edge of the drying box, and one side of the dehumidification box is connected with a fan; the arc-shaped rotating block is driven by the motor A to hit the screening frame, so that the screening frame vibrates for screening, the stability and reliability of vibration of the screening frame are guaranteed through cooperation of the supporting frame, the limiting rods and the springs, titanium concentrate can be separated more efficiently according to the granularity under the vibration effect, the screening frame can be detached by screwing out bolts, operation is easy, and the screening efficiency is improved. Cleaning time and labor cost are saved; a motor B arranged at the funnel drives a grinding wheel A and a grinding wheel B to work cooperatively, and large-particle titanium concentrate is ground before entering the drying box; and through the combined design of the heating pipe in the drying box, the dehumidification box and the fan, the drying efficiency is greatly improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to titanium concentrate drying technical field, concretely is a kind of titanium concentrate energy-saving drying device. BACKGROUND

[0002] At present, titanium concentrate dryer is usually used to dry titanium concentrate, and the material cannot move during drying, so that the material is not fully dried, and some material agglomerates cannot be well dried, reducing the quality and efficiency of work.

[0003] In related technology, a kind of electric separation titanium concentrate drying device (announcement number: CN219776171U) scheme is found by searching, when using, the material of titanium concentrate is screened by screening net, so that the size particles in material are separated, so that the material with larger particles is on screening net, and the material with smaller particles is below screening net, avoid the mutual accumulation of material, improve drying efficiency.

[0004] However, the above-mentioned conveying box is vibrated as a whole by vibration motor, so that the components inside the conveying box will be damaged or short-circuited under long-term vibration, so that the components cannot be used continuously, and since the screening frame cannot be disassembled, when large-particle titanium concentrate is accumulated, cleaning work is extremely difficult, and a lot of time is often spent on overall disassembly, or complex cleaning tools are used to clean inside the device, which not only is cumbersome, but also needs to invest a lot of manpower, seriously affects the continuity and economy of production, and is very inconvenient to use.

[0005] Therefore, we launch a kind of titanium concentrate energy-saving drying device. UTILITY MODEL CONTENTS

[0006] The utility model aims at providing a kind of titanium concentrate energy-saving drying device to solve the problems raised in the above background technology.

[0007] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a kind of titanium concentrate energy-saving drying device, comprising: drying box, dehumidification box and inclined plate;

[0008] The top of the drying box is provided with a hopper, and the hopper and the drying box are integrally formed, and the inner top wall of the drying box is provided with a heating pipe;

[0009] The dehumidification box is connected to the side of the drying box by screws, one side of the dehumidification box is connected with a fan, the output end of the fan is provided with an air inlet pipe, one side of the fan is provided with an air outlet pipe, and the air outlet pipe extends to the outside of the drying box;

[0010] The inclined plate is arranged on the inner side of the drying box, and the inclined plate is fixedly arranged between the drying box; the inclination angle of the inclined plate facilitates the movement of the titanium concentrate to the lowest position; and the side edge of the drying box is provided with a discharge port on one side of the inclined plate, and the discharge port is integrally formed with the drying box.

[0011] The inside of the drying box is provided with a screening mechanism; the titanium concentrate on the surface of the screening frame is screened by the arc-shaped rotating block driven by the rotating rod of the screening mechanism, so that the titanium concentrate with smaller particles falls onto the surface of the inclined plate.

[0012] Preferably, the screening mechanism comprises a motor A connected inside the drying box, the rotating rod is connected to the output end of the motor A, the surface of the rotating rod is fixedly connected with a positioning block, the arc-shaped rotating block is connected to the surface of the positioning block, and the arc-shaped rotating block and the positioning block are fixedly arranged, the inner side wall of the drying box is connected with a supporting frame, the supporting frame is fixedly arranged between the drying box, and the two ends of the screening frame are respectively connected with fixed blocks, the fixed blocks are fixedly arranged between the screening frame, the side edge of the fixed block is provided with a T-shaped block, and the T-shaped block is slidably connected in the inside of the supporting frame.

[0013] Preferably, the inside of the supporting frame is connected with a limiting rod, the T-shaped block is slidably connected to the surface of the limiting rod, and the limiting rod is used for limiting the movement of the T-shaped block and the screening frame; the surface of the limiting rod is sleeved with a spring at the top of the T-shaped block, when the T-shaped block moves upward, the spring is extruded, and the arc-shaped rotating block moves away from the hitting part, at this time, the spring itself drives the T-shaped block and the screening frame to move downward.

[0014] Preferably, the side edge of the T-shaped block is connected with a bolt, the bolt extends to the inside of the fixed block after penetrating through the T-shaped block, the bolt releases the fixation of the fixed block, and the screening frame can be disassembled.

[0015] Preferably, the side edge of the funnel is connected with a motor B, the motor B is connected to the side edge of the funnel through a screw, the output end of the motor B is connected with a crushing wheel A, one end of the crushing wheel A is connected with a gear A, the surface of the gear A is engaged with a gear B, one end of the gear B is connected with a crushing wheel B, and the crushing wheel B and the crushing wheel A are located in the inside of the funnel; the cooperation between the crushing wheel B and the crushing wheel A can crush the larger titanium concentrate into smaller particles.

[0016] Preferably, the bottom of the drying box is connected with a supporting leg, the supporting leg is fixedly arranged between the drying box, and the bottom of the supporting leg is provided with anti-skid lines, and the anti-skid lines are in contact with the ground to increase the friction.

[0017] Preferably, the surface of the drying box is hingedly connected with a cabinet door, the cabinet door and the drying box are rotatably connected through a hinge, and the surface of the cabinet door is connected with a handle, and the handle and the cabinet door are fixedly arranged.

[0018] Preferably, the bottom of the screening frame is connected with a hitting part on both sides for the arc-shaped rotating block to hit, and the hitting part is detachably arranged between the screening frame, facilitating subsequent replacement of the hitting part.

[0019] Compared with the prior art, the utility model has the advantages that:

[0020] (1) The arc-shaped rotating block is driven by the motor A to hit the screening frame, so that the screening frame vibrates for screening, and the cooperation of the supporting frame, the limiting rod and the spring ensures the stability and reliability of the vibration of the screening frame. Under the action of vibration, the titanium concentrate can be more efficiently separated according to particle size, the titanium concentrate with smaller particles falls smoothly, and the titanium concentrate with larger particles remains on the screening frame. In addition, the screening frame is designed to be detachable, which facilitates the cleaning of the residual large-particle titanium concentrate. Only the cabinet door needs to be opened, and the screening frame can be detached by unscrewing the bolts, which is simple to operate and saves cleaning time and labor cost.

[0021] (2) The motor B arranged at the funnel drives the crushing wheel A and the crushing wheel B to work cooperatively to crush the large-particle titanium concentrate before it enters the drying box. This design makes the subsequent drying and screening of the titanium concentrate more smooth, greatly improving the processing efficiency. Because the titanium concentrate with smaller particles has a larger specific surface area, it can be more fully contacted with hot air during drying, accelerating the evaporation of moisture. During the screening process, it is also easier to pass through the screen hole, reducing the problems of blockage and incomplete screening caused by large particles.

[0022] (3) The combination design of the heating pipe in the drying box, the dehumidifying box and the fan greatly improves the drying efficiency. The heating pipe provides heat source to heat the titanium concentrate, and the fan sends the dry air in the dehumidifying box into the drying box, accelerating the flow of air in the box, so that the humid air can be quickly discharged from the air outlet pipe. This hot air circulation mode avoids the accumulation of humid air in the drying box, ensures that the titanium concentrate is always in a dry hot air environment, effectively shortens the drying time and reduces energy consumption. BRIEF DESCRIPTION OF DRAWINGS

[0023] Figure 1 It is a structural schematic view of the utility model;

[0024] Figure 2 It is a structural schematic view of the utility model when the crushing wheel A and the crushing wheel B are connected in three dimensions;

[0025] Figure 3 It is a structural schematic view of the utility model when the screening frame and the supporting frame are connected;

[0026] Figure 4 It is a structural schematic view of the utility model when the motor A, the positioning block and the arc-shaped rotating block are connected;

[0027] Figure 5 The utility model discloses a structure schematic diagram of front view.

[0028] In the drawing: 1, drying box;2, motor A;3, discharge port;4, support leg;5, inclined plate;6, hopper;7, screening frame;8, rotating rod;9, heating pipe;10, air inlet pipe;11, fan;12, dehumidification box;13, air outlet pipe;14, gear B;15, gear A;16, crushing wheel B;17, crushing wheel A;18, motor B;19, support frame;20, limiting rod;21, spring;22, T-shaped block;23, fixed block;24, beating part;25, bolt;27, positioning block;28, arc rotating block;29, cabinet door;30, handle. DETAILED DESCRIPTION

[0029] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0030] Please refer to Figures 1-5 The utility model provides a kind of technical scheme: a titanium concentrate energy-saving drying device, comprising: drying box 1, the top of the drying box 1 is provided with hopper 6, the inner top wall of the drying box 1 is provided with heating pipe 9;

[0031] Dehumidification box 12, the dehumidification box 12 is arranged in the side of drying box 1, one side of the dehumidification box 12 is connected with fan 11, the output end of the fan 11 is provided with air inlet pipe 10, one side of the fan 11 is provided with air outlet pipe 13, and air outlet pipe 13 extends to the outside of drying box 1;

[0032] Inclined plate 5, the inclined plate 5 is arranged in the inner side of drying box 1, the side of the drying box 1 is located in the side of inclined plate 5 and is provided with discharge port 3;

[0033] The inside of the drying box 1 is provided with screening mechanism, and the arc rotating block 28 is driven to the titanium concentrate on the surface of screening frame 7 by the rotating rod 8 of screening mechanism, so that the titanium concentrate with smaller particles falls to the surface of inclined plate 5.

[0034] The screening mechanism includes a motor A2 connected inside the drying box 1, the rotating rod 8 is connected to the output end of the motor A2, the surface of the rotating rod 8 is fixedly connected with a positioning block 27, the arc-shaped rotating block 28 is connected to the surface of the positioning block 27, and the arc-shaped rotating block 28 and the positioning block 27 are fixedly arranged, the inner side wall of the drying box 1 is connected with a supporting frame 19, and the supporting frame 19 and the drying box 1 are fixedly arranged, the two ends of the screening frame 7 are respectively connected with fixed blocks 23, and the fixed blocks 23 and the screening frame 7 are fixedly arranged, and the side of the fixed block 23 is provided with a T-shaped block 22, and the T-shaped block 22 is slidably connected in the inside of the supporting frame 19.

[0035] The inside of the supporting frame 19 is connected with a limiting rod 20, the surface of the T-shaped block 22 is slidably connected with the limiting rod 20, and the limiting rod 20 is used for limiting the movement of the T-shaped block 22 and the screening frame 7, the surface of the limiting rod 20 is located at the top of the T-shaped block 22, and the spring 21 is sleeved, when the T-shaped block 22 moves upwards, the spring 21 is extruded, and the arc-shaped rotating block 28 is away from the hitting part 24, at this time, the spring 21 drives the T-shaped block 22 and the screening frame 7 to move downwards by using the elastic force of the spring 21.

[0036] The side of the T-shaped block 22 is connected with a bolt 25, the bolt 25 extends to the inside of the fixed block 23 after penetrating through the T-shaped block 22, the bolt 25 releases the fixation of the fixed block 23, and the screening frame 7 can be disassembled.

[0037] The side of the funnel 6 is connected with a motor B18, the motor B18 is connected to the side of the funnel 6 through screws, the output end of the motor B18 is connected with a crushing wheel A17, one end of the crushing wheel A17 is connected with a gear A15, the surface of the gear A15 is engaged with a gear B14, one end of the gear B14 is connected with a crushing wheel B16, and the crushing wheel B16 and the crushing wheel A17 are located in the inside of the funnel 6, and the crushing wheel B16 and the crushing wheel A17 are used in cooperation, so that the larger titanium concentrate can be crushed into smaller particles.

[0038] The bottom of the drying box 1 is connected with supporting legs 4, the supporting legs 4 and the drying box 1 are fixedly arranged, and the bottom of the supporting leg 4 is provided with anti-skid lines, and the anti-skid lines are in contact with the ground to increase the friction.

[0039] The surface of the drying box 1 is hingedly connected with a cabinet door 29, and the cabinet door 29 and the drying box 1 are rotatably connected through the hinge, and the surface of the cabinet door 29 is connected with a handle 30, and the handle 30 and the cabinet door 29 are fixedly arranged.

[0040] The bottom of the screening frame 7 is connected with a hitting part 24 for the arc-shaped rotating block 28 to hit on both sides, and the hitting part 24 and the screening frame 7 are detachably arranged, which is convenient for replacing the hitting part 24.

[0041] Specifically, in use, the titanium concentrate to be processed is poured from the hopper 6, the motor B18 on the side of the hopper 6 is started, the motor B18 drives the crushing wheel A17 to rotate, the gear A15 connected to one end of the crushing wheel A17 rotates accordingly, since the gear A15 is engaged with the gear B14, the gear B14 also rotates, and in turn drives the crushing wheel B16 connected thereto to rotate, under the cooperation of the crushing wheel A17 and the crushing wheel B16, the larger particles of the titanium concentrate are crushed in the hopper 6 and become smaller particles, facilitating subsequent drying and screening;

[0042] The crushed titanium concentrate falls into the drying box 1, at this time the heating pipe 9 on the top wall of the drying box 1 is turned on to heat and dry the titanium concentrate, at the same time, the fan 11 on one side of the dehumidifying box 12 is started, the fan 11 sends the dry air in the dehumidifying box 12 into the drying box 1 through the air inlet pipe 10, accelerates the air flow in the drying box 1, so that the humid air can be discharged from the air outlet pipe 13 out of the drying box 1 more quickly, and the drying efficiency is improved;

[0043] The motor A2 inside the drying box 1 is started, the rotating rod 8 at the output end of the motor A2 rotates accordingly, the positioning block 27 fixedly connected to the surface of the rotating rod 8 also rotates, and in turn drives the arc-shaped rotating block 28 connected to the surface of the positioning block 27 to rotate, the arc-shaped rotating block 28 constantly hits the hitting parts 24 on both sides of the bottom of the screening frame 7 in the rotating process, so that the screening frame 7 vibrates, the T-shaped block 22 on the side of the fixed block 23 at both ends of the screening frame 7 slides in the support frame 19, the limiting rod 20 inside the support frame 19 guides the sliding of the T-shaped block 22, and the spring 21 sleeved on the top of the T-shaped block 22 can buffer the vibration of the screening frame 7, so that the vibration is more stable, under the action of the vibration, the titanium concentrate on the surface of the screening frame 7 is screened, and the titanium concentrate with smaller particles passes through the screen holes of the screening frame 7 and falls on the surface of the inclined plate 5;

[0044] The titanium concentrate with larger particles remains on the surface of the screening frame 7, by opening the cabinet door 29, unscrewing the bolt 25, and putting the bolt 25 into the inside of the fixed block 23, the screening frame 7 can be disassembled, so that the titanium concentrate with larger particles on the surface of the screening frame 7 can be cleaned, and the use is more convenient;

[0045] The titanium concentrate falling on the surface of the inclined plate 5 will roll along the inclined plate 5 to the discharge port 3 due to the inclination angle of the inclined plate 5, and finally is discharged from the drying box 1 through the discharge port 3, completing the entire processing process, if it is necessary to check the inside of the drying box 1 or clean the drying box 1, the cabinet door 29 can be opened by pulling the handle 30 on the surface of the cabinet door 29.

[0046] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present application, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A titanium concentrate energy saving drying device, characterized in that, Include: The top of the drying box (1) is provided with a hopper (6), and the inner top wall of the drying box (1) is provided with a heating pipe (9); The dehumidifying box (12) is arranged on the side of the drying box (1), one side of the dehumidifying box (12) is connected with a fan (11), the output end of the fan (11) is provided with an air inlet pipe (10), one side of the fan (11) is provided with an air outlet pipe (13), and the air outlet pipe (13) extends to the outside of the drying box (1); The inclined plate (5) is arranged on the inner side of the drying box (1), and the side of the drying box (1) is provided with a discharge port (3) on one side of the inclined plate (5). The inside of the drying box (1) is provided with a screening mechanism, the arc-shaped rotating block (28) is driven by the rotating rod (8) of the screening mechanism to screen the titanium concentrate on the surface of the screening frame (7), so that the titanium concentrate with smaller particles falls on the surface of the inclined plate (5).

2. The energy-saving drying device for titanium concentrate according to claim 1, characterized in that, The screening mechanism includes a motor A (2) connected inside the drying box (1), the rotating rod (8) is connected to the output end of the motor A (2), the surface of the rotating rod (8) is fixedly connected with a positioning block (27), the arc-shaped rotating block (28) is connected to the surface of the positioning block (27), the inner side wall of the drying box (1) is connected with a support frame (19), both ends of the screening frame (7) are respectively connected with a fixed block (23), and the side of the fixed block (23) is provided with a T-shaped block (22), and the T-shaped block (22) is slidably connected in the inside of the support frame (19).

3. The energy-saving drying device for titanium concentrate according to claim 2, characterized in that, The inside of the support frame (19) is connected with a limiting rod (20), the T-shaped block (22) is slidably connected to the surface of the limiting rod (20), and the surface of the limiting rod (20) is sleeved with a spring (21) on the top of the T-shaped block (22).

4. The energy-saving drying device for titanium concentrate according to claim 2, characterized in that, The side of the T-shaped block (22) is connected with a bolt (25), and the bolt (25) extends to the inside of the fixed block (23) after penetrating through the T-shaped block (22).

5. The energy-saving drying device for titanium concentrate according to claim 1, characterized in that, The side of the hopper (6) is connected with a motor B (18), the output end of the motor B (18) is connected with a crushing wheel A (17), one end of the crushing wheel A (17) is connected with a gear A (15), the surface of the gear A (15) is engaged with a gear B (14), one end of the gear B (14) is connected with a crushing wheel B (16), and the crushing wheel B (16) is located in the inside of the hopper (6) with the crushing wheel A (17).

6. The energy-saving drying device for titanium concentrate according to claim 1, characterized in that, The bottom of the drying box (1) is connected with a support leg (4).

7. The energy-saving drying device for titanium concentrate according to claim 1, characterized in that, The surface of the drying box (1) is hinged with a cabinet door (29), and the surface of the cabinet door (29) is connected with a handle (30).

8. The energy-saving drying device for titanium concentrate according to claim 2, characterized in that, The bottom of the screening frame (7) is connected with a beating part (24) for beating of the arc-shaped rotating block (28).

Citation Information

Patent Citations

  • Electric separation titanium concentrate drying device

    CN219776171U