Novel titanium sponge screening device

By designing an automated sponge titanium screening device, the combination of rotating rod and filtering magnetic bucket is used to solve the problems of high cost and insufficient accuracy caused by manual screening, and automatic screening of sponge titanium and impurity removal are achieved.

CN223113265UActive Publication Date: 2025-07-18CHAOYANG BAISHENG METAL CO LTD
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Patent Information

Application Number
CN202422056565.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-23
Publication Date
2025-07-18
Estimated Expiration
2034-08-23

AI Technical Summary

Technical Problem

In the prior art, the screening of sponge titanium mainly relies on manual operations, resulting in high labor costs and the inability to accurately screen out sponge titanium sponge of different sizes.

Method used

A new type of sponge titanium screening device was designed, which uses the combination of rotating rods, supporting rods, motors, rotating belts, swing rods and screening plates to realize automatic screening of sponge titanium, and uses magnetic force to remove iron impurities through filtering magnetic drums.

Benefits of technology

Automatic screening and impurity removal of sponge titanium is realized, reducing labor costs and improving screening accuracy and efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of titanium sponge processing, and discloses a novel titanium sponge screening device which comprises a screening shell, a plurality of screening plates are fixedly connected to the interior of the screening shell, a containing assembly is arranged at the lower end of the screening shell, two fixing blocks are fixedly connected to the lower end of the screening shell, and rotating rods are fixedly connected to the opposite sides of the two fixing blocks. Two supporting rods are rotatably connected to the periphery of the rotating rod, a base is fixedly connected to the bottoms of the two supporting rods, a rotating belt is rotatably connected to the top of the base, a first motor is fixedly connected to the top of the base, the output end of the first motor is fixedly connected to the right end of the rotating belt, and a cam is rotatably connected to the inner side of the rotating belt at the other end; the two ends of the cam are rotationally connected with swing rods correspondingly. According to the titanium sponge screening device, through cooperation of the rotating rod, the supporting rod, the first motor, the rotating belt, the swing rod, the fixing rod and the screening plate, titanium sponge of different sizes is screened, and the labor cost of workers is reduced.
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Description

Technical Field

[0001] The utility model relates to the field of titanium sponge processing, in particular to a new type of titanium sponge screening device. Background Art

[0002] Titanium sponge refers to titanium metal with relatively high purity and porous particles obtained during the refining process. It gets its name from its appearance similar to porous sponge. The titanium sponge screening device can indeed be used to screen titanium sponge of different sizes or remove impurities that are not titanium sponge.

[0003] In the prior art, most of the screening of titanium sponge is carried out manually. In this way, screening titanium sponge usually requires a large amount of labor, especially in the case of large-scale production or processing. This may lead to high labor costs and cannot accurately screen titanium sponge of different sizes. Therefore, a new type of titanium sponge screening device is proposed to solve the above problems. Content of the Utility Model

[0004] In order to make up for the above deficiencies, the utility model provides a new type of titanium sponge screening device, aiming to improve the problems of high labor cost in manually screening titanium sponge and inability to accurately screen titanium sponge of different sizes.

[0005] In order to achieve the above purpose, the utility model adopts the following technical scheme: a new type of titanium sponge screening device, including a screening shell, a plurality of screening plates are fixedly connected inside the screening shell, a receiving component is arranged at the lower end of the screening shell, two fixing blocks are fixedly connected to the lower end of the screening shell, a rotating rod is fixedly connected to the opposite sides of the two fixing blocks, two support rods are rotatably connected to the outer periphery of the rotating rod, the bottoms of the two support rods are fixedly connected to a base, a rotating belt is rotatably connected to the top of the base, a motor I is fixedly connected to the top of the base, the output end of the motor I is fixedly connected to the right end of the rotating belt, a cam is rotatably connected to the inner side of the other end of the rotating belt, swing rods are respectively rotatably connected to both ends of the cam, a fixing rod is rotatably connected to the opposite sides of the other end of the swing rods, fixing frames are fixedly connected to both ends of the fixing rod, and the tops of the two fixing frames are fixedly connected to the lower end of the screening shell. A filtering component is arranged on the right side of the screening shell.

[0006] As a further description of the above technical solution:

[0007] The filtering component includes a support frame, the support frame is fixedly connected to the top end of the base, a filtering magnetic barrel is rotatably connected to the middle of the support frame, a belt pulley is rotatably connected to the middle of the filtering magnetic barrel, and a driving rod is rotatably connected to the inside of the other end of the belt pulley.

[0008] As a further description of the above technical solution:

[0009] On the right side of the support frame, there is a support box fixedly connected. Inside the support box, there is a second motor fixedly connected, and the output end of the second motor is fixedly connected to the bottom of the driving rod.

[0010] As a further description of the above technical solution:

[0011] The storage component includes a storage box which is slidably connected to the bottom of the screening shell. At the top of the storage box, there are two sliding rods fixedly connected. At the front end of the screening shell, there is a fixed shell fixedly connected. Inside the fixed shell, there is a stop block slidably connected. At the top of the stop block, there are two springs fixedly connected, and both of the two springs are fixedly connected inside the fixed shell.

[0012] As a further description of the above technical solution:

[0013] At the inner bottom of the filtering magnetic barrel, there is a filter plate fixedly connected, and the filtering magnetic barrel is made of magnet.

[0014] As a further description of the above technical solution:

[0015] The driving rod is rotatably connected inside the support box.

[0016] As a further description of the above technical solution:

[0017] Inside the screening shell, there are two sliding grooves opened, and the two sliding rods are respectively slidably connected in the sliding grooves of the screening shell.

[0018] As a further description of the above technical solution:

[0019] Inside the storage box, there are two baffles fixedly connected, and the baffles are slidably connected to the bottoms of two of the screening plates.

[0020] The utility model has the following beneficial effects:

[0021] 1. In the utility model, through the cooperation among the rotating rod, the support rod, the first motor, the rotating belt, the swinging rod and the fixed rod, starting the first motor can make the screening shell swing for screening. Then, through multiple screening plates inside the screening shell, titanium sponge of different sizes is screened out, realizing the automatic screening of titanium sponge of different sizes.

[0022] 2. In the utility model, through the cooperation among the filtering magnetic barrel, the belt pulley, the driving rod, the second motor and the filter plate, starting the second motor makes the filtering magnetic barrel rotate. The filtering magnetic barrel has magnetism and adsorbs the iron impurities generated during the production of titanium sponge inside the filtering magnetic barrel, enabling the device to automatically filter titanium sponge and reducing the labor cost of workers. Description of the Drawings

[0023] Figure 1Schematic three-dimensional diagram of a novel titanium sponge screening device proposed by the present utility model;

[0024] Figure 2 Schematic structural diagram of the screening plate of a novel titanium sponge screening device proposed by the present utility model;

[0025] Figure 3 Schematic structural diagram of the swing rod of a novel titanium sponge screening device proposed by the present utility model;

[0026] Figure 4 Schematic structural diagram of the filtering component of a novel titanium sponge screening device proposed by the present utility model;

[0027] Figure 5 Schematic structural diagram of the filtering magnetic barrel of a novel titanium sponge screening device proposed by the present utility model;

[0028] Figure 6 is Figure 1 The enlarged view of part A in

[0029] Legend description:

[0030] 1. Screening shell; 2. Screening plate; 3. Storage box; 4. Slide bar; 5. Fixed block; 6. Rotating rod; 7. Support rod; 8. Base; 9. Rotating belt; 10. Motor 1; 11. Cam; 12. Swing rod; 13. Fixed rod; 14. Fixed frame; 15. Support frame; 16. Filtering magnetic barrel; 17. Belt pulley; 18. Driving rod; 19. Support box; 20. Motor 2; 21. Filtering plate; 22. Fixed shell; 23. Stopper; 24. Spring; 25. Baffle plate. Specific implementation manners

[0031] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0032] Refer to Figure 1-3, An embodiment provided by the present utility model: A new type of sponge titanium screening device, including a screening shell 1, multiple screening plates 2 are fixedly connected inside the screening shell 1, a receiving component is arranged at the lower end of the screening shell 1, two fixing blocks 5 are fixedly connected to the lower end of the screening shell 1, a rotating rod 6 is fixedly connected to the opposite sides of the two fixing blocks 5, two support rods 7 are rotatably connected to the outer periphery of the rotating rod 6, the bottoms of the two support rods 7 are fixedly connected with a base 8, a rotating belt 9 is rotatably connected to the top of the base 8, a motor one 10 is fixedly connected to the top of the base 8, the output end of the motor one 10 is fixedly connected to the right end of the rotating belt 9, and a cam 11 is rotatably connected to the inner side of the other end of the rotating belt 9. Both ends of the cam 11 are respectively rotatably connected with a swinging rod 12, the opposite sides of the other swinging rod 12 are rotatably connected with a fixing rod 13, both ends of the fixing rod 13 are fixedly connected with fixing frames 14, and the tops of the two fixing frames 14 are fixedly connected to the lower end of the screening shell 1. A filtering component is arranged on the right side of the screening shell 1.

[0033] Specifically, the screening shell 1 is used to put the sponge titanium to be screened into it. Multiple screening plates 2 are fixed inside the screening shell 1. The through holes opened by different screening plates 2 are of different sizes. Generally, the through holes of the uppermost screening plate 2 are the largest, and they become smaller as going down, so that sponge titanium of different sizes can be screened. The receiving component is used to receive the screened sponge titanium. The fixing blocks 5 are fixed at the bottom of the screening shell 1. The rotating rod 6 is fixed on the opposite sides of the fixing blocks 5. Two support rods 7 are rotatably connected to the outer periphery of the rotating rod 6, which is used to make the screening shell 1 swing with the rotating rod 6 as the center. The bottom of the support rod 7 is fixed with a base 8, which is used for the device to support on the ground. The motor one 10 is fixed above the base 8. The output end of the motor one 10 is fixed to one end of the rotating belt 9. The cam 11 is rotatably connected to the inner part of the other end of the rotating belt 9, which is used to start the motor one 10 to drive the cam 11 to rotate. Both ends of the cam 11 rotate the swinging rod 12. The swinging rod 12 is rotatably connected to the fixing rod 13. The fixing rod 13 supports the screening shell 1 through the fixing frame 14, which is used to drive the screening shell 1 to swing when the cam 11 rotates, so that the screening plates 2 inside the screening shell 1 can better screen the sponge titanium.

[0034] Refer to Figure 4-5 , The filtering component includes a support frame 15, the support frame 15 is fixedly connected to the top end of the base 8, a filtering magnetic barrel 16 is rotatably connected to the middle of the support frame 15, a belt pulley 17 is rotatably connected to the middle of the filtering magnetic barrel 16, a driving rod 18 is rotatably connected to the inner part of the other end of the belt pulley 17, a support box 19 is fixedly connected to the right side of the support frame 15, a motor two 20 is fixedly connected to the inside of the support box 19, the output end of the motor two 20 is fixedly connected to the bottom of the driving rod 18, a filter plate 21 is fixedly connected to the inner bottom of the filtering magnetic barrel 16, the material of the filtering magnetic barrel 16 is a magnet, and the driving rod 18 is rotatably connected to the inside of the support box 19.

[0035] Specifically, the support frame 15 is used for ground support. Inside the support frame 15, the filtering magnetic barrel 16 rotates. The filtering magnetic barrel 16 has automatic magnetism and is used to adsorb iron impurities generated during the production of titanium sponge when rotating. Thus, the filtered titanium sponge is sent into the screening shell 1 through the filter plate 21. The filtering magnetic barrel 16 is connected to the driving rod 18 through a belt pulley 17, so that when the driving rod 18 rotates, it drives the filtering magnetic barrel 16 to rotate. At the bottom of the driving rod 18, there is a second motor 20 for rotating the driving rod 18. The support box 19 is fixed on the right side of the support frame 15 for fixing the second motor 20 and rotating the driving rod 18.

[0036] Reference Figure 1 and 6 , the above-mentioned storage assembly includes a storage box 3. The storage box 3 is slidably connected to the bottom of the screening shell 1. Two sliding rods 4 are fixedly connected to the top of the storage box 3. A fixed shell 22 is fixedly connected to the front end of the screening shell 1. A stopper 23 is slidably connected inside the fixed shell 22. Two springs 24 are fixedly connected to the top of the stopper 23. Both of the two springs 24 are fixedly connected inside the fixed shell 22. Two chutes are provided inside the screening shell 1. The two sliding rods 4 are respectively slidably connected to the chutes inside the screening shell 1. Two baffles 25 are fixedly connected inside the storage box 3. The baffles 25 are slidably connected to the bottoms of two of the screening plates 2.

[0037] Specifically, the baffles 25 are fixed inside the storage box 3 for storing titanium sponge of different sizes. Two sliding rods 4 are fixedly connected to the top of the storage box 3. The sliding rods 4 are slidably connected to the chutes inside the storage box 3 for slidably connecting the storage box 3 to the bottom of the screening shell 1. The fixed shell 22 is fixed in front of the screening shell 1. The spring 24 enables the stopper 23 to slide inside the fixed shell 22 for fixing the storage box 3 so that it will not separate from the bottom of the screening shell 1 when the screening shell 1 is screening.

[0038] Working principle: First, put titanium sponge into the filtering magnetic barrel 16, start the second motor 20 to drive the driving rod 18. The driving rod 18 rotates to make the filtering magnetic barrel 16 rotate through the belt pulley 17. The filtering magnetic barrel 16 has magnetism. When rotating, it can adsorb the iron impurities generated in the production of titanium sponge on the inner wall of the filtering magnetic barrel 16. The remaining titanium sponge is sent into the screening shell 1 through the filter plate 21. Since there are multiple screening plates 2 with different through-hole sizes inside the screening shell 1, start the first motor 10 to drive the rotating belt 9 to move. The rotating belt 9 drives the cam 11 to rotate. The rotation of the cam 11 will cause the entire screening shell 1 to swing through the swing rod 12. Because there are a fixed block 5 and a rotating rod 6 on the right side below the screening shell 1, when the screening shell 1 swings, it will swing around the rotating rod 6 as the center, making the screening plate 2 perform better screening. The largest-sized titanium sponge will remain on the top of the uppermost screening plate 2. Each screening plate 2 can screen titanium sponge of different sizes. Then, through the swing of the screening shell 1, the screened titanium sponge is respectively sent into the receiving assembly at the bottom of the screening shell 1, and the screening can be completed.

[0039] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. A new type of titanium sponge screening device, including a screening shell (1), characterized in that: Inside the screening shell (1), there are multiple screening plates (2) fixedly connected. At the lower end of the screening shell (1), there is a storage component. At the lower end of the screening shell (1), two fixing blocks (5) are fixedly connected. On the opposite sides of the two fixing blocks (5), a rotating rod (6) is fixedly connected. On the outer periphery of the rotating rod (6), two support rods (7) are rotatably connected. At the bottoms of the two support rods (7), a base (8) is fixedly connected. On the top of the base (8), a rotating belt (9) is rotatably connected. On the top of the base (8), a first motor (10) is fixedly connected. The output end of the first motor (10) is fixedly connected to the right end of the rotating belt (9). Inside the other end of the rotating belt (9), a cam (11) is rotatably connected. At both ends of the cam (11), swing rods (12) are respectively rotatably connected. On the opposite sides of the other end of the swing rods (12), a fixed rod (13) is rotatably connected. At both ends of the fixed rod (13), fixing frames (14) are fixedly connected. The tops of the two fixing frames (14) are fixedly connected to the lower end of the screening shell (1). On the right side of the screening shell (1), there is a filtering component.

2. The novel titanium sponge screening device according to claim 1, wherein: The filtering component includes a support frame (15). The support frame (15) is fixedly connected to the top end of the base (8). In the middle of the support frame (15), a filtering magnetic barrel (16) is rotatably connected. In the middle of the filtering magnetic barrel (16), a pulley (17) is rotatably connected. Inside the other end of the pulley (17), a driving rod (18) is rotatably connected.

3. A novel titanium sponge screening device according to claim 2, characterized in that: On the right side of the support frame (15), a support box (19) is fixedly connected. Inside the support box (19), a second motor (20) is fixedly connected. The output end of the second motor (20) is fixedly connected to the bottom of the driving rod (18).

4. A novel titanium sponge screening device according to claim 1, characterized in that: The storage component includes a storage box (3). The storage box (3) is slidably connected to the bottom of the screening shell (1). On the top of the storage box (3), two sliding rods (4) are fixedly connected. At the front end of the screening shell (1), a fixed shell (22) is fixedly connected. Inside the fixed shell (22), a blocking block (23) is slidably connected. On the top of the blocking block (23), two springs (24) are fixedly connected. Both of the two springs (24) are fixedly connected inside the fixed shell (22).

5. A novel titanium sponge screening device according to claim 2, characterized in that: At the inner bottom of the filtering magnetic barrel (16), a filtering plate (21) is fixedly connected. The filtering magnetic barrel (16) is made of magnet.

6. The novel titanium sponge screening device according to claim 3, wherein: The driving rod (18) is rotatably connected inside the support box (19).

7. A novel titanium sponge screening device according to claim 4, characterized in that: Inside the screening shell (1), two sliding grooves are formed. The two sliding rods (4) are respectively slidably connected in the sliding grooves of the screening shell (1).

8. A novel titanium sponge screening device according to claim 4, characterized in that: Inside the storage box (3), two baffle plates (25) are fixedly connected. The baffle plates (25) are slidably connected to the bottoms of two of the screening plates (2).