Rare earth oxide transfer device
By setting up a power structure driving roller and thrust ball bearing support in the rare earth oxide transport device, the problem of low efficiency of the rare earth oxide mixing and transporting process is solved, and the full mixing and efficient transport of rare earth oxides are achieved.
Patent Information
- Application Number
- CN202421878343.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-05
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2034-08-05
AI Technical Summary
There are many rare earth oxide mixed transport processes and low efficiency, which cannot meet the existing production needs.
A rare earth oxide transport device is designed. By setting a power structure driving roller on the vehicle body, the rare earth oxides in the tank body are fully mixed during the transport process, reducing the number of lifting times, using a thrust ball bearing to support the rotation of the tank body, and adjust the steering wheel in combination with the adjustment arm to improve handling performance.
It realizes the full mixing of rare earth oxides during the transport process, reduces the number of lifting times, improves work efficiency, and improves handling performance.
Smart Images

Figure CN223161798U_ABST
Abstract
Description
Technical Field:
[0002] This application relates to the field of transportation technology, and particularly to a rare earth oxide transfer device. Background Art:
[0004] Rare earth element oxides refer to the oxides of 15 lanthanide elements with atomic numbers from 57 to 71 in the periodic table of elements, as well as the oxides of 17 elements including scandium (Sc) and yttrium (Y) that have chemical properties similar to those of lanthanide elements. Rare earth elements have been widely used in fields such as petroleum, chemical industry, metallurgy, textile, ceramics, glass, and permanent magnet materials. With the progress of technology and continuous breakthroughs in application technologies, the value of rare earth oxides will become increasingly greater.
[0005] Chinese National Utility Model Patent with Application No.: 202221469088.8 - An adjustable transfer box for recycling rare earth oxide waste, comprising a box body. A motor is fixedly connected to the middle of the rear end of the box body. A threaded rod is fixedly connected to the driving end in front of the motor. A pushing block is threadedly connected to the outer surface of the threaded rod. The pushing block is slidably connected to the inner wall of the first chute. A rotating column is rotatably connected to the left side of the front end of the upper box body. A through - groove is provided inside the rotating column. Vertical rods are slidably connected to the upper and lower ends of the through - groove. A rotating handle is slidably connected to the rear end of the through - groove. The front end of the rotating handle is fixedly connected to the middle of the vertical rod. A limiting column is fixedly connected to the left side of the front end of the upper box body. The rotating column penetrates through the upper part of the front end of the box body. A cover door is fixedly connected to the middle of the rotating column. The outer surface of the bottom of the cover door is in contact with the inner wall of the bottom of the front end of the box body.
[0006] The above - mentioned transfer box is used for recycling and transporting rare earth oxide waste. However, previously, oxides of multiple elements needed to be mixed together and then transported to the side of the electrolytic cell for feeding. The mixing device loads oxides of multiple elements into a hopper - shaped tank body and uses a gantry crane to lift it to a professional mixer for stirring and mixing. After mixing, it is then lifted by a gantry crane onto a transport vehicle and transported to the side of the electrolytic cell. The mixing and transfer process of rare earth oxides has many steps and low efficiency, unable to meet the needs of current production. Utility Model Content:
[0008] To solve the above - mentioned technical problems, the present utility model provides a rare earth oxide transfer device, and the technical problem to be solved is that the mixing and transfer process of rare earth oxides has many steps and low efficiency, unable to meet the needs of current production. The technical solution adopted by the present utility model to solve the above - mentioned technical problems is:
[0009] The rare earth oxide transfer device includes:
[0010] A vehicle body;
[0011] The first support base is arranged on the upper end surface of the front part of the vehicle body in a fixed structure manner, and an inclined surface that slopes inward is arranged on the upper end surface of the first support base;
[0012] The bracket is connected to the inclined surface in a fixed structure manner;
[0013] The mounting brackets are symmetrically arranged on both sides of the bracket;
[0014] The two rollers are respectively connected to the mounting brackets in a rotational structure manner;
[0015] The power structure is connected to the mounting bracket to drive the roller to rotate;
[0016] The second support base is arranged on the upper end surface of the rear part of the vehicle body in a fixed structure manner, and a support groove is provided on the upper end surface of the second support base.
[0017] Further, the vehicle body includes a frame. Two straight bicycle wheels are arranged on the front part of the frame in a rotational structure manner;
[0018] A cross beam is arranged on the rear part of the frame in a fixed structure manner. U-shaped connectors are respectively arranged at both ends of the cross beam in a hinged structure manner. Fixed shafts are arranged on the outer sides of the U-shaped connectors in a fixed structure manner. Steering wheels are arranged at the ends of the fixed shafts far from the U-shaped connectors in a rotational structure manner;
[0019] On the other side of the U-shaped connector, a connecting rod is arranged in a hinged structure manner. The other end of the connecting rod is arranged with a connecting plate in a hinged structure manner. The middle part of the connecting plate is connected to the cross beam in a hinged structure manner. The connecting plate extends to the outside of the frame and is arranged with an adjusting arm in a hinged structure manner.
[0020] Further, a column is arranged on the upper end surface of the cross beam. The upper and lower end surfaces of the column are respectively connected to the frame and the cross beam in a fixed structure manner.
[0021] Further, the power structure includes a reduction motor arranged on one side of the bracket in a fixed structure manner. A rotating shaft A is arranged on the output shaft of the reduction motor in a fixed structure manner;
[0022] The bracket is hinged to the mounting bracket through the rotating shaft A. A driving gear is arranged on the other end of the rotating shaft A in a fixed structure manner. A steering gear is arranged through meshing with the driving gear. The steering gear is connected to the mounting bracket in a rotational structure manner;
[0023] A rotating shaft B is arranged on the mounting bracket in a rotational structure manner. The rotating shaft B is sleeved inside the roller in a fixed structure manner. A driven gear is arranged on one end of the rotating shaft B in a fixed structure manner. The driven gear is connected to the steering gear in a gear meshing structure manner.
[0024] Further, the bracket includes a first inclined surface and a second inclined surface. The first inclined surface and the second inclined surface are arranged in a check mark structure, and the second inclined surface is arranged perpendicular to the roller.
[0025] Further, a thrust ball bearing is arranged on the second inclined surface in a fixed structure manner, and a chassis is arranged on the upper end surface of the thrust ball bearing.
[0026] The beneficial effects of the present utility model are as follows: A power structure is arranged on the vehicle body, and the roller drives the tank body to rotate, so that the rare earth oxides in the tank body are fully mixed while being transported, reducing the number of hoisting times and improving work efficiency; and it can meet the rotation needs of tank bodies with different diameters.
[0027] The second support seat is connected to the chassis through a thrust ball bearing to support the tank body, facilitating the rotation of the tank body.
[0028] The steering wheel can be adjusted through the adjusting arm to perform a steering operation, so that the vehicle can be more easily and accurately controlled, improving the control performance and having a simple structure. Description of the drawings:
[0030] Figure 1 It is a schematic structural diagram of an embodiment of the present utility model.
[0031] Figure 2 It is a schematic structural diagram of the steering wheel steering structure of the present utility model.
[0032] Figure 3 It is a three-dimensional schematic diagram of the power structure, mounting frame and roller mounting of the present utility model.
[0033] Figure 4 It is a schematic structural diagram at the second support seat of the present utility model.
[0034] In the figure:
[0035] 1. Vehicle body, 2. First support seat, 3. Bracket, 4. Mounting frame, 5. Roller, 6. Second support seat, 7. Bracket, 71. First inclined surface, 72. Second inclined surface, 8. Straight running wheel, 9. Cross beam, 10. U-shaped connecting piece, 11. Fixed shaft, 12. Steering wheel, 13. Connecting rod, 14. Connecting plate, 15. Adjusting arm, 16. Column, 17. Reducing motor, 18. Rotating shaft A, 19. Driving gear, 20. Steering gear, 21. Rotating shaft B, 22. Driven gear, 23. Thrust ball bearing, 24. Chassis. Specific embodiments:
[0037] To make the purpose, technical solutions and advantages of the implementation of the present utility model clearer, the present utility model will now be further described in detail with reference to the drawings and the following embodiments, so that the public can better master the implementation method of the present utility model. The specific implementation scheme of the present utility model is as follows:
[0038] The rare earth oxide transfer device comprises a vehicle body 1, with a first support base 2 and a second support base 6 fixedly mounted on the upper end surface of the vehicle body 1. The first support base 2 is located at the front of the vehicle body 1 and has an inwardly inclined surface on its upper end surface. A bracket 3 is fixedly mounted on the inclined surface. Mounting frames 4 are symmetrically mounted on either side of the bracket 3. The mounting frames 4 are provided with two parallel rollers 5 in a rotating structure. The mounting frames 4 are also equipped with a power structure to drive the rollers 5. The second support base 6 is located at the upper end surface of the rear of the vehicle body 1 and has a bracket 7 on its upper end surface. The power structure installed on the vehicle body drives the tank body to rotate via the rollers, thereby ensuring that the rare earth oxides in the tank body are fully mixed during transfer, reducing the number of lifting operations and improving work efficiency.
[0039] Specifically, the vehicle body 1 includes a frame, with two straight-moving wheels 8 provided at the front of the frame in a rotating structure, a crossbeam 9 provided at the rear of the frame in a fixed structure, U-shaped connectors 10 provided at both ends of the crossbeam 9 in an articulated structure, a fixed shaft 11 provided on the outside of the U-shaped connector 10 in a fixed structure, a steering wheel 12 provided at one end of the fixed shaft 11 away from the U-shaped connector 10 in a rotating structure, a connecting rod 13 provided on the other side of the U-shaped connector 10 in an articulated structure, a connecting plate 14 provided at the other end of the connecting rod 13 in an articulated structure, the middle portion of the connecting plate 14 being connected to the crossbeam 9 in an articulated structure, the connecting plate 14 extending to the outside of the frame and provided with an adjustment arm 15 in an articulated structure. The steering wheel 12 can be adjusted by the adjustment arm 15 for steering operation, thereby making it easier and more accurate to control the vehicle, improving the control performance, and simplifying the structure.
[0040] It should be noted that a column 16 is provided on the upper end surface of the cross beam 9 , and the upper and lower end surfaces of the column 16 are respectively connected to the frame and the cross beam 9 in a fixed structure, so that the wheels are hidden in the vehicle body 1 .
[0041] It should be elaborated that the power structure includes a reduction motor 17 arranged on one side of the bracket 3 in a fixed structure manner. A rotating shaft A18 is arranged on the output shaft of the reduction motor 17 in a fixed structure manner. The bracket 3 is hinged to the mounting frame 4 through the rotating shaft A18. And the other end of the rotating shaft A18 is provided with a driving gear 19 in a fixed structure manner. The driving gear 19 is provided with a steering gear 20 in a meshing manner. The steering gear 20 is connected to the mounting frame 4 in a rotating structure manner; The mounting frame 4 is provided with a rotating shaft B21 in a rotating structure manner. The rotating shaft B21 is sleeved inside the roller 5 in a fixed structure manner. And one end of the rotating shaft B21 is provided with a driven gear 22 in a fixed structure manner. The driven gear 22 is connected to the steering gear 20 in a gear meshing structure manner. The reduction motor 17 drives the two rollers 5 of the same mounting frame 4 to rotate through the driving gear 19, the steering gear 20 and the driven gear 22. While improving the power, the use of the reduction motor 17 is reduced.
[0042] Specifically, the bracket 7 includes a first inclined surface 71 and a second inclined surface 72. The first inclined surface 71 and the second inclined surface 72 are arranged in a check mark structure, which is convenient for supporting the bottom of the tank body. And the second inclined surface 72 is arranged perpendicular to the roller 5, so that the tank body is inclined, which is convenient for stirring the rare earth oxide inside and improving the mixing uniformity.
[0043] Furthermore, a thrust ball bearing 23 is arranged on the second inclined surface 72 in a fixed structure manner. A chassis 24 is arranged on the upper end surface of the thrust ball bearing 23 to support the tank body and facilitate the rotation of the tank body.
[0044] The working principle and process of the present utility model are as follows:
[0045] Load the rare earth oxide into the tank body, and use a gantry crane to lift the tank body onto the vehicle body 1 (as Figure 1 shown). Start the reduction motor 17. The output shaft of the reduction motor 17 drives the rotating shaft A18 to rotate. The rotating shaft A18 drives the driving gear 19 to rotate. The driving gear 19 drives the driven gear 22 to rotate through the steering gear 20. The driven gear 22 drives the rotating shaft B21 to rotate, and then drives the roller 5 to rotate. The roller 5 drives the tank body to rotate. At this time, the chassis 2 follows the tank body to rotate on the thrust ball bearing 23. At the same time, the vehicle body 1 moves. When steering is required, pull the adjusting arm 15 to one side. The adjusting arm 15 pulls the connecting plate 14 to rotate around the hinge point with the cross beam 9, and then drives the U-shaped connecting piece 10 to rotate through the connecting rod 13, and then drives the turning wheels 12 on both sides to rotate in the same direction through the fixed shaft 11 to achieve the purpose of steering.
[0046] In the description of the present utility model, it should be understood that the orientation or positional relationship indicated by terms such as "center", "upper", "lower", "left", "right", "front", "rear", "lower left", "upper right", "outer", "clockwise", "counterclockwise", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus cannot be construed as limiting the protection scope of the present utility model. In addition, the terms "first", "second", "third" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance. Although the present utility model is described based on a limited number of embodiments, those skilled in the art in this technical field should understand that other embodiments can be conceived within the scope of the present utility model thus described, benefiting from the above description.
Claims
1. Rare earth oxide transfer device, characterized in that, Comprising: Vehicle body (1); The first support base (2), the first support base (2) is arranged on the upper end surface of the front part of the vehicle body (1) in a fixed structure manner, and the upper end surface of the first support base (2) is provided with an inclined surface that inclines inward; Bracket (3), the bracket (3) is connected to the inclined surface in a fixed structure manner; Mounting frame (4), two mounting frames (4) are symmetrically arranged on both sides of the bracket (3); Rollers (5), two rollers (5) are respectively connected to the mounting frame (4) in a rotating structure manner; Power structure, the power structure is connected to the mounting frame (4) to drive the rollers (5) to rotate; The second support base (6), the second support base (6) is arranged on the upper end surface of the rear part of the vehicle body (1) in a fixed structure manner, and a trough (7) is provided on the upper end surface of the second support base (6).
2. The rare earth oxide transfer device according to claim 1, wherein: The vehicle body (1) includes a frame, and two straight bicycle wheels (8) are arranged on the front part of the frame in a rotating structure manner; A cross beam (9) is arranged on the rear part of the frame in a fixed structure manner, U-shaped connectors (10) are respectively arranged at both ends of the cross beam (9) in a hinged structure manner, a fixed shaft (11) is arranged on the outer side of the U-shaped connector (10) in a fixed structure manner, and a steering wheel (12) is arranged at one end of the fixed shaft (11) away from the U-shaped connector (10) in a rotating structure manner; On the other side of the U-shaped connector (10), a connecting rod (13) is arranged in a hinged structure manner, a connecting plate (14) is arranged at the other end of the connecting rod (13) in a hinged structure manner, the middle part of the connecting plate (14) is connected to the cross beam (9) in a hinged structure manner, and the connecting plate (14) extends outward from the frame and a regulating arm (15) is arranged in a hinged structure manner.
3. The rare earth oxide transfer device according to claim 2, wherein: A column (16) is arranged on the upper end surface of the cross beam (9), and the upper and lower end surfaces of the column (16) are respectively connected to the frame and the cross beam (9) in a fixed structure manner.
4. The rare earth oxide transfer device according to claim 1, characterized in that: The power structure includes a reduction motor (17) arranged on one side of the bracket (3) in a fixed structure manner, and a rotating shaft A (18) is arranged on the output shaft of the reduction motor (17) in a fixed structure manner; The bracket (3) is hingedly connected to the mounting frame (4) through the rotating shaft A (18), and a driving gear (19) is arranged at the other end of the rotating shaft A (18) in a fixed structure manner, a steering gear (20) is arranged through meshing with the driving gear (19), and the steering gear (20) is connected to the mounting frame (4) in a rotating structure manner; The mounting frame (4) is provided with a rotating shaft B (21) in a rotating structure manner, the rotating shaft B (21) is sleeved inside the roller (5) in a fixed structure manner, and a driven gear (22) is arranged at one end of the rotating shaft B (21) in a fixed structure manner, and the driven gear (22) is connected to the steering gear (20) in a gear meshing structure manner.
5. The rare earth oxide transfer device according to claim 1, wherein: The trough (7) includes a first inclined surface (71) and a second inclined surface (72), the first inclined surface (71) and the second inclined surface (72) are arranged in a check mark structure, and the second inclined surface (72) is arranged perpendicular to the roller (5).
6. The rare earth oxide transfer device according to claim 1, wherein: A thrust ball bearing (23) is arranged on the second inclined surface (72) in a fixed structure manner, and a chassis (24) is arranged on the upper end surface of the thrust ball bearing (23).
Citation Information
Patent Citations
Adjustable transfer box for rare earth oxide waste recovery
CN218201064U