Crucible production transfer device

By adjusting the position of the crucible using lifting and traversing motors, combined with clamping and sealing mechanisms, the problem of the crucible becoming loose due to uneven road surfaces during transport is solved, thus improving safety.

CN223791525UActive Publication Date: 2026-01-13MEISHAN GUOXING CARBON MATERIAL CO LTD
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Patent Information

Application Number
CN202520604365.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-01
Publication Date
2026-01-13
Estimated Expiration
2035-04-01

AI Technical Summary

Technical Problem

During the transfer of the crucible, uneven road surfaces can cause the crucible to loosen, posing a safety risk.

Method used

The height of the horizontal plate is adjusted by a lifting motor and a vertical screw, and the horizontal position of the crucible is adjusted by a horizontal movement motor and a horizontal screw. The crucible is stably clamped and sealed by a clamping mechanism and a sealing mechanism.

Benefits of technology

It achieves stable clamping and sealing of crucibles at different heights and positions, improving safety during transport.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a crucible production transfer device, relates to the technical field of crucible production, and solves the problems that in the crucible transfer process, due to uneven road surfaces and other reasons, a crucible is bumpy and is prone to loosening, and the safety is not high, the crucible production transfer device comprises a base, and a vertical plate is fixedly installed at the top of the base. A transverse plate is slidably connected to one side of the vertical plate, a mounting plate is slidably connected to the bottom of the transverse plate, a vertical sliding groove is formed in one side of the vertical plate, a lifting motor is fixedly mounted on the inner wall of the bottom of the vertical sliding groove, and a vertical screw is fixedly mounted on an output shaft of the lifting motor. Crucibles of different heights can be clamped and positioned, meanwhile, the transverse moving motor and the transverse screw rod are arranged, the transverse position of the crucible can be adjusted through the transverse moving block and the mounting plate, and therefore the crucible can be conveniently moved into the device through the clamping mechanism, and the crucible is sealed through the sealing mechanism.
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Description

Technical Field

[0001] This utility model relates to the field of crucible production, and in particular to a crucible production transfer device. Background Technology

[0002] A crucible is a vessel or melting tube made of highly refractory materials (such as clay, graphite, porcelain clay, or iron, which is difficult to melt). Generally, after production is completed, it needs to be transferred by a transfer device.

[0003] In existing technologies, during the transfer of crucibles, uneven road surfaces and other factors can cause the crucibles to be subjected to bumps and jolting, which can easily lead to loosening and compromise safety. Therefore, a crucible production transfer device is proposed. Utility Model Content

[0004] To address the issue of crucibles becoming loose and posing a safety risk during transport due to uneven road surfaces, this invention provides a crucible production and transport device.

[0005] This utility model provides a crucible production and transfer device, which adopts the following technical solution:

[0006] A crucible production and transfer device includes a base. A vertical plate is fixedly installed on the top of the base. A horizontal plate is slidably connected to one side of the vertical plate. A mounting plate is slidably connected to the bottom of the horizontal plate. A vertical groove is formed on one side of the vertical plate. A lifting motor is fixedly installed on the inner wall of the bottom of the vertical groove. A vertical screw is fixedly installed on the output shaft of the lifting motor. A lifting block is threadedly connected to the vertical screw. The lifting block is fixedly connected to the horizontal plate. A transverse groove is formed at the bottom of the horizontal plate. A transverse motor is fixedly installed on the inner wall of one side of the transverse groove. A transverse screw is fixedly installed on the output shaft of the transverse motor. A transverse block is threadedly connected to the transverse screw. The transverse block is fixedly connected to the mounting plate. A clamping mechanism and a closing mechanism are provided on the mounting plate. The closing mechanism cooperates with the horizontal plate. Four symmetrically arranged rollers are rotatably connected to the bottom of the base.

[0007] By adopting the above technical solution, the height of the horizontal plate can be adjusted by the lifting motor and the vertical screw, thereby enabling the clamping and positioning of crucibles of different heights. At the same time, the setting of the transverse motor and the horizontal screw allows the transverse position of the crucible to be adjusted by the transverse block and the mounting plate, thus facilitating the movement of the crucible into the device by the clamping mechanism and the sealing mechanism to seal the crucible.

[0008] Optionally, the clamping mechanism includes two positioning plates, which are slidably mounted on one side of the mounting plate. An arc-shaped clamping rod is fixedly mounted on one side of the positioning plate, and the two arc-shaped clamping rods cooperate with each other. Two symmetrically arranged moving slots are opened on one side of the mounting plate, and the same bidirectional screw is rotatably connected to the inner wall of the two moving slots. A clamping motor is fixedly mounted on one side of the mounting plate, and the output shaft of the clamping motor is fixedly connected to the bidirectional screw. A slider is slidably connected to the inner wall of the moving slot, and the slider is fixedly connected to the corresponding positioning plate. The two sliders are threadedly connected to the bidirectional screw.

[0009] By adopting the above technical solution, the output shaft of the clamping motor drives the bidirectional screw to rotate. The rotating bidirectional screw, through its threaded connection with the two sliders, drives the two arc-shaped clamping rods to move closer to each other, thereby clamping and fixing the crucible.

[0010] Optionally, a buffer groove is provided on one side of the positioning plate, and a movable block is slidably connected to the inner wall of the buffer groove. An arc-shaped stop bar is fixedly installed on one side of the movable block. The two arc-shaped stop bars cooperate with each other, and a top spring is fixedly installed on the side of the two movable blocks that are far apart from each other. One end of the top spring is fixedly connected to the inner wall of the buffer groove.

[0011] By adopting the above technical solution, the top spring and the moving block are set and act on the arc-shaped stop bar, so that the moving positioning plate can drive the arc-shaped stop bar to support and position the crucible at a higher position, thereby keeping the crucible in a horizontal state and moving stably.

[0012] Optionally, the closing mechanism includes a cover plate, which is slidably installed on one side of the mounting plate. The cover plate cooperates with two arc-shaped stops. A movable groove is provided on one side of the mounting plate. A connecting block is slidably connected to the inner wall of the movable groove. The connecting block is fixedly connected to the cover plate. A return spring is fixedly installed at the bottom of the connecting block. The bottom end of the return spring is fixedly connected to the bottom inner wall of the movable groove.

[0013] By adopting the above technical solution, the cover plate is fixedly connected to the connecting block, and the connecting block is slidably connected to the movable groove, thereby covering the crucible.

[0014] Optionally, a top rod is slidably connected to the horizontal plate, a pressure plate is fixedly installed at the bottom end of the top rod, a wedge block is fixedly installed at the top of the cover plate, the wedge block and the pressure plate cooperate with each other, and an opening is opened at the top of the mounting plate, the opening cooperates with the pressure plate, a support spring is fixedly installed at the top of the pressure plate, the top end of the support spring is fixedly connected to the horizontal plate, and the elastic force of the support spring is greater than the elastic force of the return spring.

[0015] By adopting the above technical solution, the movable cover plate cooperates with the wedge block and the pressure plate, and the elastic force of the support spring is greater than that of the return spring, so that the pressure plate can press the cover plate downward to cover the crucible. At the same time, the support spring has a buffering effect on crucibles of different sizes.

[0016] In summary, this utility model has the following beneficial effects:

[0017] This invention allows for the adjustment of the height of the horizontal plate via a lifting motor and a vertical screw, enabling the clamping and positioning of crucibles of different heights. Simultaneously, the horizontal movement motor and horizontal screw allow for the adjustment of the lateral position of the crucible via a horizontal movement block and a mounting plate, facilitating the movement of the crucible into the device via a clamping mechanism and the sealing mechanism for sealing the crucible. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the main cross-sectional structure of this utility model.

[0019] Figure 2 This is a schematic diagram of the connection structure between the positioning plate and the mounting plate of this utility model.

[0020] Figure 3 This is a bottom view of the clamping mechanism of this utility model.

[0021] Explanation of reference numerals in the attached figures:

[0022] 1. Base; 2. Vertical plate; 3. Horizontal plate; 4. Vertical slide rail; 5. Lifting motor; 6. Vertical screw; 7. Lifting block; 8. Horizontal movement motor; 9. Horizontal screw; 10. Horizontal slide rail; 11. Horizontal movement block; 12. Mounting plate; 13. Positioning plate; 14. Arc-shaped clamping rod; 15. Arc-shaped stop bar; 16. Buffer groove; 17. Moving block; 18. Top spring; 19. Moving groove; 20. Slider; 21. Bidirectional screw; 22. Clamping motor; 23. Cover plate; 24. Movable groove; 25. Connecting block; 26. Return spring; 27. Wedge block; 28. Top rod; 29. ​​Pressure plate; 30. Support spring; 31. Opening; 32. Rotary wheel. Detailed Implementation

[0023] The following is in conjunction with the appendix Figure 1-3 This application will be described in further detail.

[0024] Please refer to Figure 1-3A crucible production and transfer device includes a base 1, a vertical plate 2 fixedly installed on the top of the base 1, a horizontal plate 3 slidably connected to one side of the vertical plate 2, an mounting plate 12 slidably connected to the bottom of the horizontal plate 3, a vertical groove 4 formed on one side of the vertical plate 2, a lifting motor 5 fixedly installed on the bottom inner wall of the vertical groove 4, a vertical screw 6 fixedly installed on the output shaft of the lifting motor 5, a lifting block 7 threadedly connected to the vertical screw 6, the lifting block 7 being fixedly connected to the horizontal plate 3, and a transverse groove formed at the bottom of the horizontal plate 3. 10. A transverse motor 8 is fixedly installed on one inner wall of the transverse slide 10. A transverse screw 9 is fixedly installed on the output shaft of the transverse motor 8. A transverse block 11 is threadedly connected to the transverse screw 9. The transverse block 11 is fixedly connected to the mounting plate 12. The height of the transverse plate 3 can be adjusted by the lifting motor 5 and the vertical screw 6, so that crucibles of different heights can be clamped and positioned. At the same time, the transverse motor 8 and the transverse screw 9 can adjust the transverse position of the crucible by the transverse block 11 and the mounting plate 12.

[0025] Reference Figure 1-3 The mounting plate 12 is equipped with a clamping mechanism, which includes two positioning plates 13. The two positioning plates 13 are slidably mounted on one side of the mounting plate 12. An arc-shaped clamping rod 14 is fixedly mounted on one side of the positioning plate 13. The two arc-shaped clamping rods 14 cooperate with each other. Two symmetrically arranged moving slots 19 are opened on one side of the mounting plate 12. The same bidirectional screw 21 is rotatably connected to the inner wall of the two moving slots 19. A clamping motor 22 is fixedly mounted on one side of the mounting plate 12. The output shaft of the clamping motor 22 is fixedly connected to the bidirectional screw 21. A slider 20 is slidably connected to the inner wall of the moving slot 19. The slider 20 is fixedly connected to the corresponding positioning plate 13, and the two sliders 20 are threadedly connected to the bidirectional screw 21. The output shaft of the clamping motor 22 drives the bidirectional screw 21 to rotate. The rotating bidirectional screw 21 drives the two arc-shaped clamping rods 14 to move closer to each other through the threaded connection with the two sliders 20, thereby clamping and fixing the crucible.

[0026] Reference Figure 1-3 A buffer groove 16 is provided on one side of the positioning plate 13. A moving block 17 is slidably connected to the inner wall of the buffer groove 16. An arc-shaped stop bar 15 is fixedly installed on one side of the moving block 17. The two arc-shaped stop bars 15 cooperate with each other. A top spring 18 is fixedly installed on the side of the two moving blocks 17 that are far apart from each other. One end of the top spring 18 is fixedly connected to the inner wall of the buffer groove 16. The top spring 18 and the moving block 17 are set and act on the arc-shaped stop bar 15, so that the moving positioning plate 13 can drive the arc-shaped stop bar 15 to support and position the crucible at a higher position, thereby keeping the crucible in a horizontal state and moving stably.

[0027] Reference Figure 1-3The mounting plate 12 is equipped with a closing mechanism that cooperates with the horizontal plate 3. The closing mechanism includes a cover plate 23, which is slidably installed on one side of the mounting plate 12. The cover plate 23 cooperates with two arc-shaped stop bars 15. A movable groove 24 is opened on one side of the mounting plate 12. A connecting block 25 is slidably connected to the inner wall of the movable groove 24. The connecting block 25 is fixedly connected to the cover plate 23. A return spring 26 is fixedly installed at the bottom of the connecting block 25. The bottom end of the return spring 26 is fixedly connected to the bottom inner wall of the movable groove 24. Four symmetrically arranged rotating wheels 32 are rotatably connected to the bottom of the base 1. The cover plate 23 can cover the crucible by being fixedly connected to the connecting block 25 and by the sliding connection between the connecting block 25 and the movable groove 24.

[0028] Reference Figure 1-3 A top rod 28 is slidably connected to the horizontal plate 3. A pressure plate 29 is fixedly installed at the bottom end of the top rod 28. A wedge block 27 is fixedly installed at the top of the cover plate 23. The wedge block 27 and the pressure plate 29 cooperate with each other. An opening 31 is opened at the top of the mounting plate 12. The opening 31 cooperates with the pressure plate 29. A support spring 30 is fixedly installed at the top of the pressure plate 29. The top end of the support spring 30 is fixedly connected to the horizontal plate 3. The elastic force of the support spring 30 is greater than the elastic force of the return spring 26. The moving cover plate 23 cooperates with the pressure plate 29 through the wedge block 27. The elastic force of the support spring 30 is greater than the elastic force of the return spring 26, so that the pressure plate 29 can press the cover plate 23 downward to cover the crucible. At the same time, the support spring 30 has a buffering effect on crucibles of different sizes.

[0029] The implementation principle of this utility model is as follows:

[0030] The height of the horizontal plate 3 can be adjusted by the lifting motor 5 and the vertical screw 6, thereby enabling the clamping and positioning of crucibles of different heights. At the same time, the horizontal movement motor 8 and the horizontal screw 9 can adjust the horizontal position of the crucible by the horizontal movement block 11 and the mounting plate 12.

[0031] Furthermore, the output shaft of the clamping motor 22 drives the bidirectional screw 21 to rotate. The rotating bidirectional screw 21, through its threaded connection with the two sliders 20, causes the two arc-shaped clamping rods 14 to move closer to each other, thereby clamping and fixing the crucible.

[0032] Meanwhile, the movable cover plate 23 cooperates with the pressure plate 29 through the wedge block 27, and the elastic force of the support spring 30 is greater than the elastic force of the return spring 26, so that the pressure plate 29 can press the cover plate 23 downward to cover the crucible. At the same time, the support spring 30 has a buffering effect on crucibles of different sizes.

[0033] The above are all preferred embodiments of this utility model, and are not intended to limit the scope of protection of this utility model. Therefore, all equivalent changes made to the structure, shape and principle of this utility model should be covered within the scope of protection of this utility model.

Claims

1. A crucible production transfer device, comprising a base (1), characterized in that, A vertical plate (2) is fixedly installed on the top of the base (1). A horizontal plate (3) is slidably connected to one side of the vertical plate (2). A mounting plate (12) is slidably connected to the bottom of the horizontal plate (3). A vertical groove (4) is provided on one side of the vertical plate (2). A lifting motor (5) is fixedly installed on the bottom inner wall of the vertical groove (4). A vertical screw (6) is fixedly installed on the output shaft of the lifting motor (5). A lifting block (7) is threaded onto the vertical screw (6). The lifting block (7) is fixedly connected to the horizontal plate (3). The horizontal plate (3) A transverse sliding groove (10) is provided at the bottom. A transverse motor (8) is fixedly installed on the inner wall of one side of the transverse sliding groove (10). A transverse screw (9) is fixedly installed on the output shaft of the transverse motor (8). A transverse block (11) is threadedly connected to the transverse screw (9). The transverse block (11) is fixedly connected to the mounting plate (12). A clamping mechanism is provided on the mounting plate (12). A closing mechanism is provided on the mounting plate (12). The closing mechanism cooperates with the transverse plate (3). Four symmetrically arranged rotating wheels (32) are rotatably connected to the bottom of the base (1).

2. The crucible production transfer device according to claim 1, characterized in that: The clamping mechanism includes two positioning plates (13), which are slidably mounted on one side of the mounting plate (12). An arc-shaped clamping rod (14) is fixedly mounted on one side of the positioning plate (13), and the two arc-shaped clamping rods (14) cooperate with each other.

3. The crucible production transfer device according to claim 1, characterized in that: Two symmetrically arranged movable slots (19) are provided on one side of the mounting plate (12). The same bidirectional screw (21) is rotatably connected to the inner wall of the two movable slots (19). A clamping motor (22) is fixedly installed on one side of the mounting plate (12). The output shaft of the clamping motor (22) is fixedly connected to the bidirectional screw (21). A slider (20) is slidably connected to the inner wall of the movable slot (19). The slider (20) is fixedly connected to the corresponding positioning plate (13), and the two sliders (20) are threadedly connected to the bidirectional screw (21).

4. The crucible production transfer device according to claim 2, characterized in that: A buffer groove (16) is provided on one side of the positioning plate (13). A movable block (17) is slidably connected to the inner wall of the buffer groove (16). An arc-shaped stop bar (15) is fixedly installed on one side of the movable block (17). The two arc-shaped stop bars (15) cooperate with each other. A top spring (18) is fixedly installed on the side of the two movable blocks (17) that are far apart from each other. One end of the top spring (18) is fixedly connected to the inner wall of the buffer groove (16).

5. The crucible production transfer device according to claim 1, characterized in that: The closing mechanism includes a cover plate (23), which is slidably installed on one side of the mounting plate (12). The cover plate (23) cooperates with two arc-shaped stops (15). A movable groove (24) is provided on one side of the mounting plate (12). A connecting block (25) is slidably connected to the inner wall of the movable groove (24). The connecting block (25) is fixedly connected to the cover plate (23). A return spring (26) is fixedly installed at the bottom of the connecting block (25). The bottom end of the return spring (26) is fixedly connected to the bottom inner wall of the movable groove (24).

6. The crucible production transfer device according to claim 1, characterized in that: A top rod (28) is slidably connected to the horizontal plate (3). A pressure plate (29) is fixedly installed at the bottom end of the top rod (28). A wedge block (27) is fixedly installed at the top of the cover plate (23). The wedge block (27) and the pressure plate (29) cooperate with each other. An opening (31) is opened at the top of the mounting plate (12). The opening (31) and the pressure plate (29) cooperate with each other.

7. A crucible production transfer device according to claim 6, characterized in that: A support spring (30) is fixedly installed on the top of the pressure plate (29). The top of the support spring (30) is fixedly connected to the horizontal plate (3), and the elastic force of the support spring (30) is greater than that of the return spring (26).