Material transfer device for alloy production

By installing circular support plates and baffles in the alloy production transfer device, and utilizing a motor-driven gear system and a protective door fixing mechanism, the problem of temperature changes in metal products during transfer was solved, thereby improving alloy quality and storage efficiency.

CN224170987UActive Publication Date: 2026-04-28ZOUPING HONGXIN NEW MATERIAL TECH CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZOUPING HONGXIN NEW MATERIAL TECH CO LTD
Filing Date
2025-04-25
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

In existing alloy production transfer devices, the surface temperature differences of different metal products under the influence of processing steps cause multiple metal products to easily accumulate when transferred simultaneously, affecting the quality of the metal products.

Method used

A material transfer device for alloy production was designed. By setting up a circular support plate and baffle in the transfer box, the support plate is rotated by a motor-driven gear system to separate metal products. Combined with the fixing mechanism of the protective door and the pointer marking system, the orderly storage and retrieval of alloys can be achieved.

Benefits of technology

It effectively avoids surface temperature changes in metal products, improves the quality of alloy production, and increases the efficiency of staff in storing and retrieving materials.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224170987U_ABST
    Figure CN224170987U_ABST
Patent Text Reader

Abstract

The utility model discloses a material transfer device for alloy production, which relates to the technical field of alloy production and comprises a vehicle body, a transfer box body is arranged on the upper wall surface of the vehicle body, a cavity is arranged in the vehicle body, a motor is arranged in the cavity of the vehicle body, a first gear is arranged at the driving end of the motor, and a second gear is arranged at the driving end of the motor. A second supporting column is rotationally arranged in the transfer box body, a second gear is arranged on the second supporting column, a plurality of circular supporting plates are arranged on the second supporting column, three pairs of baffles are arranged on the circular supporting plates, a plurality of protective doors are movably arranged on the transfer box body, and fixing mechanisms are arranged on the protective doors. According to the design, the circular supporting plate is used for containing metal products, the three pairs of baffles are used for separating the circular supporting plate, the situation that the surface temperature of the metal products is changed due to the fact that the metal products on the circular supporting plate are stacked together is avoided, and then the alloy production quality is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of alloy production technology, specifically to a material transfer device for alloy production. Background Technology

[0002] Alloys are substances with metallic properties synthesized by mixing and melting two or more metals or non-metals, cooling and solidifying them, and belong to a type of metal product.

[0003] For example, utility model patent CN222179538U discloses a metal product production transfer device, including a mounting frame. Two mounting frames are symmetrically distributed, and one side of the two mounting frames is fixedly connected by multiple connecting plates. The multiple connecting plates are evenly spaced. Two wheels are provided at the bottom of each mounting frame, and a placement plate is provided between the two mounting frames. When this device is in use, the surface temperature of different metal products varies due to the processing steps. When multiple metal products are transferred at the same time, they are prone to pile up together, causing the surface temperature of different metal products to change, which in turn affects the quality of the metal products. Utility Model Content

[0004] To address the shortcomings of existing technologies, this utility model provides a material transfer device for alloy production. It solves the problem that when using existing transfer devices, the surface temperatures of different metal products vary due to the processing steps, and multiple metal products tend to pile up when transferred simultaneously, causing changes in the surface temperature of different metal products and thus affecting the quality of the metal products.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a material transfer device for alloy production, comprising a vehicle body, a transfer box body disposed on the upper wall of the vehicle body, a cavity disposed inside the vehicle body, a motor disposed within the cavity of the vehicle body, a first gear disposed on the drive end of the motor, a second support column rotatably disposed within the transfer box body, a second gear disposed on the second support column, the first gear and the second gear meshing, a plurality of circular support plates disposed on the second support column, the circular support plates rotatably disposed within the transfer box body, three pairs of baffles disposed on the circular support plates, a plurality of protective doors movably disposed on the transfer box body, each of the protective doors being provided with a slider, a plurality of sliding grooves disposed on the transfer box body, the protective doors being slidably mounted in the sliding grooves via the sliders, and a fixing mechanism disposed on the protective doors.

[0006] Preferably, the fixing mechanism protects the first handle, which is mounted on the protective door. The protective door has a cavity, and a third fixing block is movably mounted inside the cavity. A pair of fixing posts are mounted on one end of the third fixing block. The transfer box body has several fixing holes, and the fixing posts are movably mounted in the fixing holes. A number of springs are mounted inside the cavity of the protective door. A first fixing block is movably mounted inside the first handle, and a pair of inserts are mounted on the first fixing block. A pair of slots are mounted on the first handle, and the inserts are movably mounted in the slots. An arc-shaped block is mounted on the first fixing block, and a second fixing block is mounted on the other end of the third fixing block.

[0007] Preferably, a first support column is provided on the second support column, a pointer is provided on the first support column, a protective cover is provided on the upper wall of the transfer box body, an identification plate is provided inside the protective cover, and the pointer is movably mounted on the identification plate.

[0008] Preferably, two pairs of wheels are provided on the lower wall of the vehicle body.

[0009] Preferably, a power source is provided inside the cavity of the vehicle body, and the power source is electrically connected to the motor.

[0010] Preferably, a pair of support blocks are provided on the upper wall of the vehicle body, and a second handle is provided on the pair of support blocks.

[0011] Beneficial effects

[0012] The material transfer device for alloy production provided by this utility model has the following beneficial effects:

[0013] The circular support plate in this design is used to place metal products, and three pairs of baffles are used to separate the circular support plate to prevent the metal products on the circular support plate from piling up together, which would cause the surface temperature of the metal products to change, thereby improving the quality of alloy production.

[0014] This design uses a drive motor to rotate, which in turn drives the first gear to rotate, controls the second gear to rotate, and causes the second support column to rotate, which in turn causes the circular support plate to rotate. This allows the corresponding alloy on the circular support plate to move to the opening of the transfer box body, making it convenient for staff to store and retrieve the alloy.

[0015] This design uses a drive motor to rotate, which in turn drives the first gear to rotate, controls the second gear to rotate, causes the second support column to rotate, drives the first support column to rotate, and then causes the pointer to rotate. The label plate has fixed partitions, and workers can determine the location of metal products by pointing to the corresponding partition with the pointer. This improves the speed at which workers can access and retrieve metal products, thereby increasing the working efficiency of the transfer device. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the entire utility model.

[0017] Figure 2 This is a schematic diagram of the transfer box body of this utility model.

[0018] Figure 3 This is a schematic diagram of the fixing mechanism of this utility model.

[0019] Figure 4 This is a schematic diagram of the protective door of this utility model.

[0020] Figure 5 This is a schematic diagram of the circular support plate of this utility model.

[0021] In the diagram: 1. Identification plate; 2. Protective door; 3. First handle; 4. Insert block; 5. Vehicle body; 6. Moving wheel; 7. Slide groove; 8. Circular support plate; 9. Support block; 10. Transfer box body; 11. Second handle; 12. Pointer; 13. Protective cover; 14. First support column; 15. Baffle; 16. Second support column; 17. First gear; 18. Motor; 19. Second gear; 20. Power supply; 21. Fixing hole; 22. Arc-shaped block; 23. First fixing block; 24. Slot; 25. Second fixing block; 26. Third fixing block; 27. Spring; 28. Fixing column; 29. ​​Slider. Detailed Implementation

[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0023] Please see Figure 1-5This utility model provides a technical solution: a material transfer device for alloy production, including a vehicle body 5, a transfer box body 10 disposed on the upper wall of the vehicle body 5, a cavity disposed inside the vehicle body 5, a motor 18 disposed inside the cavity of the vehicle body 5, a first gear 17 disposed on the drive end of the motor 18, a second support column 16 rotatably disposed inside the transfer box body 10, a second gear 19 disposed on the second support column 16, the first gear 17 and the second gear 19 meshing, a plurality of circular support plates 8 disposed on the second support column 16, the circular support plates 8 rotatably disposed inside the transfer box body 10, three pairs of baffles 15 disposed on the circular support plates 8, a plurality of protective doors 2 movably disposed on the transfer box body 10, a slider 29 disposed on each of the protective doors 2, a plurality of sliding grooves 7 disposed on the transfer box body 10, the protective doors 2 being slidably installed in the sliding grooves 7 via the sliders 29, and a fixing mechanism disposed on the protective doors 2;

[0024] The transfer box body 10 has an opening, and the protective door 2 is located at the opening of the transfer box body 10;

[0025] The circular support plate 8 is used to place metal products, and the three pairs of baffles 15 are used to separate the circular support plate 8 to prevent the metal products on the circular support plate 8 from piling up together, which would cause the surface temperature of the metal products to change, thereby improving the quality of alloy production.

[0026] The drive motor 18 rotates, which drives the first gear 17 to rotate, controls the second gear 19 to rotate, causes the second support column 16 to rotate, and then causes the circular support plate 8 to rotate. This allows the corresponding alloy on the circular support plate 8 to move to the opening of the transfer box body 10, making it easier for staff to store and retrieve the alloy.

[0027] The slider 29 is an arc-shaped slider, and the slide groove 7 is an arc-shaped slide groove. The protective door 2 is slidably installed in the slide groove 7 through the slider 29, thereby allowing the protective door 2 to be slidably installed on the transfer box body 10.

[0028] In this embodiment, the fixing mechanism protects the first handle 3, which is mounted on the protective door 2. The protective door 2 has a cavity, and a third fixing block 26 is movably mounted in the cavity. A pair of fixing posts 28 are mounted on one end of the third fixing block 26. The transfer box body 10 has several fixing holes 21, and the fixing posts 28 are movably mounted in the fixing holes 21. A number of springs 27 are mounted in the cavity of the protective door 2. A first fixing block 23 is movably mounted inside the first handle 3, and a pair of inserts 4 are mounted on the first fixing block 23. A pair of slots 24 are mounted on the first handle 3, and the inserts 4 are movably mounted in the slots 24. An arc-shaped block 22 is mounted on the first fixing block 23, and a second fixing block 25 is mounted on the other end of the third fixing block 26.

[0029] The side of the second fixing block 25 closest to the arc-shaped block 22 is an arc-shaped surface;

[0030] The first fixing block 23 is driven to move the insert 4 at the top, so that the insert 4 moves into the slot 24 at the top of the first handle 3, which drives the first fixing block 23 to move, controls the arc block 22 to move, the arc block 22 presses the second fixing block 25, drives the second fixing block 25 to move, controls the third fixing block 26 to move, the spring 27 generates elastic force, which causes the fixing post 28 to move, and then causes the fixing post 28 to move into the fixing hole 21 for fixing the protective door 2;

[0031] The insertion block 4 at the bottom of the first fixing block 23 is moved, so that the insertion block 4 moves into the slot 24 at the bottom of the first handle 3, which drives the first fixing block 23 to move, controls the arc block 22 to move, and the arc block 22 moves away from the second fixing block 25. The interaction force generated by the spring 27 drives the third fixing block 26 to move, controls the second fixing block 25 and the fixing post 28 to return to the initial position, and then makes the fixing post 28 move away from the fixing hole 21.

[0032] In this embodiment, a first support column 14 is provided on the second support column 16, a pointer 12 is provided on the first support column 14, a protective cover 13 is provided on the upper wall of the transfer box body 10, an identification plate 1 is provided inside the protective cover 13, and the pointer 12 is movably disposed on the identification plate 1.

[0033] The protective cover 13 is a transparent protective cover, which makes it easy for staff to observe the position of the pointer 12;

[0034] The drive motor 18 rotates, which drives the first gear 17 to rotate, controls the second gear 19 to rotate, causes the second support column 16 to rotate, drives the first support column 14 to rotate, and then causes the pointer 12 to rotate. The sign plate 1 has fixed partitions, and the staff can determine the position of the metal products by pointing to the corresponding partition with the pointer 12, which improves the speed of the staff in storing and retrieving metal products, and thus improves the working efficiency of the transfer device.

[0035] In this embodiment, two pairs of movable wheels 6 are provided on the lower wall surface of the vehicle body 5;

[0036] The six movable wheels make it easy for staff to move the transfer device.

[0037] In this embodiment, a power supply 20 is provided inside the cavity of the vehicle body 5, and the power supply 20 is electrically connected to the motor 18.

[0038] Power supply 20 supplies power to motor 18.

[0039] In this embodiment, a pair of support blocks 9 are provided on the upper wall of the vehicle body 5, and a second handle 11 is provided on the pair of support blocks 9.

[0040] Example: When the transfer device is in use, the circular support plate 8 is used to place metal products, and three pairs of baffles 15 are used to separate the circular support plate 8 to prevent the metal products on the circular support plate 8 from piling up and causing changes in the surface temperature of the metal products, thereby improving the quality of alloy production. When storing or retrieving metal products, the drive motor 18 rotates, driving the first gear 17 to rotate, controlling the second gear 19 to rotate, causing the second support column 16 to rotate, which in turn causes the circular support plate 8 to rotate, allowing the corresponding metal products on the circular support plate 8 to move to the opening of the transfer box body 10, making it convenient for workers to store and retrieve the metal products. When the protective door 2 is opened, the drive block 4 at the bottom of the first fixing block 23 moves, causing the insertion block 4 to move into the slot 24 at the bottom of the first handle 3, driving the first fixing block 23 to move, controlling the arc block 22 to move away from the second fixing block 25, and the interaction force generated by the spring 27 drives the third fixing block 26 to move, controlling the second fixing block 25 and the fixing column 28 to return to their initial positions, thereby causing the fixing column 26 to move away from the second fixing block 25. 8. When the protective door 2 is closed, the first handle 3 is pulled to open the protective door 2 away from the fixing hole 21. When the protective door 2 is closed, the first handle 3 is pulled to move the fixing column 28 to the fixing hole 21, which drives the insert 4 on the top of the first fixing block 23 to move into the slot 24 on the top of the first handle 3. This causes the first fixing block 23 to move, controls the arc block 22 to move, and the arc block 22 to press the second fixing block 25, causing the second fixing block 25 to move. This controls the third fixing block 26 to move, causing the fixing column 28 to move into the fixing hole 21 to fix the protective door 2. When searching for the location of metal products, the drive motor 18 rotates, which drives the first gear 17 to rotate, controls the second gear 19 to rotate, causes the second support column 16 to rotate, drives the first support column 14 to rotate, and causes the pointer 12 to rotate. The sign plate 1 has fixed partitions. The staff can use the pointer 12 to point to the corresponding partition to determine the location of the metal products, which improves the speed of staff accessing and retrieving metal products, and thus improves the working efficiency of the transfer device.

[0041] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A material transfer device for alloy production, comprising a vehicle body (5), characterized in that, A transfer box body (10) is provided on the upper wall of the vehicle body (5). A cavity is provided inside the vehicle body (5). A motor (18) is provided inside the cavity of the vehicle body (5). A first gear (17) is provided on the drive end of the motor (18). A second support column (16) is rotatably provided inside the transfer box body (10). A second gear (19) is provided on the second support column (16). The first gear (17) and the second gear (19) mesh with each other. Several circular... A circular support plate (8) is rotatably disposed inside the transfer box body (10). The circular support plate (8) is provided with three pairs of baffles (15). Several protective doors (2) are movably disposed on the transfer box body (10). Each of the protective doors (2) is provided with a slider (29). Several sliding grooves (7) are provided on the transfer box body (10). The protective doors (2) are slidably installed in the sliding grooves (7) through the sliders (29). The protective doors (2) are provided with a fixing mechanism.

2. The material transfer device for alloy production according to claim 1, characterized in that, The fixing mechanism protects the first handle (3), which is mounted on the protective door (2). The protective door (2) has a cavity, and a third fixing block (26) is movably mounted in the cavity. A pair of fixing posts (28) are mounted on one end of the third fixing block (26). The transfer box body (10) has several fixing holes (21), and the fixing posts (28) are movably mounted in the fixing holes (21). A number of springs (27) are mounted in the cavity of the protective door (2). A first fixing block (23) is movably mounted in the first handle (3), and a pair of inserts (4) are mounted on the first fixing block (23). A pair of slots (24) are mounted on the first handle (3), and the inserts (4) are movably mounted in the slots (24). An arc-shaped block (22) is mounted on the first fixing block (23), and a second fixing block (25) is mounted on the other end of the third fixing block (26).

3. The material transfer device for alloy production according to claim 2, characterized in that, The second support column (16) is provided with a first support column (14), the first support column (14) is provided with a pointer (12), the upper wall of the transfer box body (10) is provided with a protective cover (13), the protective cover (13) is provided with an identification plate (1), and the pointer (12) is movably disposed on the identification plate (1).

4. The material transfer device for alloy production according to claim 3, characterized in that, Two pairs of wheels (6) are provided on the lower wall of the vehicle body (5).

5. The material transfer device for alloy production according to claim 4, characterized in that, A power supply (20) is provided in the cavity of the vehicle body (5), and the power supply (20) is electrically connected to the motor (18).

6. The material transfer device for alloy production according to claim 5, characterized in that, A pair of support blocks (9) are provided on the upper wall of the vehicle body (5), and a second handle (11) is provided on the pair of support blocks (9).

Citation Information

Patent Citations

  • Metal product production transfer device

    CN222179538U