Turnover device for machining molybdenum alloy plates

By designing the flip device of the driving wheel, driven wheel and clamping group, the safety and accuracy problems in the flip process of molybdenum alloy sheet are solved, and efficient and safe flip effect is achieved. It is suitable for processing molybdenum alloy sheets with larger weights.

CN223115157UActive Publication Date: 2025-07-18LUOYANG TUOJING REFRACTORY METAL CO LTD
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Patent Information

Application Number
CN202422365207.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-27
Publication Date
2025-07-18
Estimated Expiration
2034-09-27

AI Technical Summary

Technical Problem

The existing plate flipping devices are difficult to adapt to the processing requirements of large-weight molybdenum alloy sheets, which pose safety risks and are inefficient, and are prone to slip, offset or drop during the flipping process.

Method used

A flip device including a driving wheel, a driven wheel, a transmission belt, a transmission shaft and a clamping group is designed. Combined with a telescopic cylinder and a clamping seat, the plate is efficient, safe and precisely flipped, and the flip speed and angle are precisely controlled through the meshing of the gears and racks.

Benefits of technology

It realizes the efficiency, safety and accuracy of the flip of molybdenum alloy sheets, improves processing efficiency and quality, ensures that the sheets do not fall off during the flip process, and the flip action is flexible and controllable.

✦ Generated by Eureka AI based on patent content.

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Abstract

The turnover device for machining the molybdenum alloy plates comprises a lower bottom plate, side supporting plates perpendicular to the lower bottom plate are arranged on the two sides of the lower bottom plate, auxiliary supporting seats used for containing the plates are arranged above the side faces of the side supporting plates, and driven wheels are arranged between the auxiliary supporting seats and located on the outer sides of the side supporting plates. According to the plate overturning device, multiple adjusting functions and a stable clamping system are integrated, high efficiency, safety and accuracy of plate overturning operation are achieved, the plate overturning device is suitable for overturning machining of metal plates such as molybdenum alloy, and the machining efficiency and quality are effectively improved; a telescopic air cylinder and a clamping base in the plate clamping set are used in cooperation, the molybdenum alloy plate is clamped before overturning, and it is guaranteed that the plate is kept stable in the overturning process and cannot fall off due to movement. And due to the design of the clamping sets, it is ensured that the plates are always in a controlled state during overturning, and the overturning safety and reliability are improved.
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Description

Technical Field

[0001] This application relates to the field of sheet metal processing technology, and specifically to a flipping device for processing molybdenum alloy sheets. Background Technique

[0002] With the continuous progress of modern industrial technology, special metal materials such as molybdenum alloys have been widely used in high-end manufacturing fields such as aerospace, electronic equipment, and medical devices. These metal sheets have excellent properties such as high strength, high temperature resistance, and corrosion resistance. However, due to their high density, high hardness, and strong surface brittleness, higher requirements are placed on equipment during the processing process. Especially in the flipping and handling operations of the sheets, the traditional manual operation method has safety hazards and low efficiency, and it is difficult to meet the needs of large-scale production.

[0003] Existing sheet flipping devices are mostly used for lighter metal or non-metal sheets, with simple structures and a lack of precise control mechanisms, making it difficult to meet the processing requirements of heavier molybdenum alloy sheets. In addition, during the flipping operation of traditional flipping equipment, the sheets are prone to sliding, offset, and even falling, affecting the processing quality and safety. Summary of the Invention

[0004] The technical problem to be solved by this application is to overcome the existing defects, provide a flipping device for processing molybdenum alloy sheets, realize the high efficiency, safety, and precision of the sheet flipping operation, and is suitable for the flipping processing of metal sheets such as molybdenum alloys, which can effectively solve the problems in the background technique.

[0005] To achieve the above object, this application provides the following technical solution: A flipping device for processing molybdenum alloy sheets, including a lower base plate. On both sides of the lower base plate, there are side support plates perpendicular to the lower base plate. Above the sides of the side support plates, there are auxiliary support seats for placing the sheets. Between the auxiliary support seats and outside the side support plates, there are driven wheels. Inside the driven wheels, there is a sheet clamping group. The sheet clamping group includes a telescopic cylinder and a clamping seat. The telescopic end of the telescopic cylinder is hinged to the clamping seat arranged at its end. Below the side support plates on the same side as the driven wheels, there are also driving wheels. The driven wheels and the driving wheels are connected by a transmission belt. Between the two driving wheels, there is a transmission shaft. A gear is also arranged on the transmission shaft, and the gear meshes with a driving component located on the upper surface of the lower base plate.

[0006] As a preferred technical solution of this application, the auxiliary support seat includes a horizontal support plate, a linear slider, a supporting plate, and an adjusting cylinder. The horizontal support plate is on the same side as the sheet clamping group, and a linear slider is arranged on the upper surface of the horizontal support plate. A supporting plate is slidably arranged on the slider of the linear slider. The telescopic end of the adjusting cylinder is connected to the supporting plate through a connecting guide shaft.

[0007] As a preferred technical solution of the present application, a limiting block is provided on one side of the horizontal support plate, which is correspondingly arranged at the step on the supporting plate.

[0008] As a preferred technical solution of the present application, the driving assembly is composed of a rack mounting seat, a rack and a displacement adjusting cylinder. The rack mounting seat is arranged on the upper surface of the lower bottom plate through fasteners. The rack is slidably arranged on the sliding groove of the rack mounting seat, and the rack meshes with the gear arranged on the outer side surface of the transmission shaft. The telescopic end of the displacement adjusting cylinder is connected to one end of the rack.

[0009] As a preferred technical solution of the present application, a vertical support and a side support for fixing the displacement adjusting cylinder are arranged on the upper surface of the lower bottom plate and the outer side surface of the side support plate arranged on the left side.

[0010] As a preferred technical solution of the present application, a pressing wheel mounting seat is further arranged on one side of the side support plate, and a pressing wheel for adjusting the tightness of the transmission belt is arranged on the pressing wheel mounting seat.

[0011] Compared with the prior art: The present application integrates a variety of adjustment functions and a stable clamping system, realizes the high efficiency, safety and accuracy of the plate flipping operation, is applicable to the flipping processing of metal plates such as molybdenum alloy, and effectively improves the processing efficiency and quality; The telescopic cylinder and the clamping seat in the plate clamping group are used in combination to clamp the molybdenum alloy plate before flipping, ensuring that the plate remains stable during flipping and will not fall off due to movement. The design of the clamping group ensures that the plate is always under control during flipping, improving the safety and reliability of flipping; Through the cooperation of the displacement adjusting cylinder and the rack, the meshing of the gear and the transmission system can be adjusted, realizing the precise control of the flipping speed and angle, making the flipping action more flexible and controllable to adapt to different process requirements. Through the cooperation of the driving wheel, the driven wheel, the transmission belt and the transmission shaft, the device realizes an efficient synchronous flipping operation; The driving wheel drives the rotation of the transmission belt and the driven wheel, ensuring that the flipping of the plate is stable and accurate, without problems such as deviation or uneven flipping, thereby improving the flipping effect. Brief Description of the Drawings

[0012] Figure 1 It is a schematic structural diagram of the present application.

[0013] Figure 2 It is a front view of the present application.

[0014] Figure 3 It is a schematic diagram of a partial structure of the present application.

[0015] In the figure: 1 clamping seat, 2 supporting plate, 3 driven wheel, 4 adjusting cylinder, 5 side support plate, 6 driving wheel, 7 pressing wheel, 8 pressing wheel mounting seat, 9 lower bottom plate, 10 rack mounting seat, 11 limit block, 12 telescopic cylinder, 13 linear slider, 14 lateral support plate, 15 gear, 16 side bracket, 17 displacement adjusting cylinder, 18 vertical bracket, 19 transmission shaft, 20 rack. Specific embodiments

[0016] Next, the technical solutions in the embodiments of the present application will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application (for the convenience of description and understanding, the upper part is described as the upper part below). All other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present application. Figure 2 above is described as the upper part). All other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present application.

[0017] Please refer to Figures 1-3 , the present application provides a technical solution: a turning device for processing molybdenum alloy plates, including a lower bottom plate 9, side support plates 5 perpendicular to the lower bottom plate 9 are arranged on both sides of the lower bottom plate 9, and an auxiliary support seat for placing the plates is arranged above the side surface of the side support plate 5.

[0018] The lower bottom plate 9 provides a stable installation platform for the side support plates 5 to ensure the device remains stable during use; the side support plates 5 are used to fix other components related to operations such as plate turning and clamping, ensuring their stable installation positions and preventing offset during the turning process. The two sides of the side support plates 5 can also provide additional supporting forces to prevent the device from becoming unbalanced when the plate is turned; the auxiliary support seat is arranged above the side support plate 5 and is used to place and support the molybdenum alloy plate, which helps to initially position the plate before turning and prevent the plate from sliding due to gravity or changes in the turning angle.

[0019] A driven wheel 3 is arranged between the auxiliary support seats and outside the side support plate 5, and a plate clamping group is arranged inside the driven wheel 3. The plate clamping group includes a telescopic cylinder 12 and a clamping seat 1, and the telescopic end of the telescopic cylinder 12 is hinged to the clamping seat 1 arranged at its end.

[0020] The auxiliary support seat is used to support the molybdenum alloy plate to be turned to ensure that the plate is in the correct position before turning.

[0021] The plate clamping group is located inside the driven wheel 3. When the plate needs to be flipped, the driving wheel 6 and the transmission belt drive the driven wheel 3 to rotate. The plate rotates with the driven wheel 3 in the clamped state, and the telescopic cylinder 12 will act to make the clamping seat 1 close to the edge of the plate, so as to firmly fix the plate during the flipping process and prevent it from sliding or falling off.

[0022] Below the side support plate 5 on the same side as the driven wheel 3, a driving wheel 6 is also provided. The driven wheel 3 and the driving wheel 6 are connected by a transmission belt. Between the two driving wheels 6, they are connected by a transmission shaft 19. A gear 15 is also provided on the transmission shaft 19, and the gear 15 meshes with the driving component on the upper surface of the lower base plate 9.

[0023] The driven wheel 3 is used to assist the flipping action of the plate. It is connected to the driving wheel 6 through a transmission belt. When the driving wheel 6 drives the transmission belt to rotate, the driven wheel 3 will rotate accordingly, so as to realize the flipping of the plate.

[0024] The driving wheel 6 is connected to the driven wheel 3 through a transmission belt and is connected to the driving component through a transmission shaft 19. The function of the driving wheel 6 is to transmit power to the transmission belt, so as to drive the driven wheel 3 to operate together and complete the flipping process of the plate.

[0025] The transmission belt connects the driven wheel 3 and the driving wheel 6 to transmit power and make the two wheel sets operate synchronously.

[0026] The transmission shaft 19 is a connecting device between the two driving wheels 6. Through the transmission shaft 19, the driving wheels 6 on both sides can be kept running synchronously, ensuring that the plate will not shift or flip unevenly during flipping.

[0027] The gear 15 is installed on the transmission shaft 19. Through meshing with the driving component, the gear 15 transmits the power generated by the driving device to the transmission shaft 19. The function of the gear 15 is to convert the linear motion of the transmission device into the rotational motion of the transmission shaft 19, so as to drive the driving wheel 6, the transmission belt and the driven wheel 3 to realize the flipping operation of the plate.

[0028] Furthermore, the auxiliary support seat includes a horizontal support plate 14, a linear slider 13, a supporting plate 2 and an adjusting cylinder 4. The horizontal support plate 14 is on the same side as the plate clamping group, and a linear slider 13 is arranged on the upper surface of the horizontal support plate 14. A supporting plate 2 is slidably arranged on the slider of the linear slider 13. The telescopic end of the adjusting cylinder 4 is connected to the supporting plate 2 through a connecting guide shaft.

[0029] The auxiliary support seat provides support before the plate is flipped, avoiding the plate from shaking due to gravity or external force, and ensuring that the plate is in a stable state.

[0030] The lateral support plate 14 provides a lateral supporting platform to provide a mounting position for the linear slider 13 .

[0031] The linear slider 13 allows the support plate 2 to slide on it to adjust its position. Its sliding function allows the device to adapt to plates of different sizes. The position of the support plate 2 can be easily adjusted by the linear slider 13 to ensure accurate alignment of the plate and the clamping group to avoid deviation during the flipping process.

[0032] The supporting plate 2 is the part that directly supports the plate, and a mounting groove is provided at its end to facilitate the placement of the plate and ensure that the plate is always in a stable state.

[0033] The adjusting cylinder 4 is used to control the position adjustment of the supporting plate 2. The position of the supporting plate 2 is adjusted by adjusting the telescopic action of the adjusting cylinder 4, thereby ensuring that the plate is at the correct height and angle before the flipping operation.

[0034] Furthermore, a limiting block 11 is provided on one side of the transverse support plate 14 , and the limiting block 11 is provided corresponding to the step on the supporting plate 2 .

[0035] The limit block 11 is used to limit the travel of the supporting plate 2 to prevent it from moving excessively and causing damage to the plate.

[0036] Furthermore, the driving assembly is composed of a rack mounting seat 10, a rack 20 and a displacement adjusting cylinder 17. The rack mounting seat 10 is set on the upper surface of the lower base plate 9 through fasteners, and the rack 20 is slidably set on the slide groove of the rack mounting seat 10, and the rack 20 is meshed with the gear 15 set on the outer side of the transmission shaft 19, and the telescopic end of the displacement adjusting cylinder 17 is connected to one end of the rack 20.

[0037] The drive assembly is the power system of the plate turning device, which is responsible for controlling the power transmission and accurate displacement adjustment during the turning process. Through the meshing transmission of the rack 20 and the gear 15, the power can be effectively converted into the rotational motion of the transmission shaft 19, thereby driving the turning of the plate.

[0038] The rack mounting seat 10 is fixed on the upper surface of the lower base plate 9, providing a stable mounting and sliding platform for the rack 20. A slide groove is provided on the mounting seat, allowing the rack 20 to slide in a straight line in the slide groove. Through this fixing and guiding effect, the rack 20 can maintain stable linear motion during the transmission process without deviation or shaking, thereby ensuring the transmission accuracy.

[0039] The rack 20 is a linear transmission element meshing with the gear 15. The linear movement of the rack 20 is achieved by the displacement adjustment cylinder 17, thereby driving the gear 15 meshing with it to rotate; the linear movement of the rack 20 is converted into the rotational movement of the transmission shaft 19, thereby controlling the flipping angle and speed of the plate.

[0040] The displacement adjustment cylinder 17 is responsible for pushing the rack 20 to move linearly. Through the telescopic action of the displacement adjustment cylinder 17, the displacement of the rack 20 can be accurately controlled. The displacement adjustment cylinder 17 not only controls the start and stop of the flipping action, but also can adjust the flipping speed and angle, making the flipping process more precise and controllable.

[0041] Furthermore, on the upper surface of the lower base plate 9 and the outer side surface of the side support plate 5 arranged on the left side, there are provided a vertical support 18 and a side support 16 for fixing the displacement adjustment cylinder 17.

[0042] The vertical support 18 and the side support 16 ensure that the displacement adjustment cylinder 17 does not shift or vibrate during operation.

[0043] Furthermore, on one side of the side support plate 5, there is also provided a pressing wheel mounting seat 8, and on the pressing wheel mounting seat 8, there is provided a pressing wheel 7 for adjusting the tightness of the transmission belt.

[0044] The pressing wheel mounting seat 8 is the mounting platform for the pressing wheel 7. Its function is to stabilize the pressing wheel 7 and, by adjusting the position of the pressing wheel 7, control the tightness of the transmission belt, ensuring that the transmission belt maintains an appropriate tension state during operation and avoiding the occurrence of transmission slipping or loosening.

[0045] During use: Start the adjustment cylinder 4 to adjust the position of the supporting plate 2. When it reaches the position corresponding to the molybdenum alloy plate, place the molybdenum alloy plate on the auxiliary support seat, and use the supporting plate 2 and the linear slider 13 to adjust the initial position of the plate to ensure that the plate is at the correct flipping angle and position; at this time, start the telescopic cylinder 12 to make the clamping seat 1 clamp the plate to ensure that the plate does not slide or fall off during the flipping process. At this time, the adjustment cylinder 4 resets and disengages from the plate to avoid interference during the flipping of the plate; when flipping is required, start the displacement cylinder 17 to control the linear movement of the rack 20, adjust the rotational speed of the transmission system, and achieve precise control of the flipping speed. At this time, the transmission shaft 19 rotates, and the driving wheel 6 drives the transmission belt and the driven wheel 3 to rotate synchronously, thereby causing the plate clamping group to rotate, and the clamped plate gradually flips with the rotation of the driven wheel 3. During the entire flipping process, the auxiliary support seat and the clamping group ensure that the plate remains stable and avoid deviation or dropping during flipping; when the flipping is in place, the plate clamping group resets. At this time, start the adjustment cylinder 4 again to adjust the position of the supporting plate 2 to clamp the flipped molybdenum alloy plate for secondary processing.

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

Claims

1. A turning device for processing molybdenum alloy plates, comprising a lower bottom plate (9), and side support plates (5) perpendicular to the lower bottom plate (9) are arranged on both sides of the lower bottom plate (9), characterized in that: Above the side of the side support plate (5), there is an auxiliary support seat for placing the plate. Between the auxiliary support seats and on the outer side of the side support plate (5), there is a driven wheel (3). Inside the driven wheel (3), there is a plate clamping group. The plate clamping group includes a telescopic cylinder (12) and a clamping seat (1). The telescopic end of the telescopic cylinder (12) is hinged to the clamping seat (1) provided at its end. Below the side support plate (5) on the same side as the driven wheel (3), there is also a driving wheel (6). The driven wheel (3) and the driving wheel (6) are connected by a transmission belt. Between the two driving wheels (6), they are connected by a transmission shaft (19). On the transmission shaft (19), there is also a gear (15). The gear (15) meshes with the driving component located on the upper surface of the lower bottom plate (9).

2. The flipping device for processing molybdenum alloy plates according to claim 1, characterized in that: The auxiliary support seat includes a horizontal support plate (14), a linear slider (13), a supporting plate (2), and an adjusting cylinder (4). The horizontal support plate (14) is on the same side as the plate clamping group. On the upper surface of the horizontal support plate (14), there is a linear slider (13). On the slider of the linear slider (13), there is a supporting plate (2) slidably arranged. The telescopic end of the adjusting cylinder (4) is connected to the supporting plate (2) through a connecting guide shaft.

3. A turning device for processing molybdenum alloy plates according to claim 2, characterized in that: On one side of the horizontal support plate (14), there is a limit block (11), which is correspondingly arranged with the step on the supporting plate (2).

4. A turning device for processing molybdenum alloy plates according to claim 1, characterized in that: The driving component is composed of a rack mounting seat (10), a rack (20), and a displacement adjusting cylinder (17). The rack mounting seat (10) is arranged on the upper surface of the lower bottom plate (9) through fasteners. The rack (20) is slidably arranged on the chute of the rack mounting seat (10), and the rack (20) meshes with the gear (15) arranged on the outer side of the transmission shaft (19). The telescopic end of the displacement adjusting cylinder (17) is connected to one end of the rack (20).

5. A turning device for processing molybdenum alloy plates according to claim 1, characterized in that: On the upper surface of the lower bottom plate (9) and on the outer side of the side support plate (5) arranged on the left, there are a vertical support (18) and a side support (16) for fixing the displacement adjusting cylinder (17).

6. A turning device for processing molybdenum alloy plates according to claim 1, characterized in that: On one side of the side support plate (5), there is also a pressing wheel mounting seat (8). On the pressing wheel mounting seat (8), there is a pressing wheel (7) for adjusting the tightness of the transmission belt.