Auxiliary turnover device for aluminum hose machining

By designing an auxiliary flip device for aluminum hose processing including lifting rod, mount, motor, rotating shaft and flip assembly, the problem that common flip devices cannot perform multi-angle rotation is solved, and efficient multi-angle processing of aluminum hose is achieved.

CN222958597UActive Publication Date: 2025-06-10FOSHAN SHUNDE SHUNFENG PHARM PACKAGING MATERIALS CO LTD
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Patent Information

Application Number
CN202422025064.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-20
Publication Date
2025-06-10
Estimated Expiration
2034-08-20

AI Technical Summary

Technical Problem

Common aluminum hose processing and flip devices lack auxiliary flip structures and cannot rotate the aluminum hose at multiple angles, resulting in the need to finish processing of the fixed rotating surface before other surfaces can be processed, reducing processing efficiency and practicality.

Method used

An auxiliary flip device for processing aluminum hose is designed, including a workbench, lifting rod, mount, motor, rotating shaft, mounting plate, fixed plate, moving plate and flip assembly, etc. Through the coordinated work of these components, multi-angle rotation and clamping of aluminum hose are achieved.

Benefits of technology

Multi-angle rotation of aluminum hoses is achieved, processing efficiency and practicality is improved, and two hoses can be flipped and processed at the same time, adapting to operators of different heights.

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Abstract

The utility model relates to the technical field of auxiliary turnover devices. According to the technical scheme, the auxiliary turnover device for aluminum hose machining comprises a workbench, lifting rods are symmetrically installed at the corners of the top of the workbench, a mounting base is connected to the tops of the lifting rods, a first motor is arranged on the front side of the mounting base, and a first rotating shaft is arranged at the position, corresponding to the first motor, of the inner side of the mounting base; one end of the first rotating shaft penetrates through the mounting base and is connected with the output end of the first motor, the other end of the first rotating shaft is connected with a mounting plate, a fixed plate and a movable plate are symmetrically mounted at the front and rear ends of the left side of the mounting plate, and two overturning assemblies are symmetrically mounted at the left ends of the fixed plate and the movable plate. According to the turnover device, the first motor and the first rotating shaft are arranged to drive the turnover assembly to conduct auxiliary turnover work, so that the problem that a common turnover device can only rotate in one fixed direction, other faces can be machined only after the fixed and rotating face is machined, and therefore the machining efficiency and practicability are reduced is solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of auxiliary turning devices, in particular to an auxiliary turning device for aluminum hose processing. Background Art

[0002] Aluminum hoses are a common packaging material, usually used in industries such as ointments and cosmetics. The turning device for aluminum hose processing is a device used to adjust the processing angle of aluminum hoses, which can be used to meet the turning requirements during the aluminum hose processing, improving the processing efficiency and accuracy.

[0003] Common turning devices only drive the fixture to rotate in a fixed direction through a motor, which can turn the clamped aluminum hose, but lack an auxiliary turning structure and cannot rotate the aluminum hose at multiple angles. Therefore, it is necessary to finish processing the fixed rotation surface before processing other surfaces, which reduces the processing efficiency and practicality.

[0004] Therefore, aiming at the problems that the above turning device lacks an adjustment component and an auxiliary turning structure, cannot rotate the aluminum hose at multiple angles, and needs to finish processing the fixed rotation surface before processing other angles, it is urgently needed to be solved to improve the usage scenario of the turning device. Summary of the Utility Model

[0005] In order to overcome the problems of common turning devices that lack an auxiliary turning structure and cannot rotate the aluminum hose at multiple angles, so that it is necessary to finish processing the fixed rotation surface before processing other surfaces, thus reducing the processing efficiency and practicality.

[0006] The technical solution of the utility model is: an auxiliary turning device for aluminum hose processing, which includes a workbench. The lifting rods are symmetrically installed at the top corners of the workbench. The top of the lifting rod is connected with a mounting seat. A first motor is arranged on the front side of the mounting seat. A first rotating shaft is arranged inside the mounting seat corresponding to the position of the first motor. One end of the first rotating shaft penetrates through the mounting seat and is connected with the output end of the first motor. The other end of the first rotating shaft is connected with a mounting plate. Fixing plates and moving plates are symmetrically installed at both ends of the left side of the mounting plate. Two turning components are symmetrically installed at the left ends of the fixing plate and the moving plate. The turning component includes a third motor, a second rotating shaft, a connecting plate, a limiting plate, a clamping plate and an adjusting rod. The third motor is installed on the outer sides of the fixing plate and the moving plate. The output end of the third motor is connected with the second rotating shaft. Connecting plates are symmetrically arranged inside the fixing plate and the moving plate. The other end of the second rotating shaft is connected with the connecting plate.

[0007] Preferably, the lifting rod can be used to adjust the height of the mounting base, making it convenient for operators of different heights to use, improving practicability. By starting the second motor, the lead screw can be driven to rotate. The rotation of the lead screw will drive the slider to move back and forth, and the movement of the slider will drive the moving plate to slide along the moving groove, thus achieving the purpose of adjusting the position of the moving plate. At the same time, the clamping plate can be controlled to move down or up by rotating the adjusting rod to clamp two aluminum hoses simultaneously. By starting the third motor, the second rotating shaft can drive two connecting plates to rotate, and the rotation of the connecting plates will drive the aluminum hose between the limiting plates to rotate synchronously, thus achieving the purpose of simultaneously flipping two hoses for processing. When it is necessary to process other angles of the workpiece, the first motor can be started to drive the first rotating shaft to rotate. The rotation of the first rotating shaft will drive the mounting plate, the fixing plate, and the moving plate to rotate synchronously, thereby adjusting the angle of the workpiece to improve the processing efficiency.

[0008] Preferably, a filter groove is formed at the top of the workbench. Filter holes arranged at equal intervals are formed inside the filter groove. A square groove is formed on the left side of the workbench corresponding to the position of the filter groove. Guide grooves are symmetrically formed on both sides inside the square groove. The bottom of the filter hole communicates with the square groove. By providing the filter groove at the top of the workbench, the filter holes inside the filter groove can filter the waste chips generated during processing, and the filtered waste chips will enter the waste box inside the workbench to achieve the purpose of collecting waste materials.

[0009] Preferably, a waste box is connected to the left side of the workbench. A pull ring is connected to the left side of the waste box. Guide blocks are installed at the front and rear sides of the waste box corresponding to the positions of the guide grooves. The waste box can be used to collect the waste chips generated during processing, and the installation and disassembly of the waste box can be facilitated through the guide blocks and the guide grooves.

[0010] Preferably, a moving groove is formed on the left side of the mounting plate. A slider is arranged inside the moving groove. A lead screw is connected through the side of the slider. A second motor is installed at the rear side of the mounting plate. One end of the lead screw passes through the moving groove and is connected to the output end of the second motor. The left side of the slider is connected to the moving plate. By starting the second motor, the lead screw can be driven to rotate. The rotation of the lead screw will drive the slider to move back and forth, and the movement of the slider will drive the moving plate to slide along the moving groove, thus achieving the effect of adjusting the position of the moving plate.

[0011] Preferably, limiting holes are symmetrically formed on the front sides of the fixing plate and the moving plate. Both ends of the second rotating shaft are connected to the third motor and the connecting plate through the limiting holes. By starting the third motor, the second rotating shaft can drive the connecting plate to rotate, and the rotation of the connecting plate will drive the workpiece between the limiting plates to rotate synchronously, thus achieving the purpose of flipping the workpiece.

[0012] Preferably, two limit plates are symmetrically installed at the upper and lower ends inside the connecting plate. A clamping plate is arranged between the limit plates. An adjusting rod is arranged at the top of the limit plate. The bottom of the adjusting rod is screwed into the limit plate and connected to the top of the clamping plate. By rotating the adjusting rod, the clamping plate can be controlled to move downward or upward to further fix or loosen the workpiece.

[0013] Preferably, fixing screws are symmetrically arranged at the rear side of the connecting plate, and screw holes corresponding to the fixing screws are formed at the rear sides of the connecting plate and the limit plates. The fixing screws are connected to the limit plates through the screw holes. Fixing the limit plates on the side of the connecting plate through the fixing screws can facilitate the disassembly of the limit plates, so that different fixtures can be replaced to adapt to workpieces of different sizes, improving the practicability.

[0014] Advantages of the present utility model:

[0015] 1. The lifting rod can be used to adjust the height of the mounting seat, facilitating the use by operators of different heights and improving the practicability. By starting the second motor, the lead screw can be driven to rotate. The rotation of the lead screw will drive the slider to move back and forth. The movement of the slider will drive the moving plate to slide along the moving groove, thereby achieving the purpose of adjusting the position of the moving plate. At the same time, the clamping plate can be controlled to move downward or upward by rotating the adjusting rod to clamp two aluminum hoses simultaneously. By starting the third motor, the second rotating shaft can drive the two connecting plates to rotate. The rotation of the connecting plates will drive the aluminum hoses between the limit plates to rotate synchronously, thereby achieving the purpose of simultaneously turning two hoses for processing. When it is necessary to process other surfaces of the workpiece, the first motor can be started to drive the first rotating shaft to rotate. The rotation of the first rotating shaft will drive the mounting plate, the fixing plate and the moving plate to rotate synchronously, thereby adjusting the angle of the workpiece to improve the processing efficiency. Description of the Drawings

[0016] Figure 1 Shown is a three-dimensional structural schematic diagram of an auxiliary turning device for processing aluminum hoses of the present utility model;

[0017] Figure 2 Shown is a rear-view structural schematic diagram of an auxiliary turning device for processing aluminum hoses of the present utility model;

[0018] Figure 3 Shown is an exploded structural schematic diagram of a turning assembly of an auxiliary turning device for processing aluminum hoses of the present utility model;

[0019] Figure 4 Shown is a structural schematic diagram of the installation of a waste box of an auxiliary turning device for processing aluminum hoses of the present utility model.

[0020] In the figure: 1, workbench; 2, filter tank; 3, filter holes; 4, waste box; 5, pull ring; 6, guide block; 7, guide groove; 8, lifting rod; 9, mounting seat; 10, first motor; 11, first rotating shaft; 12, mounting plate; 13, moving groove; 14, slider; 15, lead screw; 16, second motor; 17, fixing plate; 18, moving plate; 191, third motor; 192, second rotating shaft; 193, connecting plate; 194, limiting plate; 195, clamping plate; 196, adjusting rod; 20, limiting hole; 21, fixing screw. Detailed implementation mode

[0021] The present utility model will be further described below in conjunction with the accompanying drawings and embodiments.

[0022] Please refer to Figures 1-4 , the present utility model provides an embodiment: an auxiliary flipping device for aluminum hose processing, including a workbench 1, lifting rods 8 are symmetrically installed at the top corners of the workbench 1, the top of the lifting rod 8 is connected with a mounting seat 9, a first motor 10 is arranged on the front side of the mounting seat 9, a first rotating shaft 11 is arranged inside the mounting seat 9 corresponding to the position of the first motor 10, one end of the first rotating shaft 11 penetrates through the mounting seat 9 and is connected with the output end of the first motor 10, the other end of the first rotating shaft 11 is connected with a mounting plate 12, fixing plates 17 and moving plates 18 are symmetrically installed at both ends of the left side of the mounting plate 12, and two flipping components are symmetrically installed at the left ends of the fixing plate 17 and the moving plate 18. The flipping component includes a third motor 191, a second rotating shaft 192, a connecting plate 193, a limiting plate 194, a clamping plate 195 and an adjusting rod 196. The third motor 191 is installed on the outer sides of the fixing plate 17 and the moving plate 18, the output end of the third motor 191 is connected with the second rotating shaft 192, connecting plates 193 are symmetrically arranged inside the fixing plate 17 and the moving plate 18, and the other end of the second rotating shaft 192 is connected with the connecting plate 193.

[0023] Please refer to Figures 1-4, in this embodiment, a filter groove 2 is formed at the top of the workbench 1. Filter holes 3 arranged at equal intervals are formed inside the filter groove 2. A square groove is formed on the left side of the workbench 1 corresponding to the position of the filter groove 2. Guide grooves 7 are symmetrically formed on both sides inside the square groove. The bottom of the filter hole 3 communicates with the square groove. By providing the filter groove 2 at the top of the workbench 1, the filter holes 3 inside the filter groove 2 can filter the waste chips generated during processing, and the filtered waste chips will enter the waste box 4 inside the workbench 1 to achieve the purpose of collecting waste materials. The waste box 4 is connected to the left side of the workbench 1. A pull ring 5 is connected to the left side of the waste box 4. Guide blocks 6 are installed at the front and rear sides of the waste box 4 corresponding to the positions of the guide grooves 7. The waste box 4 can be used to collect the waste chips generated during processing, and the installation and disassembly of the waste box 4 can be facilitated through the guide blocks 6 and the guide grooves 7. A moving groove 13 is formed on the left side of the mounting plate 12. A slider 14 is arranged inside the moving groove 13. A screw rod 15 penetrates through the side of the slider 14. A second motor 16 is installed at the rear side of the mounting plate 12. One end of the screw rod 15 passes through the moving groove 13 and is connected to the output end of the second motor 16. The left side of the slider 14 is connected to the moving plate 18. By starting the second motor 16, the screw rod 15 can be driven to rotate. The rotation of the screw rod 15 will drive the slider 14 to move back and forth, and the movement of the slider 14 will drive the moving plate 18 to slide along the moving groove 13, thereby achieving the effect of adjusting the position of the moving plate 18.

[0024] Please refer to Figures 1-4 , in this embodiment, limiting holes 20 are symmetrically formed at the front sides of the fixed plate 17 and the moving plate 18. Both ends of the second rotating shaft 192 are connected to the third motor 191 and the connecting plate 193 through the limiting holes 20. By starting the third motor 191, the second rotating shaft 192 can drive the connecting plate 193 to rotate. The rotation of the connecting plate 193 will drive the workpieces between the limiting plates 194 to rotate synchronously, thereby achieving the purpose of flipping the workpieces. Two limiting plates 194 are symmetrically installed at the upper and lower ends inside the connecting plate 193. A clamping plate 195 is arranged between the limiting plates 194. An adjusting rod 196 is arranged at the top of the limiting plate 194. The bottom of the adjusting rod 196 is screwed into the limiting plate 194 and connected to the top of the clamping plate 195. By rotating the adjusting rod 196, the clamping plate 195 can be controlled to move downward or upward to achieve the effect of further fixing or loosening the workpiece. Fixed screw rods 21 are symmetrically arranged at the rear side of the connecting plate 193. Screw holes are formed at the positions of the connecting plate 193 and the limiting plates 194 corresponding to the fixed screw rods 21. The fixed screw rods 21 are connected to the limiting plates 194 through the screw holes. By fixing the limiting plates 194 to the side of the connecting plate 193 through the fixed screw rods 21, the disassembly of the limiting plates 194 can be facilitated, and different fixtures can be replaced to adapt to workpieces of different sizes, improving the practicability.

[0025] When working, the lifting rod 8 can be used to adjust the height of the mounting base 9, so as to facilitate the use by operators of different heights, improving the practicability. And by starting the second motor 16, the lead screw 15 can be driven to rotate. The rotation of the lead screw 15 will drive the slider 14 to move back and forth. The movement of the slider 14 will drive the moving plate 18 to slide along the moving groove 13, so as to achieve the purpose of adjusting the position of the moving plate 18. At the same time, the clamping plate 195 can be controlled to move downward or upward by rotating the adjusting rod 196, so as to achieve the effect of clamping two aluminum hoses at the same time. And by starting the third motor 191, the second rotating shaft 192 can drive the two connecting plates 193 to rotate. The rotation of the connecting plates 193 will drive the aluminum hoses between the limiting plates 194 to rotate synchronously, so as to achieve the purpose of simultaneously turning and processing the two hoses. And when it is necessary to process other angles of the workpiece, the first motor 10 can be started to drive the first rotating shaft 11 to rotate. The rotation of the first rotating shaft 11 will drive the mounting plate 12, the fixing plate 17 and the moving plate 18 to rotate synchronously, so as to adjust the angle of the workpiece, so as to achieve the purpose of improving the processing efficiency.

[0026] Through the above steps, by setting the first motor 10 and the first rotating shaft 11, the flipping assembly can be driven to perform auxiliary flipping work, so as to solve the problem that the common flipping device can only rotate in one fixed direction due to the lack of an auxiliary flipping structure. After the surface of the fixed rotation is processed, other angles can be processed, thus reducing the processing efficiency and practicability.

[0027] The above has described in detail the embodiments of the present invention in conjunction with the drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the gist of the present invention.

Claims

1. An auxiliary turning device for aluminum hose processing, comprising a workbench (1), characterized in that: A lifting rod (8) is symmetrically installed at the top corner of the workbench (1), the top of the lifting rod (8) is connected to a mounting seat (9), a first motor (10) is arranged on the front side of the mounting seat (9), a first rotating shaft (11) is arranged on the inner side of the mounting seat (9) at a position corresponding to the first motor (10), one end of the first rotating shaft (11) passes through the mounting seat (9) and is connected to the output end of the first motor (10), the other end of the first rotating shaft (11) is connected to a mounting plate (12), a fixed plate (17) and a movable plate (18) are symmetrically installed at both ends of the left side of the mounting plate (12), and the fixed plate (17) and the movable plate (18) are symmetrically installed at both ends of the left side of the mounting plate (12), and the fixed plate (17) and the movable plate (18) are symmetrically installed at both ends of the left side of the mounting plate (12). Two flipping assemblies are symmetrically installed at the left end of the movable plate (18), and the flipping assemblies include a third motor (191), a second rotating shaft (192), a connecting plate (193), a limiting plate (194), a clamping plate (195) and an adjusting rod (196). The third motor (191) is installed on the outer side of the fixed plate (17) and the movable plate (18), and the output end of the third motor (191) is connected to the second rotating shaft (192). The connecting plates (193) are symmetrically arranged on the inner side of the fixed plate (17) and the movable plate (18), and the other end of the second rotating shaft (192) is connected to the connecting plate (193).

2. The auxiliary turning device for aluminum hose processing according to claim 1, characterized in that: A filter groove (2) is provided on the top of the workbench (1), filter holes (3) arranged at equal intervals are provided inside the filter groove (2), a square groove is provided on the left side of the workbench (1) at a position corresponding to the filter groove (2), guide grooves (7) are symmetrically provided on both sides of the square groove, and the bottom of the filter holes (3) is communicated with the square groove.

3. The auxiliary turning device for aluminum hose processing according to claim 2, characterized in that: The left side of the workbench (1) is connected to a waste box (4), the left side of the waste box (4) is connected to a pull ring (5), and guide blocks (6) are installed at the positions of the guide grooves (7) at the front and rear sides of the waste box (4).

4. The auxiliary turning device for aluminum hose processing according to claim 1, characterized in that: A movable groove (13) is provided on the left side of the mounting plate (12), a slider (14) is provided inside the movable groove (13), a screw rod (15) is connected through the side of the slider (14), a second motor (16) is installed on the rear side of the mounting plate (12), one end of the screw rod (15) passes through the movable groove (13) and is connected to the output end of the second motor (16), and the left side of the slider (14) is connected to the movable plate (18).

5. The auxiliary turning device for aluminum hose processing according to claim 1, characterized in that: Limiting holes (20) are symmetrically provided on the front sides of the fixed plate (17) and the movable plate (18), and the two ends of the second rotating shaft (192) are connected to the third motor (191) and the connecting plate (193) through the limiting holes (20).

6. The auxiliary turning device for aluminum hose processing according to claim 1, characterized in that: Two limiting plates (194) are symmetrically installed at the upper and lower ends of the inner side of the connecting plate (193), a clamping plate (195) is arranged between the limiting plates (194), an adjusting rod (196) is arranged on the top of the limiting plates (194), and the bottom of the adjusting rod (196) is screwed into the limiting plates (194) through a thread to connect with the top of the clamping plate (195).

7. The auxiliary turning device for aluminum hose processing according to claim 1, characterized in that: A fixing screw (21) is symmetrically arranged on the rear side of the connecting plate (193), and screw holes are provided on the rear sides of the connecting plate (193) and the limiting plate (194) at positions corresponding to the fixing screw (21), and the fixing screw (21) is connected to the limiting plate (194) through the screw holes.