Aluminum shell conveying and machining structure
By designing an aluminum shell conveying and processing structure, including thread rolling, feeding, and support mechanisms, the problem of material jamming during the thread rolling process of capacitor aluminum shells was solved, achieving stable and efficient production and reducing costs.
Patent Information
- Application Number
- CN202423301439.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2026-02-24
- Estimated Expiration
- 2034-12-31
AI Technical Summary
The existing capacitor fixing components have a large degree of freedom, which makes it easy for the aluminum capacitor shell to get stuck during the thread rolling process, affecting the stability of the equipment and production efficiency, and increasing the manufacturing cost.
An aluminum shell conveying and processing structure was designed, including a thread rolling mechanism, a feeding mechanism, and a support mechanism. The aluminum shell is pushed to the thread rolling mechanism for thread rolling processing by a pushing component, and the aluminum shell is supported and guided by the support mechanism to ensure processing stability.
It enables automated thread rolling of aluminum shells, improves production efficiency, reduces manufacturing costs, and adapts to various specifications of aluminum shells, thus expanding its application range.
Smart Images

Figure CN223941682U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of aluminum shell processing technology, and specifically to an aluminum shell conveying and processing structure. Background Technology
[0002] Most existing capacitor fixing components on the market are usually fixed by capacitor clamps and tightened with screws. However, these fixing devices restrict a large degree of freedom and cannot completely restrict the freedom of the capacitor in all directions. Therefore, it is necessary to perform thread rolling on the aluminum shell of the capacitor to give it a fixed position. During the feeding process, the end of the aluminum shell will tilt downward due to gravity, which can easily cause jamming and damage the equipment, affecting normal processing. Utility Model Content
[0003] The technical problem to be solved by this utility model is to provide an aluminum shell conveying and processing structure that can effectively improve its production efficiency, reduce its manufacturing cost, and ensure stability during thread rolling.
[0004] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows:
[0005] An aluminum shell conveying and processing structure, comprising:
[0006] The thread rolling mechanism is used to perform thread rolling on the machined ends of aluminum shells;
[0007] A feeding mechanism is arranged opposite to the thread rolling mechanism. The feeding mechanism includes a conveying turntable and a pushing component. The edge of the conveying turntable is evenly provided with a plurality of conveying grooves. The conveying grooves are arranged opposite to the thread rolling mechanism. The pushing component is arranged on one side of the conveying grooves. The pushing component is used to push the aluminum shells on the conveying grooves to the thread rolling mechanism for thread rolling.
[0008] A support mechanism is provided between the thread rolling mechanism and the feeding mechanism, and the support mechanism is used to support the aluminum shell of the pushing component.
[0009] The thread rolling mechanism includes a drive assembly and a processing assembly. The drive assembly is driven to the processing assembly. The processing assembly includes a processing frame, on which a thread rolling wheel and a support wheel are rotated. A thread rolling gap is provided between the thread rolling wheel and the support wheel. The thread rolling machine is provided with a thread rolling processing surface. The thread rolling wheel and the support wheel are used to perform thread rolling processing on the processing end of the aluminum shell.
[0010] In one embodiment of this utility model, the driving assembly includes a driver, the processing frame is provided with a driving shaft and a driven shaft, the driving shaft is provided with a first gear and is connected to the support wheel, the driven shaft is provided with a second gear and is connected to the thread rolling wheel, the driver is drivingly connected to the driving shaft, and the driver drives the first gear and the second gear to rotate synchronously.
[0011] In one embodiment of this utility model, the conveying turntable is mounted on the feeding rack, and the feeding rack is provided with a guide cover. The guide cover is a fan-shaped mechanism and is mounted on the conveying turntable. The inner sidewall of the guide cover and the conveying turntable form a transmission channel for transmitting aluminum shells. The guide cover is provided with a slot, and the slot is arranged opposite to the conveying groove.
[0012] In one embodiment of this utility model, the pushing assembly includes a pushing frame, a guide rail is provided on the pushing frame, a sliding frame is slidably mounted on the guide rail, a pushing plate is provided on the sliding frame, a pushing rod is provided on the pushing plate, the sliding frame is driven and connected to a power component, and the power component drives the pushing rod on the sliding frame to push the aluminum shell on the conveying groove to the thread rolling mechanism for thread rolling processing.
[0013] In one embodiment of this utility model, a fixing block is provided on the push rod. The fixing block has a columnar structure and passes through the aluminum shell, driving the processing end of the aluminum shell to move towards the thread rolling mechanism.
[0014] In one embodiment of this utility model, the diameter of the fixing block is smaller than the inner diameter of the aluminum shell, a rubber layer is provided on the fixing block, and the groove diameter is smaller than the outer diameter of the aluminum shell.
[0015] In one embodiment of this utility model, a fixed seat is provided on the sliding frame, a fixed hole is provided on the fixed seat, a bearing assembly is provided on the fixed hole, and the free end of the push rod is connected to the bearing assembly.
[0016] In one embodiment of the present invention, the support mechanism includes a sliding block, which is slidably mounted on the guide rail. A support frame is provided on the sliding frame, and a support plate is provided on the support frame. The support plate has a support hole, which is disposed opposite to the conveying groove and the thread rolling mechanism.
[0017] In one embodiment of this utility model, the diameter of the support hole is larger than the outer diameter of the aluminum shell, and the thickness of the support plate is 1 / 6 to 1 / 5 of the height of the aluminum shell.
[0018] The beneficial effects of this utility model are:
[0019] The feeding assembly of this utility model pushes the aluminum shell on the conveying groove to the thread rolling mechanism. The thread rolling mechanism performs thread rolling on the processing end of the aluminum shell, realizing automated thread rolling of the aluminum shell, which can effectively improve its production efficiency and reduce its manufacturing cost. During the aluminum shell feeding process, the support mechanism supports the aluminum shell pushed by the feeding assembly, which plays a certain supporting and guiding role for the aluminum shell, ensuring the stability during thread rolling. It can also be adapted to aluminum shells of various specifications and has a wide range of applications. Attached Figure Description
[0020] Figure 1 This is a schematic diagram of an aluminum shell conveying and processing structure according to this utility model.
[0021] Figure 2 This is a schematic diagram of the feeding mechanism of this utility model.
[0022] Figure 3 This is a schematic diagram of the thread rolling mechanism of this utility model.
[0023] The following are the labels in the diagram: 1. Thread rolling mechanism; 11. Processing frame; 12. Thread rolling wheel; 13. Support wheel; 14. Driver; 15. Drive shaft; 16. First gear; 17. Intermediate gear; 18. Driven shaft; 19. Second gear; 2. Feeding frame; 21. Conveying turntable; 22. Conveying trough; 24. Slotting; 3. Support mechanism; 31. Sliding block; 32. Support frame; 33. Support hole; 4. Pusher frame; 41. Guide rail; 42. Sliding frame; 43. Pusher plate; 44. Fixed seat; 45. Bearing assembly; 46. Push rod; 47. Fixed block. Detailed Implementation
[0024] The present invention will be further described below with reference to the accompanying drawings and specific embodiments, so that those skilled in the art can better understand and implement the present invention. However, the embodiments are not intended to limit the present invention.
[0025] Reference Figure 1-3 As shown, an aluminum shell conveying and processing structure includes:
[0026] Thread rolling mechanism 1 is used to perform thread rolling on the machining end of the aluminum shell;
[0027] A feeding mechanism is arranged opposite to the thread rolling mechanism 1. The feeding mechanism includes a conveying turntable 21 and a pushing component. The edge of the conveying turntable 21 is evenly provided with a plurality of conveying grooves 22. The conveying grooves 22 are arranged opposite to the thread rolling mechanism 1. The pushing component is arranged on one side of the conveying grooves 22. The pushing component is used to push the aluminum shell on the conveying grooves 22 to the thread rolling mechanism 1 for thread rolling.
[0028] The support mechanism 3 is located between the thread rolling mechanism 1 and the feeding mechanism. The support mechanism 3 is used to support the aluminum shell of the pushing component.
[0029] The feeding assembly of this utility model pushes the aluminum shell on the conveying groove 22 to the thread rolling mechanism 1. The thread rolling mechanism 1 performs thread rolling on the processing end of the aluminum shell, realizing automated thread rolling of the aluminum shell, which can effectively improve its production efficiency and reduce its manufacturing cost. During the aluminum shell feeding process, the support mechanism 3 supports the aluminum shell pushed by the feeding assembly, which plays a certain supporting and guiding role for the aluminum shell, ensuring the stability during thread rolling. It can also be adapted to aluminum shells of various specifications and has a wide range of applications.
[0030] The thread rolling mechanism 1 includes a drive assembly and a processing assembly. The drive assembly is drivenly connected to the processing assembly. The processing assembly includes a processing frame 11. A thread rolling wheel 12 and a support wheel 13 are rotated on the processing frame 11. A thread rolling gap is provided between the thread rolling wheel 12 and the support wheel 13. The thread rolling machine is provided with a thread rolling processing surface. The thread rolling wheel 12 and the support wheel 13 are used to perform thread rolling processing on the processing end of the aluminum shell, realizing automated thread rolling processing of the aluminum shell, which can effectively improve its production efficiency and reduce its manufacturing cost.
[0031] In one embodiment of this utility model, the driving assembly includes a driver 14, a driving shaft 15 and a driven shaft 18 are provided on the processing frame 11, a first gear 16 is provided on the driving shaft 15 and the driving shaft 15 is connected to the support wheel 13, a second gear 19 is provided on the driven shaft 18 and the driven shaft 18 is connected to the thread rolling wheel 12, the driver 14 is drivingly connected to the driving shaft 15, the first gear 16 and the second gear 19 are connected through an intermediate gear 17, and the driver 14 drives the first gear 16 and the second gear 19 to rotate synchronously.
[0032] Specifically, the driver 14 drives the support wheel 13 and the first gear 16 on the drive shaft 15 to rotate, thereby driving the second gear 19 connected to the first gear 16 to rotate, which in turn drives the thread rolling wheel 12 on the driven shaft 18 to rotate. A thread rolling gap is provided between the thread rolling wheel 12 and the support wheel 13 to ensure that the rotation direction of the thread rolling wheel 12 and the support wheel 13 is consistent, thereby improving the thread rolling forming effect.
[0033] In one embodiment of this utility model, the conveying turntable 21 is mounted on the feeding rack 2, and the feeding rack 2 is provided with a guide cover. The guide cover is a fan-shaped mechanism and is mounted on the conveying turntable 21. The inner sidewall of the guide cover and the conveying turntable 21 form a transmission channel for transmitting aluminum shells. The guide cover is provided with a slot 24, which is opposite to the conveying groove 22.
[0034] Specifically, the aluminum shells with the processing end are transferred to the conveyor turntable 21. The conveyor turntable 21 drives the aluminum shells on the conveying groove 22 to move along the guide cover. The inner side wall of the guide cover and the conveyor turntable 21 form a transmission channel for transferring the aluminum shells, which is used to guide the aluminum shells and prevent them from deviating. The aluminum shells are transported one by one by the rotating conveyor turntable 21. The use of rotary transmission rate to replace the traditional manual feeding can effectively improve its production efficiency and reduce its manufacturing cost.
[0035] In one embodiment of this utility model, the pushing assembly includes a pushing frame 4, a guide rail 41 is provided on the pushing frame 4, a sliding frame 42 is slidably provided on the guide rail 41, a pushing plate 43 is provided on the sliding frame 42, a pushing rod 46 is provided on the pushing plate 43, the sliding frame 42 is driven and connected to a power component, and the power component drives the pushing rod on the sliding frame 42 to push the aluminum shell on the conveying groove 22 to the thread rolling mechanism 1 for thread rolling processing.
[0036] Specifically, the power unit drives the pusher rod on the sliding frame 42 to push the aluminum shell on the conveying groove 22, and pushes the processing end of the aluminum shell to the thread rolling mechanism 1 for thread rolling processing. This can realize automated pushing and improve production efficiency.
[0037] In one embodiment of this utility model, a fixing block 47 is provided on the push rod 46. The fixing block 47 has a columnar structure and passes through the aluminum shell, driving the processing end of the aluminum shell to move towards the thread rolling mechanism 1.
[0038] In one embodiment of this utility model, the diameter of the fixing block 47 is smaller than the inner diameter of the aluminum shell, which facilitates the fixing block 47 to enter the interior of the aluminum shell and facilitates the removal of the aluminum shell. The fixing block 47 is provided with a rubber layer, and the diameter of the slot 24 is smaller than the outer diameter of the aluminum shell, which prevents the aluminum shell from coming out of the slot 24. The slot 24 can also provide some obstruction to the aluminum shell, making it easier for the fixing block 47 to detach from the aluminum shell.
[0039] In one embodiment of the present invention, a fixed seat 44 is provided on the sliding frame 42, a fixed hole is provided on the fixed seat 44, a bearing assembly 45 is provided on the fixed hole, and the free end of the push rod 46 is connected to the bearing assembly 45.
[0040] Specifically, the free end of the push rod 46 is connected to the bearing assembly 45, allowing the push rod 46 to rotate, which enables the aluminum shell to be processed better during the thread rolling process, resulting in better processing effect.
[0041] In one embodiment of the present invention, the support mechanism 3 includes a sliding block 31, which is slidably mounted on the guide rail 41. A support frame 32 is provided on the sliding frame 42, and a support plate is provided on the support frame 32. A support hole 33 is provided on the support plate, and the support hole 33 is disposed opposite to the conveying groove 22 and the thread rolling mechanism 1.
[0042] Specifically, during the feeding process, the aluminum shell first passes through the support holes 33 on the support plate. The support plate provides support and guidance for the aluminum shell, ensuring that the aluminum shell, the conveying groove 22, and the thread rolling gap are on the same straight line. This guarantees the stability and accuracy of the thread rolling process. The support plate provides better support and guidance for the aluminum shell and can also be adapted to various specifications of aluminum shells, making it widely applicable.
[0043] In one embodiment of this utility model, the diameter of the support hole 33 is larger than the outer diameter of the aluminum shell, and the thickness of the support plate is 1 / 6 to 1 / 5 of the height of the aluminum shell, which can effectively support the aluminum shell.
[0044] Usage process
[0045] The aluminum shell with the processing end is transferred to the conveyor turntable 21. The conveyor turntable 21 drives the aluminum shell on the conveyor groove 22 to move along the guide cover. The inner side wall of the guide cover and the conveyor turntable 21 form a transfer channel for transferring the aluminum shell, which guides the aluminum shell and prevents it from deviating, until the aluminum shell is transferred to the slot 24. The driver 14 drives the support wheel 13 and the first gear 16 on the drive shaft 15 to rotate, which drives the second gear 19 connected to the first gear 16 to rotate, thereby driving the thread rolling of the driven shaft 18. As the wheel 12 rotates, a thread rolling gap is provided between the thread rolling wheel 12 and the support wheel 13. The power unit drives the pusher rod on the sliding frame 42 to push the aluminum shell on the conveying groove 22, pushing the processing end of the aluminum shell to the thread rolling mechanism 1 for thread rolling. During the pushing process, the aluminum shell first passes through the support hole 33 on the support plate. The support plate provides a certain support and guidance for the aluminum shell, so that the aluminum shell, the conveying groove 22 and the thread rolling gap are on the same straight line, ensuring the stability and accuracy of the thread rolling.
[0046] The above-described embodiments are merely preferred embodiments provided to fully illustrate the present invention, and the scope of protection of the present invention is not limited thereto. Equivalent substitutions or modifications made by those skilled in the art based on the present invention are all within the scope of protection of the present invention. The scope of protection of the present invention is defined by the claims.
Claims
1. An aluminum shell conveying and processing structure, characterized in that, include: The thread rolling mechanism is used to perform thread rolling on the machined ends of aluminum shells; A feeding mechanism is arranged opposite to the thread rolling mechanism. The feeding mechanism includes a conveying turntable and a pushing component. The edge of the conveying turntable is evenly provided with a plurality of conveying grooves. The conveying grooves are arranged opposite to the thread rolling mechanism. The pushing component is arranged on one side of the conveying grooves. The pushing component is used to push the aluminum shells on the conveying grooves to the thread rolling mechanism for thread rolling. A support mechanism is provided between the thread rolling mechanism and the feeding mechanism, and the support mechanism is used to support the aluminum shell of the pushing component.
2. The aluminum shell conveying and processing structure as described in claim 1, characterized in that, The thread rolling mechanism includes a drive assembly and a processing assembly. The drive assembly is driven to the processing assembly. The processing assembly includes a processing frame, on which a thread rolling wheel and a support wheel are rotated. A thread rolling gap is provided between the thread rolling wheel and the support wheel. The thread rolling machine is provided with a thread rolling processing surface. The thread rolling wheel and the support wheel are used to perform thread rolling processing on the processing end of the aluminum shell.
3. The aluminum shell conveying and processing structure as described in claim 2, characterized in that, The drive assembly includes a driver, the processing frame is provided with a drive shaft and a driven shaft, the drive shaft is provided with a first gear and is connected to the support wheel, the driven shaft is provided with a second gear and is connected to the thread rolling wheel, the driver is driven to drive the drive shaft, and the driver drives the first gear and the second gear to rotate synchronously.
4. The aluminum shell conveying and processing structure as described in claim 1, characterized in that, The conveyor turntable is mounted on the feeding rack, and the feeding rack is provided with a guide cover. The guide cover is a fan-shaped mechanism and covers the conveyor turntable. The inner side wall of the guide cover and the conveyor turntable form a transmission channel for transmitting aluminum shells. The guide cover is provided with a slot, which is arranged opposite to the conveying channel.
5. The aluminum shell conveying and processing structure as described in claim 4, characterized in that, The feeding assembly includes a feeding frame, a guide rail on the feeding frame, a sliding frame on the guide rail, a feeding plate on the sliding frame, a feeding rod on the feeding plate, and the sliding frame is driven by a power component. The power component drives the feeding rod on the sliding frame to push the aluminum shell on the conveying groove to the thread rolling mechanism for thread rolling.
6. The aluminum shell conveying and processing structure as described in claim 5, characterized in that, A fixing block is provided on the push rod. The fixing block has a columnar structure and passes through the aluminum shell, driving the processing end of the aluminum shell to move towards the thread rolling mechanism.
7. The aluminum shell conveying and processing structure as described in claim 6, characterized in that, The diameter of the fixing block is smaller than the inner diameter of the aluminum shell, the fixing block is provided with a rubber layer, and the groove diameter is smaller than the outer diameter of the aluminum shell.
8. The aluminum shell conveying and processing structure as described in claim 5, characterized in that, The sliding frame is provided with a fixed seat, the fixed seat is provided with a fixed hole, the fixed hole is provided with a bearing assembly, and the free end of the push rod is connected to the bearing assembly.
9. The aluminum shell conveying and processing structure as described in claim 5, characterized in that, The support mechanism includes a sliding block that slides on the guide rail. A support frame is provided on the sliding frame, and a support plate is provided on the support frame. The support plate has a support hole that is opposite to the conveying groove and the thread rolling mechanism.
10. The aluminum shell conveying and processing structure as described in claim 9, characterized in that, The diameter of the support hole is larger than the outer diameter of the aluminum shell, and the thickness of the support plate is 1 / 6 to 1 / 5 of the height of the aluminum shell.