Capacitor aluminum shell reversing device

By designing a capacitor aluminum shell reversing device, a single-row, unidirectional conveying of the capacitor aluminum shell is achieved using components such as vibrators and reversing hooks. This solves the problems of complex structure and high sorting difficulty in existing devices and improves particle packing efficiency.

CN223813042UActive Publication Date: 2026-01-20JIEFA ELECTRONICS
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Patent Information

Application Number
CN202423313166.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-01-20
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Existing capacitor aluminum shell sorting devices have complex structures, are difficult to sort, and affect the subsequent particle assembly process.

Method used

A capacitor aluminum shell reversing device was designed, including components such as a storage tray, a vibrator, a guide belt, a transition guide plate, an output guide plate, and a reversing hook. The vibrator drives the capacitor aluminum shell to be conveyed on the guide belt, and the reversing hook and V-shaped snap ring are used to realize the single-row, unidirectional conveying of the capacitor aluminum shell.

Benefits of technology

It enables single-row, unidirectional conveying of capacitor aluminum shells, has a reasonable structure, good performance, simplifies the sorting process, and improves particle packing efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223813042U_ABST
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Abstract

The utility model provides a capacitor aluminum shell reversing device which comprises a material storage disc, a vibrator installed at the bottom of the material storage disc, a material guide belt rising in a spiral mode arranged in the material storage disc, a transition guide plate arranged at an outlet of the material guide belt, an output guide plate arranged at the output end of the transition guide plate, and a material returning opening reserved between the transition guide plate and the output guide plate. A limiting fixing plate is installed above the input end of the output guide plate, a reversing guide plate is hinged to the bottom of the limiting fixing plate through a pin shaft, a reversing hook is arranged on one side of the bottom of the reversing guide plate and right faces the transition guide plate, and a V-shaped clamping spring is arranged on the pin shaft on the other side of the reversing guide plate. After the scheme is adopted, capacitor aluminum shells can be conveyed in a single-row and one-way mode, the structure is reasonable, and the using effect is good.
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Description

TECHNICAL FIELD

[0001] The utility model relates to capacitor production technical field especially is a capacitor aluminum shell reversing device. BACKGROUND

[0002] With the electron information technology day by day, the renewal rate of digital electronic products is faster and faster, and the production and sales of consumer electronic products such as flat panel television (LCD and PDP), notebook computer, digital camera and the like continue to grow, which drives the growth of capacitor industry. Before the capacitor is assembled, the capacitor aluminum shell needs to be arranged so that the end direction of the capacitor aluminum shell is consistent, thereby facilitating subsequent assembly. The existing capacitor aluminum shell sorting device has complex structure and large sorting difficulty, which affects the subsequent assembly process. SUMMARY

[0003] The utility model discloses a capacitor aluminum shell reversing device which can make the capacitor aluminum shell form single row and be conveyed in one direction, has reasonable structure and good use effect.

[0004] To achieve the above object, the utility model provides a technical scheme of a capacitor aluminum shell reversing device, which comprises a storage tray, a vibrator is installed at the bottom of the storage tray, a material guide belt in the form of spiral upward is arranged in the storage tray, a transition guide plate is arranged at the outlet of the material guide belt, an output guide plate is arranged at the output end of the transition guide plate, a return port is reserved between the transition guide plate and the output guide plate, the return port is connected with the inner cavity of the storage tray, a limiting fixed plate is installed above the input end of the output guide plate, a reversing guide plate is hingedly connected to the bottom of the limiting fixed plate through a pin shaft, a reversing hook is arranged at one side of the bottom of the reversing guide plate, the reversing hook faces the direction of the transition guide plate, and a V-shaped clamping spring is arranged on the pin shaft at the other side of the reversing guide plate.

[0005] The V-shaped clamping spring is sleeved on the pin shaft, one prong of the V-shaped clamping spring abuts against the bottom of the limiting fixed plate, and the other prong of the V-shaped clamping spring abuts against the reversing guide plate.

[0006] One end of the limiting fixed plate is connected with the inner cavity wall of the storage tray, and the other end of the limiting fixed plate is connected with a vertically downward lateral limiting plate, and the lower part of the lateral limiting plate extends to the inner side edge of the output guide plate.

[0007] A single row limiting plate is arranged at the inner side edge of the transition guide plate, the outer side of the single row limiting plate is connected with the transition guide plate, and the inner side of the single row limiting plate gradually inclines upward to form a limiting guide edge.

[0008] The capacitor aluminum shell is placed in the storage tray, the vibrator drives the storage tray to vibrate, the capacitor aluminum shell moves to the return material opening under the guidance of the transition guide plate, when the sealed end of the capacitor aluminum shell passes through the return material opening in front, the reversing hook on the reversing guide plate is not hooked on the capacitor aluminum shell, the capacitor aluminum shell smoothly enters the output guide plate, when the open end of the capacitor aluminum shell passes through the return material opening in front, the reversing hook on the reversing guide plate is hooked on the edge of the capacitor aluminum shell and falls into the return material opening, so that the reversing purpose is realized, single-end conveying is realized, the capacitor aluminum shell is formed in a single row and is conveyed in one direction, the structure is reasonable, and the use effect is good. BRIEF DESCRIPTION OF DRAWINGS

[0009] Figure 1 It is a whole structure schematic view of the utility model.

[0010] Figure 2 It is a whole structure schematic view of the utility model.

[0011] Figure 3 It is a normal passing schematic view of the aluminum shell of the utility model.

[0012] Figure 4 It is a schematic view of the aluminum shell being hooked of the utility model. CONCRETE IMPLEMENTING METHOD

[0013] The preferred embodiment of the utility model is further illustrated below in combination with all the drawings, referring to the drawings, Figure 1 to the drawings, Figure 4 The capacitor aluminum shell reversing device provided by the embodiment comprises a storage tray 1, a vibrator 2 is installed at the bottom of the storage tray 1, a guide belt 3 in the shape of a spiral ascending is arranged in the storage tray 1, a transition guide plate 4 is arranged at the outlet of the guide belt 3, an output guide plate 5 is arranged at the output end of the transition guide plate 4, a return material opening 6 is reserved between the transition guide plate 4 and the output guide plate 5, the return material opening 6 is connected with the inner cavity of the storage tray 1, a limiting fixed plate 7 is installed above the input end of the output guide plate 5, a reversing guide plate 10 is hingedly connected to the bottom of the limiting fixed plate 7 through a pin shaft 9, a reversing hook 11 is arranged at one side of the bottom of the reversing guide plate 10, the reversing hook 11 faces the direction of the transition guide plate 4, and a V-shaped clamping spring 12 is arranged on the pin shaft 9 at the other side of the reversing guide plate 10.

[0014] The V-shaped clamping spring 12 is sleeved on the pin shaft 9, one prong of the V-shaped clamping spring 12 abuts against the bottom of the limiting fixed plate 7, and the other prong of the V-shaped clamping spring 12 abuts against the reversing guide plate 10. One end of the limiting fixed plate 7 is connected with the inner cavity wall of the storage tray 1, and the other end of the limiting fixed plate 7 is connected with the vertically downward lateral limiting plate 8, and the lower part of the lateral limiting plate 8 extends to the inner side edge of the output guide plate 5. The inner side edge of the transition guide plate 4 is provided with a single-row limiting plate, the outer side of the single-row limiting plate is connected with the transition guide plate 4, and the inner side of the single-row limiting plate gradually inclines upward to form a limiting guide edge.

[0015] After the above scheme is adopted, the distance between the bottom of the reversing guide plate in the original state and the surface of the output guide plate is less than the diameter of the capacitor aluminum shell, the capacitor aluminum shell is placed in the storage tray, the vibrator drives the storage tray to vibrate, the capacitor aluminum shell is lifted along the material guiding belt (multi-row gathering type conveying) to the transition guide plate, and the multi-row gathering type conveying gradually forms single-row conveying under the inclination of the single-row limiting plate, the excess capacitor aluminum shell overflows from the inner side of the single-row limiting plate to the storage tray, and the capacitor aluminum shell moves downward to the return material port (the sorting port is greater than the diameter of the capacitor aluminum shell and less than the length of the capacitor aluminum shell) under the guidance of the transition guide plate. When the sealed end of the capacitor aluminum shell passes through the return material port in front, the reversing hook on the reversing guide plate does not hook the capacitor aluminum shell, the capacitor aluminum shell continues to move forward under the pushing of the subsequent shell, and simultaneously pushes the reversing guide plate to move in the output direction (the V-shaped clamping spring is compressed under stress), so that the capacitor aluminum shell smoothly enters the output guide plate. When the open end of the capacitor aluminum shell passes through the return material port in front, the reversing hook on the reversing guide plate hooks the edge of the capacitor aluminum shell, the capacitor aluminum shell continues to move forward under the pushing of the subsequent shell, and simultaneously pushes the reversing guide plate to move in the output direction (the V-shaped clamping spring is compressed under stress), and the capacitor aluminum shell is in an inclined state (the V-shaped clamping spring is compressed under stress) under the hooking of the V-shaped clamping spring. When the rear end (the sealed end) of the capacitor aluminum shell enters above the return material port, the subsequent pushing force is lost instantaneously, at this time, the V-shaped clamping spring expands under stress and pushes the capacitor aluminum shell into the return material port, so that the reversing purpose is achieved, and single-end conveying is achieved. After the scheme is adopted, the capacitor aluminum shell can be conveyed in a single row and in a single direction, the structure is reasonable, and the use effect is good.

[0016] The above-described embodiments are only preferred embodiments of the utility model, and do not limit the implementation range of the utility model, so that any change made according to the shape and principle of the utility model should be covered in the protection range of the utility model.

Claims

1. A capacitor aluminum shell commutation device, comprising a storage tray (1) and a vibrator (2) mounted on the bottom of the storage tray (1), characterized in that: The storage tray (1) is provided with a spiral guide belt (3) that rises in a spiral shape. A transition guide plate (4) is provided at the outlet of the guide belt (3). An output guide plate (5) is provided at the output end of the transition guide plate (4). A return port (6) is reserved between the transition guide plate (4) and the output guide plate (5). The return port (6) is connected to the inner cavity of the storage tray (1). A limit fixing plate (7) is installed above the input end of the output guide plate (5). A reversing guide plate (10) is hinged to the bottom of the limit fixing plate (7) through a pin (9). A reversing hook (11) is provided on one side of the bottom of the reversing guide plate (10). The reversing hook (11) faces the direction of the transition guide plate (4). A V-shaped retaining ring (12) is provided on the pin (9) on the other side of the reversing guide plate (10).

2. The capacitor aluminum shell commutation device according to claim 1, characterized in that: The V-shaped retaining ring (12) is fitted onto the pin (9). One of the forks of the V-shaped retaining ring (12) abuts against the bottom of the limiting fixing plate (7), and the other fork of the V-shaped retaining ring (12) abuts against the guide plate (10).

3. The capacitor aluminum shell commutation device according to claim 1, characterized in that: One end of the limiting and fixing plate (7) is connected to the inner wall of the storage tray (1), and the other end of the limiting and fixing plate (7) is connected to a vertically downward lateral limiting plate (8). The lower part of the lateral limiting plate (8) extends to the inner edge of the output guide plate (5).

4. The capacitor aluminum shell commutation device according to claim 1, characterized in that: A single row of limiting plates is provided at the inner edge of the transition guide plate (4). The outer side of the single row of limiting plates is connected to the transition guide plate (4), and the inner side of the single row of limiting plates gradually tilts upward to form a limiting guide edge.