Duplex vibration plating mechanism
By using the flexible support rod and conductive device of the double-linked vibratory plating mechanism, the problem of inconvenient material feeding and unloading in the vibratory plating machine is solved, realizing high-efficiency electroplating in automated production and improving work efficiency and the stability of conductive contact.
Patent Information
- Application Number
- CN202423096028.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-14
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-12-14
AI Technical Summary
Existing electroplating machines suffer from inconvenient material feeding and unloading during the electroplating process of small electronic components, resulting in low work efficiency and an inability to achieve fully automated production.
The double-unit vibratory plating mechanism uses a support rod made of polypropylene to connect the left and right vibratory plating machines. A combination of copper column and spring conductive device is used to achieve flexible support and good contact. Combined with a brushless DC motor and conductive device, automatic flipping and unloading are achieved.
It improves the working efficiency of the electroplating machine, reduces vibration transmission, ensures the stability of conductive contact, and meets the needs of automated production.
Smart Images

Figure CN223592858U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of electroplating especially relates to a double vibration plating mechanism. BACKGROUND
[0002] The vibration plating machine is generally used for the precious metal electroplating of small electronic components, and due to its special structure, it is inconvenient to feed and take materials, and usually manual or semi-automatic electroplating equipment is adopted, which will be lower than the fully automatic electroplating equipment in work efficiency, and will affect the production process. UTILITY MODEL CONTENTS
[0003] One purpose of the utility model is to provide a double vibration plating mechanism, the flexible support rod can weaken the vibration of the vibration plating machine, avoid the vibration of the whole bracket, and the spring also makes the copper column have good contact effect.
[0004] In order to achieve this purpose, the utility model adopts the following technical scheme:
[0005] A double vibration plating mechanism, comprising a bracket, a support rod, a left side vibration plating machine, a right side vibration plating machine, a left side brushless DC motor and a right side brushless DC motor, the material of the support rod is polypropylene, the left side connecting seat and the right side connecting seat are respectively installed on the two sides of the support rod, the left side brushless DC motor is fixed on the upper end of the left side connecting seat, the left side vibration plating machine is installed on the lower end of the left side connecting seat, the right side brushless DC motor is fixed on the upper end of the right side connecting seat, the right side vibration plating machine is installed on the lower end of the right side connecting seat, copper supports are arranged at the two ends of the support rod, and electrically conductive devices are installed on the copper supports, the electrically conductive devices comprise seat plates and copper columns, and springs are connected between the copper columns and the seat plates.
[0006] As a preferred technical scheme, the number of copper columns on each seat plate is three, and a tin layer is arranged on the outside of the copper column.
[0007] As a preferred technical scheme, the two sides of the bracket are provided with hanging plates, and the support rod penetrates through the lower ends of the hanging plates.
[0008] As a preferred technical scheme, the upper end of the copper column is provided with an electrical connection point, and the left side brushless DC motor and the right side brushless DC motor are electrically connected with the electrical connection point.
[0009] As a preferred technical scheme, the upper end of the left side vibration plating machine and the upper end of the right side vibration plating machine are both provided with first water baffle plates, the lower end of the left side connecting seat and the lower end of the right side connecting seat are both provided with second water baffle plates, and the first water baffle plates and the second water baffle plates are both fixed on the support rod.
[0010] As a preferred technical scheme, the left connecting seat is internally provided with a left copper braid, and the left copper braid is connected with the left brushless DC motor.
[0011] As a preferred technical scheme, the upper portion of the supporting rod is provided with a water baffle cover, and the water baffle cover covers the left connecting seat and the right connecting seat.
[0012] The double vibration plating mechanism has the advantages that the double vibration plating mechanism is used for automatically overturning and pouring materials, work efficiency is improved through two vibration plating machines, power is taken from each side respectively, vibration of the vibration plating machine is weakened due to flexibility of the supporting rod, and the copper column has good contact under the action of the spring, thereby meeting the demand of production. BRIEF DESCRIPTION OF DRAWINGS
[0013] The utility model will be further explained in detail in the basis of the drawings and the embodiment.
[0014] Fig. 1 It is a front view of the double vibration plating mechanism of the embodiment.
[0015] Fig. 2 It is a side view of the double vibration plating mechanism of the embodiment.
[0016] Figs. 1-2 In the embodiment, the double vibration plating mechanism comprises a supporting rod, a left vibration plating machine, a right vibration plating machine, a left brushless DC motor, a right brushless DC motor, a left connecting seat, a right connecting seat, a copper support, a seat plate, a copper column, a spring, a hanging plate, a power connection point, a first water baffle, a second water baffle, a left copper braid and a right copper braid.
[0017] 1, bracket;2, supporting rod;3, left vibration plating machine;4, right vibration plating machine;5, left brushless DC motor;6, right brushless DC motor;7, left connecting seat;8, right connecting seat;9, copper support;10, seat plate;11, copper column;12, spring;13, hanging plate;14, power connection point;15, first water baffle;16, second water baffle;17, left copper braid;18, right copper braid;19, water baffle cover. DETAILED DESCRIPTION
[0018] The technical scheme of the utility model will be further explained in the basis of the drawings and through the specific embodiment.
[0019] As Figs. 1-2As shown, in the embodiment, a double vibration plating mechanism includes a bracket 1, a support rod 2, a left side vibration plating machine 3, a right side vibration plating machine 4, a left side brushless DC motor 5 and a right side brushless DC motor 6. The support rod 2 is made of polypropylene. The two sides of the support rod 2 are respectively provided with a left side connecting seat 7 and a right side connecting seat 8. The left side brushless DC motor 5 is fixed at the upper end of the left side connecting seat 7. The left side vibration plating machine 3 is installed at the lower end of the left side connecting seat 7. The right side brushless DC motor 6 is fixed at the upper end of the right side connecting seat 8. The right side vibration plating machine 4 is installed at the lower end of the right side connecting seat 8. The two ends of the support rod 2 are provided with copper supports 9. The copper supports 9 are provided with electric conduction devices. The electric conduction devices include seat plates 10 and copper columns 11. The copper columns 11 are connected with the seat plates 10 through springs 12.
[0020] The left side vibration plating machine 3 takes electricity from the left side groove edge. The right side vibration plating machine 4 takes electricity from the right side groove edge. The support rod 2 made of polypropylene has sufficient strength to support the weight of the two vibration plating machines and the bracket 1. The flexibility of the support rod 2 weakens the vibration transmission of the two vibration plating machines, so as to avoid the vibration transmission of the vibration plating machines to the bracket 1 and cause the vibration of the whole machine.
[0021] The number of the copper columns 11 on each seat plate 10 is three. The outer side of the copper column 11 is provided with a tin layer. The two sides of the bracket 1 are provided with hanging plates 13. The support rod 2 passes through the lower end of the hanging plate 13. The upper end of the copper column 11 is provided with an electricity taking point 14. The left side brushless DC motor 5 and the right side brushless DC motor 6 are electrically connected with the electricity taking point 14. The upper end of the left side vibration plating machine 3 and the upper end of the right side vibration plating machine 4 are respectively provided with first water baffle plates 15. The lower end of the left side connecting seat 7 and the lower end of the right side connecting seat 8 are respectively provided with second water baffle plates 16. The first water baffle plates 15 and the second water baffle plates 16 are fixed on the support rod 2. The left side connecting seat 7 is provided with a left side copper braid 17. The left side copper braid 17 is connected with the left side brushless DC motor 5. The right side connecting seat 8 is provided with a right side copper braid 18. The right side copper braid 18 is connected with the right side brushless DC motor 6. The upper side of the support rod 2 is provided with a water baffle cover 19. The water baffle cover 19 covers the left side connecting seat 7 and the right side connecting seat 8.
[0022] The groove edge conduction is carried out at the two ends of the support rod 2. Due to the flexibility of the support rod 2, the copper supports 9 on the two sides can have good contact with the copper V seat on the machine frame. The three copper columns 11 form the conduction of the power supply. In order to make each copper column 11 having conduction function have good contact, the springs 12 are configured. In order to avoid acid corrosion, the outer side of the copper column 11 is subjected to tin plating treatment. The spring 12 is subjected to baking paint treatment. In order to adapt to the automatic overturning and pouring, the bracket 1 is subjected to water sealing treatment. The water baffle cover 19 is arranged at the upper side. The water baffle plate is arranged at the lower side. In order to adapt to the violent vibration of the vibration plating machine, the left side brushless DC motor 5 and the right side brushless DC motor 6 are connected with the flexible tin plated copper braid in the bracket 1.
[0023] It should be noted that the above specific embodiments are only the preferred embodiments of the utility model and the applied technical principles, and any changes or replacements easily thought by any person skilled in the art in the technical range disclosed by the utility model should be covered in the protection range of the utility model.
Claims
1. A duplex plating mechanism characterized by comprising: Including the bracket, support rod, left side vibration plating machine, right side vibration plating machine, left side brushless DC motor and right side brushless DC motor, the material of support rod is polypropylene, both sides of support rod are respectively installed with left side connecting seat and right side connecting seat, left side brushless DC motor is fixed in the upper end of left side connecting seat, left side vibration plating machine is installed in the lower end of left side connecting seat, right side brushless DC motor is fixed in the upper end of right side connecting seat, right side vibration plating machine is installed in the lower end of right side connecting seat, both ends of support rod are provided with copper support, copper support is installed with electric conduction device, electric conduction device includes seat plate and copper column, copper column is connected with spring between seat plate.
2. The dual plating mechanism of claim 1, wherein The number of copper columns on each seat plate is three, and a tin layer is provided on the outer side of the copper column.
3. The dual plating mechanism of claim 1, wherein Both sides of the bracket are provided with hanging plates, and the support rod passes through the lower end of the hanging plate.
4. The dual plating mechanism of claim 1, wherein The upper end of the copper column is provided with an electrical connection point, and the left side brushless DC motor and the right side brushless DC motor are electrically connected with the electrical connection point.
5. The dual plating mechanism of claim 1, wherein The upper end of the left side vibration plating machine and the upper end of the right side vibration plating machine are both installed with a first water baffle, the lower end of the left side connecting seat and the lower end of the right side connecting seat are both installed with a second water baffle, and the first water baffle and the second water baffle are both fixed on the support rod.
6. The dual plating mechanism of claim 1, wherein A left side copper braid is arranged in the left side connecting seat, and the left side copper braid is connected to the left side brushless DC motor.
7. The dual plating mechanism of claim 1, wherein A right side copper braid is arranged in the right side connecting seat, and the right side copper braid is connected to the right side brushless DC motor. A water baffle cover is installed above the support rod, and the water baffle cover covers the left side connecting seat and the right side connecting seat.