Feeding transfer machine

By designing a feeding relay machine, the product in the storage barrel is poured into the feeding trough by flipping the material in the feeding tank, combined with manual feeding, the problem of loading difficulties in electroplating processing is solved, and efficient and low-strength loading operation is achieved.

CN223213380UActive Publication Date: 2025-08-12DONGGUAN CITY YI HENG METAL PROD CO LTD
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Patent Information

Application Number
CN202420856203.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-04-23
Publication Date
2025-08-12
Estimated Expiration
2034-04-23

AI Technical Summary

Technical Problem

The loading process of product in electroplating is troublesome, low efficiency and high labor intensity, especially when pouring small products in the storage barrel into the electroplating equipment.

Method used

A feeding transfer machine is designed, including a frame, control switch, material separation plate, material pouring seat and motor. The products in the storage barrel are poured into the material separation tank through the flip of the material pouring seat, and manually fetching the material to achieve semi-automatic loading.

Benefits of technology

The loading process is simplified, the loading efficiency is improved, the labor intensity is reduced, and the automation level of electroplating processing is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a feeding transfer machine which comprises a machine frame, a control switch, a material distributing disc, a material pouring base and a motor. A material distributing disc and a material pouring base are arranged, a material distributing groove with an opening in the upper end is formed in the material distributing disc in a matched mode, and a discharging opening communicated with the material distributing groove is formed in the rear end of the material distributing groove. The material pouring base is arranged on the machine frame in a back-and-forth overturning mode and located above the front end of the material distributing disc, a containing cavity with the upper end and the front end open is formed in the material pouring base, so that the material storage barrel can be carried into the containing cavity through external carrying equipment, and then products in the material storage barrel are poured into the material distributing groove through overturning of the material pouring base. According to the semi-automatic feeding device, the small container is arranged on the discharging opening, then manual receiving of products is conducted at the discharging opening through the small container, and therefore the feeding process is completed, the feeding process is simpler, compared with the mode that materials are taken in a storage barrel, the feeding efficiency is greatly improved, and meanwhile the semi-automatic design enables the labor intensity to be lower.
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Description

Technical Field

[0001] The utility model relates to the field of electroplating processing technology, in particular to a feeding transfer machine. Background Art

[0002] Alloy electroplating is the process of depositing a thin layer of alloy on certain metal surfaces using electrolysis to achieve enhanced material properties. It involves depositing a metal film on the surface of metal or other materials, thereby preventing oxidation and improving wear resistance, conductivity, reflectivity, corrosion resistance, and aesthetics. Electroplating requires a low-voltage, high-current power supply to the plating tank, as well as an electrolytic device consisting of a plating solution, the part to be plated (cathode), and an anode. The composition of the plating solution varies depending on the coating, but all contain a primary salt that provides the metal ions, a chelating agent that complexes the metal ions in the primary salt to form a complex, a buffer to stabilize the solution's pH, an anode activator, and special additives. The electroplating process involves the reduction of metal ions in the plating solution to metal atoms through electrode reactions under the influence of an external electric field, resulting in metal deposition at the cathode.

[0003] During electroplating processing, small products in the storage barrel need to be poured into the electroplating equipment. In order to increase the product conveying efficiency, the storage barrel is generally large in size and the product is made of metal. Therefore, it is difficult to pour the products out of the storage barrel. The products in the storage barrel need to be taken out one by one manually, which makes the loading process more troublesome, greatly affects the loading efficiency, and the labor intensity is also high. Therefore, it is necessary to study a new technical solution to solve the above problems. Utility Model Content

[0004] In view of this, the present invention aims to address the deficiencies in the prior art, and its main purpose is to provide a loading transfer machine that can effectively solve the problems of cumbersome product loading process, low loading efficiency and high labor intensity in the existing alloy electroplating process.

[0005] To achieve the above purpose, the present invention adopts the following technical solutions:

[0006] A loading transfer machine includes a frame, a control switch, a material distribution tray, a material pouring seat and a motor; the control switch is arranged on the frame; the material distribution tray is arranged on the frame and is inclined, and a material distribution trough with an open upper end is provided in the material distribution tray, and a discharge port connected to the material distribution trough is provided at the rear end of the material distribution trough; the material pouring seat is arranged on the frame so as to be flipped back and forth and is located above the front end of the material distribution tray, and the material pouring seat has an accommodating cavity with an upper end and a front end open, and a limit rod is provided on the material pouring seat, and the limit rod is located above the accommodating cavity; the motor is arranged on the frame and drives the material pouring seat to flip back and forth, and the motor is electrically connected to the control switch.

[0007] As a preferred solution, the control switch includes a main body and a power button, a first flip button and a second flip button arranged on the main body; wherein the power button is located on the upper end surface of the main body, the first flip button and the second flip button are arranged on the side wall surface of the main body, and the first flip button and the second flip button are arranged at intervals up and down.

[0008] As a preferred solution, a material receiving tray is provided on the side of the frame, and the material receiving tray is arranged horizontally and is located directly below the discharge port.

[0009] As a preferred solution, a support rod is provided on the frame, and a rubber seat is provided on the support rod. The rubber seat is located directly below the pouring seat.

[0010] As a preferred solution, there are two discharge ports arranged at intervals in the transverse direction, and a dividing piece is provided at the bottom of the dividing trough. The dividing piece is composed of two inclined dividing plates, and the dividing piece is located between the two discharge ports.

[0011] As a preferred solution, a material receiving rod is provided at the front end of the bottom of the pouring seat, and a plurality of rollers arranged front to back and extending laterally are provided at the bottom of the pouring seat. The plurality of rollers can be rotatably arranged back and forth at the bottom of the pouring seat.

[0012] As a preferred solution, the number of the limiting rods is two and they are spaced apart from each other in the front and back, and the limiting rod at the rear end is integrally bent upward to form a yielding portion.

[0013] Compared with the prior art, the present invention has obvious advantages and beneficial effects. Specifically, it can be seen from the above technical solution that:

[0014] The machine is provided with a material distribution plate and a material pouring seat, and a material distribution trough with an upper end opening in the material distribution plate, and a discharge port connected to the material distribution trough is opened at the rear end of the material distribution trough; the material pouring seat can be turned back and forth on the frame and is located above the front end of the material distribution plate, and the material pouring seat has a accommodating cavity with an upper end and a front end opening, so that the storage barrel can be transported to the accommodating cavity by external transportation equipment, and then the product in the storage barrel is poured into the material distribution trough by turning the material pouring seat, and then the product is manually received at the discharge port through a small container, thereby completing the loading process, making the loading process simpler, and compared with the method of taking materials in the storage barrel, the loading efficiency is greatly improved, and the semi-automatic design makes the labor intensity lower.

[0015] In order to more clearly illustrate the structural features and effects of the present invention, the present invention will be described in detail below with reference to the accompanying drawings and specific embodiments. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a schematic diagram of the three-dimensional structure of a preferred embodiment of the present utility model.

[0017] Description of the accompanying drawings:

[0018] 10. Frame 11. Material receiving tray

[0019] 12. Support rod 13. Rubber seat

[0020] 20. Control switch 21. Body

[0021] 22. Power button 23. First flip button

[0022] 24. Second flip button 30. Material distribution tray

[0023] 301, material distribution trough 302, discharge port

[0024] 31. Material separation piece 32. Material separation plate

[0025] 40. Pour-out seat 401. Accommodating cavity

[0026] 41. Limit rod 411. Yield part

[0027] 42. Material receiving rod 43. Roller

[0028] 50. Motor. DETAILED DESCRIPTION

[0029] Please refer to Figure 1 As shown, it shows the specific structure of a preferred embodiment of the present utility model, which includes a frame 10, a control switch 20, a material distribution tray 30, a material pouring seat 40 and a motor 50.

[0030] The control switch 20 is disposed on the frame 10. In this embodiment, the control switch 20 includes a body 21 and a power button 22, a first flip button 23, and a second flip button 24 disposed on the body 21. The power button 22 is located on the upper end surface of the body 21, and the first flip button 23 and the second flip button 24 are disposed on the side wall of the body 21. The first flip button 23 and the second flip button 24 are spaced apart from each other. The first flip button 23 is used to control the upward flipping of the material pouring base 40 via the motor 50, and the second flip button 24 is used to control the downward flipping of the material pouring base 40 via the motor 50. A receiving tray 11 is disposed on the side of the frame 10. A support rod 12 is disposed on the frame 10, and a rubber seat 13 is disposed on the support rod 12.

[0031] The material distribution tray 30 is set on the frame 10, and the material distribution tray 30 is set at an angle. There is a material distribution trough 301 with an upper end opening in the material distribution tray 30, and a discharge port 302 connected to the material distribution trough 301 is opened at the rear end of the material distribution tray 301; in this embodiment, the aforementioned receiving tray 11 is set horizontally and located just below the discharge port 302. The receiving tray 11 is used to collect products that are accidentally dropped when the material is received at the discharge port 302 by humans, so as to prevent the products from falling on the ground and being contaminated by dust; the discharge port 302 is There are two discharge ports 302 arranged at intervals laterally, which are used to increase the discharge speed of the product in the distribution trough 301, further improving the loading efficiency. A distribution member 31 is provided at the bottom of the distribution trough 301, and the distribution member 31 is composed of two inclined distribution plates 32. The distribution member 31 is located between the two discharge ports 302. The distribution member 31 is used to divert the products in the distribution trough 301 through the inclined distribution plates 32 to avoid product accumulation and blocking the discharge port 302.

[0032] The pouring seat 40 can be flipped back and forth and is set on the frame 10 and is located above the front end of the distribution plate 30. The pouring seat 40 has a accommodating cavity 401 with an upper end and a front end opening. A limiting rod 41 is provided on the pouring seat 40. The limiting rod 41 is located above the accommodating cavity 401. The limiting rod 41 is used to prevent the storage barrel from falling off from the accommodating cavity 401; in this embodiment, the aforementioned rubber seat 13 is located directly below the pouring seat 40. The rubber seat 13 is used to play a buffering role when the pouring seat 40 is flipped upward and reset, so as to avoid collision between the pouring seat 40 and the frame 10 and cause damage. A material receiving rod 42 is provided at the front end of the bottom of the pouring seat 40, and a plurality of rollers 43 arranged front to back and extending laterally are provided at the bottom of the pouring seat 40. The plurality of rollers 43 can be rotatably arranged at the bottom of the pouring seat 40. The cooperation between the material receiving rod 42 and the rollers 43 allows the storage barrel to be placed on the material receiving rod 42 during loading, and then the storage barrel is slid into the rear end of the accommodating cavity 401 through the cooperation of the rollers 43, which facilitates the loading process of the storage barrel; the limit rods 41 are two arranged front to back at intervals, and the limit rod 41 at the rear end is integrally bent upward to form a yield portion 411, which is used to prevent the limit rod 41 at the rear end from blocking the opening of the storage barrel and affecting the pouring speed of the product in the storage barrel.

[0033] The motor 50 is mounted on the frame 10 and drives the pouring base 40 to flip back and forth. The motor 50 is electrically connected to the control switch 20 .

[0034] The working principle of this embodiment is described in detail as follows:

[0035] When in use, first connect the equipment to the external power supply, then place the storage barrel on the clamping rod 42 of the pouring seat 40 through the external handling equipment, and then slide the storage barrel into the rear end of the accommodating chamber 401 through the cooperation of the roller 43. When guiding the material, just press the power button 22 on the control switch 20 first, and then press the second flip button 24 to make the pouring seat 40 flip downward, and then the product in the storage barrel will slowly pour out of the storage barrel and pour into the distribution tray 30, and then the product will flow out through the discharge port 302. At this time, a suitable container is used manually to collect the product. When it is almost full, press the first flip button 23 to make the pouring seat 40 flip upward and reset, thereby stopping the pouring process of the product in the storage barrel, and then the product in the container is manually loaded with the electroplating material, and then the above process is repeated.

[0036] The design focus of the present invention is that: it is provided with a dividing plate and a pouring seat, and cooperates with a dividing trough with an upper end opening in the dividing plate, and a discharge port connected to the dividing trough is opened at the rear end of the dividing trough; the pouring seat can be turned back and forth on the frame and is located above the front end of the dividing plate, and the pouring seat has a accommodating cavity with an upper end and a front end opening, so that the storage barrel can be transported to the accommodating cavity through external transportation equipment, and then the product in the storage barrel is poured into the dividing trough by turning the pouring seat, and then the product is manually received at the discharge port through a small container, thereby completing the loading process, making the loading process simpler, and compared with the method of taking materials in the storage barrel, the loading efficiency is greatly improved, and the semi-automatic design also makes the labor intensity lower.

[0037] The above description is merely a preferred embodiment of the present invention and does not limit the technical scope of the present invention. Therefore, any minor modifications, equivalent changes and modifications made to the above embodiments based on the technical essence of the present invention are still within the scope of the technical solution of the present invention.

Claims

1. A feeding transfer machine, characterized by: It includes a frame, a control switch, a material distribution tray, a material pouring seat and a motor; the control switch is arranged on the frame; the material distribution tray is arranged on the frame, and the material distribution tray is arranged at an angle, and a material distribution trough with an upper end open is provided in the material distribution tray, and a material discharge port connected to the material distribution trough is provided at the rear end of the material distribution trough; the material pouring seat can be turned back and forth on the frame and is located above the front end of the material distribution tray, and the material pouring seat has an accommodating cavity with an upper end and a front end open, and a limit rod is provided on the material pouring seat, and the limit rod is located above the accommodating cavity; the motor is arranged on the frame and drives the material pouring seat to turn back and forth, and the motor is electrically connected to the control switch.

2. The feeding transfer machine according to claim 1, characterized in that: The control switch includes a body and a power button, a first flip button and a second flip button arranged on the body; wherein the power button is located on the upper end surface of the body, the first flip button and the second flip button are arranged on the side wall surface of the body, and the first flip button and the second flip button are arranged at intervals up and down.

3. The feeding transfer machine according to claim 1, characterized in that: A material receiving tray is provided on the side of the frame, and the material receiving tray is arranged horizontally and is located directly below the discharge port.

4. The feeding transfer machine according to claim 1, characterized in that: The frame is provided with a support rod, the support rod is provided with a rubber seat, and the rubber seat is located just below the pouring seat.

5. The feeding transfer machine according to claim 1, characterized in that: There are two discharge ports arranged at intervals in the transverse direction. A dividing piece is provided at the bottom of the dividing trough. The dividing piece is composed of two inclined dividing plates. The dividing piece is located between the two discharge ports.

6. The feeding transfer machine according to claim 1, characterized in that: A material receiving rod is provided at the front end of the bottom of the pouring seat, and a plurality of rollers arranged front to back and extending laterally are provided at the bottom of the pouring seat. The plurality of rollers can be rotatably arranged back and forth at the bottom of the pouring seat.

7. The feeding transfer machine according to claim 1, characterized in that: The limiting rods are arranged in two positions at intervals in the front and rear, and the limiting rod at the rear end is integrally bent upward to form a yielding portion.