Product transfer mechanism suitable for electronic part production line

By designing a product transfer mechanism suitable for electronic component production lines and using a multi-axis robotic arm to achieve automated transfer of semi-finished products and automatic recovery of finished products, the problem of personnel frequently opening and closing doors to take and put materials on the electronic component production line has been solved, thereby improving processing efficiency and the degree of automation.

CN223328432UActive Publication Date: 2025-09-12LEMTECH PRECISION MATERIAL (CHINA) CO LTD
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Patent Information

Application Number
CN202422620649.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-29
Publication Date
2025-09-12
Estimated Expiration
2034-10-29

AI Technical Summary

Technical Problem

On the production line of electronic components, product processing time is short, and personnel need to frequently open and close doors to take and put materials, resulting in increased ineffective auxiliary working hours and low processing efficiency.

Method used

A product transfer mechanism suitable for electronic component production lines is designed. It adopts the first multi-axis and second multi-axis robotic arms, combined with the material placement mechanism, product processing equipment and finished product collection mechanism to realize the automatic grasping of semi-finished products and automatic recycling of finished products, reducing manual intervention.

Benefits of technology

It increases the proportion of processing time per unit time, improves processing efficiency, reduces invalid working hours, meets the needs of unmanned processing of large loads, and realizes automated operation and high-efficiency production.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a product transfer mechanism suitable for an electronic part production line, which improves the ratio of processing time for processing products in unit time and improves the processing efficiency. The material placing mechanism comprises a supporting seat body and a conveying platform, the conveying platform is placed on the upper surface of the supporting seat body, a semi-finished product tray is placed on the conveying platform, and semi-finished products are arranged on the semi-finished product tray; the vertical support comprises a first stand column, a second stand column, a third stand column and a transverse rail, and the transverse rail is linearly arranged along the tops of the first stand column, the second stand column and the third stand column; a product taking and placing notch is formed in the top of the product processing equipment; a first multi-axis robot arm; a second multi-axis mechanical arm; and a finished product collecting mechanism.
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Description

Technical Field

[0001] The utility model relates to the technical field of automobile parts welding, in particular to a product transfer mechanism suitable for an electronic parts production line. Background Art

[0002] When consumer electronic products are being processed and manufactured, it is necessary to manually open and close the door to take out and place the materials, and then press the start button to start processing. Because electronic products are generally small and the processing time of a single piece is short, personnel need to frequently open and close the door and take out and place the materials during production. The actual effective processing time is very short, and most of the time is wasted on ineffective auxiliary working hours. For this reason, it is urgently necessary to develop a product transfer mechanism that can increase the processing time per unit time. Utility Model Content

[0003] In response to the above problems, the present invention provides a product transfer mechanism suitable for an electronic component production line, which increases the proportion of processing time used for processing products per unit time, thereby improving processing efficiency.

[0004] A product transfer mechanism suitable for an electronic component production line, characterized in that it comprises:

[0005] The material placement mechanism includes a support base body and a conveying platform. The conveying platform is placed on the upper surface of the support base body, and a semi-finished product tray is placed on the conveying platform. The semi-finished product tray is arranged on the semi-finished product tray;

[0006] A vertical support comprising a first column, a second column, a third column, and a transverse rail, wherein the transverse rail is arranged in a straight line along the tops of the first column, the second column, and the third column;

[0007] Product processing equipment, with a product loading and unloading notch on the top;

[0008] the first multi-axis robotic arm;

[0009] a second multi-axis robotic arm;

[0010] and finished product collection agencies;

[0011] The material placement mechanism is arranged in the area between the first column and the second column, the first multi-axis robotic arm is equipped with a first power motor, the first power motor drives the first multi-axis robotic arm to move along the transverse track, the front end of the second column is provided with a protruding buffer placement station, the buffer placement station is used to place the products to be processed, the second multi-axis robotic arm is equipped with a second power motor, the second power motor drives the second multi-axis robotic arm to move along the transverse track, the finished product collection mechanism is arranged in the area between the buffer placement station and the adjacent end side of the product processing equipment, the first multi-axis robotic arm moves linearly along the material tray placement area and the buffer placement station, the second multi-axis robotic arm moves linearly along the buffer placement station, the corresponding position of the finished product collection mechanism, and the product material taking and discharging gap.

[0012] It is further characterized by:

[0013] The finished product collection mechanism includes a finished product drop chute and a finished product receiving container. The upper end of the finished product drop chute is fixedly connected to the corresponding side of the second column, and the bottom of the finished product drop chute is connected to the upper feeding port of the finished product receiving container, which enables the second multi-axis robot arm to place the products processed by the product processing equipment into the initial feeding port of the finished product drop chute without unnecessary movement in the height direction.

[0014] The product processing equipment is integrated with a machine tool control panel, a machine tool safety door, and a three-color indicator light. The machine tool control panel is used to control the normal operation of the product processing equipment. The machine tool safety door is located at the front facade of the product processing equipment and is used for maintenance or material loading and unloading operations after it is opened. The three-color indicator light is used to provide dynamic working prompts;

[0015] A machine tool chip conveyor is further provided on the side of the product processing equipment away from the first column, and a machine tool waste vehicle is provided just below the outlet of the machine tool chip conveyor;

[0016] A safety net is provided on the first column and the second column just above the material tray at the loading position;

[0017] A transverse stabilizing bracket is provided on the top of the second column along the length direction of the transverse track, and the bottom of the transverse track is fixed to the transverse stabilizing bracket, which ensures the stable and reliable setting of the transverse track.

[0018] After adopting the above technical solution, the corresponding product program is first selected, and the workpiece is loaded into the cavity of the semi-finished product tray. Then the transfer mechanism is operated, and the semi-finished product tray is placed on the conveying platform. The first multi-axis robotic arm located at the loading position descends and clamps the semi-finished product, and then places the semi-finished product on the buffer placement station. After that, the first multi-axis robotic arm resets and moves to the loading position again. The second multi-axis robotic arm runs to the buffer placement station, descends and clamps the semi-finished product located at the buffer placement station. The second multi-axis robotic arm moves along the transverse track to the product loading and unloading gap of the product processing equipment. After that, the second multi-axis robotic arm places the semi-finished product through the product loading and unloading gap into the interior of the product processing equipment. The semi-finished product is processed into a product. After that, the second multi-axis robotic arm clamps the product and then transfers the product to the finished product collection mechanism. The two groups of multi-axis robotic arms work in a cycle; it increases the proportion of processing time used for processing products per unit time, thereby improving processing efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 This is a schematic diagram of the main structure of the utility model;

[0020] Figure 2 It is a schematic diagram of the three-dimensional structure of the utility model;

[0021] Figure 3 This is a schematic structural diagram of a semi-finished product-finished product in a specific embodiment of the present invention;

[0022] The names corresponding to the serial numbers in the figure are as follows:

[0023] Material placement mechanism 10, support base body 11, conveying platform 12, vertical support 20, first column 21, second column 22, third column 23, transverse track 24, safety net 25, transverse stabilizing support 26, product processing equipment 30, product loading and unloading notch 31, machine tool control panel 32, machine tool safety door 33, three-color indicator light 34, machine tool chip conveyor 35, machine tool scrap car 36, first multi-axis robotic arm 40, first power motor 41, second multi-axis robotic arm 50, second power motor 51, finished product collection mechanism 60, finished product drop chute 61, finished product receiving container 62, semi-finished product tray 70, buffer placement station 80;

[0024] Semi-finished product 1, product 2. DETAILED DESCRIPTION

[0025] A product transfer mechanism suitable for electronic parts production lines, see Figure 1-Figure 2 , which includes a material placement mechanism 10, a vertical support 20, a product processing device 30, a first multi-axis robotic arm 40, a second multi-axis robotic arm 50, and a finished product collection mechanism 60;

[0026] The material placement mechanism 10 includes a support base body 11 and a conveying platform 12. The conveying platform 12 is placed on the upper surface of the support base body 11. A semi-finished product tray 70 is placed on the conveying platform 12. Semi-finished products are arranged on the semi-finished product tray 70. The semi-finished product tray 70 located in the middle of the conveying platform 12 is the loading position of the tray placement area.

[0027] The vertical support 20 includes a first column 21, a second column 22, a third column 23, and a transverse rail 24. The transverse rail 24 is arranged in a straight line along the top of the first column 21, the second column 22, and the third column 23;

[0028] A product loading and unloading notch 31 is provided at the top of the product processing equipment 30. A machine control panel 32, a machine safety door 33, and a three-color indicator light 34 are integrated into the product processing equipment 30. The machine control panel 32 is used to control the normal operation of the product processing equipment 30. The machine safety door 33 is located at the front elevation of the product processing equipment 30 and is opened for maintenance or loading and unloading operations. The three-color indicator light 34 is used to provide working status prompts.

[0029] A machine tool chip conveyor 35 is further provided on the side of the product processing equipment 30 away from the first column 21 , and a machine tool scrap car 36 is provided just below the outlet of the machine tool chip conveyor 35 ;

[0030] A material placement mechanism 10 is provided in the area between the first column 21 and the second column 22, the first multi-axis robotic arm 40 is equipped with a first power motor 41, and the first power motor 41 drives the first multi-axis robotic arm 40 to move along the transverse track 24, and a protruding buffer placement station 80 is provided at the front end of the second column 22, and the buffer placement station 80 is used to place the products to be processed, the second multi-axis robotic arm 50 is equipped with a second power motor 51, and the second power motor 51 drives the second multi-axis robotic arm 80 to move along the transverse track 24, and the finished product collection mechanism 60 is arranged in the area between the buffer placement station 80 and the adjacent end side of the product processing equipment 30, the first multi-axis robotic arm 40 moves linearly along the upper material position and the buffer placement station 80 of the material tray placement area, and the second multi-axis robotic arm 50 moves linearly along the buffer placement station 80, the corresponding position of the finished product collection mechanism 60, and the product material taking and discharging gap 31.

[0031] During specific implementation: the finished product collection mechanism 60 includes a finished product blanking chute 61 and a finished product receiving container 62. The upper end of the finished product blanking chute 61 is fixedly connected to the corresponding side of the second column 23, and the bottom of the finished product blanking chute 61 is connected to the upper feed port of the finished product receiving container 62, which enables the second multi-axis robotic arm 50 to place the products processed by the product processing equipment 30 to the initial feed port of the finished product blanking chute 61 without unnecessary movement in the height direction.

[0032] In a specific implementation, a safety net 25 is provided on the first column 21 and the second column 22 corresponding to the top of the semi-finished product tray 70 at the loading position;

[0033] A transverse stabilizing bracket 26 is provided on the top of the second column 22 along the length direction of the transverse track 24 . The bottom of the transverse track 24 is fixed to the transverse stabilizing bracket 26 , which ensures a stable and reliable arrangement of the transverse track.

[0034] During specific implementation, the loading position located in the middle of the conveying platform 12 can also be set as a double-layer loading position, which allows a single loading to meet the long-term loading requirements.

[0035] Its working principle is as follows: first, select the corresponding product program and load the workpiece into the cavity of the semi-finished product tray 70. Then, the transfer mechanism operates and the semi-finished product tray 70 is placed on the conveying platform 12. The first multi-axis robotic arm 40 at the loading position descends and clamps the semi-finished product 1. Then, the semi-finished product 1 is placed on the buffer placement station 80. Then, the first multi-axis robotic arm 40 resets and moves to the loading position again. The second multi-axis robotic arm 50 runs to the buffer placement station 80, descends and clamps the semi-finished product 1 at the buffer placement station 80. The second multi-axis robotic arm 50 moves along the transverse track 24 to the product loading and unloading gap 31 of the product processing equipment 30. Then, the second multi-axis robotic arm 50 places the semi-finished product 1 into the interior of the product processing equipment 30 through the product loading and unloading gap 31. The semi-finished product 1 is processed into product 2. Then, the second multi-axis robotic arm 50 clamps product 2 and transfers product 2 to the finished product blanking slide 61. Finally, the finished product 2 is conveyed to the finished product receiving container 62. The two groups of multi-axis robotic arms work in a cycle.

[0036] Its beneficial effects are as follows:

[0037] 1. It adopts automatic semi-finished product grabbing and processing to finished product recycling;

[0038] 2. The first and second multi-axis robotic arms adopt digital integrated control systems to achieve high-precision and high-efficiency control;

[0039] 3. A window is opened on the top of the product processing equipment to form a gap for taking and placing products, so that there is no need to open or close the door to take and place parts, which greatly saves invalid working hours;

[0040] 4. It meets the needs of large loading trays and can achieve 3 hours of unmanned processing;

[0041] 5. The silo is programmable, and the switching quantity and time of materials can be customized to achieve unmanned automatic switching;

[0042] 6. This device is a general-purpose device and is compatible with a variety of products;

[0043] 7. The automation system is easy to operate, highly efficient and has low processing costs.

[0044] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the present invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the present invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be encompassed within the present invention. Any reference sign in a claim should not be construed as limiting the claim to which it relates.

[0045] In addition, it should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.

Claims

1. A product transfer mechanism suitable for an electronic parts production line, characterized in that: It includes: The material placement mechanism includes a support base body and a conveying platform. The conveying platform is placed on the upper surface of the support base body, and a semi-finished product tray is placed on the conveying platform. The semi-finished product tray is arranged on the semi-finished product tray; A vertical support comprising a first column, a second column, a third column, and a transverse rail, wherein the transverse rail is arranged in a straight line along the tops of the first column, the second column, and the third column; Product processing equipment, with a product loading and unloading notch on the top; the first multi-axis robotic arm; a second multi-axis robotic arm; and finished product collection agencies; The material placement mechanism is arranged in the area between the first column and the second column, the first multi-axis robotic arm is equipped with a first power motor, the first power motor drives the first multi-axis robotic arm to move along the transverse track, the front end of the second column is provided with a protruding buffer placement station, the buffer placement station is used to place the products to be processed, the second multi-axis robotic arm is equipped with a second power motor, the second power motor drives the second multi-axis robotic arm to move along the transverse track, the finished product collection mechanism is arranged in the area between the buffer placement station and the adjacent end side of the product processing equipment, the first multi-axis robotic arm moves linearly along the material tray placement area and the buffer placement station, the second multi-axis robotic arm moves linearly along the buffer placement station, the corresponding position of the finished product collection mechanism, and the product material taking and discharging gap.

2. The product transfer mechanism suitable for an electronic component production line according to claim 1, characterized in that: The finished product collection mechanism includes a finished product drop chute and a finished product receiving container. The upper end of the finished product drop chute is fixedly connected to the corresponding side of the second column, and the bottom of the finished product drop chute is connected to the upper feed port of the finished product receiving container.

3. The product transfer mechanism suitable for an electronic component production line according to claim 1, characterized in that: The product processing equipment is integrated with a machine tool control panel, a machine tool safety door, and a three-color indicator light. The machine tool control panel is used to control the normal operation of the product processing equipment. The machine tool safety door is located at the front facade of the product processing equipment. After it is opened, it is used for maintenance or material loading and unloading operations. The three-color indicator light is used to provide dynamic working prompts.

4. The product transfer mechanism suitable for an electronic component production line according to claim 1, characterized in that: A machine tool chip conveyor is further provided on a side of the product processing equipment away from the first column, and a machine tool waste vehicle is provided just below the outlet of the machine tool chip conveyor.

5. The product transfer mechanism suitable for an electronic component production line according to claim 1, characterized in that: A safety net is provided on the first column and the second column just above the material tray at the loading position.

6. The product transfer mechanism suitable for an electronic component production line according to claim 1, characterized in that: A transverse stabilizing bracket is provided on the top of the second column along the length direction of the transverse track, and the bottom of the transverse track is fixed to the transverse stabilizing bracket.