Interface board code spraying detection line
By designing an interface board injection detection line with integrated cleaning, injection, detection and poor removal functions, the problems of low production efficiency and high error operation rate caused by the separation of injection and detection of interface board components in the prior art are solved, and efficient injection and detection of interface board components are realized, and product quality is improved.
Patent Information
- Application Number
- CN202422017516.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-20
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2034-08-20
AI Technical Summary
In the prior art, the coding and detection of interface board components are carried out separately, resulting in low production efficiency and inability to detect all products. Manual operation is prone to misjudgment and inflow of defective products.
An interface board injection coding detection line is designed, integrating cleaning modules, injection coding modules, detection modules and defect removal modules. The interface board components are automatically transported and processed between these modules through conveyor belts to achieve fully automatic injection coding and detection.
It realizes efficient coding and detection of interface board components, improves production efficiency, reduces erroneous operation rate, and ensures improvement of product quality.
Smart Images

Figure CN222956943U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of production automation of automobile parts, and particularly relates to a production line for inkjet coding and detecting an interface board assembly. Background Art
[0002] The interface board assembly is an important part of the automotive IPB power-assisted braking system. During the driving process of the vehicle, it bears dynamic and static loads generated by the vehicle environment or driver input, which has a great impact on the safety during the driving process of the vehicle. Therefore, at present, there is a requirement for inkjet coding and traceability of the interface board in the market.
[0003] The traditional operation method in the industry is that the equipment for inkjet coding and detection is separate. That is, after manually wiping the interface board assembly clean, the inkjet coding equipment is used for inkjet coding, and then a part of the inkjet-coded interface board assemblies are randomly selected and sent to the detection equipment for detection.
[0004] In the existing operation method, since it is necessary to manually wipe the product and the material needs to be manually transported and transferred between two sets of equipment, the problem of low production efficiency is caused. Moreover, all inkjet-coded products cannot be detected, and there is a probability of misjudgment in manual operation. The defective products detected are manually removed, and it is easy to operate incorrectly and let the defective products flow into the client as qualified products. Summary of the Invention
[0005] The purpose of the utility model is to provide an interface board inkjet coding and detection line that improves the operation efficiency, reduces the misoperation rate and can comprehensively detect products.
[0006] To achieve the above purpose, the technical solution adopted by the utility model is:
[0007] An interface board inkjet coding and detection line is used for inkjet coding and detecting an interface board assembly on an automobile. The interface board inkjet coding and detection line includes: a cleaning module for cleaning the interface board assembly, an inkjet coding module for inkjet coding the cleaned interface board assembly to form a traceability code, a detection module for detecting the inkjet-coded interface board, a defective product removal module for removing the interface board assembly determined to be a defective product after detection, and the interface board inkjet coding and detection line further includes a material handling module for transferring the interface board assembly between the cleaning module, the inkjet coding module, the detection module, and the defective product removal module.
[0008] The cleaning module includes a plasma cleaning unit.
[0009] The cleaning module includes a cleaning bracket, and the plasma cleaning unit is movably arranged on the cleaning bracket.
[0010] The inkjet coding module includes an inkjet unit for jetting codes on the interface board assembly to form the traceability code, and a curing unit for curing the traceability code.
[0011] The inkjet coding module includes an inkjet support, and the inkjet unit and the curing unit are respectively movably arranged on the inkjet support.
[0012] The detection module includes a grade detection unit for performing grade detection on the interface board, and a camera detection unit for performing photographing detection on the interface board.
[0013] The detection module includes a detection support, and the grade detection unit and the camera detection unit are respectively movably arranged on the detection support.
[0014] The defective rejection module includes a manipulator.
[0015] The defective rejection module includes a rejection support, and the manipulator is arranged on the rejection support.
[0016] The material handling module includes a driving unit and a conveyor belt driven by the driving unit, and the cleaning module, the inkjet coding module, the detection module, and the defective rejection module are respectively arranged above the conveyor belt.
[0017] Due to the application of the above technical solution, the present utility model has the following advantages compared with the prior art: The present utility model can efficiently realize the inkjet coding and detection of all interface board assemblies, thereby improving the operation efficiency, reducing the misoperation rate, and improving the product quality. Description of the Drawings
[0018] Att Figure 1 is an axonometric schematic view of the interface board inkjet coding and detection line of the present utility model.
[0019] Att Figure 2 is a front view schematic view of the interface board inkjet coding and detection line of the present utility model.
[0020] In the above drawings: 1. Cleaning module; 2. Inkjet coding module; 3. Detection module; 4. Defective rejection module; 5. Material handling module; 6. Conveyor belt; 7. Plasma cleaning unit; 8. Cleaning support; 9. Inkjet unit; 10. Curing unit; 11. Inkjet support; 12. Grade detection unit; 13. Camera detection unit; 14. Detection support; 15. Manipulator; 16. Rejection support; 17. Frame. Detailed Embodiments
[0021] The present utility model will be further described below in conjunction with the embodiments shown in the drawings.
[0022] Embodiment 1: As shown in Att Figure 1 and AttFigure 2 As shown in Figure 2 , an interface board inkjet printing and detection line for inkjet printing and detecting an interface board assembly on an automobile includes a cleaning module 1, an inkjet printing module 2, a detection module 3, and a defective rejection module arranged in sequence. It also includes a material handling module 5, and all these components are arranged on a frame 17. Among them, the material handling module 5 is arranged on the upper surface of the frame 17, while the cleaning module 1, the inkjet printing module 2, the detection module 3, and the defective rejection module are respectively arranged above the material handling module 5.
[0023] The material handling module 5 includes a driving unit and a conveyor belt 6 driven by the driving unit. The cleaning module 1, the inkjet printing module 2, the detection module 3, and the defective rejection module 4 are sequentially arranged above the conveyor belt 6 respectively.
[0024] The cleaning module 1 is used to clean the interface board assembly. It includes a plasma cleaning unit 7 and a cleaning bracket 8. The cleaning bracket 8 straddles the conveyor belt 6, and the plasma cleaning unit 7 is movably arranged on the cleaning bracket 8. When the interface board assembly moves to the position below the plasma cleaning unit 7 along with the conveyor belt 6, the plasma cleaning unit 7 can be turned on to clean it.
[0025] The inkjet printing module 2 is used to inkjet print the cleaned interface board assembly to form a traceability code. It includes an inkjet printing unit 9 for inkjet printing on the interface board assembly to form a traceability code, a curing unit 10 for curing the traceability code, and an inkjet printing bracket 11. The inkjet printing bracket 11 straddles the conveyor belt 6, and the inkjet printing unit 9 and the curing unit 10 are respectively movably arranged on the inkjet printing bracket 11, and the inkjet printing unit 9 and the curing unit 10 are respectively located on both sides of the inkjet printing bracket 11. When the interface board assembly moves to the position below the inkjet printing module 2 along with the conveyor belt 6, first use the inkjet printing unit 9 to inkjet print to form a traceability code, and then use the curing unit 10 to perform UV irradiation to cure the traceability code.
[0026] The detection module 3 is used to detect the inkjet-printed interface board. It includes a grade detection unit 12 for grade detection of the interface board, a camera detection unit 13 for photographing detection of the interface board, and a detection bracket 14. The detection bracket 14 straddles the conveyor belt 6, and the grade detection unit 12 and the camera detection unit 13 are respectively movably arranged on the detection bracket 14, and the grade detection unit 12 and the camera detection unit 13 are respectively located on both sides of the detection bracket 14. When the interface board assembly moves to the position below the detection module 3 along with the conveyor belt 6, first use the grade detection unit 12 to perform grade detection, and then use the camera detection unit 13 to perform photographing detection, so as to obtain a detection result signal and output it.
[0027] The defective product rejection module 4 is used to reject the interface board assemblies determined to be defective after inspection. It includes a manipulator 15 and a rejection bracket 16. The rejection bracket 16 is spanned across the conveyor belt 6, and the manipulator 15 is arranged on the rejection bracket 16. The manipulator 15 is signal-connected to the detection module 3. Then, when the interface board assembly moves to the position below the defective product rejection module 4 along with the conveyor belt 6, the manipulator 15 removes the detected defective products from the conveyor belt 6 and sends them to the designated position.
[0028] The above interface board inkjet printing and detection line integrates functions such as product cleaning, inkjet printing, detection, and defective product rejection, which can improve production efficiency, reduce the error operation rate, and improve product quality at the same time.
[0029] The above embodiments are only for illustrating the technical concept and features of the present invention, and the purpose is to enable those who are familiar with this technology to understand the content of the present invention and implement it accordingly. It should not be used to limit the protection scope of the present invention. Any equivalent changes or modifications made according to the spirit and essence of the present invention should be covered within the protection scope of the present invention.
Claims
1. An interface board coding inspection line, used for coding and inspection of interface board components on automobiles, characterized by: The interface board coding inspection line includes: a cleaning module for cleaning the interface board assembly, a coding module for coding the cleaned interface board assembly to form a traceability code, an inspection module for inspecting the interface board after coding, and a defective rejection module for rejecting the interface board assembly determined to be defective after inspection. The interface board coding inspection line also includes a material handling module for transferring the interface board assembly between the cleaning module, the coding module, the inspection module, and the defective rejection module.
2. The interface board inkjet detection line according to claim 1 is characterized in that: The cleaning module includes a plasma cleaning unit.
3. The interface board inkjet detection line according to claim 2 is characterized in that: The cleaning module comprises a cleaning support, and the plasma cleaning unit is movably arranged on the cleaning support.
4. The interface board inkjet detection line according to claim 1 is characterized in that: The coding module includes a coding unit for coding the interface board assembly to form the traceability code, and a curing unit for curing the traceability code.
5. The interface board inkjet detection line according to claim 4 is characterized in that: The inkjet coding module comprises an inkjet coding support, and the inkjet coding unit and the curing unit are movably arranged on the inkjet coding support respectively.
6. The interface board inkjet detection line according to claim 1, characterized in that: The detection module includes a level detection unit for performing level detection on the interface board and a camera detection unit for performing photo detection on the interface board.
7. The interface board inkjet detection line according to claim 6, characterized in that: The detection module comprises a detection bracket, and the level detection unit and the camera detection unit are movably arranged on the detection bracket respectively.
8. The interface board inkjet detection line according to claim 1, characterized in that: The defective rejection module includes a robot.
9. The interface board inkjet detection line according to claim 8, characterized in that: The defective rejection module comprises a rejection bracket, and the robot is arranged on the rejection bracket.
10. The interface board inkjet detection line according to claim 1, characterized in that: The material handling module includes a driving unit and a conveyor belt driven by the driving unit. The cleaning module, the coding module, the detection module, and the defective rejection module are respectively arranged above the conveyor belt.