Scraping robot graphical user interface for electronic devices

CN310188238SActive Publication Date: 2026-09-04SHANGHAI SENJING TECH CO LTD
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Patent Information

Application Number
CN202630007392.8
Authority / Receiving Office
CN · China
Patent Type
Designs(China)
Current Assignee / Owner
Filing Date
2026-01-08
Publication Date
2026-09-04
Estimated Expiration
2041-01-08

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Abstract

1. Name of the product in this design: Graphical User Interface for Scraping Robots for Electronic Devices. 2. Application of this design: To improve the geometric accuracy of parts through repeated measurement and scraping; scraping can form tiny pits on the surface of parts, improving oil retention performance and reducing friction. 3. The key design features of this product are the combination of shape and pattern. 4. The image or photograph that best illustrates the design's key features: the front view. 5. Purpose of the Graphical User Interface: The main view in this graphical user interface is the initial interface; the left side of the initial interface is the main interface, i.e., the image display area, used to display the captured workpiece and the identified scraping high points. These scraping high points are marked by wireframes in the main interface. The right side, from top to bottom, consists of the machine tool information display area, the workpiece position display area, and the machine tool function area. The machine tool information display area displays alarm information, scraping information, and machine tool status. The squares in the workpiece position display area represent the actual size and location of the workpiece, and the dots represent the real-time position of the scraper. The machine tool function area includes scraping mode buttons, workpiece selection buttons, start scanning buttons, start scraping buttons, task cancellation buttons, and emergency stop buttons; input the corresponding values ​​for each. Then click the "+" next to scraping mode to display the interface change state (Figure 1), which displays the identification mode button, high point filtering button, scraping speed button, scraping pressure button, and toolpath template selection button; select the corresponding values ​​for each; then click the "+" next to the workpiece selection button to display the interface change state (Figure 2), where the main interface displays the "Workpiece Settings" interface, where the workpiece list and camera are selected. Enter the height, tool height, and light source mode, as well as the automatic height measurement button. Then, click the "+" button next to the toolpath template selection button to display the interface change state diagram 3. In this interface, the "Workpiece Settings" interface is displayed, showing the "Workpiece List, Toolpath Module List, Tool Height, and Tool Angle," as well as the toolpath template test button. Enter the corresponding values ​​for each. Click the system setting button to display the interface change state diagram 4. In this interface, the motion control button, image setting button, sensor setting button, and scraping process setting button are displayed. First, enter the motion control button. Click the handwheel panel button in the interface change state diagram 4 to display the interface change state diagram 5. In this interface, the electronic handwheel button, button jog, and position input buttons are displayed. Enter the corresponding values ​​in the electronic handwheel button. Click the image setting button to display the interface change state diagram 6. Click the hand-eye calibration button in the interface change state diagram 6 to display the interface change state diagram 7. In the toolpath template calibration state, "Calibrated" is displayed, along with the camera height and tool height, and the options to select the workpiece and toolpath template.
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