I. Aesthetic Inspection
1.Surface Flaw Detection
Smart cameras capture clear images of the product surface, and through image recognition technology, they can detect surface defects such as scratches, dents, and bumps. For instance, the production of mobile phone cases, smart cameras can quickly capture and analyze each case to promptly identify any aesthetic damage caused during production, ensuring the product's aesthetic.
2. Shape and Size Confirmation
By capturing images of the product from multiple angles, and then analyzing and processing these images with relevant software, smart cameras can measure the product's dimensions and determine if its shape meets the standards. In the manufacturing industry of mechanical parts, smart cameras can enhance the accuracy and efficiency of inspect the shape and size of precision parts.
II. Assembly Inspection
1.Completeness Check of Component Assembly
Smart cameras can capture images of products on the assembly and identify whether all components are correctly installed. For example, in the assembly of car engines, smart cameras can check if all small parts, such as screws anders, are correctly assembled, preventing any missing components.
2. Accuracy of Assembly Position
By capturing images of the product after assembly and comparing them with standard assembly, smart cameras can detect whether the components are accurately positioned. In the assembly of electronic circuit boards, smart cameras can ensure that the electronic components are correctly soldered the circuit board.
III. Function Inspection
1.Product Operation Status Monitoring
Smart cameras can monitor the product's operation status in real-time. For large equipment such as generators, smart cameras can observe the operation of each part during operation, detect any abnormal vibrations or overheating, and promptly identify potential fault risks.
2.Detection of Product's Motion Function
For products with specific motion functions, smart cameras can inspect these movements. For example, they can check if the extension and bending of a robot arm are accurate and smooth by capturing and analyzing the motion process of the robot arm to ensure its motion function meets the requirements.