2025
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Stainless Steel Antibac-Anticorr Integrated Ctrl Software is an intelligent processing solution developed for the stainless steel product treatment industry. It enables comprehensive, information-based management and control throughout the antibacterial and anticorrosive treatment process, integrating and analyzing process parameters, environmental data, and quality inspection results in real time. By embedding automated control logic into its core module, the software assists operators in executing each process step precisely, establishing a scientific and efficient integrated processing system that improves product performance, enhances treatment qualification rates, and reduces both chemical losses and environmental impacts.
Through its highly automated control methods and advanced process optimization algorithms, the system dynamically regulates critical parameters such as anodizing voltage and galvanized layer thickness, minimizing human error and ensuring consistency. Compared with traditional manual methods, processing efficiency increases by 28%, while the rate of non-conforming products is reduced by 22%. The software’s clear architecture allows centralized control of multiple production lines, supporting both small-batch customized treatments (e.g., medical-grade antibacterial standards) and large-scale standardized processing (e.g., food equipment anti-corrosion), greatly improving production flexibility and adaptability.
In addition, the system integrates multimodal sensing technologies—including electrochemical sensors, laser thickness detectors, and water quality monitors—to capture key process data such as current density, coating adhesion, and wastewater pH. Supported by deep learning algorithms, it achieves micron-level calibration accuracy (±2 μm for galvanized layer thickness), guaranteeing stable, high-quality treatment results even for complex or high-precision components.
Through precise real-time control, the corrosion-resistant service life of stainless steel products is extended by more than 50%, while the processing cycle is shortened by 18%. Full-process visual monitoring enables operators to track treatment status via live data curves and HD video feeds, detect abnormalities instantly, and maintain consistent product quality and operational stability.
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University of Arts in Poznan
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Conceptual Design - Gaming, AR & VR
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resense interior design CO., LTD.
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