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2025 | Professional

French Design Awards Silver Winner

Smart and Auto Manufacturing System for Woodworking Tools

Entrant Company

Wuxi Xinke Tools Manufacture Co., Ltd - Guo Chenyu

Category

Conceptual Design - Technology

Client's Name

Country / Region

China

Integrated Smart Manufacturing and Automation Production Technology System for Woodworking Tools is an intelligent solution specifically developed for the woodworking tool manufacturing industry. This system enables information-based management throughout the entire manufacturing process of woodworking tools, efficiently organises and processes relevant data, and achieves automated operations and intelligent management of efficient and precision manufacturing processes. By incorporating automated modes into its software system to assist user operations and processing, the system can establish a reasonable and efficient precision manufacturing process model. While improving production efficiency and product quality, it also reduces production costs and environmental impact.
Through its highly flexible and automated production methods, the system significantly enhances production efficiency and product quality. During production, it employs advanced automated equipment and intelligent algorithms to optimise processes, reducing manual intervention and ensuring high efficiency and consistency in production. Compared with traditional production methods, efficiency is increased by 30% and the defective rate is reduced by 25%. The system features a clear structure and stable performance, capable of achieving efficient management to meet the needs of large-scale production. It also supports flexible switching between various production modes, such as small-batch customisation and large-batch standardisation, further enhancing production
flexibility and adaptability.
Furthermore, the system is equipped with multimodal sensors, including laser, vision, and vibration sensing technologies, which can collect real-time data during the processing. Combined with advanced artificial intelligence algorithms, it can perform real-time micron-level corrections on processing errors, ensuring that processing precision remains at the industry-leading level. Whether it is tool components with complex shapes or high-precision mortise and tenon structures, they can all be processed with high accuracy. Through precision processing and real-time correction, product quality and consistency are significantly improved, and the production cycle is shortened by 20%. Meanwhile, the system supports full visual monitoring of the processing process. Operators can intuitively grasp the processing status through real-time images and data feedback, promptly identify and resolve issues, thereby further improving production efficiency and product quality.

Credits

Designer
Guo Chenyu
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