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Industry-University Collaboration | Falcontech and PolyU Explore Copper and Green-Laser Printing

Recently, Falcontech and the Hong Kong Polytechnic University conducted in-depth technical exchanges on copper material additive manufacturing and green light printing technology. The two parties conducted in-depth discussions around the industry's cutting-edge technology pain points, industrial application bottlenecks and future research and development directions, using the power of school-enterprise collaboration to inject new momentum into the innovation and implementation of high-end additive manufacturing technology. The Hong Kong Polytechnic University has strong research capabilities in the fields of advanced materials and additive manufacturing, especially in adapting green light printing technology to highly reflective materials, and has many innovative achievements. this...

Industry-University Collaboration | Falcontech and PolyU Explore Copper and Green-Laser Printing

Recently, Falcontech and the Hong Kong Polytechnic University conducted in-depth technical exchanges on copper material additive manufacturing and green light printing technology. The two parties conducted in-depth discussions around the industry's cutting-edge technology pain points, industrial application bottlenecks and future research and development directions, using the power of school-enterprise collaboration to inject new momentum into the innovation and implementation of high-end additive manufacturing technology.

School-enterprise collaboration explores new paths! Falcontech and Hong Kong Polytechnic University discuss breakthroughs in copper materials and green light printing technology

The Hong Kong Polytechnic University has strong research capabilities in the fields of advanced materials and additive manufacturing, especially in adapting green light printing technology to highly reflective materials, and has many innovative achievements. In this exchange, the Hong Kong Polytechnic University team brought the latest research progress of green light printing technology in the aspects of copper material molding accuracy control and internal defect optimization. Through experimental data and case sharing, they intuitively demonstrated the unique advantages of green light printing technology in solving the problems of "difficult to weld and easy to crack" in copper materials.

Based on years of industrialization practice and focusing on the needs of copper components in practical application scenarios such as new energy vehicle electric drive system heat dissipation end covers and semiconductor chip heat sinks, the Falcontech technical team proposed a trinity of industrialization thinking of "technical parameters - performance requirements - cost control". The two parties held heated discussions on core topics such as "Optimization of the post-processing process of green-light printed copper parts", "Quality stability control in mass production" and "Customization of material properties in different application scenarios". They even initially teased out the prototype of a technical solution of "green light printing + precision post-processing" on-site for the copper heat dissipation structure design of a certain high-power-density electric drive component.

The Hong Kong Polytechnic University team also highly recognized Falcontech's industrialization capabilities, believing that Falcontech's technology accumulation in the entire additive manufacturing chain (from powder preparation to finished product delivery) can provide real industry demand guidance for basic research and avoid "technology and market disconnection." The two parties agreed to use this exchange as a starting point to establish a regular communication mechanism, and will subsequently form a joint R&D team around specific technical topics to promote copper materials and green light printing technology from "theoretically feasible" to "industrially usable".

From key titanium alloy components in the aerospace field to copper-based high-end components in the new energy field, Falcontech has always taken "technological innovation" as its core driving force, and school-enterprise collaboration is an important way to accelerate technological breakthroughs. In the future, Falcontech will continue to deepen cooperation with universities and scientific research institutes, explore and innovate in more cutting-edge fields of additive manufacturing, and provide more competitive technical solutions for the upgrading of the high-end equipment manufacturing industry!