China's new aluminum alloy materials and extrusion products R & D direction

Since 1960, the Aluminum China Network has been dedicated to researching and developing new aluminum alloy materials for both military and special industrial applications, including high-strength, high-toughness, and high-performance alloys used in aerospace, defense, and naval industries. In parallel, we have also focused on civilian aluminum alloys tailored for a wide range of purposes. Over the decades, we have conducted in-depth research and production of hundreds of aluminum alloys and extruded products that align with China's national conditions, keeping pace with global advancements. Many of our research outcomes have reached international standards, effectively meeting the needs of national defense, economic development, and daily life. However, there is still a significant gap between our overall capabilities and those of leading global players, and continuous efforts are required to close this gap.

First, we are focusing on improving traditional aluminum alloys by integrating newer technologies. This includes applying micro-alloying theory, utilizing electronic metallurgy techniques, optimizing the composition of alloying elements, introducing high-efficiency trace elements, and exploring new reinforcement mechanisms. We are also developing advanced deformation and heat treatment processes, as well as innovative purification, refinement, and homogenization techniques. These efforts aim to unlock the full potential of existing 1×××–9××× series alloys, enabling the creation of new aluminum materials with enhanced properties such as high strength, toughness, wear resistance, corrosion resistance, fatigue resistance, high-temperature and low-temperature stability, radiation resistance, fireproofing, explosion-proofing, machinability, polishability, surface processability, and weldability. These materials will meet the growing demands of defense, cutting-edge technology, and rapid economic growth.

Second, we are working on developing new heat treatment, deformation heat treatment, and surface treatment methods to produce aluminum alloys with unique properties and specialized functions.

Third, we are conducting comprehensive studies on the relationship between the composition, processing, heat treatment, microstructure, and performance of aluminum alloys, aiming to enhance material performance and expand their application scope.

Fourth, we are exploring new aluminum alloy products such as powder metallurgy, spray forming, composite materials, ultrafine powders, and nanomaterials, pushing the boundaries of innovation.

Fifth, we are advancing the research and development of advanced extrusion techniques, casting processes, mold technology, and heat treatment methods, striving to achieve mass production of high-strength, high-performance extruded aluminum alloys with precise specifications and complex shapes.

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