Industry-University-Grade Union Robotics Expected for Aluminum Industry

Advanced robots and system integration technologies are expected to be used in ceramics and aluminum profiles in Foshan. Recently, the Chancheng District Chancheng District, Foshan City, Guangdong Province held the first member meeting since its establishment. The conference revealed that in the next five years, the Precision Manufacturing Industry, Research and Research Alliance will invest more than 300 million yuan to overcome a number of key technologies, core technologies and common technologies that restrict the development of precision manufacturing industries.

It is reported that through research and development, construction and promotion of key issues, the production, research and development alliance within 3 to 5 years is expected to drive the relative manufacturing output value of the precision manufacturing industry to exceed 50 billion yuan. Secretary of the Institute of Precision Manufacturing, Production and Research, Wang Shuangxi said that the alliance will focus on the development of precision and special processing technology and equipment, precision inspection technology and equipment, auto parts, optoelectronic processing technology and equipment, precision medical devices, robots and other high-tech industries. Form a complete industrial chain in the field of precision manufacturing. To achieve this goal, the Industry, Research and Research Alliance will invest 360 million yuan for the development of key projects and the construction of a public R&D platform. Among them, science and technology funding support for science and technology departments at various levels will reach 124 million yuan.

Among these topics, the research and development of advanced robots and system integration technologies will invest 50 million yuan, which will be divided into two key topics: "automated assembly line based on robot technology" and "research on key technologies in the field of robotics". According to the research and development plan of the Industry, University, and Research Institute, the "research on key technologies in the field of robotics" will strive to form processing and production capabilities for automatic inspection equipment and digital printing equipment, break the monopoly of foreign technologies, and realize industrial applications in the fields of electronic devices and ceramics production. Strive to reach a production value of 500 million yuan. Wang Shuangxi said that the Robotics and System Integration Technology developed by the Industry, Research and Development Alliance will realize industrial application in the production of aluminum profiles.

Anodizing Treatment

Anodizing treatment is a surface finishing process for aluminum that forms a protective oxide layer on the surface of the metal. The process involves immersing the aluminum material in an electrolytic solution and passing an electric current through it. This creates a uniform and durable oxide coating that enhances the corrosion resistance and aesthetic appeal of the metal.


There are two main types of anodizing treatment: sulfuric acid anodizing and hard anodizing. Sulfuric acid anodizing is the most common type and produces a thinner, more decorative layer of oxide coating, while hard anodizing results in a thicker, harder, and corrosion-resistant layer that is ideal for industrial and automotive applications.


Anodizing treatment provides numerous benefits to aluminum products. It increases their resistance to corrosion and wear and tear, making them suitable for use in harsh environmental conditions. The process also enhances the strength and durability of the metal, extending its lifespan and reducing the need for maintenance.


Another advantage of anodizing treatment is its ability to add color and texture to aluminum products. Different dyes can be added to the electrolyte solution to produce a range of colors, from bright and vibrant to more subdued tones. Additionally, different textures and finishes can be achieved through specialized anodizing processes, such as matte anodizing or brushed anodizing.


Anodizing treatment is commonly used in various industries, including aerospace, automotive, construction, and consumer goods. It is an eco-friendly process as it uses no hazardous materials and produces minimal waste. However, it is important to note that anodizing treatment may affect the dimensional accuracy of the product and may mask defects that are present on the surface of the material.


Overall, anodizing treatment provides an effective way to enhance the functionality and appearance of aluminum products. As research and innovation continue to advance, even more advanced and innovative applications of anodized aluminum are expected to emerge.

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