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High Pressure Laminate Metal

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Changzhou Giovanni New Materials Technology Co., Ltd. Changzhou Giovanni New Materials Technology Co., Ltd.
ABOUT US

Changzhou Giovanni New Materials Technology Co., Ltd.

Changzhou Giovanni New Materials Technology Co., Ltd. (Changzhou YiHome Intelligent Technology Co., Ltd) was established in 2009 with a registered capital of 20.58 million yuan. We are Wholesale High Pressure Laminate Metal Manufacturers and China OEM High Pressure Laminate Metal Factory. It is a comprehensive enterprise integrating new material R & D, production, sales and product technology solutions in Jiangsu Province. After years of development, it now has 4 production lines of fireproof board, with about 150 employees and 30 technicians, including nearly 8 senior technicians, including almost all the cutting-edge talents in the industry. Now it is one of the manufacturing and processing industries of high-pressure decorative fireproof boards with unlimited prospects in China. It is a regular manufacturer of environmental protection and fireproof materials. The company mainly produces and processes high-grade MAG phenolic resin boards, anti-bacterial board physical and chemical boards and other boards. It is widely used in interior decoration, furniture cabinets, bathroom partitions, experimental tables and so on. Plate with its heat resistance, wear resistance, pollution resistance, pressure resistance, fireproof, moisture-proof, easy to clean features by the majority of users love, products sell well throughout the country. At the same time, these products are also exported to Southeast Asia, the Middle East, Africa, Europe and the United States through Changzhou YiHome Intelligent Technology Co., Ltd. and have won great achievements and high praise.

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Industry Knowledge Extension

High-Pressure Laminated Metals: Why They Are Essential for Aerospace?

High Pressure Laminate Metal (HPLM) has become an indispensable material in the aerospace field due to its excellent physical properties, such as high strength, light weight and corrosion resistance. The requirements for materials in the aerospace field are extremely demanding, and HPLM meets the stringent needs of this field with its unique performance advantages.

Aerospace vehicles need to operate in extreme environments, such as high temperature, high pressure and radiation. Therefore, materials must have excellent heat resistance, mechanical strength and fatigue resistance. Weight reduction is a core goal of aerospace design, and lightweight materials can significantly improve the fuel efficiency and load capacity of aircraft. These needs and challenges make HPLM an ideal choice.

HPLM exhibits extremely high strength and durability through the close combination of multiple layers of metal and resin. Its composite structure can effectively resist external impact and mechanical stress, ensuring the structural integrity of the aircraft under extreme conditions. Compared with traditional metal materials, HPLM has a lower density. By optimizing the material combination and lamination process, HPLM can significantly reduce weight while maintaining high strength, which is crucial to improving the performance of aircraft and reducing fuel consumption.

The combination of metal layers and resin layers of HPLM gives it good corrosion resistance and high temperature resistance. During high-altitude flight, aircraft will be affected by various corrosive gases and extreme temperatures. HPLM can provide effective protection and extend the service life of aircraft.

In aircraft manufacturing, HPLM is widely used to manufacture structural parts such as wings, fuselages and tails. Its high strength and lightweight characteristics help improve the structural stability and fuel efficiency of aircraft. For example, HPLM is used to manufacture wing skins, which can not only improve the strength of the wings, but also significantly reduce weight, and improve the range and load capacity of the aircraft.

HPLM is also widely used in missile manufacturing. Missiles will encounter high temperatures and violent airflow impacts during flight. The high temperature resistance and high strength of HPLM can ensure the integrity and stability of the missile shell.

In satellite manufacturing, HPLM is used to manufacture satellite structural parts and shells. Satellites need to withstand extreme temperature changes and radiation in space. The high temperature resistance and corrosion resistance of HPLM can provide effective protection. In addition, its lightweight characteristics help reduce launch costs and improve the payload capacity of satellites.

In terms of manufacturing process, the introduction of intelligent manufacturing technology has significantly improved the production efficiency and product quality of HPLM. Through precise control and monitoring, the consistency and stability of material properties can be achieved, meeting the requirements of high precision and high reliability in the aerospace field.

With its superior performance, high-pressure laminated metals have shown great application potential in the aerospace field. Through continuous technological innovation and process improvement, HPLM will further promote the development of aerospace technology and meet the higher requirements of future aircraft for high strength, light weight and durability. With the advancement of science and technology and the growth of market demand, high-pressure laminated metals will play an increasingly important role in the aerospace field.