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Characteristics of aluminum pressure vessels
Lightweight and high strength: The density of aluminum is about one-third that of steel, which can significantly reduce the weight of containers while ensuring strength. It is suitable for weight sensitive fields such as aerospace and mobile equipment.
Strong corrosion resistance: Aluminum is prone to forming dense oxide films in air, and has good corrosion resistance to various media such as atmosphere, water, and some chemicals. It is especially suitable for industries with high hygiene requirements such as food and medicine.
Excellent thermal conductivity: The thermal conductivity of aluminum is about three times that of steel, making it suitable for heat exchange equipment. It can quickly transfer heat and improve equipment efficiency.
Good low-temperature performance: Aluminum has no low-temperature brittleness and can maintain good toughness in ultra-low temperature environments (such as liquid nitrogen and liquid oxygen storage), making it suitable for low-temperature pressure vessels.
Good plasticity and weldability: Aluminum is easy to process and can be welded using various welding methods (such as MIG welding, TIG welding), and the weld quality is reliable, making it easy to manufacture complex structural containers.
Strong corrosion resistance: Aluminum is prone to forming dense oxide films in air, and has good corrosion resistance to various media such as atmosphere, water, and some chemicals. It is especially suitable for industries with high hygiene requirements such as food and medicine.
Excellent thermal conductivity: The thermal conductivity of aluminum is about three times that of steel, making it suitable for heat exchange equipment. It can quickly transfer heat and improve equipment efficiency.
Good low-temperature performance: Aluminum has no low-temperature brittleness and can maintain good toughness in ultra-low temperature environments (such as liquid nitrogen and liquid oxygen storage), making it suitable for low-temperature pressure vessels.
Good plasticity and weldability: Aluminum is easy to process and can be welded using various welding methods (such as MIG welding, TIG welding), and the weld quality is reliable, making it easy to manufacture complex structural containers.