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Current Location:Home>News Center Co., Ltd.>Process and Features of Chemical Storage Tanks

    Process and Features of Chemical Storage Tanks

    2024-11-08

    Chemical Storage Tanks: Made by rotomolding with low-density polyethylene material for one-time molding. Resistant to acids and alkalis, widely used in the storage and transportation of various chemical reagents, and can be used as acid and alkali storage tanks. Possesses excellent properties such as anti-oxidation, anti-corrosion, and UV protection. Good environmental performance: Complies with hygiene standards, sterile and harmless, suitable for use as sewage storage tanks, environmental overflow tanks, flexible water tanks, and more for storage and transportation.

    The wall thickness of plastic containers is determined based on standardized calculations. It takes into account a comprehensive analysis of the structural design of the containers produced by the company, the strength of the raw materials, and the pressure on the inner wall under full injection conditions. The wall thickness of plastic containers varies with volume, increasing as the volume of the container grows. Additionally, the wall thickness of containers of the same volume but different types also varies. The calculation of the wall thickness for chemical storage tanks requires consideration of the structure and stress conditions of the plastic containers.

    Chemical Storage Tank Molding Process Heating > Place plastic in the bucket------Rotational Molding Internal Lining-----Cooling----Outdoor Corrosion-Resistant Powder Coating---This structural material for plastic pretreatment is well-suited for the wall's load-bearing conditions. The inner plastic layer is thick.30mmOur product boasts strong cohesion, capable of withstanding the stress caused by external forces on the steel drum during operation. The plastic inner layer, through the bonding layer, is inseparably combined with the steel drum body, allowing the steel drum wall and the plastic inner layer to deform synchronously under stress without shedding or deformation. Experiments have shown that even when the tube diameter is compressed by a quarter, it can return to its original shape after unloading pressure; it can also be restored to a certain degree of roundness after being flattened without deformation. This structure enhances the strength of the plastic layer with the steel plate and improves the stress condition of the steel plate with the plastic layer. Here, the steel and plastic are not only complementary in terms of chemical properties but also interact in terms of physical and mechanical properties. This type of composite material combines the respective advantages of steel and plastic, creating a new material that adapts to the stress conditions of the tube wall.


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