The Detergent Blending Tank is made from high-quality stainless steel, specifically SUS304, SUS304L, SUS316, and SUS316L, making it durable and corrosion-resistant.
The tank has a large capacity of 500 liters, suitable for handling large volumes of liquid for industrial production.
The Detergent Blending Tank is equipped with a powerful 3 kW motor, providing reliable power for efficient blending and mixing.
Yes, the tank is designed to blend liquids with suspended solids, making it ideal for a variety of applications such as chemicals, food products, and cosmetics.
The spindle speed can be adjusted between 1 and 3800 rpm, offering versatility in mixing intensity from gentle to intense agitation.
This tank can perform various functions including mixing, homogenizing, milling, and coating, making it suitable for creating consistent paste-like products.
Yes, it includes an electric steam heating system that helps maintain the ideal temperature for mixing, making it suitable for both heating and cooling applications.
The tank is engineered for long-lasting performance even under heavy use, ensuring a prolonged service life.
Yes, the dimensions and voltage of the Detergent Blending Tank can be customized to fit your specific production needs.
It is ideal for mixing a variety of products including paste-like formulations such as cosmetics, detergents, creams, shampoos, and beverages.
While it is designed for large-scale production, the tank can be utilized for smaller batches as well, depending on your facility's needs.
Industries such as chemicals, food and beverage, cosmetics, and liquid soaps can all benefit from the features and capabilities of this blending tank.
Warranty details vary by supplier, so it's best to check with your vendor for specific warranty terms and conditions.
Regular cleaning and inspection of the stainless steel components, as well as routine checks of the motor and other mechanical parts, are recommended to maintain optimal performance.
Yes, the design of the tank allows for relatively easy operation, making it feasible for a single operator to manage the mixing process.
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