2. Strong mixing capacity: suitable for the mixing of high-viscosity materials, which can achieve efficient dispersion and uniform mixing of materials.
3. High efficiency: the mixing speed and blade design of the double planetary mixer enable it to complete the mixing process in a short time and improve production efficiency.
4. Precise control: stirring speed, time, temperature and other parameters can be accurately adjusted through the control system to meet different process requirements.
5. Versatility: The double planetary mixer can be equipped with heating, cooling, vacuum and other auxiliary functions, suitable for a variety of processes.
6. Easy cleaning and maintenance: The structure of the mixer is designed for easy cleaning, reducing the risk of cross-contamination, and easy maintenance, reducing maintenance costs.
Mixing blade material selection
1. Stainless steel: This is the most commonly used material, with good corrosion resistance, wear resistance and mechanical strength. Suitable for most applications in the chemical, food and pharmaceutical industries.
2. 304 stainless steel: suitable for most mild chemical environments.
3.316 Stainless steel: with better corrosion resistance, suitable for Marine environments or environments containing halogens.
4. Carbon steel: the price is relatively low, the mechanical strength is high, but the corrosion resistance is poor, and it is usually used for occasions where it is not in contact with corrosive materials.
5. Hastelloy: suitable for extreme corrosive environments, such as the chemical process of dealing with strong acids and alkali.
6 Titanium alloy: has high strength and excellent corrosion resistance, often used in aerospace, chemical and other fields.
7. Polytetrafluoroethylene (PTFE) : has excellent chemical stability, non-viscous, suitable for food, medicine and other occasions to avoid pollution.
8. Nylon: has good wear resistance and self-lubrication, suitable for low to medium load mixing applications.
9. Polyurethane: has good wear resistance and chemical resistance, suitable for medium to high load mixing.
10. Aluminum or aluminum alloy: light weight, good electrical conductivity, but relatively low corrosion resistance and mechanical strength.
11. Engineering plastics: such as polycarbonate (PC), polyether imide (PEI), etc., for the mixing of specific chemicals.
12. Ceramic: high temperature resistance, wear resistance, suitable for high temperature or serious wear mixing occasions.






