Twin-shaft Paddle Mixer

தயாரிப்பு விளக்கம்
The most important reason for the outstanding advantages of the twin-shaft paddle mixer in the mixing of feed materials is the advanced structural design. The paddle mixer is U-shaped and has two mixing shafts with evenly spaced paddles. The high-speed rotating paddles make the feed powder move in three directions: radial, circumferential and axial. The omnidirectional mixing method is adopted to make the feed powder mixed evenly in a very short time. If you want to add liquid to the powder, we can equip you with atomizing nozzles. Efficient and uniform mixing and liquid addition make the double paddle mixer ideal for mixing feed pellets and powder.
Working principle
The design of the double-shaft paddle mixer is based on a U-shaped tank with a double shaft and a paddle that extends the length of the tank. The action of the inclined paddles moves the material from the bottom and forces it down between the shafts, which provides a complete and homogeneous mixture of materials. Ideal mixer for homogeneous mixing of different components (CV< 5%) in the shortest possible time, regardless of density, shape and size. Mixing times of 30-120s.
Configuration
● Discharging door adopted full open structure and big angle (>90°), ensure material completely discharge and decrease vestigial;
● Discharging door molding rubber seal to ensure no leakage material; The gap between blade and casing ≤3mm and mixing uniformity CV≤5%(can even reach 2.3%);
● Mixing without dead angle, short cycle, mixing time about 30-120 seconds each batch, discharging time about 3 minutes;
● Shaft end adopted packing seal, without leakage, big access door structure, easy for clean and change paddle;
● Equipped with an oil liquid adding system, Liquid Sprayer adopted atomization, according to the need can install a pneumatic assist sprayer and easy control. According to the need can choose stainless steel or semi-stainless steel or carbon steel material to manufacture;
● Material mixing uniformity in zero gravity, not affected by material particle size, density and other factors;