The Turbo Ultrafine Classifier is an efficient and precise powder classification equipment, which is widely used in the processing field of ultrafine powders. The optimization of its performance and the embodiment of its advantages mainly depend on the adjustment of key parameters and advanced structural design. By reasonably adjusting the parameters such as the classifier wheel speed, inlet wind speed, feed rate, guide plate design and secondary air intake, the classification effect can be improved. At the same time, its advantages such as high classification accuracy, high efficiency and energy saving, compact structure, long life, flexible configuration and high degree of automation make it an ideal choice in the field of ultrafine powder processing.
The speed of the classifier wheel is one of the core parameters affecting the classification effect. Appropriately increasing the speed can improve the classification efficiency and accuracy, but too high a speed will lead to uneven flow field distribution, thus affecting the classification effect. It is necessary to find the best balance between the speed and the stability of the flow field. The adjustment of the inlet wind speed is crucial to the dispersion and classification efficiency of the material. Too high a wind speed will increase the van der Waals force between particles and reduce the dispersion of the material; while too low a wind speed will not provide enough lift, affecting the output and efficiency. The setting of the inlet wind speed needs to comprehensively consider the material characteristics and classification requirements. Although the increase in feed rate can improve the processing capacity and output of the equipment, too high feed rate will reduce the classification efficiency and accuracy. In order to ensure the classification effect, the feeding speed should be kept uniform as much as possible to avoid large fluctuations.
The design of the guide plate has an important influence on the flow field distribution. Reasonable guide blade design can effectively improve the classification efficiency and accuracy. By increasing the number of blades, optimizing the blade shape and adopting the staggered blade design, the stability of the flow field can be improved, thereby improving the classification effect. The adjustment of the secondary air intake is an important means to optimize the classification effect. The secondary air intake device can effectively separate the agglomerated particles and further improve the classification efficiency. By reasonably adjusting the size of the secondary air intake, the classification accuracy and output can be improved.
The Turbo Ultrafine Classifier adopts advanced turbine classification technology, equipped with secondary air intake and stepless speed classification turbine, which can achieve high-precision classification. It has a wide range of particle sizes, and the adjustable range covers 3~150μm, which can meet the fine classification needs of different materials. Compared with traditional classification equipment, the Turbo Ultrafine Classifier performs outstandingly in energy saving. Through optimized design, its pressure drop is reduced, energy consumption is greatly reduced, and output is increased, achieving the goal of efficient and energy-saving production. The Turbo Ultrafine Classifier adopts computer-aided design, compact structure and easy operation. Its turbine volute design effectively reduces the noise during equipment operation, while ensuring the smoothness of operation and improving the operating experience.
The blades of the grading impeller are made of special high-strength wear-resistant materials, which greatly improves the stability of high-speed operation and extends the service life of the equipment. In addition, its design also reduces the deposition of micropowders during the processing of viscous and cohesive materials, further improving the durability of the equipment. The Turbo Ultrafine Classifier is highly flexible and can form a closed-loop system with a pulverizer or be used alone. This flexible configuration enables it to adapt to the grading needs of different materials and meet diverse production requirements. The Turbo Ultrafine Classifier adopts inverter operation to achieve automatic control. This improves production efficiency, simplifies the operating process, reduces the need for manual intervention, and further improves the convenience and reliability of the equipment.
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+86-17717510892