This invention applies to superfine and Nanometer pulverization of all kinds of materials in powder industry, such as all kinds of precious metal, nonmetal mineral substances, plant fiber, industrial chemicals and so on.
It is generally known that the traditional pulverizing machines, such as ball pulverizer, Raymond mill, fan mill, airflow crasher, are functioning by the principles of gravity grind, weight striking or high pressure airflow impacting to acquire superfine powder, they must have independent grading system, induced draft fan system, while airflow pulverizer even needs an independent high pressure gas generation and storage system. The major shortfalls of these traditional pulverizers usually make them poor efficient, high energy consumption, pollution from grinder surface worn residuals, and low level performance in pulverization. In consequence, the high cost on both equipment purchasing and production process impedes them to be largely used in many different fields. Nowadays, most of traditional and similar rotor pulverizers are designed with one stage rotor (single cavity structure). And the rotor adopts connection between unilateral bearing and motor shaft to make up arm support structure. Such kind of structure restrains the possible design of high speed rotation and greater rotor diameter due to its lack of stability in its structure design. As there is only one working cavity, it results in frequent occurrence with low production and poor performance in pulverization.
On premise of intensive study on the shortfalls of traditional polverizers, this “Super Pulverizer” takes the aerodynamics principle in its design. It adopts multistage high speed revolution turbine and special design structure to realize the purpose of superfine or nanometer crush from mechanical method. The multistage high speed revolution turbine itself produces multistage strong cyclone and high multiple eddy clash effect to form high pressure cyclone troposphere under the high speed revolution. In high pressure cyclone troposphere, material particle produces strong inertia collision. Different material particles produce mutual transition of motion energy to accelerate material particles' inertia collision movement. It avoids defects of low effect, high energy consumption, pollution from grinder surface worn residual, high production cost, unrealized scale production from traditional pulverizer which are rely on gravity grind, weight striking and independent gradation.
The pulverizer adopts the integral design of three turbines and three cavities, wherein the left and the right cavities are grinding cavities with residuals discharger. The middle cavity is discharge cavity. Materials enter from the central feeding inlet of the outer sides of the left and the right grinding cavities, after they enter the cavities, they will quickly move towards the cyclone troposphere on the periphery of the grinding cavities under the function of cyclone centrifugal force generated by high speed rotation of the solid turbine. Since the turbine always keeps a certain speed (the rotary speed can be adjusted by frequency converter in accordance with the fineness requirement) of high speed rotation, material particles will do constant free inertial collision and shear motion on the cyclone troposphere layer, and since the difference of the qualities of material particles, kinetic energy will be mutually transformed after collision. When large mass of particles are collided with small mass of particles, large mass of particles keep transmit the large kinetic energy to the small mass of particles to enhance the inertia movement of small mass of particles, in doing so, wanted highly-effective pulverization effect can be obtained. When the mass (particle diameters) of material particles is grinded to required fineness, materials will be automatically discharged to the collecting bin made of the nanometer filtration bin through the internal opening of the grading plate under the function of the wind pressure of turbine fan of the discharge cavity. The material collecting bin and the equipment are connected through pipe and valves. The fineness required can be decided by adjusting the size of the inner opening of the grading plate, adjusting the quantity of the turbine blades of the discharge cavity and adjusting the size of the discharge valve.
The most important advantage of Super pulverizer is that it can get the result of super fine or even nano crushing in a low energy consumption, which the traditional pulverization is unable to reach. The average energy consumption of the Super pulverizer is one third to one fifth, or even lower, of those of the traditional ultra-fine grinding mill finish. So it shall be largely used for the super fine crushing in the field of application. In particular, due to very low energy consumption, it is possible to make the super fine powder to be applied on the large scale of industrialized production in the new energy and clean energy industry. Including: