Title :
Pneumatic methods of superfine powders processing
Author :
Roslyak, Alexander ; Biryukov, Yuri ; Bogdanov, Leonid
Author_Institution :
Innovate-Technol. Sci.-Educ. Centre, Tomsk State Univ., Russia
Abstract :
The intensity of size reduction in complex pneumatic units is determined by the working pressure, chamber and nozzle process parameters, intensity of circulating motion, physical and mechanical properties of feed powders and size of produced particles. Our research shows that the interaction of abrasive particles is the deciding factor, while the design of nozzles and installation of obstacles did not influence noticeably the outcome of the process. Hence, the grinding of aluminum oxide and other materials, separation of required particle fraction, powder drying, liquid additions, granulation, blending or homogenization as well as processed powder precipitation from a carrying gas flow (dust collection), are achieved sequentially. Integrated theoretical and experimental investigations on the aeromechanics of high concentrated heterogeneous flows has allowed us to form a new method of powder technology on the basis of controlled circulating movement of the flow of “gas-solid particles” in closed volumes with the help of gas jets
Keywords :
drying; granular flow; grinding; jets; nozzles; particle size; powder technology; abrasive particles interaction; aeromechanics; blending; closed volumes; complex pneumatic units; controlled circulating movement; gas jets; gas-solid particles; granulation; grinding; high concentrated heterogeneous flows; homogenization; nozzles design; ore dressing; pneumatic processing methods; powder drying; size reduction; superfine powders; Abrasives; Aluminum oxide; Ceramics; Composite materials; Feeds; Fluid flow; Mechanical factors; Particle production; Powders; Superconductivity;
Conference_Titel :
Science and Technology, 2000. KORUS 2000. Proceedings. The 4th Korea-Russia International Symposium on
Conference_Location :
Ulsan
Print_ISBN :
0-7803-6486-4
DOI :
10.1109/KORUS.2000.866102