This book is a comprehensive analysis and presentation of the physical processes and phenomena that lead to the formation of disperse materials. It also details the properties of disperse materials yielded from various processes. Using currently available data, it compares different methods of producing disperse materials in terms of scale and d
This book is a comprehensive analysis and presentation of the physical processes and phenomena that lead to the formation of disperse materials. It also details the properties of disperse materials yielded from various processes. Using currently available data, it compares different methods of producing disperse materials in terms of scale and d
A. A. Bochkarev, Kutateladze Institute of Thermodynamics, Novosibirsk, Russia V. I. Polyakova, Kutateladze Institute of Thermodynamics, Novosibirsk, Russia
Inhaltsangabe
Introduction. Methodological Evaluation of the Prospects for the Development of Physical Dispersion Methods. Formulation of Experimental Studies of Homogeneous and Heterogeneous Vacuum Condensation of Metal Vapours. The Formation of Disperse Systems on a Solid Substrate in Heterogeneous Condensation. The Formation of Disperse Systems by Homogeneous Condensation with Vapour Jet Expansion. 'Genetics' and the Evolution of the Structure of Vacuum Condensates. The Formation of Columnar Structures in Co-Condensation of Two Components as a Way of Producing Nanosized Composites. Nanodisperse Zinc-Butanol Composite. Numerical Simulation of Molecular Processes on the Substrate. Methods for Direct Conversion of Kinetic Energy to Surface Energy of the Disperse System. Production of Metallic Powders of the Required Composition by Melting a Rotating Rod. Some Aspects of Coalescence Processes in Aerosol Systems. Capture of Microparticles from Gas Flows by Condensation Processes. Conclusion.
Introduction. Methodological Evaluation of the Prospects for the Development of Physical Dispersion Methods. Formulation of Experimental Studies of Homogeneous and Heterogeneous Vacuum Condensation of Metal Vapours. The Formation of Disperse Systems on a Solid Substrate in Heterogeneous Condensation. The Formation of Disperse Systems by Homogeneous Condensation with Vapour Jet Expansion. 'Genetics' and the Evolution of the Structure of Vacuum Condensates. The Formation of Columnar Structures in Co-Condensation of Two Components as a Way of Producing Nanosized Composites. Nanodisperse Zinc-Butanol Composite. Numerical Simulation of Molecular Processes on the Substrate. Methods for Direct Conversion of Kinetic Energy to Surface Energy of the Disperse System. Production of Metallic Powders of the Required Composition by Melting a Rotating Rod. Some Aspects of Coalescence Processes in Aerosol Systems. Capture of Microparticles from Gas Flows by Condensation Processes. Conclusion.
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