Biography-Dr. Gennady P. BarchanBiography-Dr.Gennady P. Barchan
Born in 1939.
1959 B. Sc. Mechanical Engineering(Automotive engines design and service), First Technical College Rostov,Russia
1967 M. Sc. Mechanical Engineering(Road machines and the equipment), Novocherkassk polytechnic institute,Russia
1972 Ph. D., (Theoretical engineering,dry friction and fray).
1992 Ph. D., (Physical Chemistry)
Research positions:
1973 Head of a department (physicsand chemistry of dry friction and fray)
1982 Deputy Director of the RegionalResearch Institute
2000 Director and Chief Scientist ofscientific production association “Synergy”, Russia
Professional Experience:
Form 1972, Member of the Russian Federationnational scientific council on Tribology
From 1975 Member of Russian Federationscientific council on synthetic heat-resistant materials
From 1975 Member of Russian Federationscientific council on polymeric and composite materials
From 1992 Full member of the internationalacademy of energy – information science
Major projects: Russian space program(dry bearings, thermo tiles), dry bearings and polymeric material formilitary aircrafts (TU, SU, MIG) and helicopters (Mi, Ka)
More than 300 publications, 150 patentsand inventor's certificates.
Lines of work. Alternative energy processesand energy resources; closed cycles in heat engines, cyclic processesin hybrid technologies for processing raw materials and wastes; biotechnologies;technologies for production of constructional and functional materialsand goods with optimal properties.
Applications of research workresults. The following technologies and products has beencreated and patented:
- engines (including ones for transport) with working fluid regeneration, having no harmful exhaust;
- cyclic, hybrid, and energy-technology processes for treatment of carbonic and inorganic raw materials (including wastes), having no harmful exhaust, with producing electrical energy and synthetic materials;
- technologies for extracting chemical elements directly from ore at the mining site, without gaseous wastes;
- energy-chemical technologies for processing food and vegetal raw materials for making high-quality foodstuff, medicine, food additives, forage and fodder and different chemicals, without harmful exhaust;
- technologies for making new generation high-strength constructional materials for machine-building and construction;
- technologies for making new generation high-strength and long-lasting friction and anti-friction materials;
- technologies for making high-strength and long-lasting polymer and rubber products, including car tires;
- technologies for making new generation high-effective lubrication oils and hydraulic liquids;
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- technologies for making and applying high-effective protective coatings made of polymer-based and rubber-based composite;
- technologies for making long-lasting (up to 100 years of work) sleeve bearings for operation in gas and flow media;
- technologies for making nano-powders of different materials.
- The research work results are used in the following fields:
Aircraft building – dry frictionbearings and hinges, glues, synthetic lubricating oils and hydraulicliquids, protective coatings.
Motor-car industry – dry frictionbearings and hinges, asbestos free friction materials, viscous lubrication.
Defense technology – high-strengthcomposite materials, viscous lubrication, special rubbers, rubberizingtechnologies, protective coatings.
Shipbuilding – water-lubricated bearings,face seals, special coatings.
Pumps and hydraulic turbines – bearings,seals, case and rotor rubberizing.
Space technologies – glues, specialcoatings, heat-carriers, lubricating oils and hydraulic liquids, bearings.
Machine-tool construction and forge-and-press-machinebuilding – bearings for spindles and crank levers, non-lubricatedguides of machine-tools and presses.
Production and processing technologies– of polymer materials, fibers, rubbers, composites, pharmaceuticalsproducts, forage and fodder, vegetable oil, natural gas and mineraloil, wood.
Energy production – technologiesfor constructing effective energy production facilities, that have noharmful emissions (the requirements specification have been obtainedfor constructing two energy plants with working fluid regeneration,and also a plant for elements extraction from ore at the mining site).