DocumentCode :
445674
Title :
Obtaining of the aluminium alloy surface by high velocity flux of electro discharge plasma
Author :
Sivkov, A.A. ; Gerasimov, D.Y. ; Tsibina, A.S.
Author_Institution :
HVRI, Tomsk Polytech. Univ., Russia
Volume :
1
fYear :
2004
fDate :
26 June-3 July 2004
Firstpage :
298
Abstract :
Impulse coaxial magneto-plasma accelerator supersonic stream of electrodigit plasma. With a barrel length of up to 250 mm, the discharge is accelerated by a current 100-150 kA to a velocity of 3-5 km/s at atmospheric pressure. Up to 10 g of metal is taken out of a barrel. Researches on a raster electronic microscope have shown: uniformity of a covering, absence of pores and a dense interface from a surface of a substrate. The formation of a boundary layer of mutual mixture of materials of a covering and substrate by thickness 50-150 micron is established. It causes an extremely high adhesion of the covering from stainless steel on duralumin. A great number of jet inclusions of dense substance extending in thickness of a substrate starting from 150 microns up to 500 microns have been found out. This layer has high nanohardness. Increase of surface wear resistance compared with the others. The detailed surface processing of aluminium alloys by a high-velocity stream of electrodigit plasma of stainless steel structure provides an essential increase of mechanical properties. The received covering can carry out anticorrosive functions and functions of thermal barrier.
Keywords :
adhesion; aluminium alloys; coating techniques; coatings; corrosion protective coatings; hardness; plasma accelerators; plasma boundary layers; plasma flow; plasma materials processing; stainless steel; thermal barrier coatings; wear resistant coatings; 100 to 150 kA; 3 to 5 km/s; 50 to 150 micron; adhesion; aluminium alloy surface; anticorrosive functions; boundary layer; duralumin; electro discharge plasma; electrodigit plasma; high velocity flux; impulse coaxial magneto-plasma accelerator; jet inclusions; mechanical properties; nanohardness; raster electronic microscope; stainless steel; supersonic stream; thermal barrier; wear resistance; Acceleration; Accelerator magnets; Aluminum alloys; Atmospheric-pressure plasmas; Coaxial components; Magnetic flux; Plasma accelerators; Steel; Surface discharges; Surface resistance;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Science and Technology, 2004. KORUS 2004. Proceedings. The 8th Russian-Korean International Symposium on
Print_ISBN :
0-7803-8383-4
Type :
conf
DOI :
10.1109/KORUS.2004.1555353
Filename :
1555353
Link To Document :
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