DocumentCode
349455
Title
Advanced beam and materials technologies for new industrial production
Author
Suzuki, Y. ; Iwamoto, N. ; Tabata, N.
Author_Institution
Ion Eng. Res. Inst. Corp., Osaka, Japan
Volume
2
fYear
1999
fDate
36495
Firstpage
853
Abstract
This paper reviews recent R & D activities of the national projects for new industrial production with advanced beam and materials technologies. These national project, mainly founded by MITI (The Ministry of International Trade and Industry) and the Science and Technology Agency of Japan, are as follows: big national Projects-high temperature SiC device for combustion control system; modification of C/C composites by ion implantation; PVD and CVD technologies for use in high-temperature oxidizing environments, and development of bio integrated materials of orthopedic hip implants and artificial blood vessels for non-thrombogenicity, and preliminary investigation study for next proposed national projects-surface modification of metals and metal alloys by ion implantation to improve corrosion, oxidization and wear resistance to high-temperature corrosive environments and development of plasma-based ion implantation technologies by using a vacuum arc evaporator
Keywords
alloys; biomedical materials; carbon fibre reinforced composites; chemical vapour deposition; corrosion protection; ion beam applications; ion beam effects; ion implantation; metals; plasma materials processing; reviews; silicon compounds; surface treatment; vapour deposition; wear resistance; wide band gap semiconductors; C; C/C composites; CVD; PVD; SiC; advanced beam technologies; artificial blood vessels; bio integrated materials; combustion control system; corrosion; high temperature SiC device; high-temperature corrosive environments; high-temperature oxidizing environments; industrial production; ion implantation; materials technologies; metal alloys; metals; nonthrombogenicity; orthopedic hip implants; oxidization; plasma-based ion implantation technologies; review; surface modification; vacuum arc evaporator; wear resistance; Combustion; Electrical equipment industry; Industrial control; International trade; Ion implantation; Materials science and technology; Metals industry; Plasma temperature; Production; Silicon carbide;
fLanguage
English
Publisher
ieee
Conference_Titel
Ion Implantation Technology Proceedings, 1998 International Conference on
Conference_Location
Kyoto
Print_ISBN
0-7803-4538-X
Type
conf
DOI
10.1109/IIT.1998.813802
Filename
813802
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