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AbstractAbstract
No abstract available
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Source
p. 18-19; 1971; AMAX Specialty Metals Div; Akron, N. Y
Record Type
Book
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Ambler, J.F.R.
Proceedings of the Third Annual Technical Meeting of the International Metallographic Society, Inc1971
Proceedings of the Third Annual Technical Meeting of the International Metallographic Society, Inc1971
AbstractAbstract
No abstract available
Primary Subject
Source
Johnson, K. A. (ed.); p. 1-6; 1971; International Metallographic Society, Inc; Los Alamos, N. Mex; 3. meeting of the International Metallographic Society; Cleveland, Ohio; 16 Nov 1970
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Book
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AbstractAbstract
No abstract available
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Journal Article
Literature Type
Progress Report
Journal
Funtai Oyobi Funmatsuyakin; v. 17(5); p. 206-213
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AbstractAbstract
No abstract available
Original Title
Ueber die Metallographie der Zirkoniumhydridphasen
Primary Subject
Source
7 figs.; 8 refs.
Record Type
Journal Article
Literature Type
Progress Report
Journal
Prakt. Metallog; v. 8(5); p. 272-278
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INIS VolumeINIS Volume
INIS IssueINIS Issue
AbstractAbstract
No abstract available
Primary Subject
Source
Favard, Pierre (ed.); Societe Francaise de Microscopie Electronique, 75 - Paris (France); p. 643-644; 1970; Societe Francaise de Microscopie Electronique; Paris, France; 7. International congress for electron microscopy; Grenoble, France; 30 Aug 1970; Abstract only.
Record Type
Book
Literature Type
Conference
Country of publication
Reference NumberReference Number
INIS VolumeINIS Volume
INIS IssueINIS Issue
Hales, R.; Pearce, R.J.
Central Electricity Generating Board, Berkeley (UK). Berkeley Nuclear Labs1970
Central Electricity Generating Board, Berkeley (UK). Berkeley Nuclear Labs1970
AbstractAbstract
No abstract available
Primary Subject
Source
Oct 1970; 17p; RDC/BGC/P--(70)71
Record Type
Report
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Hobdell, M.R.
Central Electricity Generating Board, Berkeley (UK). Berkeley Nuclear Labs1971
Central Electricity Generating Board, Berkeley (UK). Berkeley Nuclear Labs1971
AbstractAbstract
No abstract available
Primary Subject
Source
Aug 1971; 27 p; CFR-BMWP-P(71)--25
Record Type
Report
Report Number
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Reference NumberReference Number
INIS VolumeINIS Volume
INIS IssueINIS Issue
Tighineanu, I.; Ursachi, V.; Popa, V.; Monaico, E.
Universitatea Tehnica din Moldova (Moldova, Republic of)2004
Universitatea Tehnica din Moldova (Moldova, Republic of)2004
AbstractAbstract
[en] The invention relates to the semiconductor technology in particular to the processes for semiconductor nanostructures obtaining. Summary of the invention consists in that onto one of the surfaces of a semiconducting crystals, by photolithography, it is deposited a mask, it is carried out the electrochemical picking and it is removed the mask. Novelty of the invention consists in that after removal of the mask it is additional y carried out the electrochemical picking by light irradiation, the quanta energy of which exceeds the values of the semiconductor prohibited zone
Original Title
Procedeu de obtinere a nanostructurilor semiconductoare
Primary Subject
Source
The Official Bulletin of Industrial Property (INFOINVENT); (no.9); 29 Sep 2004; 2004; [p. 37]; MD PATENT DOCUMENT 255613F1; MD PATENT APPLICATION A20040138; Available from The State Agency of Industrial Property ,Chisinau (MD); Application date: 2004
Record Type
Patent
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AbstractAbstract
[en] Ion implantation, formerly used as a means of fabricating semi-conductor devices, is being developed as a new method of improving the durability of material surfaces. This follows several years of R and D by scientists and engineers at the Nuclear Physics Division of the Atomic Energy Research Establishment, Harwell, England. Here, the problems of applying an ion implantation to provide greater resistance to wear and corrosion of production tools and equipment, have been largely solved. In fact, the technique has been licensed for the commerical manufacture of ion implantation machines
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Journal Article
Journal
Engineering Digest (Toronto); ISSN 0013-7901;
; v. 29(3); p. 28-29

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AbstractAbstract
[en] The long time world railways practice has shown that the rail-wheel mechanical system is one of the most unique and complex systems on transport and some types of rail and wheel damages can take place due to service conditions, used material and technology of their production. Damage mechanisms such as wear, surface cracks, spalls, shells and elastic deformation as a result to rolling contact stresses can significantly reduce the service life of railway wheel sets and track and have a negative impact on the rolling noise as well as on the ridding comfort. This paper presents that a proper understanding of the heating and cooling mechanisms of the wheel surface for the required hardening purpose is necessary and a mathematical model is developed to present hardening process (local heat treatment). The history and background of rail/wheel contact is presented which incorporates that the wear and surface hardening is a complex phenomenon. The experimental results show that how the cyclic straining and friction heat hardens the surface layers of the rolling wheel and rail. (author)
Primary Subject
Source
Farooque, M; Rizvi, S.A.; Mirza, J.A. (eds.); Doctor A.Q. Khan Research Labs., Islamabad (Pakistan); 692 p; 2005; p. 284-291; 9. International Symposium on Advanced Materials; Islamabad (Pakistan); 19-22 Sep 2005
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Book
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Conference
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