Electron irradiation damage in TiC
Electron irradiation experiments were carried out on (100) TiC sub(0.93) thin foils inside an electron microscope operated at 100KV at room temperature. Both graphite rings and extra diffraction spots were observed as irradiation continued. The extra diffraction spots correspond to an ordered cubic...
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Published in | Journal of materials science Vol. 16; no. 12; pp. 3283 - 3291 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
01.12.1981
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Abstract | Electron irradiation experiments were carried out on (100) TiC sub(0.93) thin foils inside an electron microscope operated at 100KV at room temperature. Both graphite rings and extra diffraction spots were observed as irradiation continued. The extra diffraction spots correspond to an ordered cubic superstructure having a composition near TiC sub(0.5') as determined by Goretzki. These extra spots were disrupted with continued irradiation. These results are discussed in the light of displacement damage in TiC. |
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AbstractList | Electron irradiation experiments were carried out on (100) TiC sub(0.93) thin foils inside an electron microscope operated at 100KV at room temperature. Both graphite rings and extra diffraction spots were observed as irradiation continued. The extra diffraction spots correspond to an ordered cubic superstructure having a composition near TiC sub(0.5') as determined by Goretzki. These extra spots were disrupted with continued irradiation. These results are discussed in the light of displacement damage in TiC. Electron irradiation experiments were carried out on (100) TiC sub 0.93 thin foils inside an electron microscope operated at 100 kV at room temp. Both graphite rings and extra diffraction spots were observed as irradiation continued. The extra diffraction spots correspond to an ordered cubic superstructure having a composition near TiC sub 0.5 , as determined by Goretzki. These extra spots were disrupted with continued irradiation. These results are discussed in the light of displacement damage in TiC. 19 ref.--AA |
Author | Das, G Chatterjee, D K Lipsitt, H A |
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Cites_doi | 10.1038/168581a0 10.1063/1.1721638 10.1080/14786437708232965 10.1002/pssb.19670200260 10.1080/14786437208223860 10.1016/0001-6160(54)90077-2 10.1016/0022-3115(70)90213-8 10.1063/1.1723032 10.1016/0022-5088(80)90278-7 10.1016/0001-6160(78)90048-2 10.1080/14786437108217083 10.1080/14786436908216313 |
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References | L. R. Aronin (CR5) 1954; 25 H. Goretzki (CR1) 1967; 20 E. K. Storms (CR8) 1967 T. H. Blewitt (CR4) 1954; 2 J. Adam (CR3) 1951; 168 D. K. Chatterjee (CR7) 1980; 70 F. Seitz (CR9) 1956 G. J. Dienes (CR15) 1958; 29 C. A. Vansant (CR17) 1966; 59 P. S. Bell (CR2) 1971; 24 R. F. Egerton (CR13) 1977; 35 CR11 A. S. A. Karim (CR10) 1978; 26 H. M. Naguib (CR16) 1970; 35 G. J. Dienes (CR19) 1957 J. D. Venables (CR6) 1969; 19 S. B. Fisher (CR12) 1972; 25 R. G. Lye (CR14) 1967 R. G. Lye (CR18) 1968 |
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Snippet | Electron irradiation experiments were carried out on (100) TiC sub(0.93) thin foils inside an electron microscope operated at 100KV at room temperature. Both... Electron irradiation experiments were carried out on (100) TiC sub 0.93 thin foils inside an electron microscope operated at 100 kV at room temp. Both graphite... |
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