Matches in SemOpenAlex for { <https://semopenalex.org/work/W2038008088> ?p ?o ?g. }
- W2038008088 endingPage "54" @default.
- W2038008088 startingPage "42" @default.
- W2038008088 abstract "Backscattering of 2 MeV He+ ions from Zr-0.2% Au and Zr-0.3% au crystals was measured for [0001], 〈1 120〉 and 〈1010〉 directions and the (0001) plane in order to determine the trapping characteristics of Au atoms for irradiated-induced defects. It was observed that Au atoms were displaced from substitutional lattice sites during post-irradiation annealing near 120K, indicating that the Au atoms formed strong traps for Zr self-interstitial atoms which became mobile at that temperature. The direction of Au atom displacements was between 〈4043〉 and 〈1010〉 axes. The displacement of the Au was reduced during annealing from 200–400K, and was reduced further from 550–700K. These recovery stages could be due to migration of a second type of self-interstitial and to migration of vacancies respectively. La rétrodiffusion des ions He+ de 2 MeV provenant de monocristaux de Zr contenant 0,2 et 0,3% Au a été mesurée pour les directions [0001], 〈1120〉 et pour le plan (0001) afin de déterminer les caractéristiques de piégeage des atomes d'or par les défauts induits par l'irradiation. Il a été observé que les atomes d'Au étaient déplacés des sites réticulaires substitutionnels durant le recuit à 120 K postérieur à l'irradiation, ce qui indique que les atomes d'or formaient des pièges importants pour les atomes de Zr auto-interstitiels qui deviennent mobiles à cette température. La direction des déplacements d'atomes d'or était située entre les axes 〈4043〉 et 〈1010〉. Le déplacement des atomes d'or était réduit durant le recuit entre 200 et 400 K et était encore réduit entre 500 et 700 K. Ces stades de restauration pouvaient être dûs respectivement à la migration d'un second type d'auto-interstitiel et à la migration des lacunes. Zur Bestimmung der Einfangcharakteristik von Au-Atomen für bestrahlungsinduzierte Defekte wurde das Rückstreuvermögen von 2 MeV-He+-Ionen an Zr-0,2% Au- und Zr-0,3% Au-Kristallen in den Richtungen [0001 ], 〈1120〉 und 〈1010〉 und der (0001)- Ebene gemessen. Es wurde beobachtet, dass Au-Atome nach der Bestrahlung von Substitutionsgitterplätzen während der Wärmebehandlung bei 120 K verlagert werden, was darauf hinweist, dass die Au-Atome starke Haftstellen für Zr-Zwischengitteratome darstellen, welche bei jener Temperatur beweglich werden. Die Richtung der Au-Atomverlagerungen liegt zwischen der 〈4043〉- und der 〈1010〉-Achse. Die Verlagerung von Au-Atomen nimmt während der Wärmebehandlung zwischen 200 und 400 K ab, ferner zwischen 550 und 700 K. Diese Erholungsstufen könnten auf der Wanderung einer zwei ten Art von Zr-Zwischengitteratomen bzw. der Wanderung von Leerstellen beruhen." @default.
- W2038008088 created "2016-06-24" @default.
- W2038008088 creator A5002120027 @default.
- W2038008088 creator A5016853788 @default.
- W2038008088 creator A5070210247 @default.
- W2038008088 creator A5081205887 @default.
- W2038008088 date "1977-06-01" @default.
- W2038008088 modified "2023-09-26" @default.
- W2038008088 title "Backscattering measurements of the trapping of Zr Self-interstitial atoms by Au Atoms in irradiated Zr-Au Crystals" @default.
- W2038008088 cites W173440884 @default.
- W2038008088 cites W1965459784 @default.
- W2038008088 cites W1976436215 @default.
- W2038008088 cites W1977175792 @default.
- W2038008088 cites W1977598955 @default.
- W2038008088 cites W1978200912 @default.
- W2038008088 cites W1981169645 @default.
- W2038008088 cites W1982923277 @default.
- W2038008088 cites W1988946490 @default.
- W2038008088 cites W1995529024 @default.
- W2038008088 cites W1997993636 @default.
- W2038008088 cites W2001782144 @default.
- W2038008088 cites W2003352663 @default.
- W2038008088 cites W2004899340 @default.
- W2038008088 cites W2011035490 @default.
- W2038008088 cites W2011675493 @default.
- W2038008088 cites W2015243011 @default.
- W2038008088 cites W2018530946 @default.
- W2038008088 cites W2018716545 @default.
- W2038008088 cites W2021927974 @default.
- W2038008088 cites W2023124461 @default.
- W2038008088 cites W2024193687 @default.
- W2038008088 cites W2037291174 @default.
- W2038008088 cites W2047715284 @default.
- W2038008088 cites W2054458301 @default.
- W2038008088 cites W2055923682 @default.
- W2038008088 cites W2060154942 @default.
- W2038008088 cites W2069456234 @default.
- W2038008088 cites W2069458283 @default.
- W2038008088 cites W2072397883 @default.
- W2038008088 cites W2079191848 @default.
- W2038008088 cites W2081040298 @default.
- W2038008088 cites W2084266653 @default.
- W2038008088 cites W2090414104 @default.
- W2038008088 cites W2093029319 @default.
- W2038008088 cites W2102838580 @default.
- W2038008088 cites W2108329300 @default.
- W2038008088 cites W2328481331 @default.
- W2038008088 cites W2482737969 @default.
- W2038008088 cites W592392297 @default.
- W2038008088 cites W8492879 @default.
- W2038008088 doi "https://doi.org/10.1016/0022-3115(77)90160-x" @default.
- W2038008088 hasPublicationYear "1977" @default.
- W2038008088 type Work @default.
- W2038008088 sameAs 2038008088 @default.
- W2038008088 citedByCount "21" @default.
- W2038008088 crossrefType "journal-article" @default.
- W2038008088 hasAuthorship W2038008088A5002120027 @default.
- W2038008088 hasAuthorship W2038008088A5016853788 @default.
- W2038008088 hasAuthorship W2038008088A5070210247 @default.
- W2038008088 hasAuthorship W2038008088A5081205887 @default.
- W2038008088 hasConcept C111337013 @default.
- W2038008088 hasConcept C113196181 @default.
- W2038008088 hasConcept C121332964 @default.
- W2038008088 hasConcept C145148216 @default.
- W2038008088 hasConcept C149635348 @default.
- W2038008088 hasConcept C178790620 @default.
- W2038008088 hasConcept C184779094 @default.
- W2038008088 hasConcept C185544564 @default.
- W2038008088 hasConcept C185592680 @default.
- W2038008088 hasConcept C18903297 @default.
- W2038008088 hasConcept C191897082 @default.
- W2038008088 hasConcept C192562407 @default.
- W2038008088 hasConcept C2777855556 @default.
- W2038008088 hasConcept C2777924906 @default.
- W2038008088 hasConcept C41008148 @default.
- W2038008088 hasConcept C43617362 @default.
- W2038008088 hasConcept C49040817 @default.
- W2038008088 hasConcept C57863236 @default.
- W2038008088 hasConcept C58312451 @default.
- W2038008088 hasConcept C60546165 @default.
- W2038008088 hasConcept C8010536 @default.
- W2038008088 hasConcept C86803240 @default.
- W2038008088 hasConceptScore W2038008088C111337013 @default.
- W2038008088 hasConceptScore W2038008088C113196181 @default.
- W2038008088 hasConceptScore W2038008088C121332964 @default.
- W2038008088 hasConceptScore W2038008088C145148216 @default.
- W2038008088 hasConceptScore W2038008088C149635348 @default.
- W2038008088 hasConceptScore W2038008088C178790620 @default.
- W2038008088 hasConceptScore W2038008088C184779094 @default.
- W2038008088 hasConceptScore W2038008088C185544564 @default.
- W2038008088 hasConceptScore W2038008088C185592680 @default.
- W2038008088 hasConceptScore W2038008088C18903297 @default.
- W2038008088 hasConceptScore W2038008088C191897082 @default.
- W2038008088 hasConceptScore W2038008088C192562407 @default.
- W2038008088 hasConceptScore W2038008088C2777855556 @default.
- W2038008088 hasConceptScore W2038008088C2777924906 @default.
- W2038008088 hasConceptScore W2038008088C41008148 @default.
- W2038008088 hasConceptScore W2038008088C43617362 @default.