{"data":{"id":"10.6084/m9.figshare.6448277","type":"dois","attributes":{"doi":"10.6084/m9.figshare.6448277","prefix":"10.6084","suffix":"m9.figshare.6448277","identifiers":[],"alternateIdentifiers":[],"creators":[{"name":"Terigele Xi","affiliation":[],"nameIdentifiers":[]},{"name":"Ryoma Suzuki","affiliation":[],"nameIdentifiers":[]},{"name":"Tanimoto, Hisanori","nameType":"Personal","givenName":"Hisanori","familyName":"Tanimoto","affiliation":[],"nameIdentifiers":[]}],"titles":[{"title":"Low-Temperature Anelastic Property of Nanocrystalline Ag Fabricated by Gas Deposition Method"}],"publisher":"SciELO journals","container":{},"publicationYear":2018,"subjects":[{"subject":"90499 Chemical Engineering not elsewhere classified","subjectScheme":"FOR"},{"subject":"FOS: Chemical engineering","schemeUri":"http://www.oecd.org/science/inno/38235147.pdf","subjectScheme":"Fields of Science and Technology (FOS)"},{"subject":"FOS: Chemical engineering","subjectScheme":"Fields of Science and Technology (FOS)"},{"subject":"91207 Metals and Alloy Materials","subjectScheme":"FOR"},{"subject":"FOS: Materials engineering","schemeUri":"http://www.oecd.org/science/inno/38235147.pdf","subjectScheme":"Fields of Science and Technology (FOS)"},{"subject":"FOS: Materials engineering","subjectScheme":"Fields of Science and Technology (FOS)"},{"subject":"91299 Materials Engineering not elsewhere classified","subjectScheme":"FOR"}],"contributors":[],"dates":[{"date":"2018-06-06","dateType":"Created"},{"date":"2018-06-06","dateType":"Updated"},{"date":"2018","dateType":"Issued"}],"language":null,"types":{"ris":"DATA","bibtex":"misc","citeproc":"dataset","schemaOrg":"Dataset","resourceType":"Dataset","resourceTypeGeneral":"Dataset"},"relatedIdentifiers":[{"relationType":"IsSupplementTo","relatedIdentifier":"10.1590/1980-5373-mr-2017-0883","relatedIdentifierType":"DOI"}],"relatedItems":[],"sizes":["1317445 Bytes"],"formats":[],"version":null,"rightsList":[{"rights":"Creative Commons Attribution 4.0 International","rightsUri":"https://creativecommons.org/licenses/by/4.0/legalcode","schemeUri":"https://spdx.org/licenses/","rightsIdentifier":"cc-by-4.0","rightsIdentifierScheme":"SPDX"}],"descriptions":[{"description":"It was reported that the internal friction (Q-1) of nanocrystalline (n-) Au and n-Cu showed a rapid increase linearly with temperature above ~200 K. Since the rapid increase in Q-1 decreased with the progress in the grain growth, it was suggested that the anelasticity of grain boundaries in n-Au and n-Cu was thermally activated above ~200 K. In order to pursue the intrinsic behavior of the grain boundaries in n-metals, the internal friction of n-Ag was measured and the result was compared with those of n-Au and n-Cu. Similar to n-Au and n-Cu, Q-1 of n-Ag was also showed the increase linearly with temperature above ~200 K. However, the onset temperature for the linear increase in Q-1 of n-Ag was slight lower than those of n-Au and n-Cu and it can be attributed to the lower activation energy of the grain boundary self-diffusion in Ag.","descriptionType":"Abstract"}],"geoLocations":[],"fundingReferences":[],"xml":"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","url":"https://scielo.figshare.com/articles/Low-Temperature_Anelastic_Property_of_Nanocrystalline_Ag_Fabricated_by_Gas_Deposition_Method/6448277","contentUrl":null,"metadataVersion":2,"schemaVersion":"http://datacite.org/schema/kernel-4","source":"mds","isActive":true,"state":"findable","reason":null,"viewCount":0,"viewsOverTime":[],"downloadCount":0,"downloadsOverTime":[],"referenceCount":1,"citationCount":0,"citationsOverTime":[],"partCount":0,"partOfCount":0,"versionCount":0,"versionOfCount":0,"created":"2018-06-06T02:44:41.000Z","registered":"2018-06-06T02:44:42.000Z","published":"2018","updated":"2020-08-29T12:54:08.000Z"},"relationships":{"client":{"data":{"id":"figshare.ars","type":"clients"}},"provider":{"data":{"id":"otjm","type":"providers"}},"media":{"data":{"id":"10.6084/m9.figshare.6448277","type":"media"}},"references":{"data":[{"id":"10.1590/1980-5373-mr-2017-0883","type":"dois"}]},"citations":{"data":[]},"parts":{"data":[]},"partOf":{"data":[]},"versions":{"data":[]},"versionOf":{"data":[]}}}}