Ontology type: schema:ScholarlyArticle
2011-02
AUTHORSV. I. Danilov, D. V. Orlova, L. B. Zuev, I. O. Bolotina
ABSTRACTThe localization of macrodeformation during the transition from plastic flow to ductile rupture is studied for a wide class of metals. It is found that the mechanism behind this process is the same as that behind plastic deformation and as such can be described as a change in the type of localized deformation autowave in the following sequence: phase autowave → steady dissipative structure → collapse of autowave or its contraction at the site of ensuing failure. The kinetic characteristics of an autowave collapsing at the prefailure stage, which can be found experimentally, allow one to predict the spatio-temporal coordinates of rupture long before its signs appear. More... »
PAGES207-213
http://scigraph.springernature.com/pub.10.1134/s1063784211020095
DOIhttp://dx.doi.org/10.1134/s1063784211020095
DIMENSIONShttps://app.dimensions.ai/details/publication/pub.1023315482
JSON-LD is the canonical representation for SciGraph data.
TIP: You can open this SciGraph record using an external JSON-LD service: JSON-LD Playground Google SDTT
[
{
"@context": "https://springernature.github.io/scigraph/jsonld/sgcontext.json",
"about": [
{
"id": "http://purl.org/au-research/vocabulary/anzsrc-for/2008/0912",
"inDefinedTermSet": "http://purl.org/au-research/vocabulary/anzsrc-for/2008/",
"name": "Materials Engineering",
"type": "DefinedTerm"
},
{
"id": "http://purl.org/au-research/vocabulary/anzsrc-for/2008/09",
"inDefinedTermSet": "http://purl.org/au-research/vocabulary/anzsrc-for/2008/",
"name": "Engineering",
"type": "DefinedTerm"
}
],
"author": [
{
"affiliation": {
"alternateName": "Institute of Strength Physics and Materials Science",
"id": "https://www.grid.ac/institutes/grid.467103.7",
"name": [
"Institute of Strength Physics and Materials Science, Siberian Branch, Russian Academy of Sciences, Akademicheskii pr. 2/1, 634021, Tomsk, Russia"
],
"type": "Organization"
},
"familyName": "Danilov",
"givenName": "V. I.",
"id": "sg:person.015447413755.48",
"sameAs": [
"https://app.dimensions.ai/discover/publication?and_facet_researcher=ur.015447413755.48"
],
"type": "Person"
},
{
"affiliation": {
"alternateName": "Institute of Strength Physics and Materials Science",
"id": "https://www.grid.ac/institutes/grid.467103.7",
"name": [
"Institute of Strength Physics and Materials Science, Siberian Branch, Russian Academy of Sciences, Akademicheskii pr. 2/1, 634021, Tomsk, Russia"
],
"type": "Organization"
},
"familyName": "Orlova",
"givenName": "D. V.",
"id": "sg:person.011724147715.26",
"sameAs": [
"https://app.dimensions.ai/discover/publication?and_facet_researcher=ur.011724147715.26"
],
"type": "Person"
},
{
"affiliation": {
"alternateName": "Institute of Strength Physics and Materials Science",
"id": "https://www.grid.ac/institutes/grid.467103.7",
"name": [
"Institute of Strength Physics and Materials Science, Siberian Branch, Russian Academy of Sciences, Akademicheskii pr. 2/1, 634021, Tomsk, Russia"
],
"type": "Organization"
},
"familyName": "Zuev",
"givenName": "L. B.",
"id": "sg:person.015174075441.09",
"sameAs": [
"https://app.dimensions.ai/discover/publication?and_facet_researcher=ur.015174075441.09"
],
"type": "Person"
},
{
"affiliation": {
"alternateName": "Tomsk Polytechnic University",
"id": "https://www.grid.ac/institutes/grid.27736.37",
"name": [
"Tomsk Polytechnic Institute, ul. Lenina 30, 634050, Tomsk, Russia"
],
"type": "Organization"
},
"familyName": "Bolotina",
"givenName": "I. O.",
"id": "sg:person.011720007511.15",
"sameAs": [
"https://app.dimensions.ai/discover/publication?and_facet_researcher=ur.011720007511.15"
],
"type": "Person"
}
],
"citation": [
{
"id": "https://doi.org/10.1016/s0921-5093(01)01778-6",
"sameAs": [
"https://app.dimensions.ai/details/publication/pub.1002079829"
],
"type": "CreativeWork"
},
{
"id": "sg:pub.10.3103/s1541308x09010117",
"sameAs": [
"https://app.dimensions.ai/details/publication/pub.1011984051",
"https://doi.org/10.3103/s1541308x09010117"
],
"type": "CreativeWork"
},
{
"id": "https://doi.org/10.5488/cmp.7.3.565",
"sameAs": [
"https://app.dimensions.ai/details/publication/pub.1072918897"
],
"type": "CreativeWork"
}
],
"datePublished": "2011-02",
"datePublishedReg": "2011-02-01",
"description": "The localization of macrodeformation during the transition from plastic flow to ductile rupture is studied for a wide class of metals. It is found that the mechanism behind this process is the same as that behind plastic deformation and as such can be described as a change in the type of localized deformation autowave in the following sequence: phase autowave \u2192 steady dissipative structure \u2192 collapse of autowave or its contraction at the site of ensuing failure. The kinetic characteristics of an autowave collapsing at the prefailure stage, which can be found experimentally, allow one to predict the spatio-temporal coordinates of rupture long before its signs appear.",
"genre": "research_article",
"id": "sg:pub.10.1134/s1063784211020095",
"inLanguage": [
"en"
],
"isAccessibleForFree": false,
"isPartOf": [
{
"id": "sg:journal.1136240",
"issn": [
"0038-5662",
"0044-4642"
],
"name": "Technical Physics",
"type": "Periodical"
},
{
"issueNumber": "2",
"type": "PublicationIssue"
},
{
"type": "PublicationVolume",
"volumeNumber": "56"
}
],
"name": "On the localization of plastic strain at the prefailure stage and the possibility of predicting the site and time of ductile rupture",
"pagination": "207-213",
"productId": [
{
"name": "readcube_id",
"type": "PropertyValue",
"value": [
"6f14c53cdbf437a2804a8cdcb204c2c340be3de9292557442f27f9018e29b663"
]
},
{
"name": "doi",
"type": "PropertyValue",
"value": [
"10.1134/s1063784211020095"
]
},
{
"name": "dimensions_id",
"type": "PropertyValue",
"value": [
"pub.1023315482"
]
}
],
"sameAs": [
"https://doi.org/10.1134/s1063784211020095",
"https://app.dimensions.ai/details/publication/pub.1023315482"
],
"sdDataset": "articles",
"sdDatePublished": "2019-04-11T01:58",
"sdLicense": "https://scigraph.springernature.com/explorer/license/",
"sdPublisher": {
"name": "Springer Nature - SN SciGraph project",
"type": "Organization"
},
"sdSource": "s3://com-uberresearch-data-dimensions-target-20181106-alternative/cleanup/v134/2549eaecd7973599484d7c17b260dba0a4ecb94b/merge/v9/a6c9fde33151104705d4d7ff012ea9563521a3ce/jats-lookup/v90/0000000001_0000000264/records_8700_00000505.jsonl",
"type": "ScholarlyArticle",
"url": "http://link.springer.com/10.1134%2FS1063784211020095"
}
]
Download the RDF metadata as: json-ld nt turtle xml License info
JSON-LD is a popular format for linked data which is fully compatible with JSON.
curl -H 'Accept: application/ld+json' 'https://scigraph.springernature.com/pub.10.1134/s1063784211020095'
N-Triples is a line-based linked data format ideal for batch operations.
curl -H 'Accept: application/n-triples' 'https://scigraph.springernature.com/pub.10.1134/s1063784211020095'
Turtle is a human-readable linked data format.
curl -H 'Accept: text/turtle' 'https://scigraph.springernature.com/pub.10.1134/s1063784211020095'
RDF/XML is a standard XML format for linked data.
curl -H 'Accept: application/rdf+xml' 'https://scigraph.springernature.com/pub.10.1134/s1063784211020095'
This table displays all metadata directly associated to this object as RDF triples.
95 TRIPLES
21 PREDICATES
30 URIs
19 LITERALS
7 BLANK NODES