<Record><identifier xmlns="http://purl.org/dc/elements/1.1/">URN:NBN:SI:DOC-6A9OV4R9</identifier><date>2018</date><creator>Huo, Fengfeng</creator><creator>Lei, Beibei</creator><creator>Liu, Rongwei</creator><creator>Zhang, Chunguo</creator><relation>documents/doc/6/URN_NBN_SI_doc-6A9OV4R9_001.pdf</relation><relation>documents/doc/6/URN_NBN_SI_doc-6A9OV4R9_001.txt</relation><format format_type="volume">52</format><format format_type="issue">6</format><format format_type="type">article</format><format format_type="extent">str. 703-710</format><identifier identifier_type="COBISSID_HOST">1441962</identifier><identifier identifier_type="ISSN">1580-2949</identifier><identifier identifier_type="URN">URN:NBN:SI:doc-6A9OV4R9</identifier><language>eng</language><publisher>Inštitut za kovinske materiale in tehnologije</publisher><source>Materiali in tehnologije</source><rights>InC</rights><subject language_type_id="eng">fatigue crack growth trend</subject><subject language_type_id="eng">fatigue retardation</subject><subject language_type_id="slv">odlašanje utrujanja</subject><subject language_type_id="eng">overload</subject><subject language_type_id="eng">overload-induced fracture zone</subject><subject language_type_id="slv">preobremenitev</subject><subject language_type_id="slv">s preobremenitvijo inducirana cona loma</subject><subject language_type_id="slv">trend rasti utrujenostne razpoke</subject><title>Trend rasti utrujenostne razpoke pri natezni preobremenitvi Al zlitine</title><title>Trends in fatigue-crack growth for the 2024 Al-alloy after a single tensile overload</title></Record>