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Yoshinaka, Fumiyoshi; Takaku, Kazuaki; Nakamura, Takashi; Shiozawa, Daiki; Nakai, Yoshikazu; Uesugi, Kentaro, E-mail: yoshinaka@eis.hokudai.ac.jp2017
AbstractAbstract
[en] The initiation and growth of internal small fatigue cracks with around ten or several dozen μm in Ti-6Al-4V were nondestructively examined by using synchrotron radiation μCT at the large synchrotron radiation facility SPring-8. Lots of grain-sized internal cracks were observed roughly evenly in the observation volume in the specimen; in contrast, only one surface crack was detected. The initiation lives of the internal cracks were widely different for each crack and had no significant correlation with the crack initiation site nor the initial crack size. The internal cracks propagated microstructure-sensitively with several crack deflections, and the growth rates were very small, less than 10-10 m/cycle. The crack growth rates just after facet formations showed large variability and had no apparent relationship with the crack initiation life nor the initial crack size. This variability can likely be attributed to microstructural inhomogeneities around the crack initiation facets. The estimated facet formation rate indicated that most facets formed rapidly compared with the following internal crack growth rate. (author)
Original Title
放射光μCTイメージングによるTi-6Al-4Vの超高サイクル疲労における内部破壊初期過程の観察
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Source
Available from http://dx.doi.org/10.1299/transjsme.17-00104; 23 refs., 19 figs., 1 tab.; 雑誌名:日本機械学会論文集
Record Type
Journal Article
Journal
Nippon Kikai Gakkai Ronbunshu (Online); ISSN 2187-9761;
; v. 83(856); p. 1700104.1-1700104.15

Country of publication
ALLOYS, BREMSSTRAHLUNG, CARBON ADDITIONS, DETECTION, DIAGNOSTIC TECHNIQUES, ELECTROMAGNETIC RADIATION, FAILURES, IRON ALLOYS, IRON BASE ALLOYS, MATERIALS TESTING, MECHANICAL PROPERTIES, RADIATION DETECTION, RADIATION SOURCES, RADIATIONS, STEELS, STORAGE RINGS, SYNCHROTRON RADIATION SOURCES, TESTING, TOMOGRAPHY, TRANSITION ELEMENT ALLOYS
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