Characterization of internal fatigue crack initiation in Ti‐6Al‐4V alloy via synchrotron radiation X‐ray computed tomography

材料科学 面(心理学) 巴黎法 钛合金 同步辐射 合金 同步加速器 微观结构 粒度 冶金 复合材料 裂缝闭合 断裂力学 光学 社会心理学 物理 人格 心理学 五大性格特征
作者
Fumiyoshi Yoshinaka,Takashi Nakamura,Hiroyuki Oguma,Nao Fujimura,Akihisa Takeuchi,Masayuki Uesugi,Kentaro Uesugi
出处
期刊:Fatigue & Fracture of Engineering Materials & Structures [Wiley]
卷期号:46 (6): 2338-2347 被引量:4
标识
DOI:10.1111/ffe.13957
摘要

Abstract The initiation of internal fatigue cracks in very high cycle fatigue of Ti‐6Al‐4V alloy was investigated using synchrotron radiation X‐ray computed tomography (SR‐CT). Micro‐CT detected 28 cracks that were distributed across the examined volume of Ф1.8 × L 2.5 mm. No apparent correlation was observed between the spatial distribution, initial lengths, and initiation lives of cracks. The crack growth rate of the facet‐sized crack varied widely; some cracks propagated rapidly, whereas no crack growth was observed for other cracks over a specific period of time after detection. Using nano‐CT, the several grain‐sized internal cracks and their microstructures were clearly and nondestructively visualized. In the field of view, many primary α phases were detected; however, no other cracks were observed. The multiple facet initiation site, which is commonly observed for titanium alloys, might not be due to the concurrently initiated facets but may be caused by the small crack growth accompanied by facet formation.
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