TY - JOUR
T1 - Crack initiation and early growth behavior of TC4 titanium alloy under high cycle fatigue and very high cycle fatigue
AU - Li, Wei
AU - Gao, Ning
AU - Zhao, Hongqiao
AU - Xing, Xinxin
N1 - Publisher Copyright:
© 2018 Materials Research Society.
PY - 2018/4/27
Y1 - 2018/4/27
N2 - The crack initiation and early growth behaviors of a TC4 titanium alloy under high cycle fatigue and very high cycle fatigue were experimentally investigated. The results show that it exhibits the duplex S-N curve characteristics associated with surface and interior failures at a stress ratio of 0.1, while it represents the similar S-N curve characteristics only related to surface failure at a stress ratio of -1. The interior failure is accompanied with the occurrence of facets, granular bright facets (GBFs), and fisheye. Slip-like patterns are observable on the facets easily formed under positive stress ratio. The interior failure process is characterized as (i) occurrence of slip lines on partial α grains under cyclic loading, (ii) initiation and growth of microcracks within some α grains, (iii) coalescence of microcracks and formation of GBF, (iv) stable long crack growth within fisheye, (v) unstable crack growth outside fisheye, and (vi) final momentary fracture.
AB - The crack initiation and early growth behaviors of a TC4 titanium alloy under high cycle fatigue and very high cycle fatigue were experimentally investigated. The results show that it exhibits the duplex S-N curve characteristics associated with surface and interior failures at a stress ratio of 0.1, while it represents the similar S-N curve characteristics only related to surface failure at a stress ratio of -1. The interior failure is accompanied with the occurrence of facets, granular bright facets (GBFs), and fisheye. Slip-like patterns are observable on the facets easily formed under positive stress ratio. The interior failure process is characterized as (i) occurrence of slip lines on partial α grains under cyclic loading, (ii) initiation and growth of microcracks within some α grains, (iii) coalescence of microcracks and formation of GBF, (iv) stable long crack growth within fisheye, (v) unstable crack growth outside fisheye, and (vi) final momentary fracture.
KW - fatigue
KW - microstructure
KW - nucleation and growth
UR - https://www.scopus.com/pages/publications/85041363496
U2 - 10.1557/jmr.2017.476
DO - 10.1557/jmr.2017.476
M3 - Article
AN - SCOPUS:85041363496
SN - 0884-2914
VL - 33
SP - 935
EP - 945
JO - Journal of Materials Research
JF - Journal of Materials Research
IS - 8
ER -