Cailiao gongcheng (Aug 2017)

Fatigue Behavior of 2A12 Aluminum Alloy Under Multiaxial Loading

  • CHEN Ya-jun,
  • WANG Xian-chao,
  • WANG Fu-sheng,
  • LIU Bo

DOI
https://doi.org/10.11868/j.issn.1001-4381.2015.001451
Journal volume & issue
Vol. 45, no. 8
pp. 68 – 75

Abstract

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The multiaxial fatigue behavior of 2A12 aluminum alloy was studied with SDN100/1000 electro-hydraulic servo tension-torsion fatigue tester under multiple variables, and the failure mechanism was investigated by scanning electron microscopy (SEM). The results show that under the loading condition of equivalent stress, the fatigue life decreases with the increase of phase angle. For the phase angle 0°, some special features can be observed in the crack initial zone, such as the tire pattern,fishbone pattern and stalactite pattern. There are secondary cracks and vague fatigue striations in the crack propagation zone; the multiaxial fatigue life decreases with the change of mean stress for tension or torsion. Some white flocculent oxides can be found in the crack initiation zone, and secondary crack as well as shear-type elongated dimples in the instantaneous fracture zone; facing different loading waveforms, the multiaxial life of sine wave is the longest, triangle wave in the second place, and the square wave is the shortest, under the loading condition of equivalent stress, square wave leads to the maximum structural energy dissipation. Under the low and high two step loading, 2A12 shows training effect.

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