4.7 Article

Study on crack growth and fatigue life in TC6 titanium alloy by integrated phase proportion and grain size modeling

Journal

ENGINEERING FRACTURE MECHANICS
Volume 237, Issue -, Pages -

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.engfracmech.2020.107235

Keywords

Dual-phase; Phase proportion; Grain size; Crack growth; Fatigue life

Categories

Funding

  1. Guizhou Provincial General Undergraduate Higher Education Technology Supporting Talent Support Program [KY(2018)043]
  2. National Natural Science Foundation of China [10502025, 10872087, 11272143]
  3. Program for Chinese New Century Excellent Talents in university [NCET-12-0712]
  4. Key University Science Research Project of Jiangsu Province [17KJA130002]

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In this paper, a theoretical model is developed to reveal the crack growth and fatigue life in polycrystalline alloys with dual-phase microstructure. The present quantitative analysis proves that the grain size and phase proportion can efficaciously affect the crack growth and fatigue life. The dislocations emitted from the crack tip and penetrated three types of grain boundaries (GBs) under cyclic shear stress. According the different boundaries, we obtained the calculation of three kinds of critical penetration stress (tau(cr)) and dislocation stress (tau(1)). Moreover, it can be worked out the crack growth and fatigue life. As the results suggest that the fatigue crack growth reduces with decreases of grain size and increases of minor phases proportion (X-beta). Comparison of fatigue life prediction, we derived the fatigue fracture characteristics. In a word, the results offer awareness to improve the mechanical properties in dual-phase titanium alloy by optimizing the microstructures.

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