Damage mechanics method for fatigue life prediction of Pitch-Change-Link
β Scribed by Miao Zhang; Qingchun Meng; Weiping Hu; Sidian Shi; Maohe Hu; Xing Zhang
- Publisher
- Elsevier Science
- Year
- 2010
- Tongue
- English
- Weight
- 833 KB
- Volume
- 32
- Category
- Article
- ISSN
- 0142-1123
No coin nor oath required. For personal study only.
β¦ Synopsis
According to the law of thermodynamics, a new damage evolution equation is advanced in the present study to predict the fatigue life of the Pitch-Change-Link component. As its premise, the fatigue life prediction method for smooth specimens under the repeated loading with constant strain amplitude is constructed. In addition, based on the theory of conservative integral, the closed form relation for notched specimens between the maximum stress and fatigue life is derived, by reference to which the material parameters in damage evolution equation are obtained with fatigue experiment data of standard specimens. The damage mechanics-finite element method operates with APDL language code on the ANSYS platform. Finally, the mean fatigue crack initiation life of Pitch-Change-Link is predicted with the newly proposed method, that is damage mechanics-finite element method. What's most important, the calculated results comply with the experimental data.
π SIMILAR VOLUMES
The fatigue life of MIG welded cruciform joint failing from root (LOP) region was successfully predicted using new fracture mechanics equations. These equations were developed by combining Paris' law and AK~-endurance equation and incorporating an integral factor (Ip), obtained by integrating Paris'