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Statistical analysis of fatigue crack growth behavior for grade B cast steel
Authors:W. Li  T. Sakai  Q. Li  P. Wang
Affiliation:1. College of Science and Engineering, Ritsumeikan University, Kusatsu 525-8577, Japan;2. School of Mechanical and Electronic Control Engineering, Beijing Jiaotong University, Beijing 100044, China;3. Institute of Oceanographic Instrumentation, Shandong Academy of Sciences, Qingdao 266001, China
Abstract:Tests for fatigue crack growth rate (FCGR) and crack-tip opening displacement (CTOD) were performed to clarify the fatigue crack growth behavior of a railway grade B cast steel. The threshold values of this steel with specific survival probabilities are evaluated, in which the mean value is 8.3516 MPa m1/2, very similar to the experimental value, about 8.7279 MPa m1/2. Under the conditions of plane strain and small-scale yielding, the values of fracture toughness for this steel with specific survival probabilities are converted from the corresponding critical CTOD values, in which the mean value is about 138.4256 MPa m1/2. In consideration of the inherent variability of crack growth rates, six statistical models are proposed to represent the probabilistic FCGR curves of this steel in entire crack propagation region from the viewpoints of statistical evaluation on the number of cycles at a given crack size and the crack growth rate at a given stress intensity factor range, stochastic characteristic of crack growth as well as statistical analysis of coefficient and exponent in FCGR power law equation. Based on the model adequacy checking, result shows that all models are basically in good agreement with test data. Although the probabilistic damage-tolerant design based on some models may involve a certain amount of risk in stable crack propagation region, they just accord with the fact that the dispersion degree of test data in this region is relatively smaller.
Keywords:Ferrous metals and alloys   Fatigue   Fracture
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