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A cyclic plastic or cohesive zone develops ahead of the crack tip under fatigue load.
In this work, boundary element method (BEM) is used to study the propagation of the crack emanating from a V-notch tip under fatigue loading.
The effect of constraint on ductile fracture initiation from a notch tip under mode I and mixed mode (involving modes I and II) loading is investigated.
Young's moduli and hardness of iron borides were measured using the nanoindenter with a Berkovich diamond tip under load of 50 mN.
This mesh superposition method can analyze the non-periodic microscopic stress at the crack tip under a non-uniform macroscopic strain field with high gradient.
In the paper the authors proposed an algorithm for determination of elastic plastic strain and stress at the circumferential notch tip under uniaxial tension.
For combined mechanical and electrical loads, the stress distributions at the crack tip under applied stress is found to be significantly different from those under applied strain.
The results are discussed in light of the microstructures, fracture mechanisms and deformation field ahead of the crack tip under mixed-mode loading.
Because of the reverse cyclic plastic zone at the crack tip, there is plastic dissipation in heat at the crack tip under cyclic loading.
Also significant spread of the plastic zone occurs in the forward sector ahead of the tip under impact loading which is akin to isotropic solids.
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