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The cracking energy density is shown to exhibit dependence on crack orientation and stretch biaxiality that resembles that predicted via LEFM.
For both cracked square and rectangular plate models, the influence of the boundary conditions, the crack orientation angle, crack length, and location of the point load is demonstrated.
The analysis identifies the worst crack orientation and location.
Effects of crack orientation, under different static and cyclic loading parameters, on wear behavior were examined.
The crack orientation can influence the intensity of the decay.
The SIFs are then used in the crack propagation criterion and the crack orientation angle.
The variation of the coefficients with crack orientation is presented.
Similar(4)
It was found that Incoloy 800 tubes exhibited higher J-resistance curves than Inconel 690 for both crack orientations.
Both isotropic and anisotropic critical stress intensity factors are derived and compared for different crack orientations.
The cell cracks are statistically evaluated and the fracture stress can be compared directly for different crack orientations or different cell types.
In experimental biaxial testing, two types of crack orientations (0°, 45°) are studied with varying crack lengths.
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