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The crack kinking phenomena is investigated using the maximum hoop stress intensity factor criterion.
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The non-local elastic solutions yield a finite hoop stress at the crack tips, thus allows us to using the maximum stress as a fracture criterion.
The nonlocal elastic solutions yield a finite hoop stress at the crack tip, thus allowing us to use the maximum stress as a fracture criterion in functionally graded materials.
Particularly, the maximum hoop strain sθθ is suggested as a fracture criterion for piezoelectric materials.
The aggregation factor noticeably influences the maximum transverse normal and the maximum hoop stresses developed in the cylinder.
In this case, the relation between the maximum deflection and the maximum hoop strain was no longer linear as predicted by the small deformation theory.
It is found that the effect of varying Poisson's ratio on the normalized hoop stress in thick-walled coated cylinders is also important and the maximum hoop stress changes dramatically for thicker cylinders.
The magnitude of the maximum hoop stress intensity factor tends to increase as the crack speed increases.
The bore intersection location is a stress concentration point where the maximum hoop stress can be many times the fluid pressure in the bores.
Stretch your fabric taut using the embroidery hoop.
If you used the red hoop somewhere else, you may want to switch it with the hoop in this final position.
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