PSI - Issue 50

L.V. Stepanova et al. / Procedia Structural Integrity 50 (2023) 275–283 Author name / Structural Integrity Procedia 00 (2023) 000 – 000

282 8

Aluminum

Copper

e M 

e M 

1

1

11 

22 

12 

1 e M  at 15 and 25 ps.

Fig. 6. The deformation morphology and the stress components for the mixity parameter

Alumimun

Copper

e M 

e M 

0.16

0.16

11 

22 

12 

e M 

0.16

Fig. 7. The deformation morphology and the stress components for the mixity parameter

at 15 and 25 ps.

5. Brief conclusions In the present study the stress tensor elements in the surroundings of crack and notch tips are effectively appraised via two approaches. The stress fields are estimated by continual and atomistic approaches. In the framework of the continuum mechanics approach it is connoted the usage of the classical theoretical solutions and finite element-based numerical solutions of continuum fracture mechanics whereas the atomistic approach is

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