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... to illustrate the difference in the stress and strain fields, Figure 2 shows the stress and strain fields around the crack tip in a triangular plate with a crack of length 1/10 of the plate thickness. When the crack tip is located at a distance of one-tenth of the plate thickness, the stress and strain fields are essentially independent of the crack length.

... to illustrate the difference in stress and strain fields, Figure 1 shows the stress and strain fields around the crack tip in a triangular plate with a crack of length 1/10 of the plate thickness. When the crack tip is located at a distance of one-tenth of the plate thickness, the stress and strain fields are essentially independent of the crack length. When the crack tip is located at a distance of one-fifth of the plate thickness, however, there is a pronounced difference in the stress and strain fields between a small crack length of 1/10 of the plate thickness and a large crack length of 5/10 of the plate thickness. This difference in stress and strain fields is due to the inclusion of far-field plastic strain in the fracture criterion, which cannot be captured by the conventional Griffith formulation....

... a brief summary of the Generalized Strain-Based Fracture criterion states that the fracture criterion, determined by the stress and strain fields around the crack tip and far behind the tip, depends on three quantities: the relative magnitude of the far-field plastic strain and the plastic strain at the crack tip, and the inclusion or exclusion of plastic deformation in the body of the material.

Further, the paper on the Generalized Strain-Based Fracture criterion for brittle materials proposes an alternative, two-stage, strain-based approach that the authors claim provide close to the exact fracture criteria for certain fracture mechanics problems. The approach starts with the prediction of the damage zone ahead of the crack tip, and then uses the predicted damage zone and a given distribution of the crack tip opening displacement as inputs for the ensuing solution of an elastic-brittle damage problem....

... by using companion computers such as the Raspberry Pi 3 and the NVidia Jetson X1..... The closest thing is the sonar on the bottom of the Parrot Mambo..... system to experimentally validate the strain field ahead of a crack tip in lattice materials..... to open the background tasks window and cancel the optical flow analysis.

... to compute the strain field ahead of a crack tip we place a crack tip in a square region..... and extract the strain using the calibration technique described above,..... and then compute the crack direction and normal velocity as described in the paper.....

... to compare the two different computers the Raspberry Pi runs the compute_strain function 5 times..... Jetson TK1 also runs compute_strain 5 times, but in parallel..... outputting the crack tip position and normal velocity each time..... 827ec27edc