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Hydraulic bulge tests were also conducted and the variation of thickness strain along the meridian directions of the bulged specimen was compared with that calculated using finite element analysis (FEA) based on selected yield functions.
To evaluate the effectiveness of the proposed retrofitting scheme the lateral performance of one pre-earthquake and one post-earthquake retrofitted specimen was compared to that of an original, control specimen and that of a retrofitted one only by RC jacketing.
The morphology of the specimen was compared to other theropod dinosaurs to see where it sits in the family tree.
Consequently, the susceptibility to hydrogen embrittlement of each specimen was compared with the results for 4-h immersion.
The MRI from each specimen was compared with the control and the difference in signal intensity was registered in eight different zones (Figure 4), medially and laterally to the epiphyseal tubercle in the epiphysis and the metaphysis and adjacent to the physeal plate, above and below.
The specimen was compared to 38 specimens of modern Castor (both C. canadensis and C. fiber) as well as fossil specimens of C. fiber (Pleistocene), C. californicus (Pliocene) and the early castorids Steneofiber eseri (early Miocene).
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Hardness and wear resistance of different areas in thixoforged specimen were compared with conventional specimen.
The material properties measured on micro specimen are compared to large scale standard tensile test results.
The results of fatigue loading on the new specimen are compared with the results of fatigue loading in a cylindrical pressure vessel and a standard specimen.
Based on the test results, the damage behavior, lateral strength, displacement ductility ratio, stiffness degradation, and energy dissipation of the specimen are compared.
Stresses from FEA at the crack front on different planes of the specimen are compared with those determined by the J A2 three-term solution.
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