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Then, the elastic-plastic fatigue damage of the material is considered as the specimen experiences cyclic loading.
The test technique, originally developed for testing of steel specimens, is presented in its basic aspects; reported are the conventional procedures for determining load, displacement and energy absorption that a specimen experiences, over the entire phase of loading and subsequent failure of the specimen.
While in flexure the top of the specimen experiences compression while the lower portion experiences tension.
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The degree of damage in a stretched specimen is a function of only the maximum stretch ratio the specimen experienced.
The PCB levels were greater than the estimated toxicity threshold (17 mg/kg l.w).21,22, confirming that the specimen experienced deleterious health effects.
The specimen experienced crushing failure near the mid-height part.
All specimens experiences abrupt breakout failures when the cracks are reached the edge of the specimens.
The smooth specimens experienced a uniaxial stress state, while the notched specimens experienced a triaxial stress state in the vicinity of the notch.
Specimens experiencing more FTCs tend to have larger ductility coefficients and plastic rotation magnitudes.
At high temperatures, i.e., above 600 °C, the specimens experienced the two aforementioned oxidation mechanisms.
The FRCM specimens experienced cracking prior to failure whereas the FRE specimens failed suddenly by fabric rupture without cracking.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com