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The attainment of stress equilibrium within the specimen at various strain rates was examined.
Anodizing is conducted on especially finished (Sa ± 13 nm) Grade 4 titanium specimen at various voltages in a H2SO4 electrolyte.
The shear-wave velocity (Vs) test and unconfined compression test were conducted to measure the properties of specimen at various time intervals.
Unlike the conventional scanning electron microscope, the ESEM obviates the need for special specimen preparation (for example, covering the specimen with gold to render it electrically conducting is unnecessary) and can examine a specimen at various temperatures and in a gaseous atmosphere, thus obviating the need for a hard vacuum.
After irradiation of various ion species onto the specimen at various beam incidence with respect to the specimen species, sputtering rates and roughness characteristics of the irradiated surface were analyzed by Atomic Force Microscope (AFM) and a large area optical profiler system.
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Results are compared to those from control specimens at various ages between 1 and 90 days.
Tensile tests at various temperatures were performed on the specimens at various angles to the rolling plane.
Experiments are performed on the centre-cracked tension specimens at various levels of range of stress intensity factors (ΔK).
Unconfined compressive strength (UCS) tests were also performed on stabilized specimens at various curing times to examine macro-level characteristics.
Pseudo-lesions filled with dilute blood were imaged in three human breast specimens at various depths up to 49 mm.
A series of experiments were conducted using TRIAC VMC CNC machining center to machine the composite laminate specimens at various cutting parameters and material parameters.
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