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Different units offer different tests at different points in pregnancy.
The microanalysis results corresponded well with the performance tests at different activation conditions.
Tests at different load ratios were performed to obtain data as input for failure criteria.
In view of this, stress controlled fatigue tests at different load ratios R were carried out.
Compression tests at different temperatures and strain rates have been conducted.
The complete formulation is able to accurately predict both monotonic and cyclic tests at different crystallographic orientations.
The constitutive equations are then compared to mechanical data obtained from uniaxial compressive tests at different velocities.
Material characterization was performed through tensile and simple shear tests at different orientations on the sheet plane.
The experiments included compression and flexural tests at different temperatures ranging from 20 °C to 600 °C.
Rate capability tests at different C-rates were performed to evaluate the capacity and cycling performance of these coin cells.
Ductile fracture criteria were calibrated by performing several uniaxial tensile tests at different temperatures and strain rates.
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