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Exact(6)
Elastic moduli are determined and compared as obtained by indentation and bending tests.
The elastic moduli are determined specifically for use with finite element vibration analyses.
Characteristics of the MR fluid (loss/storage moduli) are determined in magnetic fields where current varied within 0.2 1.8 Amp.
Resonance frequencies in both the flexural and torsional modes are measured, and the Young's moduli and shear moduli are determined through the measured resonant frequencies.
By imposing the equilibrium conditions and assuming the compression and tensile roving Young's moduli as constant, the CFM Young's moduli are determined.
Higher moduli are determined for samples with higher inorganic/organic ratio, and no particular effect of the nature of inorganic precursor upon such property is observed.
Similar(54)
Equilibrium Young's moduli were determined from the stress relaxation tests.
Thus, the flow curves of the samples studied and the frequency-dependent storage (G') and loss (G") moduli were determined.
For DMTA tests, detached layers were used and the storage and loss moduli were determined.
Polycrystalline elastic moduli were determined from the elastic constants and were compared with that extrapolated from experimental data.
The orthotropic mechanical properties of the CF including the tensile, transversal compression, and torsional moduli were determined on single fibers.
Related(20)
moduli are identified
cluster are determined
moduli are found
moduli are enhanced
moduli are developed
moduli are related
moduli are estimated
moduli are listed
moduli are considered
moduli are justified
moduli are analyzed
moduli are shown
moduli are given
moduli are compared
moduli are measured
moduli are affected
moduli are expressed
moduli are allowed
moduli are bounded
moduli are calculated
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