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Results of the dynamic mechanical analysis experiments show no degradation in storage modulus and loss coefficient for up to 20 h at 673 K.
Molecular dynamics simulations and dynamic mechanical analysis experiments were employed to investigate the mechanical behavior of metallic glasses subjected to iteration deformation in a nominally elastic region.
Dynamic mechanical analysis experiments demonstrated that the damping properties of these materials are much greater than their bulk counterparts and were found to have damping loss coefficients comparable to polymers, but with much higher maximum use temperatures.
This is confirmed by dynamic mechanical analysis experiments where a single glass transition was only observed for PA 6/PA 66 blends, whereas two glass transition temperatures are observed for all ternary blends.
Results from dynamic mechanical analysis experiments reveal rather significant changes in dynamic segmental relaxations and storage moduli at 25 °C for this series of polyureas, which are in keeping with the findings from other experiments.
Dynamic mechanical analysis experiments confirmed that nanoparticles and crosslinker were confined within the crosslinked sulfonated styrene blocks and had no effect on the chain relaxation behavior of [ethylene-ran-butylene] blocks.
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The material parameters, i.e. relaxation times and elastic moduli, of the Maxwell elements are determined from either a relaxation or a Dynamical Mechanical Analysis (DMA) experiments.
The properties of the cured materials were studied by dynamic mechanical analysis, stress strain experiments, and DSC measurements.
Differential scanning calorimetry (DSC) and dynamic mechanical analysis (DMA) experiments showed that PCL addition increased the pores non-homogeneity, improved the damping properties of the membranes and decreased the elastic behaviour.
Dynamic mechanical analysis (DMA) experiments were performed on a TA Instruments Q800 using a black box fabricated from steel shims and a Nichia 365 nm UV LED flashlight to irradiate samples.
The dynamic mechanical thermal analysis experiments suggest that the compatibility in the amorphous regions of nylon 6 and PVDF in particular has been enhanced.
More suggestions(10)
mechanical conditioning experiments
mechanical loading experiments
mechanical cycling experiments
mechanical polishing experiments
mechanical grinding experiments
mechanical fatigue experiments
mechanical activity experiments
mechanical analysis results
mechanical stretch experiments
mechanical inoculation experiments
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