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The silty clay has been sub-classified according to liquid index the mechanical parameters at different sub-classes were suggested.
Evidently, it is difficult to elucidate what really happen at cellular and molecular levels if only a single type of mechanical stimuli or one set of mechanical parameters at a given stimulus is used.
The identification of significant scatter in experimental data sets due to handcrafted manufacturing motivated the estimation of mechanical parameters at different percentile levels, in order to provide their characteristic and median values.
Due to the hierarchical architecture of these systems, the methodology for extraction of mechanical parameters at the molecular and supramolecular scale requires special considerations regarding design of mechanical test apparatus, sample preparation and testing, data analysis, and interpretation of X-ray structural information in terms of small-scale mechanics.
The exact analytical solutions of the mentioned problems have been found for an arbitrary contact zone length, and the required thermal, mechanical and electrical characteristics at the interface as well as the associated fracture mechanical parameters at the corresponding crack tips are presented.
With this aim, we performed measurements by cutometry of mechanical parameters at the dermis level, which is assumed to be the main structure involved in viscoelastic mechanical properties of the skin [ 17, 18], and we measured the thickness of the dermis as a secondary endpoint.
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Responses were considered significant if they exceeded a 2-SD band of the mean value of the subtracted prestimulus level of the ongoing mechanical parameter at each phase.
The mechanical parameters (modulus, stress at yield point, strain at break point and stress at break values) derived from the stress strain curves, improved in the composite samples containing up to 2.8 wt% of inorganic filler, with respect to the pure polymer, in spite of the molecular weight decrease.
Fig.3 visualizes the location-dependent mechanical parameters, stress concentration at systole (Stress-P1; Fig.3A), stress variation during one cardiac cycle (Diff-Stress-P1; Fig.3B), large local deformation at systole (Stretch-P1; Fig.3C) and the stretch variation (Diff-Stretch-P1; Fin.3D), in the ROI of each neovessel.
Although the tensile strength has been reduced up to 50%, it has been shown that is possible to produce a barite-based concrete with a minor effect on the main mechanical parameters: the compressive strength at 28 days has decreased only by 10% and the elastic modulus at one year of age by 20%.
The product possessed a fast degradability due to its good wettability and good mechanical parameters with the elongations at break (137 ± 10%) and tensile strength (4.73 ± 0.46 MPa), which will make it a good matrix material for soft tissue like hypopharynx.
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electrical parameters at
mechanical constraints at
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mechanical arms at
mechanical sciences at
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mechanical engineers at
mechanical properties at
mechanical experiments at
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