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Based on the finite element analysis (FEA) method, the mechanical event simulation (MES) technology is applied for the evaluation of the HAB component structural strength.
Using the displacement-controlled tension method, the mechanical properties of small-radius and large-radius CNSs are investigated based on a molecular mechanics (MM) simulation.
During the electrical measurements by probe method, the mechanical stress applied by the probes causes the compression of the insulating layers between gate and source/drain electrodes and thus decreased film thickness results in the increased leakage current Igs between gate and source, as is also shown in the leakage current curve of Figure 2b.
The greatest difference between the two is that in the three-point bending test, the mechanical properties are measured by the tips of the nanomaterial at the edges of the trench, whereas in the nanoindentation method, the mechanical properties are evaluated with the nanomaterial laid on top of a flat substrate.
Experiments with TiN coatings deposited on high-speed steel substrate shows that by using this two-step penetration method, the mechanical properties of hard coatings can be measured accurately and reliably.
Unlike the conventional mechanical fastening method, the mechanical fasteners in the technique do not penetrate the FRP strips and the capping plates serve to apply vertical pressure to the FRP strips.
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This issue is based on a fundamental fact: the algebraic methods (the mechanical approach) is more generic than geometric method.
Among all of the TBN methods, the mechanical removal approach is the easiest and most flexible [10].
However, when deposited in thin film form using physical vapor deposition methods the mechanical properties can degrade due to poor film density.
Considering most orthotropic materials are opaque, reflective caustics method is derived here by combining the fundamental principle of caustics method with the mechanical properties of orthotropic materials.
The paper further applies the new method to the mechanical analysis of the so-called Brazilian indirect tensile test in rock mechanics and pavement engineering.
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