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Experimental study is firstly carried out for square tubes with two types of thickness distributions and numerical analyses are then conducted to simulate the experiment.
In is obseachd that caseiderable reducthen in amplitude and/oresultsng stress can be achieved by probtainedection oforhickness variation.
It is shown that the maximum displacement and maximum stress decrease for certain types of thickness variations as presented in this paper.
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It is shown that the maximum displacements and maximum dynamic stresses decrease for a certain type of thickness variation.
It is shown that the maximum displacement and maximum stress decrease for a certain type of thickness variations.
Parametric studies are made on the variation of frequency parameter with respect to the relative layer thickness, cone angle, length ratio, type of thickness variation and thickness variation parameter.
A large number of experimental parameters for multi-walled carbon nanotubes (MWNTs) grown by chemical vapor deposition (CVD) have been investigated including the type of thickness of catalytic metal films [1, 2], the substrate temperature [3, 4], the ammonia gas flow rates [5, 6], and supporting substrate, etc. [7, 8].
There are two main lamella types of different thickness populations, whose melting peaks labeled P1 and P2 may appear in series giving two melting endotherms at 302 and 322°C, respectively.
We found bitumen, coal tar, and some unidentified coating types of varying thickness and coverage.
Fig. 1 Synthetic models with anisotropic lithosphere for three types for thickness of the anisotropic lithosphere h = 85 km and degree of anisotropy α = 1.0.
The approach which is based on a net-exchange formulation and on adapted optical path sampling procedures is carefully designed to insure satisfactory convergence for all types of optical thicknesses.
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