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Exact(60)
where f p is the frequency of the RBM with exposed to axial pressure, and f 0 is the frequency of RBM not exposed to axial pressure.
The effect of axial pressure gradient is also included.
(3) With the increase of axial pressure ratio, the corresponding maximum load also increases.
The effects of the wave numbers, aspect ratio and axial pressure are discussed in detail.
Firstly, when increasing the pore pressure, then the axial pressure also needs to be increased.
Figure 5 RBM frequencies of DWCNTs as a function of axial pressure.
With the increase of axial pressure ratio, the corresponding maximum load also increases.
Correspondingly, when decreasing the axial pressure, the pore pressure also needs to be decreased.
Thus, the larger mode numbers result in higher RBM frequencies with increasing axial pressure.
Note that the RBM frequency ratio η is sublinear with respect to increasing axial pressure.
Triaxial unloading confining pressure process was reducing confining pressure while increasing axial pressure.
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