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Analyzing fine scaling quantum effects on the buckling of axially-loaded carbon nanotubes based on the density functional theory and molecular mechanics method.

Sci Rep · 2024 · PMC10978868 · PMID 38548779

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an increasing trendno p-value reported
The results show that as the length of the structure increases, the buckling strain has an increasing trend and these changes are greater for smaller lengths.

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a decreasing trendno p-value reported
The results show that for the nanotubes with specified length, the values of buckling strain and buckling mode parameter, experiences a decreasing trend with higher rate of changes with increasing the diameter of nanotube, which is same as the nanotubes with infinite length.

also in 47,180 other papers

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