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Static behavior of FGP half-annular nanoplates resting on elastic foundation using nonlocal elasticity theory
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The article "Static behavior of FGP half-annular nanoplates resting on elastic foundation using nonlocal elasticity theory" presents an algorithm finite element for static bending analysis of the functionally graded porous (FGP) half-annular nanoplate resting on the elastic foundation (EF) using nonlocal elasticity theory. The FGP materials with two-parameter are the volume fraction index (k) and the porosity volume fraction (5) in two cases of even and uneven porosity. The EF includes Winkler-stiffness (k₁) and Pasternak- stiffness (k₂). Some examples are produced to verify the accuracy and reliability of the proposed method. Furthermore, the effects of some factors on the static bending of FGP nanoplates resting on the EF are comprehensively studied.
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