4.6 Article

Fiber orientation effects on the non-linear vibrations for a microstructure-dependent tapered plate containing an arbitrarily located crack

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TAYLOR & FRANCIS INC
DOI: 10.1080/15397734.2021.1966305

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Micro-plate; crack; fiber orientation; vibration; linearly varying thickness

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Non-linear vibrations in a cracked orthotropic plate with non-uniform thickness are studied analytically, considering the effect of fiber orientation. The governing equation for the tapered orthotropic plate is derived, incorporating the modified couple stress theory and the effect of partial crack. The results show that the vibration characteristics of the cracked orthotropic plate are influenced by the taper parameters and fiber direction.
Non-linear vibrations in a cracked orthotropic plate with non-uniform thickness as affected by the fiber orientation have been studied analytically. Linear variation in the plate thickness is assumed in one and two directions. The governing equation of the tapered orthotropic plate is derived using the equilibrium principle. The effect of microstructure is incorporated using the modified couple stress theory. The effect of partial crack on the plate dynamics is incorporated in the form of in-plane forces and bending moments. It has been found that vibration characteristics are affected by the taper parameters and fiber direction for a cracked orthotropic plate.

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