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Vibration control of multiferroic fibrous composite plates using active constrained layer damping

机译:主动约束层阻尼控制多铁性纤维复合材料板的振动

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Geometrically nonlinear vibration control of fiber reinforced magneto-electro-elastic or multiferroic fibrous composite plates using active constrained layer damping treatment has been investigated. The piezoelectric (BaTiO3) fibers are embedded in the magnetostrictive (CoFe2O4) matrix forming magneto-electro-elastic or multiferroic smart composite. A three-dimensional finite element model of such fiber reinforced magneto-electro-elastic plates integrated with the active constrained layer damping patches is developed. Influence of electro-elastic, magneto-elastic and electromagnetic coupled fields on the vibration has been studied. The Golla–Hughes–McTavish method in time domain is employed for modeling a constrained viscoelastic layer of the active constrained layer damping treatment. The von Kármán type nonlinear strain-displacement relations are incorporated for developing a three-dimensional finite element model. Effect of fiber volume fraction, fiber orientation and boundary conditions on the control of geometrically nonlinear vibration of the fiber reinforced magneto-electro-elastic plates is investigated. The performance of the active constrained layer damping treatment due to the variation of piezoelectric fiber orientation angle in the 1–3 Piezoelectric constraining layer of the active constrained layer damping treatment has also been emphasized.
机译:研究了采用主动约束层阻尼处理的纤维增强磁电弹性或多铁纤维复合材料板的几何非线性振动控制。压电(BaTiO3)纤维嵌入磁致伸缩(CoFe2O4)基质中,形成磁电弹性或多铁性智能复合材料。建立了集成有主动约束层阻尼片的纤维增强磁电弹性板的三维有限元模型。研究了电弹性,磁弹性和电磁耦合场对振动的影响。时域的Golla-Hughes-McTavish方法用于对主动约束层阻尼处理的约束粘弹性层进行建模。 vonKármán型非线性应变-位移关系被并入以建立三维有限元模型。研究了纤维体积分数,纤维取向和边界条件对纤维增强磁电弹性板几何非线性振动控制的影响。还强调了由于有源约束层阻尼处理的1-3压电约束层中压电纤维取向角的变化而导致的有源约束层阻尼处理的性能。

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