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Modal Performance of Two-Fiber Orthogonal Gradient Composite Laminates Embedded with SMA

机译:SMA嵌入的两纤维正交梯度复合层板的模态性能

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摘要

A gradient composite laminate that was composed of two-phase fibers, a shape memory alloy (SMA), and graphite was prepared to investigate modal performance and improve vibration behavior. The stress-strain relation of the single-layer composite plates was derived from Kirchhoff thin plate theory and the material constitutive of the SMA. A gradient distribution model and the eigenvalue equations of gradient composite laminates were developed. The influence of the fiber component content gradient distribution, pre-strain, the two-phase fiber volume fraction, and geometric parameters on the modal performance was analyzed. This study provides a method to avoid the structural resonance of composite laminates that are embedded with an SMA through the gradient distribution of two-phase fiber content that leads to the interaction of the material properties.
机译:制备了由两相纤维,形状记忆合金(SMA)和石墨组成的梯度复合材料层压板,以研究模态性能并改善振动性能。单层复合板的应力-应变关系是根据基尔霍夫薄板理论和SMA的材料成分推导的。建立了梯度复合材料层合板的梯度分布模型和特征值方程。分析了纤维成分含量梯度分布,预应变,两相纤维体积分数和几何参数对模态性能的影响。这项研究提供了一种方法,可避免两相纤维含量的梯度分布导致材料性能的相互作用,从而避免复合材料层压板与SMA嵌入在一起的结构共振。

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