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Nonlinear forced vibrations of multi-scale epoxy/CNT/fiberglass truncated conical shells and annular plates via 3D Mori-Tanaka scheme

机译:多尺度环氧/ CNT /玻璃纤维截短圆锥形壳和环形板的非线性强制振动通过3D Mori-Tanaka方案

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摘要

In the context of classic conical shell formulation, nonlinear forced vibration analysis of truncated conical shells and annular plates made of multi -scale epoxy/CNT/fiberglass composites has been presented. The composite material is reinforced by carbon nanotube (CNT) and also fiberglass for which the material properties are defined according to a 3D Mori -Tanaka micromechanical scheme. By utilizing the Jacobi elliptic functions, the frequency -deflection curves of truncated conical shells and annular plates related to their forced vibrations have been derived. The main focus is to study the influences of CNT amount, fiberglass volume, open angle, fiber angle, truncated distance and force magnitude on forced vibrational behaviors of multi -scale truncated conical shells and annular plates.
机译:在经典锥形壳体制剂的背景下,已经介绍了由多级环氧/ CNT /玻璃纤维复合材料制成的截短圆锥形壳体和环形板的非线性强制振动分析。 复合材料通过碳纳米管(CNT)增强,并且还根据3D Mori -Tanaka微机械方案来定义材料特性的玻璃纤维。 通过利用Jacobi椭圆函数,已经得出了与其强制振动有关的截短圆锥形壳体的频率-DeFlection曲线。 主要重点是研究CNT量,玻璃纤维体积,开口角度,光纤角度,截断距离和力幅度对多孔截短的锥形壳和环形板的强制振动行为的影响。

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