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基于哈尔小波离散化方法的弹性基础上功能梯度碳纳米管增强复合材料圆锥-圆柱组合壳的自由振动特性

Free Vibration Characteristics of FG-CNTRC Conical-Cylindrical Combined Shells Resting on Elastic Foundations Using the Haar Wavelet Discretization Method.

作者信息

Fan Jianyu, Zhang Haoran, Tu Yongqiang, Yang Shaohui, Huang Yan, Du Zhichang, Boudaoud Hakim

机构信息

College of Marine Equipment and Mechanical Engineering, Jimei University, Xiamen 361021, China.

Fujian Key Laboratory of Energy Cleaning Utilization and Development, Jimei University, Xiamen 361021, China.

出版信息

Polymers (Basel). 2025 Jul 25;17(15):2035. doi: 10.3390/polym17152035.

Abstract

Functionally graded carbon nanotube reinforced composites (FG-CNTRCs) are a novel breed of polymer nanocomposite, in which the nonuniform distribution of the carbon nanotube (CNT) reinforcement is adopted to maximize the macro-mechanical performance of the polymer with a lower content of CNTs. Composite conical-cylindrical combined shells (CCCSs) are widely utilized as loading-bearing components in various engineering applications, and a comprehensive understanding of the vibration characteristics of these shells under different external excitations and boundary conditions is crucial for engineering applications. In this study, the free vibration behaviors of FG-CNTRC CCCSs supported by an elastic foundation are examined using the Haar wavelet discretization method (HWDM). First, by means of the HWDM, the equations of motion of each shell segment, the continuity and boundary conditions are converted into a system of algebraic equations. Subsequently, the natural frequencies and modes of the CCCSs are achieved by calculating the resultant algebraic equations. The convergence and accuracy are evaluated, and the results demonstrate that the proposed method has stable convergence, high efficiency, and excellent accuracy. Furthermore, an exhaustive parametric investigation is conducted to reveal the effects of foundation stiffnesses, boundary conditions, material mechanical properties, and geometric parameters on the vibration characteristics of the FG-CNTRC CCCS.

摘要

功能梯度碳纳米管增强复合材料(FG-CNTRCs)是一种新型的聚合物纳米复合材料,其中采用碳纳米管(CNT)增强体的非均匀分布,以在较低CNT含量的情况下使聚合物的宏观力学性能最大化。复合圆锥 - 圆柱组合壳(CCCSs)在各种工程应用中被广泛用作承载部件,全面了解这些壳在不同外部激励和边界条件下的振动特性对于工程应用至关重要。在本研究中,使用哈尔小波离散化方法(HWDM)研究了弹性基础支撑的FG-CNTRC CCCSs的自由振动行为。首先,借助HWDM,将每个壳段的运动方程、连续性和边界条件转换为代数方程组。随后,通过求解所得代数方程组得到CCCSs的固有频率和振型。对收敛性和精度进行了评估,结果表明所提出的方法具有稳定的收敛性、高效率和出色的精度。此外,还进行了详尽的参数研究,以揭示基础刚度、边界条件、材料力学性能和几何参数对FG-CNTRC CCCS振动特性的影响。

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