热环境下变厚度双功能梯度碳纳米管弯曲板的振动声分析

IF 2.5 3区 工程技术 Q2 MECHANICS
Yu-Xin Fei, Feng-Lian Li, Jin-Lu Hou
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引用次数: 0

摘要

近年来,碳纳米管增强复合材料(CNTRC)的研究主要集中在均厚结构和自由振动方面。然而,对于变厚度CNTRC结构的振声特性研究较少。为此,本文构建了CNTs增强的变厚度双功能梯度(DFG)夹层弯曲板。采用Mori-Tanaka模型和混合规则计算复合材料结构的有效弹性模量。利用Hamilton原理建立热-力学动力学方程,结合流固耦合条件,采用Navier法求解,确定了固有频率和隔声性。在计算中,考察了不同厚度参数、梯度指数、碳纳米管分布形式、曲率和温度变化对振动声特性的影响。结果表明,弯曲板的曲率可以显著提高振动频率,优化隔声特性。温度场下材料软化与热应力的耦合效应对振动频率有较强的抑制作用,而变厚度的非均匀参数和厚度变化率与振动声性能呈正相关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Vibro-acoustic analysis of variable thickness dual-functionally gradient CNT curved plates exposed to thermal environment

Vibro-acoustic analysis of variable thickness dual-functionally gradient CNT curved plates exposed to thermal environment

In recent years, extensive studies on carbon nanotubes-reinforced composites (CNTRC) focus on the uniform-thickness structures and free vibration. However, there is few researches on the vibro-acoustic behaviors of CNTRC structures with variable thickness. Accordingly, this paper constructs a variable thickness double-functionally graded (DFG) sandwich curved plates reinforced by CNTs. The Mori–Tanaka model and mixture rule are used to evaluate the effective elastic modulus of the composite structures. The thermal–mechanical dynamic equation is established using the Hamilton’s principle and solved via Navier’s method combined with the fluid–solid coupling conditions to determine the natural frequency and sound insulation. In calculation, the variable thickness parameters, gradient indices of FG materials, CNT distribution forms, curvature and temperature variations on the vibro-acoustic behaviors are examined. The obtained results show that the curvature of curved plates can significantly increase the vibration frequency and optimize sound insulation characteristics. The coupling effect of material softening and thermal stress under temperature field has a strong suppression effect on vibration frequency, while the nonuniform parameters of variable thickness and the change rate of thickness positively correlate with the vibro-acoustic performances.

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来源期刊
CiteScore
4.40
自引率
10.70%
发文量
234
审稿时长
4-8 weeks
期刊介绍: Archive of Applied Mechanics serves as a platform to communicate original research of scholarly value in all branches of theoretical and applied mechanics, i.e., in solid and fluid mechanics, dynamics and vibrations. It focuses on continuum mechanics in general, structural mechanics, biomechanics, micro- and nano-mechanics as well as hydrodynamics. In particular, the following topics are emphasised: thermodynamics of materials, material modeling, multi-physics, mechanical properties of materials, homogenisation, phase transitions, fracture and damage mechanics, vibration, wave propagation experimental mechanics as well as machine learning techniques in the context of applied mechanics.
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