Vibro-acoustic analysis and suppression of corrugated sandwich panel structures with general boundary conditions

IF 5.7 1区 工程技术 Q1 ENGINEERING, CIVIL Thin-Walled Structures Pub Date : 2025-03-14 DOI:10.1016/j.tws.2025.113196
Kai Zhou , Leibin Wen , Dao Gong , Jinsong Zhou , Yuejian Chen
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Abstract

The trapezoidal corrugated sandwich (TCS) panels are widely adopted in railway vehicles and aerospace flight vehicles, and the vibro-acoustic behaviors of these structures have garnered widespread attention from researchers. This investigation explores the vibro-acoustic analysis and suppression of TCS panels having general boundary conditions. By utilizing the mechanical equivalence principle, the TCS panel is equivalently modelled as a laminated panel comprising the upper panel, core and lower panel. The formulations of the TCS plate are derived utilizing the first-order shear deformation theory (FSDT), where each component of displacements is represented by the Fourier cosine series, incorporating auxiliary functions, in order to meet the general constraints. Numerical examples regarding the vibro-acoustic responses of the TCS panel are utilized to confirm the convergence and precision of the proposed methodology. The effects of essential parameters, encompassing boundary conditions, angle, core thickness, panel thickness and upper edge parameters on the vibro-acoustic responses of the TCS plate are thoroughly discussed. The response peaks of the TCS panel move to higher frequency ranges as the boundary stiffness or the upper edge parameter increases. Conversely, the response peaks of the TCS panel shift to lower frequency ranges with the angle or core thickness increased. Furthermore, the negative inductance negative resistance electromagnetic shunt damping (NINR-EMSD) is utilized to mitigate the multimode vibro-acoustic responses of the TCS panel structures. The studies indicate that the vibro-acoustic responses of the TCS plate can be attenuated by the proposed strategy, and the vibration mitigation property is enhanced when the total resistance of the circuit approaches zero.
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梯形波纹夹层板(TCS)被广泛应用于铁路车辆和航空飞行器,其振动声学行为已引起研究人员的广泛关注。本研究探讨了具有一般边界条件的 TCS 面板的振动声学分析和抑制。利用机械等效原理,TCS 面板被等效地模拟为由上面板、核心和下面板组成的层压板。TCS 板的公式是利用一阶剪切变形理论(FSDT)推导出来的,其中每个位移分量都用傅里叶余弦级数表示,并结合了辅助函数,以满足一般约束条件。通过有关 TCS 面板振动声学响应的数值示例,确认了所建议方法的收敛性和精确性。详细讨论了基本参数(包括边界条件、角度、核心厚度、面板厚度和上边缘参数)对 TCS 板振动声学响应的影响。随着边界刚度或上边缘参数的增加,TCS 面板的响应峰值移动到更高的频率范围。相反,随着角度或铁芯厚度的增加,TCS 面板的响应峰值会向较低的频率范围移动。此外,还利用负电感负电阻电磁分流阻尼(NINR-EMSD)来减轻 TCS 面板结构的多模振动声学响应。研究表明,所提出的策略可以减弱 TCS 板的振动声学响应,而且当电路总电阻趋近于零时,振动减缓特性会增强。
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来源期刊
Thin-Walled Structures
Thin-Walled Structures 工程技术-工程:土木
CiteScore
9.60
自引率
20.30%
发文量
801
审稿时长
66 days
期刊介绍: Thin-walled structures comprises an important and growing proportion of engineering construction with areas of application becoming increasingly diverse, ranging from aircraft, bridges, ships and oil rigs to storage vessels, industrial buildings and warehouses. Many factors, including cost and weight economy, new materials and processes and the growth of powerful methods of analysis have contributed to this growth, and led to the need for a journal which concentrates specifically on structures in which problems arise due to the thinness of the walls. This field includes cold– formed sections, plate and shell structures, reinforced plastics structures and aluminium structures, and is of importance in many branches of engineering. The primary criterion for consideration of papers in Thin–Walled Structures is that they must be concerned with thin–walled structures or the basic problems inherent in thin–walled structures. Provided this criterion is satisfied no restriction is placed on the type of construction, material or field of application. Papers on theory, experiment, design, etc., are published and it is expected that many papers will contain aspects of all three.
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