Hao Ning, Wang Ziying, Song Yiheng, Ruan Sihan, He Chaochao, Dong Zeyu
School of Civil Engineering, Southeast University, Nanjing, 21000, China.
Department of Mechanical and Biofunctional Systems, Institute of Industrial Science, University of Tokyo, 4-6-1 Komaba, Meguro-ku, Tokyo 153-8505, Japan.
Heliyon. 2022 Nov 19;8(11):e11683. doi: 10.1016/j.heliyon.2022.e11683. eCollection 2022 Nov.
Honeycomb plate (HP), which is a high-strength and lightweight structure, has good vibration characteristics, while beetle elytron plate (BEP) has better mechanical properties. To promote the engineering application of BEPs, the vibration and sound transmission characteristics of aluminium BEPs were investigated in this paper with HP as the comparison object. This paper investigated the effects of the number of trabeculae, the ratio of length and width, skin thickness, core height and core thickness on the first 4 frequencies using finite element method. The results show that (1) the vibration characteristic of BEP is optimal when the number of trabeculae is 6, and its 3rd and 4th modes show mixed mode, i.e., torsion-bending or bending-torsion mode. (2) The frequencies of BEPs are generally lower than those of HPs. Compared with HPs, the ratio of length and width and core thickness have a smaller influence on the mode shapes of BEPs, and the core height has a smaller influence on BEPs' frequencies. When the skin thickness is small, increasing the thickness can effectively change the natural frequencies of BEPs and HPs. (3) Considering the common frequencies of four applications (aircrafts, unmanned aerial vehicles, high-speed trains and automobiles) of sandwich plates, the effects of the abovementioned parameters including the ratio of length and width, skin thickness, core height and core thickness are analysed. (4) Combined with the theoretical calculation formula, the effect of the above structural parameters on the sound transmission characteristic is explored using the index of sound transmission loss, and targeted recommendations are given. This paper progresses the application in engineering.
蜂窝板(HP)是一种高强度、轻质结构,具有良好的振动特性,而甲虫鞘翅板(BEP)具有更好的力学性能。为促进BEP在工程中的应用,本文以HP为对比对象,研究了铝制BEP的振动和声传播特性。本文采用有限元方法研究了小梁数量、长宽比、蒙皮厚度、芯层高度和芯层厚度对前4阶频率的影响。结果表明:(1)小梁数量为6时BEP的振动特性最佳,其第3阶和第4阶模态呈现混合模态,即扭转-弯曲或弯曲-扭转模态。(2)BEP的频率普遍低于HP。与HP相比,长宽比和芯层厚度对BEP振型的影响较小,芯层高度对BEP频率的影响较小。当蒙皮厚度较小时,增加厚度可有效改变BEP和HP的固有频率。(3)考虑夹层板在飞机、无人机、高速列车和汽车这四种应用中的常用频率,分析了上述参数(包括长宽比、蒙皮厚度、芯层高度和芯层厚度)的影响。(4)结合理论计算公式,利用声传输损失指标探讨了上述结构参数对声传播特性的影响,并给出了针对性建议。本文推动了其在工程中的应用。