Kang Ludi, Liu Bilong, An Fengyan, Wei Dapeng
School of Mechanical & Automobile Engineering, Qingdao University of Technology, No. 777 Jialingjiang Road, Qingdao 266520, China.
J Acoust Soc Am. 2022 Sep;152(3):1539. doi: 10.1121/10.0013997.
The effect of perforating the honeycomb walls of a honeycomb sandwich panel on the dynamic bending stiffness and sound transmission loss of the panel is investigated. The dynamic bending stiffness and sound transmission loss of several sandwich panels with different cores are calculated using a semi-analytical method, and the static bending stiffness and flatwise stiffness of these structures are also analyzed with the finite element method. Furthermore, the influences of the honeycomb shape, the hole shape of the perforated honeycomb wall, the number of perforations, and the wall thickness on the vibro-acoustic and mechanical properties of the sandwich panel are investigated. The results show that the static mechanical performance of the sandwich panel quickly reaches a high level when the ratio of honeycomb wall thickness to length t/l is about 5.3 × 10 and a square hole in the honeycomb wall can bring superior characteristics of "high static and low dynamic properties," significantly improving the sound insulation of the sandwich panel. This study makes an effective reference for the optimized design of the innovative sandwich structure in practical applications.
研究了蜂窝夹芯板蜂窝壁穿孔对其动态弯曲刚度和声传输损失的影响。采用半解析方法计算了几种不同芯材夹芯板的动态弯曲刚度和声传输损失,并利用有限元方法分析了这些结构的静态弯曲刚度和面内刚度。此外,还研究了蜂窝形状、穿孔蜂窝壁的孔形状、穿孔数量和壁厚对夹芯板振动声学和力学性能的影响。结果表明,当蜂窝壁厚度与长度之比t/l约为5.3×10时,夹芯板的静态力学性能迅速达到较高水平,蜂窝壁上的方孔可带来“高静态低动态性能”的优越特性,显著提高夹芯板的隔音性能。该研究为创新夹芯结构在实际应用中的优化设计提供了有效的参考。