4.7 Article

Enhanced vibration and damping characteristics of novel corrugated sandwich panels with polyurea-metal laminate face sheets

期刊

COMPOSITE STRUCTURES
卷 251, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.compstruct.2020.112591

关键词

Vibration damping; Sandwich panels; Viscoelastic polyurea; Laser welding

资金

  1. National Key Research and Development Program of China [2017YFB1102801]
  2. National Natural Science Foundation of China [11972185, 11902148]
  3. Open Project for Key Laboratory of Intense Dynamic Loading and Effect [KLIDLE1801]
  4. Aviation Science Foundation [20170970002]
  5. Natural Science Fund Project in Jiangsu Province [BK20190392]
  6. State Key Laboratory of Mechanics and Control of Mechanical Structures [MCMS-E0219K02, MCMS-I-0219K01]
  7. State Key Laboratory of Smart Manufacturing for Special Vehicles and Transmission System [GZ2019KF015]

向作者/读者索取更多资源

All-metallic sandwich panels with lattice truss cores are typically ultralight, stiff and strong, yet poor in passive vibration damping. Novel laser-welded corrugated-core (LASCOR) sandwich panels with polyurea-metal laminates (PML) as face sheets were proposed and fabricated, and their vibration and damping characteristics were systematically investigated, both experimentally and numerically. Frequency/time response curves, natural frequencies, vibration mode shapes and damping loss factors were measured and compared with LASCOR sandwich panels without embedded polyurea layers. A combined finite element-modal strain energy (FE-MSE) method was proposed to predict the vibration damping performance and explore the underlying enhancement mechanisms, with the frequency-dependent damping behaviors of polyurea considered. Good agreement was achieved between numerical simulations and experimental measurements. The PML face sheets enabled remarkable damping enhancement, due mainly to viscoelastic energy dissipation of the polyurea layers. The capacity of the sandwich panel in passive vibration suppression could be further improved by tailoring the polyurea layer thickness and the distribution of polyurea layers.

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