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Numerical Analysis on the Dynamic Response of PVC Foam/Polyurea Composite Sandwich Panels under the Close Air Blast Loading

  • Kaida Dai*
  • , Tao Jiang
  • , Meng Zhao
  • , Yuxin Xu
  • , Xiaosong Zhao
  • , Jiang Bian
  • *此作品的通讯作者
  • Beijing Institute of Technology
  • Beijing Institute of Space Long March Vehicle

科研成果: 期刊稿件文章同行评审

摘要

This paper explores a novel structure aimed at enhancing its blast resistance performance by adding a layer of polyurea coating to the steel-PVC foam-steel sandwich panel. The response of 13 different arrangements of sandwich panels under explosive loading was studied using numerical simulation. The response process can be divided into three deformation stages: (1) Fluid-structure interaction; (2) Compression of the sandwich panel; (3) Dynamic structural response. The dynamic responses of the various sandwich panels to close-range air blast loading were analyzed based on the deformation characteristics, deflection, effective plastic strain, energy absorption, and pressure of the shock wave. The study draws the following conclusions: Reasonably adding a layer of polyurea to the traditional PVC foam sandwich panel can enhance its resistance to shock wave absorption, with a maximum increase of 29.8%; the optimal arrangement for explosion resistance is steel plate-PVC foam-polyurea-steel plate when the polyurea is coated on the back; and the best quality ratio between polyurea and PVC foam is 1:7 when the polyurea is coated on the front.

源语言英语
文章编号810
期刊Polymers
16
6
DOI
出版状态已出版 - 3月 2024

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