CHINESE JOURNAL OF ENERGETIC MATERIALS
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Failure Mechanism and Energy Absorption Characteristic of CFRP Laminates under Small-quantity and Near-field Blast Loading
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1.Research Institute of Science of Technology, Civil Aviation University of China, Tianjin 300300, China;2.College of Safety Science and Engineering, Civil Aviation University of China, Tianjin 300300, China;3.Shanghai Aircraft Design and Research Institute, Shanghai 201210, China

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    Abstract:

    To study the failure mechanism and energy absorption of carbon fiber reinforced polymer (CFRP) composites subjected to small-quantity and near-field blast loading,free-field blast tests and scanning electron microscope (SEM) tests were carried out on CFRP laminates. Meanwhile, a damage model was established based on the 3D Hashin failure criterion, and the dynamic response of CFRP laminates under near-field blast loading were simulated. Combined with the test results, the failure mechanism and energy absorption of CFRP laminates were analyzed. Results show that there are differences in the failure modes between the facing and back blast surfaces of CFRP laminates. The matrix cracking, fiber fracture or center perforation mainly appear on the facing blast surface, and the delamination occurs at the fiber-matrix interface. The large-area delamination failure and the fragment dispersion of the back blast surface are mainly due to the influence of the reflected tension wave, and the delamination of appears inside the matrix. During the response process of laminates, the high stress area is concentrated on the boundary of the center perforation and distributed along the fiber direction, and the stress levels of 0° ply and 90° ply are larger than that of ±45° ply. Compared with the facing blast surface of laminates, the layers of the back blast surface absorb and transform large energy, accounting for 52%-56% of the total energy absorption.

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解江,李漩,潘汉源,等.小当量近场爆炸冲击下CFRP层合板失效机理及吸能特性[J].含能材料,2024,32(9):930-941.
XIE Jiang, LI Xuan, PAN Han-yuan, et al. Failure Mechanism and Energy Absorption Characteristic of CFRP Laminates under Small-quantity and Near-field Blast Loading[J]. Chinese Journal of Energetic Materials,2024,32(9):930-941.

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History
  • Received:July 03,2024
  • Revised:September 13,2024
  • Adopted:September 11,2024
  • Online: September 12,2024
  • Published: