4.5 Article

Design and fabrication of carbon-fiber-wound composite pressure vessel with HDPE liner

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.ijpvp.2022.104851

关键词

Type IV pressure vessel; Fiber winding design; Pre -charge pressure; Progressive failure; Burst pressure

资金

  1. National Natural Science Foundation of China
  2. Fundamental Research Funds for the Central Universities
  3. [52175311]
  4. [52175133]
  5. [12102115]
  6. [52005446]
  7. [PA2021GDSK0097]
  8. [JZ2021HGTA0178]
  9. [JZ2022HGQA0154]
  10. [PA2022GDSK0060]

向作者/读者索取更多资源

This study focuses on the fiber winding design and fabrication method of a carbon fiber wound composite pressure vessel with HDPE liner. The design parameters, fiber winding tensions, and pre-charge pressures were studied. A finite element analysis model was established and progressive damage analysis was conducted, obtaining the failure mode and burst pressure of the vessel. By analyzing the critical buckling load and designing the winding tensions, the pre-charge pressure was determined. A burst test was carried out to verify the effectiveness of the design and fabrication process.
This work focuses on the fiber winding design and fabrication method of a carbon fiber wound composite pressure vessel with HDPE liner. The design parameters of the fiber winding layers, the fiber winding tensions, and the pre-charge pressures of the liner were studied. The hoop and helical winding layers were designed, and a finite element analysis model was established by combining the cubic spline thickness prediction method. A progressive damage analysis based on the Hashin failure criterion and the Camanho degradation criterion was conducted. The failure mode and the burst pressure of the vessel were obtained. By analysis of the critical buckling load of the liner and the design of the winding tensions, the pre-charge pressure was obtained by combining with the equivalent temperature method. A composite pressure vessel was fabricated and a burst test was carried out to verify the effectiveness of the design method and the fabrication process.

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