赵延杰, 郝轶, 刘建湖, 张攀. 水下接触爆炸作用下泡沫夹芯板耗能机理研究[J]. 中国舰船研究, 2018, 13(3): 13-22. DOI: 10.19693/j.issn.1673-3185.01168
引用本文: 赵延杰, 郝轶, 刘建湖, 张攀. 水下接触爆炸作用下泡沫夹芯板耗能机理研究[J]. 中国舰船研究, 2018, 13(3): 13-22. DOI: 10.19693/j.issn.1673-3185.01168
ZHAO Yanjie, HAO Yi, LIU Jianhu, ZHANG Pan. Energy dissipation mechanism of foam sandwich plate subjected to contact underwater explosion[J]. Chinese Journal of Ship Research, 2018, 13(3): 13-22. DOI: 10.19693/j.issn.1673-3185.01168
Citation: ZHAO Yanjie, HAO Yi, LIU Jianhu, ZHANG Pan. Energy dissipation mechanism of foam sandwich plate subjected to contact underwater explosion[J]. Chinese Journal of Ship Research, 2018, 13(3): 13-22. DOI: 10.19693/j.issn.1673-3185.01168

水下接触爆炸作用下泡沫夹芯板耗能机理研究

Energy dissipation mechanism of foam sandwich plate subjected to contact underwater explosion

  • 摘要:
      目的  为了研究水下接触爆炸作用下泡沫夹芯板的耗能机理,
      方法  首先,开展泡沫夹芯板的水下接触爆炸试验,获得其破坏模式,并比较等质量钢板与不同配置夹芯板的抗爆耗能效果;然后,基于数值仿真,分析泡沫夹芯板在水下接触爆炸作用下的损伤过程,模拟夹芯板的破坏模式,统计各部分的耗能率。
      结果  研究结果表明,同等条件下夹芯板的抗爆耗能效果优于等质量实体钢板,且上面板薄、下面板厚时的耗能效果最优;夹芯板耗能率可较实体钢板提高约5%~8%。
      结论   根据试验和仿真结果,给出了泡沫夹芯板结构在水下接触爆炸作用下的耗能机理,可为舰船结构防护设计提供参考。

     

    Abstract:
      Objectives   This paper is a study of the energy dissipation mechanism of a foam sandwich plate subjected to contact underwater explosion (contact UNDEX).
      Methods  First, a series of contact UNDEX tests of foam sandwich plates is carried out in order to obtain the damage modes, and anti-explosion ability comparisons between sandwich plates and mass-equal solid steel plates with different sandwich configurations are made. Then, the damage processes of foam sandwich plates under contact UNDEX are analyzed through numerical simulation, their damage modes are simulated and the amount of energy dissipated in each sandwich plate section is calculated.
      Results  It is concluded from the tests that sandwich plates have superior anti-explosion ability over mass-equal solid steel plates, and sandwich plates with a thin face plate and a thick back plate is the configuration that provides optimal performance. The energy dissipation rate of a sandwich plate is 5%-8% higher than that of a solid plate.
      Conclusions   The energy dissipation mechanism of foam sandwich plates subjected to contact UNDEX is discussed on the basis of the test and simulation results. All the results can provide useful references for the anti-explosion protection design of naval ships.

     

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