Investigations on air and underwater blast mitigation in polymeric composite structures ? A review

被引:46
|
作者
Wanchoo, Piyush [1 ]
Matos, Helio [1 ]
Rousseau, Carl-Ernst [1 ]
Shukla, Arun [1 ]
机构
[1] Univ Rhode Isl, Mech Ind & Syst Engn Dept, Dynam Photomech Lab, Kingston, RI 02881 USA
关键词
Blast mitigation; Blast loading; Underwater explosions; Air explosions;
D O I
10.1016/j.compstruct.2020.113530
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
Polymer-based sandwich composites have found increasing applications in the marine industry, where they are at an ever-increasing risk of encountering high-intensity underwater (UNDEX) or in air (AIREX) explosive loading. This review presents the current state of the art in achieving adequate blast mitigation, employing polymeric composites. An attempt has been made to highlight the differences in loading mechanisms between AIREX and UNDEX and segregate the mechanisms through which polymers can mitigate these two loading modes. This understanding facilitates the development of a tailored design approach to blast mitigation. Furthermore, recent blast mitigation research related to composite sandwich architecture is discussed in detail, focusing on various components' effect on mitigation performance. Finally, additively manufactured applications, auxetics, and other foam metamaterial constructions are also presented in relation to the mitigation effort. The recent interest in such materials for use as the core in polymeric sandwich construction against blast loading is covered cohesively with the rest of the discussion.
引用
收藏
页数:23
相关论文
共 50 条
  • [41] Mitigation of Blast Effects on Protective Structures by Aluminum Foam Panels
    Shim, C. S.
    Yun, N. R.
    Yu, I. H.
    Byun, D. Y.
    POROUS METALS AND METALLIC FOAMS, METFOAM 2011, 2012, : 489 - 494
  • [42] FABRICATION OF POLYMERIC AND POLYMERIC NANO-COMPOSITE MEMS STRUCTURES
    Li, Daizong
    Tumkor, Serdar
    Manoochehri, Souran
    Pochiraju, Kishore
    IMECE 2009: PROCEEDINGS OF THE ASME INTERNATIONAL MECHANICAL ENGINEERING CONGRESS AND EXPOSITION, VOL 12, PTS A AND B, 2010, : 309 - 313
  • [43] Design of composite structures for impact and blast loads
    Hauke, B.
    Guendel, M.
    Hoffmeister, B.
    BAUINGENIEUR, 2009, 84 : 30 - 34
  • [44] RESPONSE OF CONTAINMENT STRUCTURES TO AIR BLAST.
    Kot, C.A.
    Turula, P.
    Transactions of the International Conference on Structural Mechanics in Reactor Technology, 1979,
  • [45] Blast loading of sandwich structures and composite tubes
    Dear, J.P. (j.dear@imperial.ac.uk), 1600, Springer Verlag (192):
  • [46] Polyurea coatings for enhanced blast-mitigation: a review
    Iqbal, N.
    Tripathi, M.
    Parthasarathy, S.
    Kumarb, D.
    Roy, P. K.
    RSC ADVANCES, 2016, 6 (111) : 109706 - 109717
  • [47] Review of Blast Loading Models, Masonry Response, and Mitigation
    Badshah, Eid
    Naseer, Amjad
    Ashraf, Muhammad
    Shah, Feroz
    Akhtar, Kareem
    SHOCK AND VIBRATION, 2017, 2017
  • [48] Blast and impact damage evaluation of composite structures
    Lou, KA
    STRUCTURAL INTEGRITY AND MATERIALS AGING: FRACTURE MECHANICS AND APPLICATIONS, 2003, : 281 - 286
  • [49] Comparative analysis of blast load transfer and structural damage in multi-cabin structures during air and underwater explosions
    Cheng, Lele
    Huang, Fenglei
    Wu, Haijun
    Dong, Heng
    Tian, Sichen
    OCEAN ENGINEERING, 2024, 297
  • [50] Composite Patch Repair for Underwater Aluminum Structures
    Bianchi, R. W.
    Kwon, Y. W.
    Alley, E. S.
    JOURNAL OF OFFSHORE MECHANICS AND ARCTIC ENGINEERING-TRANSACTIONS OF THE ASME, 2019, 141 (06):