Page 178 - 《爆炸与冲击》2025年第12期
P. 178

第 45 卷           郭士旭,等: 接触爆炸条件下聚脲涂层对RC基板层裂和贯穿的影响                               第 12 期

                    754142.
               [12]   方志强, 吕平, 张锐, 等. 抗爆型聚脲涂层的性能及其抗爆机理 [J]. 高压物理学报, 2022, 36(2): 43–52. DOI: 10.11858/
                    gywlxb.20210840.
                    FANG Z, LYU P, ZHANG R, et al. Blast-resistant properties and mechanism of anti-explosion polyurea coating [J]. Chinese
                    Journal of High Pressure Physics, 2022, 36(2): 43–52. DOI: 10.11858/gywlxb.20210840.
               [13]   张锐, 黄微波, 吕平, 等. 抗爆型聚脲涂层性能及其防护钢筋混凝土板接触爆炸与断裂机制研究 [J]. 工程科学与技术,
                    2022, 54(5): 1–10. DOI: 10.15961/j.jsuese.202100619.
                    ZHANG R, HUANG W B, LYU P, et al. Study on the performance of blast-mitigation polyurea and fracture mechanism of the
                    coated reinforced concrete slabs under contact explosion [J]. Science Technology and Engineering, 2022, 54(5): 1–10. DOI:
                    10.15961/j.jsuese.202100619.
               [14]   LIM  B,  HONG  P  J.  Sprayed-on  polymer  as  concrete  spall  shield  [J].  Solid  State  Phenomena,  2008,  136:  145–152.  DOI:
                    10.4028/www.scientific.net/SSP.136.145.
               [15]   MU M, LIU F, LI J, et al. Influence of modified polyurea coating thickness on the blast resistance of RC slab [J]. Structures,
                    2024, 67: 107009. DOI: 10.1016/j.istruc.2024.107009.
               [16]   WANG  W,  YANG  J,  WANG  J,  et  al.  Experimental  investigation  of  polyisocyanate-oxazodone  coated  square  reinforced
                    concrete slab under contact explosions [J]. International Journal of Impact Engineering., 2021, 149: 103777. DOI: 10.1016/
                    j.ijimpeng.2020.103777.
               [17]   汪维, 杨建超, 汪剑辉, 等. POZD  涂层方形钢筋混凝土板抗接触爆炸试验研究 [J]. 爆炸与冲击, 2020, 40(12): 14-23. DOI:
                    10.11883/bzycj-2020-0180.
                    WANG W, YANG J C, WANG J H, et al. Experimental research on anti-contact explosion of POZD coated square reinforced
                    concrete slab [J]. Explosion and Shock Waves, 2020, 40(12): 121402. DOI: 10.11883/bzycj-2020-0180.
               [18]   WANG W, HUO Q, YANG J, et al. Damage analysis of POZD coated square reinforced concrete slab under contact blast [J].
                    Defence Technology, 2022, 18(9): 1715–1726. DOI: 10.1016/j.dt.2021.07.005.
               [19]   杨建超, 汪剑辉, 陈力, 等. POZD  涂层钢筋混凝土板抗震塌性能 [J]. 兵工学报, 2021, 42(1): 133–140. DOI: 10.3969/j.issn.
                    1000-1093.2021.01.015.
                    YANG J C, WANG J H, CHEN L, et al. Anti-collapsing performance of POZD coated reinforced concrete slab [J]. Acta
                    Armamentarii, 2021, 42(1): 133–140. DOI: 10.3969/j.issn.1000-1093.2021.01.015.
               [20]   杨建超, 汪剑辉, 王幸, 等. 聚异氰氨酸脂噁唑烷弹性涂层钢筋混凝土板抗震塌机理 [J]. 科学技术与工程, 2022, 22(4):
                    1338–1343. DOI: 10.3969/j.issn.1671-1815.2022.04.005.
                    YANG  J  C,  WANG  J  H,  WANG  X,  et  al.  Anti-collapsing  mechanism  of  reinforced  concrete  slab  with  polyisocyanate-
                    oxazodone elastic coating [J]. Science Technology and Engineering, 2022, 22(4): 1338–1343. DOI: 10.3969/j.issn.1671-1815.
                    2022.04.005.
               [21]   徐赵威, 汪维, 李奕硕, 等. 接触爆炸下聚脲/钢筋混凝土厚板复合结构的抗爆性能 [J]. 爆炸与冲击. DOI: 10.11883/bzycj-
                    2024-0083.
                    XU Z W, WANG W, LI Y S, et al. Blast resistance of polyurea/reinforced concrete thick slab composite structures under
                    contact explosion [J]. Explosion and Shock Waves. DOI: 10.11883/bzycj-2024-0083.
               [22]   胡玉峰, 宋殿义, 谭清华, 等. 接触爆炸作用下      RC  单向板抗爆加固的试验研究 [J]. 防护工程, 2019, 41(5): 1–7.
                    HU Y F, SONG D Y, TAN Q H. Experimental investigation on anti-explosion strengthening of one-way RC slabs under
                    contact explosion [J]. Protective Engineering, 2019, 41(5): 1–7.
               [23]   MCVAY  M  K.  Spall  damage  of  concrete  structures:  Technical  report  SL-88-22  [R].  Vicksburg,  Mississippi:  Structures
                    Laboratory, Department of the Army, Waterways Experiment Station, Corps of Engineers, 1988.
               [24]   TU H, FUNG T C, TAN K H, et al. An analytical model to predict spalling and breaching of concrete plates under contact
                    detonation [J]. International Journal of Impact Engineering., 2022, 160: 104075. DOI: 10.1016/j.ijimpeng.2021.104075.
               [25]   GEBBEKEN N, KRAUTHAMMER T, HUPFAUF M. Understanding the dynamic response of concrete to loading: Practical
                    examples  [M]//Understanding  the  Tensile  Properties  of  Concrete.  Woodhead,  2024:  379–418.  DOI:  10.1016/B978-0-443-
                    15593-2.00008-7.
               [26]   HUPFAUF  M,  GEBBEKEN  N.  Secondary  debris  resulting  from  concrete  slabs  subjected  to  contact  detonations:  spatial
                    velocity  distribution  and  influence  of  steel  fibers  [J].  International  Journal  of  Protective  Structures,  2024(1):  1–22.  DOI:


                                                         125101-12
   173   174   175   176   177   178   179   180   181   182   183