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Response of carbon fiber trapezoidal corrugated sandwich structure under air explosion loading北大核心CSCD
引用本文:章帅帅刘均张攀程远胜.Response of carbon fiber trapezoidal corrugated sandwich structure under air explosion loading北大核心CSCD[J].中国舰船研究,2023(2):28-37.
作者姓名:章帅帅刘均张攀程远胜
作者单位:1.华中科技大学船舶与海洋工程学院430074;
摘    要:The effects of the thickness of the face plate, angle of the wall plate and height of the core layer on the anti-explosion performance of carbon fiber reinforced composite trapezoidal corrugated sandwich structures were investigated. Methods]First, based on the 3D Hashin failure criterion, a subroutine module of the damage evolution of fiber reinforced composites is developed using the VUMAT user subroutine interface in ABAQUS. Second, through comparison with experiments in the public literature, the effectiveness of the dynamic response simulation method of carbon fiber reinforced composites based on a development subroutine under explosion impact loading is verified. Finally, a parametric study on the explosion resistance of carbon fiber reinforced composite trapezoidal corrugated plates is carried out based on the numerical method. Results]The results show that, compared with increasing the thickness of the blast face panel, increasing the thickness of the back blast face panel can improve the explosion resistance of the sandwich plate more obviously; when the folding angle of the core wall plate decreases from 45° to 30°, the explosion resistance increases by 1.3%; when it decreases from 60° to 45°, the explosion resistance increases by 6.3%; and whenthecoreheightincreasesfrom8mmto20mm, theexplosionresistanceincreasesby27.7%.Conclusions]The results of this study can provide references for the explosion-proof design of carbon fiber reinforced composite sandwich structures. © 2023 Journal of Nanjing Agricultural University. All rights reserved.

关 键 词:复合材料  爆炸冲击  梯形波纹板  损伤演化  ABAQUS
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