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钢板/POZD复合结构在近距空爆载荷下的抗爆性能 被引量:1

Blast Resistant Performance of Steel/POZD Composite Structures under Close-Range Air Blast Loading
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摘要 为研究钢板/聚异氰氨酸酯噁唑烷(polyisocyanate oxazodone,POZD)聚合物高分子材料复合结构在近距空爆载荷下的抗爆性能,开展了近距空爆试验,通过观察试验模型的损伤以及相关数据统计,分析了钢板/POZD复合结构的变形失效模式。采用LS-DYNA软件进行数值模拟,通过与试验结果进行对比,验证了数值模拟方法的准确性,并进一步分析了钢板/POZD复合结构跨中位移变化和能量吸收特性。结果表明:在相同钢板厚度下,钢板/POZD复合结构较单一钢板具有更优越的抗爆性能,钢板呈现出3种不同的变形失效模式;在钢板/POZD复合结构中,当钢板和POZD均未出现破口时,钢板的塑性应变能占总能量吸收的大部分;钢板/POZD复合结构中心点最大位移逐渐增大,且变形速度先升高后降低。研究结果可为工程中钢板/POZD复合结构的抗爆防护设计提供参考。 To study the improvement mechanism of polyisocyanate oxazodone(POZD)on the blast resistance of steel plate,and analyze the dynamic response of steel/POZD composite structure,close-range air blast tests and finite element numerical simulations were conducted.Deformation failure modes of steel/POZD composite structures were studied and analyzed by observing the damage of tested structures and dealing with related date statistics.The accuracy of numerical simulation method was verified by comparing the results of numerical simulations with those of tests.The mid-span displacement change and energy absorption characteristics of steel/POZD composite structures were analyzed.Results show that steel/POZD composite structures have better blast resistant performance than single steel plates.Steel plates exhibit three different deformation failure modes.In the case of a steel/POZD composite structure with no crevasse,the plastic strain energy of steel layer gives a most contribution to the total energy absorption.The maximum central displacement of steel/POZD composite structure gradually increases,and meanwhile,its deformation velocity first increases and then decreases.The research results can provide references for the anti-explosion protection design of steel/POZD composite structures in engineering field.
作者 王逸平 汪维 杨建超 汪剑辉 王幸 WANG Yiping;WANG Wei;YANG Jianchao;WANG Jianhui;WANG Xing(Key Laboratory of Impact and Safety Engineering,Ningbo University,Ministry of Education,Ningbo 315211,Zhejiang,China;Institute of Defense Engineering,Academy of Military Sciences,PLA,Luoyang 471023,Henan,China)
出处 《高压物理学报》 CAS CSCD 北大核心 2023年第1期72-83,共12页 Chinese Journal of High Pressure Physics
基金 国家自然科学基金(11972201) 宁波市自然科学基金(202003N4147)。
关键词 POZD涂覆钢板 近距空爆 失效模式 能量吸收 有限元模拟 POZD coated steel sheet close-range air blast load failure mode energy absorption finite element simulation
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