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冲击波和预制破片复合作用下H型
引用本文:田力,张浩.冲击波和预制破片复合作用下H型[J].同济大学学报(自然科学版),2018,46(3):0289-0299.
作者姓名:田力  张浩
作者单位:天津大学,天津大学
基金项目:国家自然科学基金重点项目(51238007,51178310)
摘    要:为探究H型钢柱在近距爆炸冲击波和预制破片复合作用下的抗爆性能,基于非线性有限元软件ANSYS/LS-DYNA,通过在圆柱形TNT炸药柱身外贴预制破片来模拟爆炸产生的冲击波和破片对钢柱的损伤破坏。分析了冲击波载荷、破片群载荷及复合载荷作用下H型钢柱动态响应的差异。同时,通过参数化分析方法,探究了在冲击波和预制破片复合作用下轴压比、钢材强度、长细比和截面类型等因素对H型钢柱损伤效应的影响规律。结果表明:近爆作用下冲击波和预制破片的复合载荷作用具有叠加增强效应,复合载荷作用大于单一载荷作用效果的线性叠加;在钢柱抗爆设计中,应控制其所承受的轴向压力,钢材强度等级为Q235时,轴压比不宜大于0.4。应合理选择钢材强度等级,而不要盲目选择高强钢材。通过改变柱高来改变长细比对钢柱破坏影响不大。圆管型截面钢柱的抗爆能力最好,H型截面次之,箱形截面最差。本文成果可为钢结构抗爆理论和防护技术提供参考。

关 键 词:近爆  冲击波  破片  复合作用  钢柱
收稿时间:2017/5/26 0:00:00
修稿时间:2017/9/29 0:00:00

Damage Effect Analysis of H Section Steel Columns Subjected to Synergistic Effects of Blast and Prefabricated Fragments
TIAN Li and ZHANG Hao.Damage Effect Analysis of H Section Steel Columns Subjected to Synergistic Effects of Blast and Prefabricated Fragments[J].Journal of Tongji University(Natural Science),2018,46(3):0289-0299.
Authors:TIAN Li and ZHANG Hao
Institution:School of Civil Engineering, Tianjin University, Tianjin 300072, China; Key Laboratory of Coast Civil Structure Safty of the Ministry of Education, Tianjin University, Tianjin 300072, China and School of Civil Engineering, Tianjin University, Tianjin 300072, China
Abstract:In order to investigate the anti-blast performance of H-section steel columns under blast and prefabricated fragments, The damage effect of the combined blast and fragments loads on the H-section steel column is simulated by arranging the prefabricated fragments around the cylindrical TNT based on the nonlinear finite element software ANSYS / LS-DYNA .The difference of dynamic response of H-section steel columns under blast load, fragments load, the combined blast and fragments loads is analyzed. Meanwhile, the influence of the axial compression ratio, the steel strength, the slenderness ratio and the cross section type on the dynamic response of the steel column under the combined blast and fragments loads is investigated by parametric analysis method. Research indicates: The combined effect of blast and prefabricated fragments under adjacent explosion has superposition enhancement effect; the combined load is bigger than the linear superposition of single load effect. In the anti-blast design of steel columns, it should control the value of the axial pressure,and When the steel strength grade is Q235 the axial compression ratio should not bigger than 0.4. It should be reasonable to choose steel strength, and should not be blindly choose high-strength steel. By changing the column height to change the slenderness has little effect on the steel column. Tubular cross-section steel column has the best anti-blast ability, H-section is the second, and the box section is the worst. The results of this paper can provide reference for steel structure anti-explosion theory and protection technology.
Keywords:adjacent  explosion  blast  wave  fragments  synergistic  effects  steel  column  
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