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中空夹层金属管混凝土构件侧向冲击试验研究
引用本文:石岩,李宣莹,张君博,刘菲菲,张纪刚.中空夹层金属管混凝土构件侧向冲击试验研究[J].振动.测试与诊断,2020,40(5):982-988.
作者姓名:石岩  李宣莹  张君博  刘菲菲  张纪刚
作者单位:(1.福建工程学院土木工程学院 福州,350118)(2.青岛理工大学土木工程学院 青岛,266033)(3.山东省高等学校蓝色经济区工程建设与安全协同创新中心 青岛,266033)
基金项目:福建省教育厅资助项目(JAT170381);国家自然科学基金资助项目(51678321)
摘    要:为提高海洋平台结构的抗冰能力,提出一种新型中空夹层金属管混凝土导管腿构件。通过理论分析、数值模拟和试验相结合,研究不同外钢管材料(Q345钢、奥氏体304级不锈钢和T6061铝合金)对中空夹层钢管混凝土构件的影响。通过单次冲击和连续冲击两种加载方式进行加载,并与钢质空心导管腿进行对比,试验结果发现:组合构件抗冲击性能优于空管构件,铝合金组合构件整体抗冲击能力较差,不锈钢单次冲击作用下极限承载能量高达18.83 kJ以上,小能量连续冲击作用下承载冲击次数最多,不锈钢组合构件抗冲击力学性能最好。结合有限元ABAQUS软件,对单次冲击构件建模并得出计算结果,与试验结果基本吻合。

关 键 词:海洋平台  中空夹层金属管混凝土  导管腿  抗冲击性能

Test Analysis of Concrete-Filled Double Skin Metal Tubular Members Under Lateral Impact
SHI Yan,LI Xuanying,ZHANG Junbo,LIU Feifei,ZHANG Jigang.Test Analysis of Concrete-Filled Double Skin Metal Tubular Members Under Lateral Impact[J].Journal of Vibration,Measurement & Diagnosis,2020,40(5):982-988.
Authors:SHI Yan  LI Xuanying  ZHANG Junbo  LIU Feifei  ZHANG Jigang
Affiliation:(1.College of Civil Engineering, Fujian University of Technology Fuzhou,350118,China)(2.College of Civil Engineering,Qingdao University of Technology Qingdao,266033,China)(3.Cooperative Innovation Center of Engineering Construction and Safety in Shandong Blue Economic Zone Qingdao,266033,China)
Abstract:Based on the improvement of ice resistance of offshore platform structure, a new type of concrete-filled double skin metal tubular jacket leg members is proposed. The method of theoretical analysis, test and simulation is used to study its impact resistance under lateral impact load. The outside tube materials of the members are respectively Q345 steel, grade 304 austenitic stainless steel and T6061 aluminum alloy. The single impact and continuous impact are adopted for the impact form. The time-history curve of impact load and time-history curve of mid-span deflection are recorded and compared with those of hollow pipe members. The results show that the impact resistance of combined members is better than that of hollow pipe members, and the overall impact resistance of aluminum alloy combined members is poor. The ultimate bearing energy of stainless steel under single impact is more than 18.83 kJ, and the number of bearing impact times under the continuous impact of small energy is the most, so the impact resistance of stainless steel combined members is the best. In addition, combined with the finite element ABAQUS software, the single impact members are modeled and the calculation results are basically consistent with the test results.
Keywords:offshore platform  concrete filled double skins metal tube  jacket leg  impact resistance
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