无焊缝全螺栓连接双钢板混凝土组合剪力墙平面外抗冲击性能有限元分析

朱立猛,高晓飞,张春巍

振动与冲击 ›› 2021, Vol. 40 ›› Issue (9) : 166-174.

PDF(3889 KB)
PDF(3889 KB)
振动与冲击 ›› 2021, Vol. 40 ›› Issue (9) : 166-174.
论文

无焊缝全螺栓连接双钢板混凝土组合剪力墙平面外抗冲击性能有限元分析

  • 朱立猛,高晓飞,张春巍
作者信息 +

Finite element analysis for out of plane anti-impact performance of unwelded steel plate-concrete-steel plate composite shear wall with all bolted joints

  • ZHU Limeng, GAO Xiaofei, ZHANG Chunwei
Author information +
文章历史 +

摘要

为研究无焊缝全螺栓连接双钢板混凝土组合剪力墙在平面外冲击荷载作用下的力学性能,基于ABAQUS软件建立有限元模型并利用已有试验验证该模型的有效性,在此基础上分析了冲击质量、冲击能量、轴压比、截面形式等参数对该组合剪力墙抗冲击能力的影响,获得其破坏模式。结果表明:冲击能量相同时,墙体耗散的能量随着冲击质量的增加而增加;冲击质量相同时,冲击能量的变化能够影响墙体各部件的吸能比;较小的轴压比对墙体抗冲击性能有利,设计时可不考虑轴压比参数,结果偏于安全;墙体端部槽钢开口向内较开口向外其抗冲击性能略有提升;含对拉螺栓的墙体抗冲击性能优于含交错栓钉的墙体。结合有限元分析结果,基于冲击作用下梁的塑性位移计算方法,推导出该组合剪力墙在面外冲击荷载作用下的塑性位移计算公式,计算结果与有限元分析结果吻合较好。

Abstract

In order to study out of plane anti-impact performance of unwielded steel plate-concrete-steel plate composite shear wall with all bolted joints, its finite element (FE) model was established based on the software ABAQUS and the model effectiveness was verified with the existing test data.Then, effects of impact mass, impact energy, axial compression ratio and cross section form on the wall anti-impact ability were analyzed to acquire its failure mode.The results showed that when the impact energy is the same, the energy dissipated by the wall increases with increase in impact mass; when the impact mass is the same, the change of impact energy can affect the energy absorption ratio of each part of the wall; the smaller axial compression ratio is beneficial to the wall anti-impact ability, the axial compression ratio may not be considered in design and the result is safer; the wall anti-impact performance when the wall end U-steel opening inward is better than that when it opening outward; the anti-impact performance of the wall with split bolt is better than that of the wall with staggered stud; combined with the results of FE analysis, based on the calculation method of beam plastic displacement under impact, the calculation formula of plastic displacement of this wall under out of plane impact load is derived, and its calculation results agree better with the results of FE analysis.

关键词

无焊缝全螺栓连接双钢板混凝土组合剪力墙 / 对拉螺栓 / 冲击荷载 / 轴压比 / 端部槽钢 / 栓钉

Key words

unwielded steel plate-concrete-steel plate composite shear wall with all bolted joints / split bolt / impact load / axial compression ratio / end U-steel / stud

引用本文

导出引用
朱立猛,高晓飞,张春巍. 无焊缝全螺栓连接双钢板混凝土组合剪力墙平面外抗冲击性能有限元分析[J]. 振动与冲击, 2021, 40(9): 166-174
ZHU Limeng, GAO Xiaofei, ZHANG Chunwei. Finite element analysis for out of plane anti-impact performance of unwelded steel plate-concrete-steel plate composite shear wall with all bolted joints[J]. Journal of Vibration and Shock, 2021, 40(9): 166-174

参考文献

[1]朱立猛, 周德源.钢板混凝土组合剪力墙抗震性能试验研究及有限元分析[J].结构工程师, 2013, 29(4):153-158.
ZHU Limeng,ZHOU Deyuan.Static test and finite element analysis of composite concrete steel plate shear walls[J].Structural Engineers, 2013, 29(4):153-158.
[2]WANG W, WANG Y,LU Z.Experimental study on seismic behavior of steel plate reinforced concrete composite shear wall[J].Engineering Structures, 2018, 160:281-292.
[3]REMENNIKOV A M, KONG S Y, UY B.The response of axially restrained non-composite steel-concrete-steel sandwich panels due to large impact loading[J].Engineering Structures, 2013, 49:806-818.
[4]SOHEL K M A, LIEW J Y R.Behavior of steel-concrete-steel sandwich slabs subject to impact load [J].Journal of Constructional Steel Research, 2014, 100:163-175.
[5]LIEW J Y R, SOHEL K M A, KOH C G.Impact tests on steel-concrete-steel sandwich beams with light weight concrete core[J].Engineerin Structures, 2009, 31(9):2045-2059.
[6]HASHIMOTO J,TAKIGUCHI K,NISHIMURA K,et al.Experimental study on behavior of RC panels covered with steel plates subjected to missile impact[J].Proceedings of the 18th International Conference on Structural Mechanics in Reactor Technology (SMiRT18).Beijing,China: Chinese Nuclear Society, 2005.
[7]朱秀云, 林皋, 潘蓉, 等.基于荷载时程分析法的钢板混凝土结构墙的抗冲击性能敏感性分析[J].爆炸与冲击, 2016, 36(5):670-679.
ZHU Xiuyun, LIN Gao, PAN Rong, et al.Sensitivity analysis of impact resistance of steel plate concrete structural wall based on load time history[J].Expldsion and Shock Waves, 2016, 36(5):670-679.
[8]朱秀云, 潘蓉, 林皋, 等.基于荷载时程分析法的钢筋混凝土与钢板混凝土墙冲击响应对比分析[J].振动与冲击, 2014, 33(22):172-177.
ZHU Xiuyun, PAN Rong, LIN Gao, et al.Comparative analysis of impact response of walls with reinforced concrete[J].Journal of Vibration and Shock, 2014, 33(22):172-177.
[9]ZHAO W,GUO Q.Experimental study on impact and post-impact behavior of steel-concrete composite panels[J].Thin-Walled Structures, 2018, 130:405-413.
[10]彭辉,裴晓阳,陈实,等.延性金属动态拉伸断裂的损伤演化研究[J].中国科学:物理学 力学 天文学,2017,47(7):8-18.
PENG Hui,PEI Xiaoyang, CHEN Shi, et al.Study on the damage evolution of ductile metal dynamic tensile fracture[J].Scientia Sinica(Physica,Mechanica & Astronomica),2017,47(7):8-18.
[11]COWPER G R, SYMONDS P S.Strain hardening and strain rate effect in the impact loading of cantilever beams[J].Small Business Economics, 1957, 31(3):235-263.
[12]GUO Z,WANG C.Investigation of strength and failure criterion of concrete under multi-axial stresses[J].China Civil Engineering Journal, 1991, 24(3):1-14.
[13]赵唯以, 郭全全.低速冲击下双钢板混凝土组合墙的力学性能研究[J].土木工程学报, 2018, 51(11):88-94.
ZHAO Weiyi, GUO Quanquan.Study on behavior of double-skin steel-concrete composite walls subjected to low-velocity impact[J].China Civil Engineering Journal, 2018, 51(11):88-94.
[14]FUJIKAKE K,SENGA T,UEDA N,et al. Study on impact response of reactive powder concrete beam and its analytical model[J].Journal of Advanced Concrete Technology, 2006, 4(1):99-108.
[15]KISHI N,MIKAMI H.Empirical formulas for designing reinforced concrete beams under impact loading[J].ACI Structural Journal, 2012, 109(4):509-518.
[16]KISHI N,IKEDA K,MIKAMI H,et al.Dynamic behavior of RC beams under steel weight impact loading-effects of nose-shape of steel weight [C]// Proceedings of the 3rd International Conference on Concrete under Severe Conditions.Vancouver,Canada, 2001.

PDF(3889 KB)

Accesses

Citation

Detail

段落导航
相关文章

/