[1] ROMERO M L,ESPINOS A,PORTOLES J M,et al.Slender double-tube ultra-high strength concrete-filled tubular columns under ambient temperature and fire[J].Engineering Structures,2015,99:536-545.
[2]WAN C Y,ZHA X X,DASSEKPO J B M.Analysis of axially loaded concrete filled circular hollow double steel tubular columns exposed to fire[J].Fire Safety Journal,2017,88:1-12.
[3]CAMARGO A L,RODRIGUES J P C,FAKURY R H,et al.Fire resistance of axially and rotationally restrained concrete-filled double-skin and double-tube hollow steel columns[J].Journal of Structural Engineering,2019,145(11):04019128.
[4]XIONG M X,XIONG D X,RICHARD LIEW J Y.Behaviour of steel tubular members infilled with ultra high strength concrete[J].Journal of Constructional Steel Research,2017,138:168-183.
[5]EKMEKYAPAR T,AL-ELIWI B J M.Concrete filled double circular steel tube(CFDCST)stub columns[J].Engineering Structures,2017,135:68-80.
[6]钱稼茹,张 扬,纪晓东,等.复合钢管高强混凝土短柱轴心受压性能试验与分析[J].建筑结构学报,2011,32(12):162-169.
QIAN Jiaru,ZHANG Yang,JI Xiaodong,et al.Test and analysis of axial compressive behavior of short composite-sectioned high strength concrete filled steel tubular columns[J].Journal of Building Structures,2011,32(12):162-169.
[7]XIONG M X,XIONG D X,RICHARD LIEW J Y.Axial performance of short concrete filled steel tubes with high-and ultra-high-strength materials[J].Engineering Structures,2017,136:494-510.
[8]RICHARD LIEW J Y,XIONG D X.Ultra-high strength concrete filled composite columns for multi-storey building construction[J].Advances in Structural Engineering,2012,15(9):1487-1503.
[9]AHMED M,LIANG Q Q,PATEL V I,et al.Numerical analysis of axially loaded circular high strength concrete-filled double steel tubular short columns[J].Thin-walled Structures,2019,138:105-116.
[10]AHMED M,LIANG Q,PATEL V,et al.Behavior of eccentrically loaded double circular steel tubular short columns filled with concrete[J].Engineering Structures,2019,201:109790.
[11]CI J C,JIA H,CHEN S C,et al.Performance analysis and bearing capacity calculation on circular concrete-filled double steel tubular stub columns under axial compression[J].Structures,2020,25:554-565.
[12]ESPINOS A,ROMERO M L,LAM D.Fire performance of innovative steel-concrete composite columns using high strength steels[J].Thin-walled Structures,2016,106:113-128.
[13]LU H,ZHAO X L,HAN L H.FE modelling and fire resistance design of concrete filled double skin tubular columns[J].Journal of Constructional Steel Research,2011,67(11):1733-1748.
[14]韩林海.钢管混凝土结构:理论与实践[M].3版.北京:科学出版社,2016.
HAN Linhai.Concrete filled steel tubular structures:theory and practice[M].3rd ed.Beijing:Science Press,2016.
[15]LU H,ZHAO X L,HAN L H.Testing of self-consolidating concrete-filled double skin tubular stub columns exposed to fire[J].Journal of Constructional Steel Research,2010,66(8/9):1069-1080.
[16]CI J C,CHEN S C,JIA H,et al.Axial compression performance analysis and bearing capacity calculation on square concrete-filled double-tube short columns[J].Marine Structures,2020,72:102775.
[17]CI J C,JIA H,AHMED M,et al.Experimental and numerical analysis of circular concrete-filled double steel tubular stub columns with inner square hollow section[J].Engineering Structures,2021,227:111400.
[18]周绪红,张瑞芝,王卫永,等.火作用下钢管约束钢筋混凝土柱温度场分析[J].钢结构,2017,32(1):105-110,116.
ZHOU Xuhong,ZHANG Ruizhi,WANG Weiyong,et al.Temperature distribution analysis of steel tube confined RC columns in fire[J].Steel Construction,2017,32(1):105-110,116.