| [1] |
陈宝春,黄卿维. 波形钢腹板PC箱梁桥应用综述[J]. 公路,2005(7):45-53.
|
| [2] |
曾强,彭更生,杜亚江. 悬臂施工波形钢腹板组合梁桥施工工艺[J]. 中国工程科学,2013,15(8):104-107.
|
| [3] |
贺国京,刘敬坤,易锦. 大跨径波纹钢腹板连续梁桥地震响应分析[J]. 中外公路,2014,34(3):80-83.
|
| [4] |
徐栋,尼颖升,赵瑜. 波形钢腹板梁桥空间网格分析方法[J]. 土木工程学报,2015,48(3):61-70.
|
| [5] |
ROSIGNOLI M. Prestressed concrete box girder bridges with folded steel plate webs[J]. Proceedings of the Institution of Civil Engineers-Structures and Buildings,1999,134:77-85.
|
| [6] |
马磊. 单箱多室波形钢腹板组合箱梁桥弯曲扭转性能研究[D]:南京:东南大学; 2014.
|
| [7] |
李宏江,叶见曙,万水,等. 波形腹板箱梁的扭转与畸变分析及试验研究[J]. 桥梁建设,2003(6):1-4.
|
| [8] |
王文. 波形钢腹板箱梁扭转效应和畸变效应的分析与模型试验研究[D]. 长沙:湖南大学,2008.
|
| [9] |
杨丙文,黎雅乐,万水,等. 波形钢腹板箱梁的扭转应力分析[J]. 华南理工大学学报(自然科学版),2012,40(2):19-22.
|
| [10] |
张德. 波形钢腹板PC组合箱梁扭转力学性能分析[D]. 兰州:兰州交通大学,2014.
|
| [11] |
张生虎. 波形钢腹板组合箱梁的扭转和畸变效应分析[D]. 兰州:兰州交通大学,2017.
|
| [12] |
岳阳,武志奎,李峰,等. 波形钢腹板-混凝土组合箱梁扭转效应分析[J]. 交通科技,2021(2):1-5.
|
| [13] |
马磊,万水,蒋正文. 单箱双室波形钢腹板箱梁扭转与畸变性能研究[J]. 中国公路学报,2016,29(10):77-85.
|
| [14] |
邓文琴,毛泽亮,刘朵,等. 单箱三室波形钢腹板悬臂梁扭转与畸变分析及试验研究[J]. 建筑结构学报,2020,41(2):173-181.
|
| [15] |
QIN A A,LIU S Z,GONG B J,et al. Torsional stress analysis of Improved composite box girder with corrugated steel webs[J]. Applied Sciences-Basel,2022,12(22),11571.
|
| [16] |
姚森. 变截面波形钢腹板PC组合箱梁扭转与畸变分析[D]. 南京:东南大学,2010.
|
| [17] |
刘保东,任红伟,李鹏飞,等. 波纹钢腹板组合箱梁偏心增大系数计算方法[J]. 公路交通科技. 2012,29(3):80-85.
|
| [18] |
贾慧娟. 变截面波形钢腹板PC组合箱梁桥结构性能研究[D] 南京:东南大学,2015.
|
| [19] |
DENG W Q,LIU D,PENG Z Q,et al. Behavior of cantilever composite girder bridges with CSWs under eccentric loading[J]. KSCE Journal of Civil Engineering,2021,25:3925-3939.
|
| [20] |
聂建国,唐亮. 基于固定角软化桁架模型的钢筋混凝土纯扭构件非线性分析[J]. 计算力学学报,2007,24(5):545-549.
|
| [21] |
项贻强,程坤. 基于转动角软化桁架模型的锈蚀钢筋混凝土纯扭构件非线性分析[J]. 建筑结构学报,2013,34(5):139-144.
|
| [22] |
HSU T T C,MO Y L. Softening of concrete in torsional members-theory and tests[J]. ACI Structural Journal,1985,82:290-303.
|
| [23] |
HSU T T C,MO Y L. Softening of Concrete in Torsional Members-Prestressed Concrete[J]. ACI Structural Journal,1985,82:603-615.
|
| [24] |
MO Y L,JENG C H,CHANG Y S. Torsional behavior of prestressed concrete box-girder bridges with corrugated steel webs[J]. ACI Structural Journal,2000,97:849-859.
|
| [25] |
聂建国,唐亮. 波形钢腹板PC组合箱梁纯扭性能的非线性分析[J]. 中国公路学报,2007(5):71-77.
|
| [26] |
KO H J,MOON J,SHIN Y W,et al. Non-linear analyses model for composite box-girders with corrugated steel webs under torsion[J]. Steel and Composite Structures. 2013,14:409-429.
|
| [27] |
沈孔健,万水,蒋正文,等. 波形钢腹板混凝土组合箱梁纯扭性能全过程分析[J]. 东南大学学报(自然科学版),2017,47(1):112-117.
|
| [28] |
SHEN K J,WAN S,MO Y L,et al. Behavior of single-box multi-cell box-girders with corrugated steel webs under pure torsion. Part Ⅱ:Theoretical model and analysis[J]. Thin-Walled Structures,2018,129:558-572.
|
| [29] |
ZHU Y B,WAN S,SHEN K J,et al. Theoretical study on the nonlinear performance of single-box multi-cell composite box-girder with corrugated steel webs under pure torsion[J]. Journal of Constructional Steel Research,2021,178(3),106487.
|
| [30] |
HSU T T C,ZHANG L X. Nonlinear analysis of membrane elements by fixed-angle softened-truss model[J]. ACI Structural Journal,1997,94:483-492.
|
| [31] |
PANG X B D,HSU T T C. Fixed angle softened truss model for reinforced concrete[J]. ACI Structural Journal,1996,93:197-207.
|
| [32] |
JIANG K B,DING Y,LIU Y W,et al. Calculation for torsion strength of prestressed concrete beams based on fixed-angle softened truss model[J]. Advances in Mechanical Engineering,2011,52-54:1032-1038.
|
| [33] |
丁勇,江克斌,周寅智,等. 波形钢腹板PC组合箱梁纯扭作用下抗扭承载力计算模型[J]. 计算力学学报,2013,30(1):137-142.
|
| [34] |
HSU T T C,ZHU R R H. Softened membrane model for reinforced concrete elements in shear[J]. ACI Structural Journal,2002,99(4):460-469.
|
| [35] |
ZHU R R H,HSU T T C. Poisson effect in reinforced concrete membrane elements[J]. ACI Structural Journal,2000,99:631-640.
|
| [36] |
MANSOUR M,HSU T T C. Behavior of reinforced concrete elements under cyclic shear I:experiments[J]. Journal of Structural Engineering,2005,131:44-53.
|
| [37] |
MANSOUR M,HSU T T C. Behavior of reinforced concrete elements under cyclic shear Ⅱ:theoretical model[J]. Journal of Structural Engineering,2005,131:54-65.
|
| [38] |
JENG C H,HSU T T C. A softened membrane model for torsion in reinforced concrete members[J]. Engineering Structures,2009,31:1944-1954.
|
| [39] |
SHEN K J,WAN S,MO Y L,et al. A softened membrane model for composite box-girders with corrugated steel webs under pure torsion[J]. Engineering Structures,2018,173:357-371.
|
| [40] |
周聪,李立峰,王连华,等. 基于软化薄膜元理论的波形钢腹板PC组合箱梁纯扭全过程分析[J]. 土木工程学报,2018,51(10):97-106.
|
| [41] |
周聪,李立峰. 波形钢腹板PC组合箱梁纯扭全过程分析模型[J]. 西南交通大学学报,2022,57(4):865-875.
|
| [42] |
SHEN K,WAN S,ZHU Y,et al. A softened membrane model for single-box multi-cell composite box-girders with corrugated steel webs under pure torsion[J]. Advances in Bridge Engineering. 2022,3:1-24.
|
| [43] |
MONDAL T G,PRAKASH S S. Effect of tension stiffening on the behaviour of square RC column under torsion[J]. Structural Engineering and Mechanics,2015,54:501-520.
|
| [44] |
周聪. 波形钢腹板组合箱梁扭转性能研究[D]. 长沙:湖南大学; 2019.
|
| [45] |
李宏江,叶见曙,万水,等. 波形钢腹板箱梁横隔板间距的研究[J]. 公路交通科技,2004,21(10):51-54.
|
| [46] |
SAYED-AHMED E Y. Plate girders with corrugated steel webs[J]. Engineering Journal,2005,42:1-13.
|
| [47] |
魏志新,梁艳梅. 横隔板间距对波形钢腹板桥抗扭性能的动静力影响分析[J]. 华北水利水电学院学报,2015,36(2):25-29.
|
| [48] |
任大龙,李文虎,万水. 横隔梁对波形钢腹板PC连续梁桥纵向正应力的影响研究[J]. 世界桥梁,2015,43(1):65-69.
|
| [49] |
NAKAMURA S,NARITA N. Bending and shear strengths of partially encased composite I-girders[J]. Journal of Constructional Steel Research,2003,59:1435-1453.
|
| [50] |
HE J,LIU Y Q,LIN Z F,et al. Shear behavior of partially encased composite I-girder with corrugated steel web:numerical study[J]. Journal of Constructional Steel Research,2012,79:166-182.
|
| [51] |
刘保东,胥睿,李祖硕,等. 内衬混凝土对波形钢腹板刚构桥扭转和畸变性能的影响[J]. 中国铁道科学. 2017,38(3):31-39.
|
| [52] |
DENG W Q,ZHANG J D,ZHOU M,et al. Experimental study of shear behaviour of concrete-encased non-prismatic girder with CSWs[J]. Magazine of Concrete Research,2019,71:989-1005.
|
| [53] |
胡旭辉. 波形钢腹板箱梁桥受力性能研究和设计计算[D]. 重庆:重庆交通大学,2006.
|
| [54] |
谭中法. 波形钢腹板箱梁桥的荷载横向分布系数研究[D]. 成都:西南交通大学,2015.
|
| [55] |
白博. 波形钢腹板-钢管混凝土组合结构箱梁桥的扭转和畸变研究[D]. 西安:西安建筑科技大学,2017.
|
| [56] |
张亚辉. 变截面宽箱双室波形钢腹板组合箱梁桥力学性能和参数分析[D]. 郑州:郑州大学,2020.
|
| [57] |
李宏江,叶见曙,万水,等. 波形钢腹板预应力混凝土箱梁的试验研究[J]. 中国公路学报,2004,17(4):31-36.
|
| [58] |
MASHAHIRO K,KOICHI W. Lateral-torstional buckling capacity of steel girders with corrugated web plates[J]. Doboku Gakkai Ronbunshuu A,2007,63:179-193.
|
| [59] |
王圣保. 波形钢腹板PC组合箱梁抗扭性能试验[J]. 建筑结构,2012,42(9):121-125.
|
| [60] |
江克斌,丁勇,杨建奎,等. 波形钢腹板PC组合箱梁纯扭作用下抗扭承载力试验研究[J]. 工程力学,2013,30(6):175-182.
|
| [61] |
李姣. 波纹腹板钢箱组合梁抗扭性能研究[D]. 郑州:郑州大学,2018.
|
| [62] |
张长青,安永日,安里鹏. 组合结构箱梁扭转极限承载力计算方法研究[J]. 重庆交通大学学报(自然科学版),2011,30(3):369-371.
|
| [63] |
陈汝扬,丁勇,陈立. 波形钢腹板PC组合箱梁的抗纯扭承载力计算方法研究[J]. 科技创新导报,2015,12(27):167-169.
|
| [64] |
董桔灿,吴庆雄,陈康明,等. 波形钢腹板(钢腹杆)-混凝土组合箱抗扭承载力试验与计算[J]. 工程力学,2016 33(11):220-230.
|
| [65] |
沈孔健. 单箱多室波形钢腹板组合箱梁扭转性能研究[D]. 南京:东南大学,2018.
|
| [66] |
American Concrete Institute. Building code requirements for structural concrete(ACI 318-14)and commentary:ACI 318R-14[S]. State of Michigan:American Concrete Institute,2018.
|
| [67] |
中华人民共和国住房和城乡建设部. 混凝土结构设计标准:GB/T 50010—2010[S]. 北京:中国建筑工业出版社,2024.
|