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Closed-form solution to thin-walled box girders considering effects of shear deformation and shear lag 被引量:18
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作者 周旺保 蒋丽忠 +1 位作者 刘志杰 刘小洁 《Journal of Central South University》 SCIE EI CAS 2012年第9期2650-2655,共6页
Considering three longitudinal displacement functions and uniform axial displacement functions for shear lag effect and uniform axial deformation of thin-walled box girder with varying depths,a simple and efficient me... Considering three longitudinal displacement functions and uniform axial displacement functions for shear lag effect and uniform axial deformation of thin-walled box girder with varying depths,a simple and efficient method with high precision to analyze the shear lag effect of thin-walled box girders was proposed.The governing differential equations and boundary conditions of the box girder under lateral loading were derived based on the energy-variational method,and closed-form solutions to stress and deflection corresponding to lateral loading were obtained.Analysis and calculations were carried out with respect to a trapezoidal box girder under concentrated loading or uniform loading and a rectangular box girder under concentrated loading.The analytical results were compared with numerical solutions derived according to the high order finite strip element method and the experimental results.The investigation shows that the closed-form solution is in good agreement with the numerical solutions derived according to the high order finite strip method and the experimental results,and has good stability.Because of the shear lag effect,the stress in cross-section centroid is no longer zero,thus it is not reasonable enough to assume that the strain in cross-section centroid is zero without considering uniform axial deformation. 展开更多
关键词 shear lag effect thin-walled box girder energy-variational method shear deformation closed-form solution
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Bearing characteristics of anchor box beam support system in deep thick roof coal roadway and its application
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作者 WANG Qi WANG Ming-zi +1 位作者 JIANG Bei XU Chuan-jie 《Journal of Central South University》 2025年第5期1887-1902,共16页
Considering the characteristics of deep thick top coal roadway,in which the high ground stress,coal seam with low strength,and a large range of surrounding rock fragmentation,the pressure relief anchor box beam suppor... Considering the characteristics of deep thick top coal roadway,in which the high ground stress,coal seam with low strength,and a large range of surrounding rock fragmentation,the pressure relief anchor box beam support system with high strength is developed.The high-strength bearing characteristics and coupling yielding support mechanism of this support system are studied by the mechanical tests of composite members and the combined support system.The test results show that under the coupling effect of support members,the peak stress of the box-shaped support beam in the anchor box beam is reduced by 21.9%,and the average deformation is increased by 135.0%.The ultimate bending bearing capacity of the box-shaped support beam is 3.5 times that of traditional channel beam.The effective compressive stress zone applied by the high prestressed cable is expanded by 26.4%.On this basis,the field support comparison test by the anchor channel beam,the anchor I-shaped beam and the anchor box beam are carried out.Compared with those of the previous two,the surrounding rock convergence of the latter is decreased by 41.2%and 22.2%,respectively.The field test verifies the effectiveness of the anchor box beam support system. 展开更多
关键词 thick roof coal roadway anchor box beam bearing characteristics combined support field application
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Closed-form solution for shear lag effects of steel-concrete composite box beams considering shear deformation and slip 被引量:10
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作者 周旺保 蒋丽忠 +1 位作者 刘志杰 刘小洁 《Journal of Central South University》 SCIE EI CAS 2012年第10期2976-2982,共7页
Based on the consideration of longitudinal warp caused by shear lag effects on concrete slabs and bottom plates of steel beams,shear deformation of steel beams and interface slip between steel beams and concrete slabs... Based on the consideration of longitudinal warp caused by shear lag effects on concrete slabs and bottom plates of steel beams,shear deformation of steel beams and interface slip between steel beams and concrete slabs,the governing differential equations and boundary conditions of the steel-concrete composite box beams under lateral loading were derived using energy-variational method.The closed-form solutions for stress,deflection and slip of box beams under lateral loading were obtained,and the comparison of the analytical results and the experimental results for steel-concrete composite box beams under concentrated loading or uniform loading verifies the closed-form solution.The investigation of the parameters of load effects on composite box beams shows that:1) Slip stiffness has considerable impact on mid-span deflection and end slip when it is comparatively small;the mid-span deflection and end slip decrease significantly with the increase of slip stiffness,but when the slip stiffness reaches a certain value,its impact on mid-span deflection and end slip decreases to be negligible.2) The shear deformation has certain influence on mid-span deflection,and the larger the load is,the greater the influence is.3) The impact of shear deformation on end slip can be neglected.4) The strain of bottom plate of steel beam decreases with the increase of slip stiffness,while the shear lag effect becomes more significant. 展开更多
关键词 steel-concrete composite box beam shear lag effect shear deformation SLIP closed-form solution
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Lateral-torsional buckling of box beam with corrugated steel webs 被引量:10
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作者 FENG Yu-lin JIANG Li-zhong +1 位作者 ZHOU Wang-bao HAN Jian-ping 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第7期1946-1957,共12页
Corrugated steel web is folded along the longitudinal direction and has the mechanical properties such as axial compression stiffness corrugation effect, shear modulus corrugation effect, similar to that of an accordi... Corrugated steel web is folded along the longitudinal direction and has the mechanical properties such as axial compression stiffness corrugation effect, shear modulus corrugation effect, similar to that of an accordion. In order to study the lateral-torsional buckling of box beams with corrugated steel webs (BBCSW) under the action of bending moment load, the neutral equilibrium equation of BBCSW under the action of bending moment load is derived through the stationary value theory of total potential energy and further, along with taking Kollbrunner-Hajdin correction method and the mechanical properties of the corrugated web into consideration. The analytical calculation formula of lateral-torsional buckling critical bending moment of BBCSW is then obtained. The lateral-torsional buckling critical bending moment of 96 BBCSW test specimens with different geometry dimensions are then calculated using both the analytical calculation method and ANSYS finite element method. The results show that the analytical calculation results agree well with the numerical calculation results using ANSYS, thus proving the accuracy of the analytical calculation method and model simplification hypothesis proposed in this paper. Also, compared with the box beams with flat steel webs (BBFSW) with the same geometry dimensions as BBCSW, within the common range of web space-depth ratio and web span-depth ratio, BBCSW’s lateral-torsional buckling critical bending moment is larger than that of BBFSW. Moreover, the advantages of BBCSW’s stability are even more significant with the increase of web space-depth ratio and web depth-thickness ratio. 展开更多
关键词 box beams with corrugated steel webs lateral-torsional buckling analytical solution accordion effect Kollbrunner-Hajdin method
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A new 3-D element formulation on displacement of steel-concrete composite box beam 被引量:2
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作者 周凌宇 余志武 贺桂超 《Journal of Central South University》 SCIE EI CAS 2013年第5期1354-1360,共7页
Slip of a composite box beam may reduce its stiffness, enlarge its deformation and affect its performance. In this work, the governing differential equations and boundary conditions of composite box beams were establi... Slip of a composite box beam may reduce its stiffness, enlarge its deformation and affect its performance. In this work, the governing differential equations and boundary conditions of composite box beams were established. Analytic solutions of combined differential equations were also established. Partial degree of freedom was adopted to establish a new FEA element of three-dimensional beam, taking into account the slip effect. Slip and its first-order derivative were introduced into the nodes of composite box beams as generalized degree of freedom. Stiffness matrix and load array of beam elements were established. A three-dimensional nonlinear calculation program was worked out. The results show that the element is reliable and easy to divide and is suitable for special nonlinear analysis of large-span composite box beams. 展开更多
关键词 steel-concrete composite box beam shear deformation slip effect variational method finite beam element method
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Distortional buckling analysis of steel-concrete composite box beams considering effect of stud rotational restraint under hogging moment
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作者 JIANG Li-zhong NIE Lei-xin +2 位作者 ZHOU Wang-bao WU Xia LIU Li-li 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第9期3158-3170,共13页
Restrained distortional buckling is an important buckling mode of steel-concrete composite box beams(SCCBB)under the hogging moment.Rotational and lateral deformation restraints of the bottom plate by the webs are ess... Restrained distortional buckling is an important buckling mode of steel-concrete composite box beams(SCCBB)under the hogging moment.Rotational and lateral deformation restraints of the bottom plate by the webs are essential factors affecting SCCBB distortional buckling.Based on the stationary potential energy principle,the analytical expressions for the rotational restraint stiffness(RRS)of the web upper edge as well as the RRS and the lateral restraint stiffness(LRS)of the bottom plate were derived.Also,the SCCBB critical moment formula under the hogging moment was derived.Using twenty specimens,the theoretical calculation method is compared with the finite-element method.Results indicate that the theoretical calculation method can effectively and accurately reflect the restraint effect of the studs,top steel flange,and other factors on the bottom plate.Both the RRS and the LRS have a nonlinear coupling relationship with the external loads and the RRS of the web’s upper edge.Under the hogging moment,the RRS of the web upper edge has a certain influence on the SCCBB distortional buckling critical moment.With increasing RRS of the web upper edge,the SCCBB critical moment increases at first and then tends to be stable. 展开更多
关键词 steel-concrete composite box beams distortional buckling elastic rotational restraint boundary lateral restraint stiffness buckling moment
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Finite difference modeling of sinking stage curved beam based on revised Vlasov equations 被引量:1
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作者 张磊 朱真才 +1 位作者 沈刚 曹国华 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第11期4219-4227,共9页
For the static analysis of the sinking stage curved beam, a finite difference model was presented based on the proposed revised Vlasov equations. First, revised Vlasov equations for thin-walled curved beams with close... For the static analysis of the sinking stage curved beam, a finite difference model was presented based on the proposed revised Vlasov equations. First, revised Vlasov equations for thin-walled curved beams with closed sections were deduced considering the shear strain on the mid-surface of the cross-section. Then, the finite difference formulation of revised Vlasov equations was implemented with the parabolic interpolation based on Taylor series. At last, the finite difference model was built by substituting geometry and boundary conditions of the sinking stage curved beam into the finite difference formulation. The validity of present work is confirmed by the published literature and ANSYS simulation results. It can be concluded that revised Vlasov equations are more accurate than the original one in the analysis of thin-walled beams with closed sections, and that present finite difference model is applicable in the evaluation of the sinking stage curved beam. 展开更多
关键词 thin-wallED curved beam CLOSED CROSS-SECTION sinki
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Feasibility of developing composite action between concrete and cold-formed steel beam
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作者 S.O.Bamaga M.Md.Tahir +6 位作者 T.C.Tan S.Mohammad N.Yahya A.L.Saleh M.Mustaffar M.H.Osman A.B.A.Rahman 《Journal of Central South University》 SCIE EI CAS 2013年第12期3689-3696,共8页
Cold-formed steel structures are steel structure products constructed from sheets or coils using cold rolling, press brake or bending brake method. These structures are extensively employed in building construction in... Cold-formed steel structures are steel structure products constructed from sheets or coils using cold rolling, press brake or bending brake method. These structures are extensively employed in building construction industry due to their light mass, ductility by economic cold forming operations, favorable strength-to-mass ratio and other factors. The utilization of cold formed steel sections with concrete as composite can hugely reduce the construction cost. However, the use of cold formed steel members in composite concrete beams has been very limited. A comprehensive review of developments in composite beam with cold formed steel sections was introduced. It was revealed that employing cold-formed steel channel section to replace reinforcement bars in conventional reinforced concrete beam results in a significant cost reduction without reducing strength capacity. The use of composite beam consisting of cold-formed steel open or close box and filled concrete could also reduce construction cost. Lighter composite girder for bridges with cold-formed steel of U section was introduced. Moreover, types of shear connectors to provide composite action between cold-formed steel beam and concrete slab were presented. However, further studies to investigate the effects of metal decking on the behavior of composite beam with cold-formed steel section and introduction of ductile shear connectors were recommended. 展开更多
关键词 cold formed steel beam composite shear connection thin-wall composite girder
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负弯矩作用下部分充填式窄幅钢箱-UHPC组合梁刚度分析 被引量:1
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作者 莫时旭 柴龙杰 +2 位作者 郑艳 黄意均 檀新宁 《河南理工大学学报(自然科学版)》 北大核心 2025年第2期164-175,共12页
目的为研究负弯矩作用下部分充填式窄幅钢箱-UHPC(ultra-high performance concrete,UHPC)组合梁的抗弯性能,采用反向集中力对9根不同参数的试验梁进行静载试验。方法研究部分充填式窄幅钢箱-UHPC组合梁在反向集中力作用下的受力过程、... 目的为研究负弯矩作用下部分充填式窄幅钢箱-UHPC(ultra-high performance concrete,UHPC)组合梁的抗弯性能,采用反向集中力对9根不同参数的试验梁进行静载试验。方法研究部分充填式窄幅钢箱-UHPC组合梁在反向集中力作用下的受力过程、应变行为、刚度和抗裂性,明确各参数在提升试验梁力学性能方面的贡献程度,并将考虑界面滑移和翼板开裂因素的理论挠度与试验结果进行比较和验证。结果部分充填式窄幅钢箱-UHPC组合梁处于整体弹性阶段时刚度最高,翼板开裂后刚度略有下降,钢箱下翼缘局部受压屈服时,跨中翼板上形成多条贯通裂缝,极限承载力阶段,承载力未明显下降。与部分充填式窄幅钢箱-NC(ordinary concrete,NC)组合梁和窄幅钢箱-UHPC组合梁相比,随着钢纤维掺量、配筋率和相对充填高度增加,部分充填式窄幅钢箱-UHPC组合梁的极限承载力、正常使用和承载能力极限状态的最大刚度分别提高57%,25%,21%,裂缝宽度为0.05,0.10,0.20 mm时,对应的最大荷载分别提高155%,266%,100%。结论部分充填式窄幅钢箱-UHPC组合梁刚度大,抗裂性能好,承载力高。现行规范计算负弯矩作用下组合梁挠度过于保守,考虑负弯矩作用下组合梁滑移影响的有效惯性矩法计算试验梁挠度较为准确。 展开更多
关键词 部分充填式窄幅钢箱-UHPC组合梁 超高性能混凝土 负弯矩 极限承载力 裂缝宽度
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海洋环境下大跨度连续钢箱梁桥施工关键技术 被引量:2
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作者 崔一兵 《世界桥梁》 北大核心 2025年第2期21-28,共8页
黄茅海跨海通道中引桥上部结构采用(6+5+5)×100 m分离式连续钢箱梁,下部结构采用群桩基础、深埋承台、整幅式TY型盖梁桥墩。海洋环境下台风多发,施工风险高。深埋承台最大设计水深约16.5 m,采用深水钢板桩围堰施工,围堰内支撑采用... 黄茅海跨海通道中引桥上部结构采用(6+5+5)×100 m分离式连续钢箱梁,下部结构采用群桩基础、深埋承台、整幅式TY型盖梁桥墩。海洋环境下台风多发,施工风险高。深埋承台最大设计水深约16.5 m,采用深水钢板桩围堰施工,围堰内支撑采用先支法施工,水下封底混凝土采用插管法施工。桥墩高53.143~61.828 m,墩身厚4 m,大截面墩身采用钢筋部品化施工,设计多吊点的通用型吊具吊装,钢筋部品间采用锥套锁紧接头连接。整幅式TY型盖梁单侧悬臂长14.6 m,采用高空式托架及对拉系统等施工,托架模块化设计、装配化安装和拆除,盖梁斜肢钢筋分块段部品化施工,且施工期进行裂纹控制。钢箱梁梁段最大重量约1400 t,设计柔性大吨位吊具吊装,钢箱梁分幅架设中采取盖梁底反拉压重措施控制整幅式TY型盖梁横向线形避免开裂,多跨整孔钢箱梁通过优化千斤顶布置、控制梁面荷载、多次调梁等进行线形控制,并基于BIM技术确定钢箱梁安装合理窗口期,采用智能监控系统实现智能化吊装。 展开更多
关键词 分离式钢箱梁 整幅式TY型盖梁 钢板桩围堰 钢筋部品 高空式托架 线形控制 智能化吊装 施工技术
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椭圆冲孔箱型卷边蜂窝梁抗弯性能有限元分析
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作者 许峰 苑哲 +2 位作者 沈锦超 魏宗敏 王春刚 《沈阳建筑大学学报(自然科学版)》 北大核心 2025年第4期513-522,共10页
提出一种双腹板椭圆冲孔箱型卷边蜂窝梁并对其抗弯性能进行探究,为工程应用提供参考。在验证有限元方法具有较高精确度的基础上,建立23个椭圆冲孔箱型卷边蜂窝梁,根据屈服位移、屈服荷载、极限位移、极限荷载分析椭圆孔型、卷边高度、... 提出一种双腹板椭圆冲孔箱型卷边蜂窝梁并对其抗弯性能进行探究,为工程应用提供参考。在验证有限元方法具有较高精确度的基础上,建立23个椭圆冲孔箱型卷边蜂窝梁,根据屈服位移、屈服荷载、极限位移、极限荷载分析椭圆孔型、卷边高度、腹板高厚比以及开孔率对蜂窝梁的抗弯性能的影响。椭圆孔型对于构件的应力集中现象影响较大;卷边高度较大时对构件的约束能力较强,卷边高度在5~20 mm时,构件的抗弯承载力上升趋势明显,当卷边高度大于20 mm后,构件的抗弯承载力上升趋势较缓;随着腹板高厚比的降低,抗弯性能有明显的提升;随着开孔率的增大,构件的抗弯承载力呈现减小的趋势。椭圆孔型对蜂窝梁的抗弯性能影响不大,长短轴之比在1.2~1.5较好;适当的增加卷边高度、降低腹板高厚比可以有效提升构件的抗弯性能,卷边高度在20 mm左右最佳,腹板高厚比在110左右最佳;开孔率若超过0.7时,构件易发生腹板的屈曲破坏。 展开更多
关键词 箱型卷边蜂窝梁 冲压成孔 抗弯性能 参数分析
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考虑自平衡条件新型组合箱梁力学性能研究
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作者 唐先习 张己存 +2 位作者 甘亚南 甘子玉 岑峰 《铁道工程学报》 北大核心 2025年第9期45-51,共7页
研究目的:波形腹板钢箱-组合梁是一种新型钢混结构,其力学性能研究有助于该类结构的优化设计。本文引入剪滞翘曲应力自平衡条件,且以能量变分法为基础建立该类结构的弹性控制微分方程,进而基于理论探索、有限元模拟和试验研究,实现波形... 研究目的:波形腹板钢箱-组合梁是一种新型钢混结构,其力学性能研究有助于该类结构的优化设计。本文引入剪滞翘曲应力自平衡条件,且以能量变分法为基础建立该类结构的弹性控制微分方程,进而基于理论探索、有限元模拟和试验研究,实现波形腹板钢箱-组合梁力学性能的精细化分析。研究结论:(1)波形腹板钢箱-组合梁的边界约束愈强烈,自平衡条件对其力学性能的影响愈显著,对于简支箱梁,本文自平衡条件影响率在3.5%~-3.5%之间,但是连续组合箱梁自平衡条件的影响大幅增加,集中荷载钢底板与腹板相交处影响率达-23.6%,而均布荷载为13.1%;(2)自平衡条件对连续组合箱梁剪滞效应影响较大,与传统剪滞理论相比较,均布荷载下自平衡条件增强了该类结构剪力滞效应;在钢底板与腹板相交处,传统理论剪滞系数为1.25,而本文理论为1.42,然而集中荷载与之相反,钢底板和腹板相交处,传统理论与本文理论剪滞系数分别为1.64和1.28;(3)本文方法计算精度明显提高,且波形腹板钢箱-组合梁钢底板正应力更为突出,其值约为RC顶板的20倍;(4)本文研究明确了自平衡条件对波形腹板钢箱-组合梁力学性能的影响规律,对完善该类结构设计理论具有促进作用。 展开更多
关键词 波形腹板钢箱-组合梁 褶皱效应 自平衡条件 力学性能 能量变分法
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变厚度翼缘板箱梁剪力滞分析的有限梁段法
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作者 周世军 周操 +3 位作者 李贤伟 陈晨 史雨安 汪刚 《铁道学报》 北大核心 2025年第3期142-153,共12页
为研究变厚度翼缘板薄壁箱梁的剪力滞效应,提出一种适应不同荷载形式及边界条件下剪力滞分析的有限梁段法。首先通过翼板剪切变形规律定义剪力滞翘曲位移函数,再应用最小势能原理建立剪力滞基本微分方程。在变分原理基础上,提出每节点... 为研究变厚度翼缘板薄壁箱梁的剪力滞效应,提出一种适应不同荷载形式及边界条件下剪力滞分析的有限梁段法。首先通过翼板剪切变形规律定义剪力滞翘曲位移函数,再应用最小势能原理建立剪力滞基本微分方程。在变分原理基础上,提出每节点包含两个剪力滞自由度的梁段单元并对其进行Hermite位移插值,导出考虑剪力滞与梁弯曲刚度耦合影响的单元刚度矩阵。结合具体算例分析箱梁的纵横向剪力滞效应,结果表明:有限梁段法解与实体有限元解和能量变分法解吻合良好且具有较高的精度,验证了方法的准确性和适用性;与通过面积相等将变厚度翼缘板简化成等厚度翼缘板的方法相比,考虑翼缘板厚度变化的方法能够提高计算精度,最大可提高19.3%(悬臂板根部位置)。最后应用有限梁段法对某大跨连续刚构箱梁桥在选定荷载工况下的剪力滞效应进行分析,为复杂桥梁结构中变厚度翼缘板箱梁剪力滞的研究提供了理论基础与经验借鉴。 展开更多
关键词 箱梁 剪力滞效应 变厚度翼缘板 能量变分法 有限梁段法
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铁路箱式路基结构静力解析方法研究 被引量:1
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作者 陈文东 肖世国 +1 位作者 王祥 余雷 《铁道标准设计》 北大核心 2025年第9期39-47,共9页
铁路箱式路基结构是由顶板、底板与两腹板构成的内部中空的箱形钢筋混凝土结构,特别适用于高填方且放坡受限地段。为分析铁路荷载作用下该结构的静力学行为,将箱式路基结构分解为由顶板与腹板组成的上部结构和以底板呈现的下部结构,前... 铁路箱式路基结构是由顶板、底板与两腹板构成的内部中空的箱形钢筋混凝土结构,特别适用于高填方且放坡受限地段。为分析铁路荷载作用下该结构的静力学行为,将箱式路基结构分解为由顶板与腹板组成的上部结构和以底板呈现的下部结构,前者可简化为三次超静定的平面刚架模型,采用结构力学位移法转角位移方程求解,后者可视为有限长Winkler弹性地基梁模型。该方法可考虑上部结构腹板与底板连接结点处的位移连续性,以及分析地基差异沉降对上部结构产生的影响,并且考虑了单线铁路与双线铁路荷载的作用。依托新建衢州至丽水铁路箱式路基实例分析表明,提出的理论算法与数值模拟的箱体内力及变形基本一致,结构内力的理论值比FLAC3D模拟值高出约10%;10 mm的地基差异沉降可使上部结构产生的附加弯矩和剪力分别为无沉降差时的0.71、0.19倍;单、双线铁路荷载作用下结构的弯矩极大值均位于腹板底端的底板处或底板跨中,剪力极大值均位于腹板底端的底板处;兼顾受力有利与经济节约以优化结构,顶板厚度、腹板厚度、底板外伸比分别宜取为0.6 m、0.55m、40%。 展开更多
关键词 铁路路基 箱式路基 结构内力 平面刚架 位移法 弹性地基梁 结构优化
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带悬臂板单箱双室薄壁箱梁畸变效应分析
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作者 魏彦红 张元海 +1 位作者 周福成 刘泽翔 《湖南大学学报(自然科学版)》 北大核心 2025年第1期61-68,共8页
为研究带悬臂板单箱双室薄壁箱梁的畸变效应,基于板梁框架法建立了畸变控制微分方程,给出竖向偏心集中荷载作用下该方程的初参数解,同时还导出了带悬臂板单箱双室截面箱梁畸变框架惯性矩的具体解析式.利用解析理论对悬臂梁和简支梁算例... 为研究带悬臂板单箱双室薄壁箱梁的畸变效应,基于板梁框架法建立了畸变控制微分方程,给出竖向偏心集中荷载作用下该方程的初参数解,同时还导出了带悬臂板单箱双室截面箱梁畸变框架惯性矩的具体解析式.利用解析理论对悬臂梁和简支梁算例进行分析,研究结果表明:解析解与已有文献和有限元计算结果均吻合良好,验证了解析理论的正确性;通过参数分析可知,中腹板厚度越大,双室箱梁的抗畸变变形能力越强,中腹板厚度的变化对边腹板横向弯矩的影响很小,但中腹板的横向弯矩随其板厚的增大而增大,当中腹板厚度与边腹板厚度相等时,中腹板的横向弯矩可近似等于边腹板横向弯矩的2倍. 展开更多
关键词 单箱双室薄壁箱梁 畸变效应 板梁框架法 畸变框架惯性矩 初参数法
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车道荷载作用下薄壁箱梁畸变效应的梁段有限元法分析
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作者 胡锦坤 张元海 《科学技术与工程》 北大核心 2025年第13期5626-5633,共8页
为分析车道荷载作用下薄壁箱梁的畸变效应,研究应力放大系数在薄壁箱梁中的分布规律,以畸变角和畸变广义翘曲位移作为节点位移,基于畸变控制微分方程的齐次方程的初参数解,将薄壁箱梁划分为梁段单元,推导其单元刚度矩阵和等效节点荷载... 为分析车道荷载作用下薄壁箱梁的畸变效应,研究应力放大系数在薄壁箱梁中的分布规律,以畸变角和畸变广义翘曲位移作为节点位移,基于畸变控制微分方程的齐次方程的初参数解,将薄壁箱梁划分为梁段单元,推导其单元刚度矩阵和等效节点荷载列阵。使用Fortran语言并参考平面杆系结构计算程序FRAME2编写,得到可用来分析薄壁箱梁畸变效应的梁段有限元程序,用程序分析箱梁在车道荷载作用下的畸变内力和应力放大系数的变化规律。结果表明:车道荷载作用下变截面三跨连续箱梁桥的畸变翘曲应力在集中荷载作用处产生突变,此处取得最大和最小值,应力放大系数沿纵向分布规律与畸变翘曲正应力沿纵向分布相似,均沿跨径对称分布;应力放大系数的最大值出现在集中荷载作用处,该截面顶板处的正应力放大系数为1.080,底板处的正应力放大系数为1.180,考虑应力放大系数的取值时不应考虑弯曲应力值较小的点。 展开更多
关键词 薄壁箱梁 畸变效应 单元刚度矩阵 梁段有限元 应力放大系数
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UHPC-NC充填式窄幅钢箱连续组合梁桥设计与数值分析
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作者 檀新宁 郑艳 +1 位作者 祝俊祥 莫时旭 《广西大学学报(自然科学版)》 北大核心 2025年第3期489-503,共15页
为了探究UHPC-NC-充填式窄幅钢箱组合结构用于连续梁负弯矩区的实际效果,对某城市(45+60+45)m连续组合梁高架桥进行整体设计。采用生死单元法模拟施工阶段,对一根边梁的负弯矩区30 m节段进行ABAQUS精细化局部建模,分析结构全过程受力特... 为了探究UHPC-NC-充填式窄幅钢箱组合结构用于连续梁负弯矩区的实际效果,对某城市(45+60+45)m连续组合梁高架桥进行整体设计。采用生死单元法模拟施工阶段,对一根边梁的负弯矩区30 m节段进行ABAQUS精细化局部建模,分析结构全过程受力特点及破坏机制。结果表明:UHPC层高度、配筋率与组合梁抗裂性能、极限承载能力基本呈线性正相关,UHPC-NC翼板组合梁开裂弯矩比NC翼板组合梁增加了40.85%,极限荷载提升了19.08%。充填混凝土使组合梁在腹板局部屈曲后仍不丧失承载能力,表现出延性良好的弯曲破坏,但过大的充填量会降低截面弹性中和轴高度,不利于翼板受力进而影响组合梁承载能力,综合考虑充填高度以腹板高度的20%~30%为宜。 展开更多
关键词 窄幅钢箱组合梁 组合梁设计 数值分析 超高性能混凝土(UHPC) 充填混凝土
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充填率对新型窄幅钢箱-UHPC组合梁抗弯强度影响
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作者 郑艳 刘振华 +1 位作者 莫时旭 羊海林 《混凝土》 北大核心 2025年第2期32-38,共7页
为研究充填率对窄幅钢箱-UHPC组合梁负弯矩下抗弯承载力的影响,设计3根UHPC-NC翼板窄幅钢箱组合梁进行静力加载试验。试验结果表明:钢箱内UHPC充填率对组合梁的开裂弯矩影响不大,钢箱内充填UHPC可以显著提高组合梁的屈服弯矩与极限抗弯... 为研究充填率对窄幅钢箱-UHPC组合梁负弯矩下抗弯承载力的影响,设计3根UHPC-NC翼板窄幅钢箱组合梁进行静力加载试验。试验结果表明:钢箱内UHPC充填率对组合梁的开裂弯矩影响不大,钢箱内充填UHPC可以显著提高组合梁的屈服弯矩与极限抗弯承载力,与空钢箱组合梁相比,半充填和全充填UHPC组合梁其极限荷载分别提高了38%和56%。充填UHPC通过与钢箱共同受压以提高钢箱受压区局部稳定性,从而影响组合梁的抗弯承载力。基于截面应力法提出了UHPC-NC翼板窄幅钢箱组合梁开裂弯矩计算方法,并基于简化塑性理论提出了UHPC-NC翼板窄幅钢箱组合梁极限抗弯承载力的计算方法,试验值与计算值吻合良好。以充填率为参数,分析其对抗弯强度的影响,结果表明充填率为0.3~0.5时对UHPC-NC翼板窄幅钢箱组合梁较为合适。 展开更多
关键词 组合梁 UHPC-NC翼板 窄幅钢箱 充填率 抗弯承载力
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考虑Timoshenko剪切变形时薄壁箱梁畸变效应的板梁框架法分析
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作者 王瑞正 张元海 +1 位作者 魏彦红 黄洪猛 《铁道学报》 北大核心 2025年第11期213-221,共9页
采用板梁纵向畸变翘曲、横向畸变挠曲及板梁沿自身平面挠曲时Timoshenko剪切变形间的力系关系,建立一种考虑Timoshenko剪切变形影响时箱形梁畸变效应计算的板梁框架法。通过与按广义坐标法求解结果的对比,验证了该解析解的正确性,结合... 采用板梁纵向畸变翘曲、横向畸变挠曲及板梁沿自身平面挠曲时Timoshenko剪切变形间的力系关系,建立一种考虑Timoshenko剪切变形影响时箱形梁畸变效应计算的板梁框架法。通过与按广义坐标法求解结果的对比,验证了该解析解的正确性,结合简支箱梁算例,研究剪切变形对畸变效应的影响。研究结果表明:按解析理论求解的畸变翘曲正应力、畸变角与按广义坐标法求解结果最大偏差未超过1%,以该解析理论求解的畸变内力和畸变矩荷载约为按广义坐标法求解结果的一半;与忽视剪切变形影响的结果相比,考虑剪切变形时的畸变角、横向弯矩、畸变矩最大偏差未超过2%,但畸变双力矩的偏差可达11%;剪切变形对中、短悬臂箱梁畸变效应影响显著。 展开更多
关键词 箱形梁 畸变 剪切变形 板梁分析法 荷载分解
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曲线槽箱组合连续梁U-箱过渡段传力性能试验研究
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作者 薛达 杨喆 +4 位作者 周斌鸿 杨忠良 欧阳泽亮 冯治皓 叶华文 《铁道科学与工程学报》 北大核心 2025年第9期4041-4051,共11页
曲线槽箱组合连续梁适用于建筑高度受限的大跨度小半径曲线的桥位,U-箱过渡段是这种新型结构的关键部位,曲率引起的弯扭耦合作用易导致该处开裂。为研究U-箱过渡段应力分布及传力机制,以在建的揭惠单线铁路两等跨连续梁为原型,基于应力... 曲线槽箱组合连续梁适用于建筑高度受限的大跨度小半径曲线的桥位,U-箱过渡段是这种新型结构的关键部位,曲率引起的弯扭耦合作用易导致该处开裂。为研究U-箱过渡段应力分布及传力机制,以在建的揭惠单线铁路两等跨连续梁为原型,基于应力等效原则设计和制作了曲线半径800 m,布置为(9+9)m的铁路曲线槽箱组合连续梁缩尺模型,针对预应力施工和运营阶段进行静载试验,采用数字图像相关(digital image correlation,DIC)技术实测了U-箱过渡段的变形和应力,并基于大型软件ANSYS建立试验模型的实体空间有限元模型进行传力机理和曲率效应的参数分析。研究结果表明:由于U-箱过渡段顶、底板存在显著的剪力滞效应,但其影响随曲率半径变化,DIC实测表明腹板变形基本满足平截面假定;虽因截面变化产生一定应力集中效应,但应力满足规范限值要求,刚度过渡平顺,结构传力性能良好。针对100~800 m范围曲线半径的参数分析表明:曲率半径减小会显著增大U-箱过渡段的剪力滞和应力水平,影响结构耐久性,设计时应充分考虑不同曲率半径的不利影响。 展开更多
关键词 铁路桥梁 曲线槽箱组合连续梁 U-箱过渡段 缩尺模型试验 传力机制
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