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Method of reverberation ray matrix for static analysis of planar framed structures composed of anisotropic Timoshenko beam members 被引量:2
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作者 Jiao ZHANG Guohua NIE 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2015年第2期233-242,共10页
Based on the method of reverberation ray matrix(MRRM), a reverberation matrix for planar framed structures composed of anisotropic Timoshenko(T) beam members containing completely hinged joints is developed for st... Based on the method of reverberation ray matrix(MRRM), a reverberation matrix for planar framed structures composed of anisotropic Timoshenko(T) beam members containing completely hinged joints is developed for static analysis of such structures.In the MRRM for dynamic analysis, amplitudes of arriving and departing waves for joints are chosen as unknown quantities. However, for the present case of static analysis, displacements and rotational angles at the ends of each beam member are directly considered as unknown quantities. The expressions for stiffness matrices for anisotropic beam members are developed. A corresponding reverberation matrix is derived analytically for exact and unified determination on the displacements and internal forces at both ends of each member and arbitrary cross sectional locations in the structure. Numerical examples are given and compared with the finite element method(FEM) results to validate the present model. The characteristic parameter analysis is performed to demonstrate accuracy of the present model with the T beam theory in contrast with errors in the usual model based on the Euler-Bernoulli(EB) beam theory. The resulting reverberation matrix can be used for exact calculation of anisotropic framed structures as well as for parameter analysis of geometrical and material properties of the framed structures. 展开更多
关键词 planar framed structure ANISOTROPIC Timenshenko(T) beam stiffness matrix method of reverberation ray matrix(MRRM) static analysis
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New Factor to Characterize Mechanism of “Strong Column-Weak Beam” of RC Frame Structures 被引量:1
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作者 李心霞 公茂盛 +1 位作者 韩庆华 谢礼立 《Transactions of Tianjin University》 EI CAS 2015年第6期484-491,共8页
Most reinforced concrete(RC)frame structures did not achieve the "strong column-weak beam" failure mode in recent big earthquakes, resulting in a large number of casualties and significant property loss. To ... Most reinforced concrete(RC)frame structures did not achieve the "strong column-weak beam" failure mode in recent big earthquakes, resulting in a large number of casualties and significant property loss. To deal with this serious problem, a new column-beam relative factor was proposed to characterize the relative yield situation of column ends and beam ends. By limiting the column-beam relative factor, RC frame structures could achieve the "strong column-weak beam" failure mode under the excitation of strong ground motions. The limit values of column-beam relative factor were calculated, analyzed and verified by using structural simulation models for corner columns in the bottom story of structures, which are destroyed most seriously in earthquakes. The results show that the limit values should be analyzed under bi-directional ground motion and with different axial compression ratios of columns. The peak ground acceleration(PGA)of ground motions has no significant effect on the limit values, while the type of strong ground motions has a significant effect on the limit values. 展开更多
关键词 RC frame structure strong column-weak beam limit value of column-beam relative factor moment magnification factor at column end
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A New Non-uniform Beam Element and Its Application to Buckling Analysis for Framed Structures
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作者 陆念力 王佳 《Journal of Donghua University(English Edition)》 EI CAS 2012年第2期111-114,共4页
The non-uniform beam components are commonly used in engineering,while the method to analyze such component is not too satisfactory yet. A new non-uniform beam element with high precision was developed based on the no... The non-uniform beam components are commonly used in engineering,while the method to analyze such component is not too satisfactory yet. A new non-uniform beam element with high precision was developed based on the non-linear analysis and the static condensation. Based on the interpolation theory, the displacement fields of the three-node non-uniform Euler-Bernoulli beam element were constructed at first: the quintic Hermite interpolation polynomial was used for the lateral displacement field and the quadratic Lagrange interpolation polynomial for the axial displacement field. Then,based on the basic assumptions of non-uniform Euler-Bernoulli beam whose section properties were continuously varying along its centroidal axis, the linear and geometric stiffness matrices of the three-node non-uniform beam element were derived according to the nonlinear finite element theory. Finally,the degrees of freedom ( DOFs) of the middle node of the element were eliminated using the static condensation method, and a new two-node non-uniform beam element including axial-force effect was obtained. The results indicate that each bar needs to be meshed with only one element could get a fairly accurate solution when it is applied to the stability analyses. 展开更多
关键词 non-uniform beam element finite element method structural buckling framed structures static condensation
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Discussion on Construction Technology and Welding Deformation of High-Rise Steel Frame Structure
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作者 Sijin He Xinzhong Leng 《Journal of World Architecture》 2023年第5期23-28,共6页
Because of urbanization,land resources in China’s cities has become increasingly scarce.Therefore,modern buildings are becoming taller,making high-rise steel frame structures the new favorite of the construction indu... Because of urbanization,land resources in China’s cities has become increasingly scarce.Therefore,modern buildings are becoming taller,making high-rise steel frame structures the new favorite of the construction industry.However,the construction of high-rise steel frame structures requires advanced technology.If the construction technology is effectively implemented and the welding techniques of the construction personnel align with the requirements for high-rise steel frame structures,it can help mitigate deformations in the steel structure,thus preserving the overall construction quality of high-rise steel frame structures.To enhance the applicability of steel frame structures in high-rise buildings,this paper focuses on analyzing the optimization path for the construction process of high-rise steel frame structures.It introduces a tailored approach to control welding-induced deformations in steel frame structures,aiming to make a valuable contribution to the advancement of China’s construction industry. 展开更多
关键词 High-rise steel frame structure construction technology Welding deformation Structural stability
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Influence of the column-to-beam flexural strength ratio on the failure mode of beam-column connections in RC frames 被引量:1
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作者 Gong Maosheng Zuo Zhanxuan +2 位作者 Sun Jing He Riteng Zhao Yinan 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2021年第2期441-452,共12页
The column-to-beam flexural strength ratio(CBFSR)has been used in many seismic codes to achieve the strong column-weak beam(SCWB)failure mode in reinforced concrete(RC)frames,in which plastic hinges appear earlier in ... The column-to-beam flexural strength ratio(CBFSR)has been used in many seismic codes to achieve the strong column-weak beam(SCWB)failure mode in reinforced concrete(RC)frames,in which plastic hinges appear earlier in beams than in columns.However,seismic investigations show that the required limit of CBFSR in seismic codes usually cannot achieve the SCWB failure mode under strong earthquakes.This study investigates the failure modes of RC frames with different CBFSRs.Nine typical three-story RC frame models with different CBFSRs are designed in accordance with Chinese seismic codes.The seismic responses and failure modes of the frames are investigated through time-history analyses using 100 ground motion records.The results show that the required limit of the CBFSR that guarantees the SCWB failure mode depends on the beam-column connection type and the seismic intensity,and different types of beam-column connections exhibit different failure modes even though they are designed with the same CBFSR.Recommended CBFSRs are proposed for achieving the designed SCWB failure mode for different types of connections in RC frames under different seismic intensities.These results may provide some reference for further revisions of the SCWB design criterion in Chinese seismic codes. 展开更多
关键词 strong column-weak beam column-to-beam flexural strength ratio reinforced concrete frame structure beam-column connection failure mode
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Effects of edge beams on mechanic behavior under lateral load in reinforced concrete hollow slab-column structure
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作者 成洁筠 杨建军 唐小弟 《Journal of Central South University》 SCIE EI CAS 2008年第S1期61-66,共6页
In order to get the formulae for calculating the equivalent frame width coefficient of reinforced concrete hollow slab-column structures with edge beam,the finite element structural program was used in the elastic ana... In order to get the formulae for calculating the equivalent frame width coefficient of reinforced concrete hollow slab-column structures with edge beam,the finite element structural program was used in the elastic analysis of reinforced concrete hollow slab-column structure with different dimensions to study internal relationship between effective beam width and the frame dimensions.In addition,the formulas for calculating the increasing coefficient of edge beam were also obtained. 展开更多
关键词 reinforced concrete HOLLOW slab-column structure edge beam equivalent frame width COEFFICIENT increasing COEFFICIENT
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The Construction Technology of Freeform Surface Spatial Bending-Torsion Steel Structure
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作者 Tong Lu Shuai Wang +3 位作者 Ke-yang Wu Chen Liu Zhen-min Wang Chen Qian 《Journal of World Architecture》 2022年第4期53-60,共8页
Taking the construction project of the National Cybersecurity Talents and Innovation Base as an example,this paper studies the construction technology of freeform surface spatial bending-torsion steel structure based ... Taking the construction project of the National Cybersecurity Talents and Innovation Base as an example,this paper studies the construction technology of freeform surface spatial bending-torsion steel structure based on structural design model transformation,including the parametric modeling of deepening design model,computer-aided bending and torsion frame production,flexible docking in the bending-torsion combination unit,and welding stress deformation,in hope to provide reference for similar projects in the future. 展开更多
关键词 Freeform surface Spatial bending-torsion steel structure construction technology Parametric modeling Bending and twisting frame
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Time-varying Reliability Analysis of Long-span Continuous Rigid Frame bridge under Cantilever Construction Stage based on the Monitored Strain Data 被引量:1
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作者 Yinghua Li Kesheng Peng +1 位作者 Lurong Cai Junyong He 《Journal of Architectural Environment & Structural Engineering Research》 2020年第1期5-16,共12页
In general,the material properties,loads,resistance of the prestressed concrete continuous rigid frame bridge in different construction stages are time-varying.So,it is essential to monitor the internal force state wh... In general,the material properties,loads,resistance of the prestressed concrete continuous rigid frame bridge in different construction stages are time-varying.So,it is essential to monitor the internal force state when the bridge is in construction.Among them,how to assess the safety is one of the challenges.As the continuous monitoring over a long-term period can increase the reliability of the assessment,so,based on a large number of monitored strain data collected from the structural health monitoring system(SHMS)during construction,a calculation method of the punctiform time-varying reliability is proposed in this paper to evaluate the stress state of this type bridge in cantilever construction stage by using the basic reliability theory.At the same time,the optimal stress distribution function in the bridge mid-span base plate is determined when the bridge is closed.This method can provide basis and direction for the internal force control of this type bridge in construction process.So,it can reduce the bridge safety and quality accidents in construction stages. 展开更多
关键词 Continuous rigid frame bridge Structural health monitoring construction stage Punctiform time-varying reliability Strain data preprocessing
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A Comparative Study on the Truck Frame Stiffness with Solid and Beam Element FEA Models
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作者 Shengyong Zhang Zack Gertzen +1 位作者 Adam Manering Cristian Jongkind 《Modern Mechanical Engineering》 2023年第3期55-61,共7页
Truck frames should be designed and fabricated with enough rigidity to avoid excessive deflections. Finite element analysis (FEA) plays an important role in all stages of frame designs. While being accurate, 3D solid ... Truck frames should be designed and fabricated with enough rigidity to avoid excessive deflections. Finite element analysis (FEA) plays an important role in all stages of frame designs. While being accurate, 3D solid element FEA models are built upon frame configuration details which are not feasible in the preliminary design stage, partially because of limited available design data of frames and heavy computation costs. This research develops 1D beam element FEA models for simulating frame structures. In this paper, the CAD model of a truck frame is first created. The solid element FEA analysis, which is adopted as the baseline in this study, is subsequently conducted for the stiffness of the frame, Next, beam element FEA analysis is performed for validating the feasibility of the beam element FEA model by comparing the results from the solid and beam element FEA models. It is found that the beam element FEA model can predict the frame stiffness with acceptable accuracy and reduce the computation cost significantly. 展开更多
关键词 FEA Truck frame Structural Stiffness 3D Solid Element 1D beam Element
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Joinery and Structure:Cultural and Technical Comparison between Traditional Wooden Framing Systems in East Asia and Western Europe 被引量:1
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作者 LIU Yan 《Chinese Annals of History of Science and Technology》 2022年第1期89-118,共30页
Traditional wooden joinery is the craft of connecting wood pieces for buildings or producing utensils by utilizing only the geometry of the components and material properties of the wood,without other materials such a... Traditional wooden joinery is the craft of connecting wood pieces for buildings or producing utensils by utilizing only the geometry of the components and material properties of the wood,without other materials such as glue or metal connectors.In its thousands of years of tradition,this construction technique has achieved high accomplishment in both East Asian and European architectural civilizations.Although sharing the same basic principles,joinery techniques vary between regions and cultures,rooted in the geographical environment,available wood species and their material properties,characteristics of craftsmanship,tools,and structural systems.Wood framing systems from China,Japan,and Western Europe are selected for comparison to assess the relationship between wood joinery and other aspects of building technology.The main conclusions include:in East Asia,the building tradition pays great attention to the design and execution of joinery(sunmao榫卯),making it responsible for multiple functions including architectural mechanics and the stability of the entire frame,which leads to a broader role meant by the term“joint”itself,while in Europe joinery is treated as the“node”or literally“joint”of the structure.Although in both East Asia and Europe wooden joinery serves as an aesthetic factor of the structure,its expression in East Asia is subtle,veiled,and restrained,while in Europe it is explicit and direct.The most important lesson we learn from the study of traditional joinery technology is that it should be seen in the context of the building process as a whole,taking into account geographical environment,material resources,craftsmanship,tools,construction methods,structural form,and the structural system. 展开更多
关键词 wooden joint chuandou tailiang sunmao Fachwerk(half-timbering timber framing) traditional Chinese wooden structure traditional Japanese wooden structure traditional European wooden structure post-and-beam construction
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Study on the effect of the infill walls on the seismic performance of a reinforced concrete frame
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作者 Zhang Cuiqiang Zhou Ying +1 位作者 Zhou Deyuan Lu Xilin 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2011年第4期507-517,共11页
Motivated by the seismic damage observed to reinforced concrete (RC) frame structures during the Wenchuan earthquake, the effect of infill walls on the seismic performance of a RC frame is studied in this paper. Inf... Motivated by the seismic damage observed to reinforced concrete (RC) frame structures during the Wenchuan earthquake, the effect of infill walls on the seismic performance of a RC frame is studied in this paper. Infill walls, especially those made of masonry, offer some amount of stiffness and strength. Therefore, the effect of infill walls should be considered during the design of RC frames. In this study, an analysis of the recorded ground motion in the Wenehuan earthquake is performed. Then, a numerical model is developed to simulate the infill walls. Finally, nonlinear dynamic analysis is carried out on a RC frame with and without infill walls, respectively, by using CANNY software. Through a comparative analysis, the following conclusions can be drawn. The failure mode of the frame with infill walls is in accordance with the seismic damage failure pattern, which is strong beam and weak column mode. This indicates that the infill walls change the failure pattern of the frame, and it is necessary to consider them in the seismic design of the RC frame. The numerical model presented in this paper can effectively simulate the effect of infill walls on the RC frame. 展开更多
关键词 infill walls RC frame structure strong column and weak beam strong beam and weak column nonlinear time history analysis
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基坑空间效应下盾构工作井环框梁架设对基坑围护结构变形的影响
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作者 陈方岩 刘勇 +3 位作者 刘燕 刘峻廷 朱士齐 李海波 《济南大学学报(自然科学版)》 北大核心 2025年第1期71-77,共7页
为了更好地控制盾构工作井在施工的基坑开挖期和主体施工期基坑围护结构变形,最大程度地减小基坑空间效应的影响,基于济南某盾构工作井施工全过程的工程实例,通过数值模拟与现场监测相结合,设计3种盾构工作井环框梁架设方案,探讨盾构工... 为了更好地控制盾构工作井在施工的基坑开挖期和主体施工期基坑围护结构变形,最大程度地减小基坑空间效应的影响,基于济南某盾构工作井施工全过程的工程实例,通过数值模拟与现场监测相结合,设计3种盾构工作井环框梁架设方案,探讨盾构工作井环框梁的竖向架设位置对盾构工作井施工全过程中基坑围护结构变形的影响,并确定最优方案。结果表明:相对于基坑开挖期,主体施工期盾构工作井环框梁的竖向架设位置对基坑围护结构变形的影响更明显;当3道环框梁竖向架设深度比例为1∶5∶7时,盾构工作井下部环框梁间距减小,对基坑围护结构最大变形的控制最优,基坑开挖期最大水平位移由25.8 mm减至25.5 mm,主体施工期最大水平位移由27.8 mm减至26.5 mm,均有利于控制盾构工作井基坑开挖期与主体施工期的最大变形。 展开更多
关键词 岩土工程 基坑空间效应 数值模拟 围护结构 结构变形 盾构工作井 环框梁
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装配式混凝土框架结构施工控制研究
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作者 李昊 张鹏 《广东建材》 2025年第1期149-152,共4页
为解决装配式框架结构施工中易出现的质量问题,以北京市某商务用房项目为研究对象,在分析装配式混凝土框架结构施工难点的基础上,对施工准备和装配拼装2个阶段易发生问题进行统计分析,结合分析结果提出针对性的现场施工控制措施。结果表... 为解决装配式框架结构施工中易出现的质量问题,以北京市某商务用房项目为研究对象,在分析装配式混凝土框架结构施工难点的基础上,对施工准备和装配拼装2个阶段易发生问题进行统计分析,结合分析结果提出针对性的现场施工控制措施。结果表明,施工准备阶段易发生问题的频次占比变化范围分布在5.54%~30.09%,发生频次占比大于20%的问题主要集中在构件附件不全、结合面处理粗糙、运输保护不到位,其中运输保护不到位的频次占比最高,达到30.09%;装配拼装阶段易发生问题的频次占比变化范围分布在1.63%~32.5%,各质量问题发生的频次占比存在显著差异,吊装保护不到位、后浇段质量缺陷、注浆质量缺陷和安装尺寸偏差的频次占比均大于15%,而连接套筒质量差、混凝土开裂和水电安装问题的频次占比均小于5%。 展开更多
关键词 装配式建筑 框架结构 连接节点 质量问题 装配拼装阶段 施工准备阶段
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装配式钢结构梁柱连接节点研究进展
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作者 胡太伟 《山西建筑》 2025年第1期46-50,共5页
装配式建筑既是建筑现代设计理念、构件生产、现场管理革新的重要途径,也是推行组件化理念和智能化转型的重要举措。结合目前国内装配式钢结构梁柱连接节点研究情况,对可恢复式梁柱节点、方钢管柱-桁架梁、带悬臂梁节点、框架体系装配... 装配式建筑既是建筑现代设计理念、构件生产、现场管理革新的重要途径,也是推行组件化理念和智能化转型的重要举措。结合目前国内装配式钢结构梁柱连接节点研究情况,对可恢复式梁柱节点、方钢管柱-桁架梁、带悬臂梁节点、框架体系装配式节点形式的构造和力学性能进行阐述与总结。研究表明,装配式钢结构梁柱具有良好的承载力、延性和抗震性能,但是目前基于装配式节点构造及各参数的研究主要针对二维平面,一定程度上制约了其应用和发展,后续需对节点在火灾作用下的破坏及损伤时序、三维空间结构中楼板与梁柱节点的连接方式和考虑楼板后整体结构的复位机理与刚度变化历程进行进一步研究,为增加新材料、新工艺的应用,推广至实际工程提供理论依据。 展开更多
关键词 装配式钢结构 套筒连接 框架体系 梁柱节点
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屋面花架悬挑结构高空支模施工技术的应用
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作者 王新斌 《科学技术创新》 2025年第2期181-184,共4页
屋面花架在提高建筑结构空间层次方面发挥着重要作用,但是悬挑结构的高空支模施工面临着很大难度。首先对工程案例进行详细介绍,分析了悬挑结构高空支模的主要施工技术流程以及整体方案。重点从预埋件埋设,挑梁、连梁安装施工,防护脚手... 屋面花架在提高建筑结构空间层次方面发挥着重要作用,但是悬挑结构的高空支模施工面临着很大难度。首先对工程案例进行详细介绍,分析了悬挑结构高空支模的主要施工技术流程以及整体方案。重点从预埋件埋设,挑梁、连梁安装施工,防护脚手架搭设,支模架搭设,支模架拆除等方面详细介绍了关键施工技术。实践经验表明,所述的高空支模施工方案是有效的,为工程项目的顺利推进创造了良好条件。有效积累了悬挑结构高空支模的施工技术经验,可以为国内其他工程案例提供有效的经验借鉴。 展开更多
关键词 屋面花架 悬挑结构 高空支模 施工技术
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工业建筑主体结构混凝土施工质量控制
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作者 马云星 《中国井矿盐》 2025年第1期26-27,共2页
主体结构是工业建筑中的重要组成部分,其质量和稳定性直接影响到安全生产和经营。本文对某框架结构制盐工业厂房混凝土施工质量控制要点展开了探讨,为工业建筑主体结构混凝土施工提供一定参考,以提高施工质量和安全性。
关键词 工业建筑 框架结构 混凝土施工 质量控制
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基于施工工期控制的城郊高速公路大门架预应力盖梁设计优化分析
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作者 张东 张晓旭 +1 位作者 王宝喜 曾力 《北方交通》 2025年第1期10-12,共3页
城郊高速公路建设环境复杂,存在诸多不确定因素。在多因素叠加下,可能会出现施工进度滞后的情况。为保证建设项目顺利通车,需要合理压缩各施工环节工期。作为城郊高速公路立交区广泛应用的结构形式之一,大门架预应力盖梁的施工工期对整... 城郊高速公路建设环境复杂,存在诸多不确定因素。在多因素叠加下,可能会出现施工进度滞后的情况。为保证建设项目顺利通车,需要合理压缩各施工环节工期。作为城郊高速公路立交区广泛应用的结构形式之一,大门架预应力盖梁的施工工期对整个项目的进度有着重要影响。文章以某在建双向八车道高速公路大门架预应力盖梁为依托,分析了其在工期压缩下的优化设计方案。 展开更多
关键词 城郊高速公路 工期控制 大门架预应力盖梁 优化设计
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洞桩法地铁车站边桩结构受力机制的模型试验设计 被引量:1
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作者 章慧健 郑余朝 +2 位作者 刘功宁 汪波 张帅 《实验技术与管理》 CAS 北大核心 2024年第3期19-28,共10页
为了方便学生更形象地理解洞桩法地铁车站边桩结构的受力机制,该文以广州地区某洞桩法地铁车站工程为依托,设计了一种简化的洞桩法车站边桩结构模型试验。基于该试验方法,演示分析了边桩结构在洞桩法车站开挖过程中的施工力学行为规律,... 为了方便学生更形象地理解洞桩法地铁车站边桩结构的受力机制,该文以广州地区某洞桩法地铁车站工程为依托,设计了一种简化的洞桩法车站边桩结构模型试验。基于该试验方法,演示分析了边桩结构在洞桩法车站开挖过程中的施工力学行为规律,并对比研究了不同桩型布置参数下的桩后土压力、边桩结构的力学和变形规律。通过该试验,为学生展示了洞桩法边桩结构模型的设计、制作、试验具体操作及数据监测的全过程,从而让学生更好地掌握洞桩法车站边桩结构力学行为演变规律,以及采用不同边桩布置型式的力学行为差异。 展开更多
关键词 洞桩法 边桩结构 模型试验 施工力学 变形规律
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钢管混凝土键连接框架梁和剪力墙的受剪性能 被引量:1
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作者 李明 刘栩邑 +2 位作者 吴潜 吴欣禹 吴永新 《沈阳建筑大学学报(自然科学版)》 CAS 北大核心 2024年第1期38-46,共9页
目的 研究钢管混凝土键连接框架梁和剪力墙的受剪性能,为工程应用提供设计依据。方法 应用有限元分析软件ABAQUS对比钢管混凝土键连接与现浇连接梁墙的结构受剪性能,分析前者受剪机理及不同因素对受剪性能的影响。结果 钢管混凝土键连... 目的 研究钢管混凝土键连接框架梁和剪力墙的受剪性能,为工程应用提供设计依据。方法 应用有限元分析软件ABAQUS对比钢管混凝土键连接与现浇连接梁墙的结构受剪性能,分析前者受剪机理及不同因素对受剪性能的影响。结果 钢管混凝土键连接梁墙的结构承载力和延性系数较现浇结构分别提高约10%和34%;钢材强度从Q235到Q390,初始刚度增加8.44%;截面高度从100 mm到120 mm,延性系数提高17.73%;截面厚度每增加2 mm,承载力提高约15%;截面长度和混凝土强度等级对承载力、初始刚度和延性系数的影响均小于15%,纵向距离对其受剪性能几乎无影响。结论 采用钢管混凝土键连接梁墙的结构总体受剪性能优于现浇结构;钢材强度和截面厚度分别是影响初始刚度和承载力的主要因素。 展开更多
关键词 钢管混凝土键 框架-剪力墙结构 梁墙试件 抗剪性能 有限元分析
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基于转动摩擦铰阻尼器的干式装配梁-柱节点抗震性能试验 被引量:1
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作者 申允 夏成建 +1 位作者 陈强 王昊祥 《地震研究》 CSCD 北大核心 2024年第1期105-113,共9页
基于转动摩擦铰阻尼器(RFHD),提出了转动摩擦耗能干式装配梁-柱节点(DRFDBJ)。为了验证DRFDBJ结构对于实现预期力学性能的可行性和合理性,以施加在摩擦片表面的螺栓预紧力(P_(c))为变量,开展了2个工况下的DRFDBJ试件低周往复拟静力试验... 基于转动摩擦铰阻尼器(RFHD),提出了转动摩擦耗能干式装配梁-柱节点(DRFDBJ)。为了验证DRFDBJ结构对于实现预期力学性能的可行性和合理性,以施加在摩擦片表面的螺栓预紧力(P_(c))为变量,开展了2个工况下的DRFDBJ试件低周往复拟静力试验研究。结果表明:DRFDBJ结构的力学性能主要由RFHD提供并控制,试验中节点呈现了稳定的承载力和理想的变形、耗能能力,并实现了预期的损伤集中;2个不同P_(c)水准下节点承载力的试验值与理论值误差不超过5%,通过调整P_(c)可实现节点承载力的调控,为DRFDBJ结构承载力的可调控提供了支撑。 展开更多
关键词 装配式框架结构 干式装配梁-柱节点 转动摩擦阻尼器 摩擦阻尼器
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