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A two-scale method to include essential behaviour of bolted connections instructures including elevated temperatures
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作者 Qingfeng Xu Hèrm Hofmeyer Johan Maljaars 《Theoretical & Applied Mechanics Letters》 CSCD 2024年第6期496-512,共17页
A two-scale method is proposed to simulate the essential behavior of bolted connections in structures includingelevated temperatures.It is presented,verified,and validated for the structural behavior of two plates,con... A two-scale method is proposed to simulate the essential behavior of bolted connections in structures includingelevated temperatures.It is presented,verified,and validated for the structural behavior of two plates,connectedby a bolt,under a variety of loads and elevated temperatures.The method consists of a global-scale model thatsimulates the structure(here the two plates)by volume finite elements,and in which the bolt is modelled bya spring.The spring properties are provided by a smallscale model,in which the bolt is modelled by volumeelements,and for which the boundary conditions are retrieved from the global-scale model.To ensure the small-scale model to be as computationally efficient as possible,simplifications are discussed regarding the materialmodel and the modelling of the threads.For the latter,this leads to the experimentally validated application ofa non-threaded shank with its stress area.It is shown that a non-linear elastic spring is needed for the bolt inthe global-scale model,so the post-peak behavior of the structure can be described efficiently.All types of boltedconnection failure as given by design standards are simulated by the twoscale method,which is successfullyvalidated(except for net section failure)by experiments,and verified by a detailed system model,which modelsthe structure in full detail.The sensitivity to the size of the part of the plate used in the small-scale modelis also studied.Finally,multi-directional load cases,also for elevated temperatures,are studied with the two-scale method and verified with the detailed system model.As a result,a computationally efficient finite elementmodelling approach is provided for all possible combined load actions(except for nut thread failure and netsection failure)and temperatures.The two-scale method is shown to be insightful,for it contains a functionalseparation of scales,revealing their relationships,and consequently,local small-scale non-convergence can behandled.Not presented in this paper,but the two-scale method can be used in e.g.computationally expensive two-way coupled fire-structure simulations,where it is beneficial for distributed computing and densely packed boltconfigurations with stiffplates,for which a single small-scale model may be representative for several connections. 展开更多
关键词 Two-scale method Finite element model bolted connection Structural failure Elevated temperatures FIRE
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A global-local finite element analysis of hybrid composite-to-metal bolted connections used in aerospace engineering 被引量:2
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作者 LIANG Ke 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第6期1225-1232,共8页
Efficient bolted joint design is an essential part of designing the minimum weight aerospace structures, since structural failures usually occur at connections and interface. A comprehensive numerical study of three-d... Efficient bolted joint design is an essential part of designing the minimum weight aerospace structures, since structural failures usually occur at connections and interface. A comprehensive numerical study of three-dimensional(3D) stress variations is prohibitively expensive for a large-scale structure where hundreds of bolts can be present. In this work, the hybrid composite-to-metal bolted connections used in the upper stage of European Ariane 5ME rocket are analyzed using the global-local finite element(FE) approach which involves an approximate analysis of the whole structure followed by a detailed analysis of a significantly smaller region of interest. We calculate the Tsai-Wu failure index and the margin of safety using the stresses obtained from ABAQUS. We find that the composite part of a hybrid bolted connection is prone to failure compared to the metal part. We determine the bolt preload based on the clamp-up load calculated using a maximum preload to make the composite part safe. We conclude that the unsuitable bolt preload may cause the failure of the composite part due to the high stress concentration in the vicinity of the bolt. The global-local analysis provides an efficient computational tool for enhancing 3D stress analysis in the highly loaded region. 展开更多
关键词 bolted connection global-local finite element approach failure bolt PRELOAD
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STRESS-STRAIN FINITE ELEMENT ANALYSIS AND FATIGUE LIFE PREDICTION FOR BOLTED CONNECTIONS 被引量:1
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作者 Wang Ziqin Xie Qingsheng Mechanical Engineering Department,Guizhou University of Technology,Guiyang 550003,China 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2002年第1期75-78,共4页
A cyclic plasticity model is used into finite element (FE) method to obtainthe details of elastic-plastic stress-strain in the bolts under cyclic axial loading. Two criteriain multiaxial fatigue are employed to predic... A cyclic plasticity model is used into finite element (FE) method to obtainthe details of elastic-plastic stress-strain in the bolts under cyclic axial loading. Two criteriain multiaxial fatigue are employed to predict fatigue lives of bolts. The predicted fatigue livesare in favorable agreement with the experimental results for machined bolts. 展开更多
关键词 Finite element FATIGUE bolted connection
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Fatigue Strength Evaluation of Resin-Injected Bolted Connections Using Statistical Analysis 被引量:2
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作者 Jose Antonio Fonseca de Oliveira Correia Bruno Alexandre Silva Pedrosa +6 位作者 Patricia Cordeiro Raposo Abilio Manuel Pinho De Jesus Helena Maria dos Santos Gervisio Grzegorz Stanislaw Lesiukc Carlos Alberto da Silva Rebelo Rui Artur Bartolo Calcada Luis Alberto Proenca Simoes da Silva 《Engineering》 SCIE EI 2017年第6期795-805,共11页
Different strategies can be used to perform reparations and reinforcements of ancient bolted and riveted metallic bridges. As the riveting process is not currently a common practice, it requires proper equipment and s... Different strategies can be used to perform reparations and reinforcements of ancient bolted and riveted metallic bridges. As the riveting process is not currently a common practice, it requires proper equipment and skilled workers. Another solution is the use of welding. However, the weldability of old steels is poor. Bolts are very attractive alternative solutions, and are most commonly used to repair old metallic bridges. Fitted bolts are expensive solutions; the alternative is the use of resin-injected bolts. The behavior of bolted joints with preloaded resin-injected bolts has been studied using quasi-static and creep tests; however, few studies on the slip and fatigue behavior of these joints can be found in the literature. This paper presents an overview of a few experimental programs that were carried out by several authors aiming at evaluating the fatigue behavior of single and double shear resin-injected bolted connections. A comparison between the experimental data of joints with preloaded standard bolts and preloaded resin- injected bolts shows a fatigue strength reduction in the latter. Since Eurocode 3 (EC3) suggests the same fatigue strength curve for joints made of resin-injected bolts and standard bolts, this may raise some con- cerns. Furthermore, research on the feasibility of using both bonded and bolted connections is shown. This last study was performed with high-strength low-alloy structural steel plates and an acrylic struc- tural adhesive for metal bonding. For both case studies, a statistical analysis is performed on fatigue experimental data using linearized boundaries and the Castillo and Fernandez-Canteli model. Fatigue design curves are proposed and compared with the design suggestions of several European and North American standards, 展开更多
关键词 FATIGUE connectionS Structural reinforcements Structural adhesives S-N curves Resin-injected bolts
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Mechanical Experimental Study on Tensile Bolted Connections of Cross-laminated Timber
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作者 Chenxiao Su Haibei Xiong 《Structural Durability & Health Monitoring》 EI 2020年第1期81-94,共14页
In order to explore a kind of high-strength,earthquake-resistant,eco-nomical and suitable connection,4 groups of cross-laminated timber wall-to-floor and wall-to-wall bolted connections were tested under monotonic and... In order to explore a kind of high-strength,earthquake-resistant,eco-nomical and suitable connection,4 groups of cross-laminated timber wall-to-floor and wall-to-wall bolted connections were tested under monotonic and cyclic load-ing.The defommation characteristics and failure modes of the cross-laminated tim-ber wall-to-floor and wall-to-wall bolted connections were exploited.Load-slip curves,bearing capacity,yielding point,stiffness and ductility of each group of specimens were analyzed.The test results indicate that the loading process of cross-laminated timber bolted connections under tension can be categorized as five stages,namely the elastic stage,the slip stage,the embedding stage,the yield-ing stage and the ultimate stage.The ultimate tensile capacity of cross-laminated timber bolted wall-to-floor connections is 2.67 times that of the wall-to-wall bolted connections.Compared with cross-laminated timber self-tapping screwed connections,the ultimate tensile capacity of the cross-laminated timber wall-to-floor bolted connections is 2.70 times that of the self-tapping screwed connec-tions,and the ultimate tensile capacity of the cross-laminated timber wall-to-wall bolted connections is 3.83 times that of the self-tapping screwed connections.The crosslaminated timber bolted connections have larger yielding displacement and wider plastic range,and they are more energy dissipative and more ductile.Furthermore,the cost of the cross-laminated timber wall-to-floor bolted connec-tions is 46%that of the self-tapping screwed connections,while the cost of cross-laminated wall-to-wall bolted connections is 53%that of the self-screwed connections. 展开更多
关键词 Cross-laminated timber bolted connections mechanical properties economical and suitable
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The Simple Model for Bolted Connections in Fire
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作者 Mahmoud Yahyai Mohsen Behzadpoori +1 位作者 Amir Saedi Daryan Ahmad Baleh Moghadas 《Engineering(科研)》 2011年第9期865-875,共11页
Recent structural collapses caused by fire have focused attention on research concerning fire safety in building design. Steel connections are an important component of any structural steel building as they provide li... Recent structural collapses caused by fire have focused attention on research concerning fire safety in building design. Steel connections are an important component of any structural steel building as they provide links between the principal structural members. Considering the importance of this matter this paper describes a spring-stiffness model developed to predict the behavior of bolted angle connections bare-steel joints at elevated temperature. The joint components are considered as springs with predefined mechanical properties i.e. stiffness and strength. The elevated temperature joint’s response can be predicted by assem-bling the stiffness of the components which are assumed to degrade with increasing temperature based on the recommendations presented in the design parameters code. Comparison of the results from the model with existing experimental data showed good agreement. The proposed model can be easily modified to describe the elevated temperature behavior of other types of joint as well as joints under large rotations. 展开更多
关键词 bolted connection ELEVATED-TEMPERATURE FIRE Spring-Stiffness Model Rotation-Temperature CURVES MOMENT-ROTATION CURVES
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Residual Capacity of Friction⁃Type High⁃Strength Bolted T⁃stub Connection with Nut Corrosion Damage
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作者 Gangnian Xu Baoyao Lin Yefeng Du 《Journal of Harbin Institute of Technology(New Series)》 CAS 2023年第3期68-84,共17页
Corrosion is a primary cause of the slippage of friction⁃type high⁃strength bolted(FHSB)T⁃stub connections.This paper attempts to quantify the residual capacity of FHSB T⁃stub connections with corroded nuts.Firstly,co... Corrosion is a primary cause of the slippage of friction⁃type high⁃strength bolted(FHSB)T⁃stub connections.This paper attempts to quantify the residual capacity of FHSB T⁃stub connections with corroded nuts.Firstly,corrosion simulation tests were conducted on 48 manually cut nuts to find out the relationship between the damage degree of nut section and the residual clamping force(RCF)of bolt.Then,static load tests were carried out on 24 FHSB T⁃stub connections with nuts of different degrees of damage to obtain the failure modes.By finite⁃element(FE)models,a comparative analysis was performed on the initial friction load(IFL)and ultimate strength(US)of each connection with corroded nuts.Finally,the parameters of 96 FE models for FHSB T⁃stub connections were analyzed and used to derive the calculation formulas for the degree of damage for each nut and the IFL and US of each connection.The results show that the RCF decay of a bolt is a quadratic function of the equivalent radius loss ratio and the shear failure after nut corrosion;the IFL of each connection had a clear linear correlation with the RCF of the corresponding bolts,and the correlation depends on the applied load and static friction on connecting plate interface induced by the clamping force;the static friction had little impact on the US of the connection;the proposed IFL and US formulas can effectively derive the residual anti⁃slip capacity of FHSB T⁃stub connections from the degree of damage of the corroded nut section.The research results provide a scientific basis for the replacement and maintenance of corroded bolts of FHSB T⁃stub connections. 展开更多
关键词 nut corrosion T⁃stub connection high⁃strength bolt sectional damage residual clamping force(RCF) anti⁃slip capacity
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Cost Optimization of Steel Beam-to-Column Connections using AVOA
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作者 Ziyu Wang Zhaoyang Ren 《Journal of Architectural Research and Development》 2024年第2期18-23,共6页
The joint-bolt-African Vulture optimization algorithm(AVOA)model is proposed for the design of building connections to improve the stability of steel beam-to-column connections.For this algorithm,the type of steel is ... The joint-bolt-African Vulture optimization algorithm(AVOA)model is proposed for the design of building connections to improve the stability of steel beam-to-column connections.For this algorithm,the type of steel is first determined,and the number of bolts needed by the corresponding steel type is referenced in Eurocode 3.Then,the bearing capacity of the joint can be calculated.The joint-bolt-AVOA model is established by substituting the bolt number required by the steel into the algorithm to obtain the optimal bolt number required while ensuring joint stability.The results show that the number of bolts required by the joint-bolt-AVOA model based on the stability of steel is lower than that calculated by Eurocode 3.Therefore,AVOA can effectively optimize the number of bolts needed in building connections and save resources. 展开更多
关键词 Steel connections African vulture optimization algorithm Optimization of bolts
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Mechanical Behavior of Light Trusses Made of Poplar Laminated Veneer Lumber and Connected with Bolts and Tooth Plates 被引量:1
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作者 Yan Liu Yanfei Guo +1 位作者 Xufeng Sun Meng Gong 《Journal of Renewable Materials》 SCIE EI 2020年第9期1111-1127,共17页
Poplar Laminated Veneer Lumber(Poplar LVL)is a new type of engineering materials with high strength,good reliability and small variability.Poplar LVL is manufactured from the fast-growing poplar,which is widely used i... Poplar Laminated Veneer Lumber(Poplar LVL)is a new type of engineering materials with high strength,good reliability and small variability.Poplar LVL is manufactured from the fast-growing poplar,which is widely used in packaging,furniture and others,however,is rarely adopted in construction.In order to explore the feasibility of poplar LVL trusses in construction of roof,four 4.5-m-span Fink-and-Howe trusses were designed and assembled,which were made of poplar LVL with bolted-and tooth-plated connections.Vertical static loading on the upper chord joints of a truss was imposed by self-balancing test device.The mechanical properties of trusses were examined.The ultimate load,deformation character and failure mode of each truss were measured,observed and analyzed.Furthermore,four types of analytical models with different joint connection assumptions were used to estimate the ultimate load and deflection.The results showed that the poplar LVL trusses were basically in elastic stage before the design load was reached,showing good working performance under the action of design load.The bearing capacity of the trusses of bolted connections was greater than that of the tooth-plated connections.As for the same joint connection type,the bearing capacity of Fink trusses exceeded that of Howe trusses.The poplar LVL light trusses of both types of connections showed good structural performance,which could be reasonably used for building roof systems. 展开更多
关键词 Poplar LVL TRUSS mechanical properties bearing capacity bolted connection truss plate connections model
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Characterization of Strength-Shift Behavior of Bolts Connected with and without Preloading
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作者 A.Trindade 《Journal of Mechanics Engineering and Automation》 2018年第1期9-16,共8页
Bolted joins allow for more efficient joining of parts(mechanical and structural components)when assembly and disassembly,called interchangeability,are concerned.Also and for this reason,they are the most widely used ... Bolted joins allow for more efficient joining of parts(mechanical and structural components)when assembly and disassembly,called interchangeability,are concerned.Also and for this reason,they are the most widely used in the final assembly,already in construction,in a state of final consolidation of the structure.This work began in a pedagogical action to compare the experimental results with those obtained by Eurocode 3(EN 1993-1-8)in simple joints with screws subject to cutting,the study evolved the analysis of the behavior of the screws themselves in the joint.Tests were carried out with great dimensional accuracy,for new bolted connections,with different bolt’s number,according to different arrangements and repeated in cases of simple and preloaded tightening.The experimental work,carried out on a uniaxial tensile testing machine,consisted in subjecting the connections to a growing effort so that the bolts,being subject to the cut,would break through the thread-free zone.The analysis of results and their comparison(in force—displacement diagrams)allow drawing conclusions regarding the true behavior of the bolted connections.The characterization of the thresholds of the initial zone of the force—displacement curves,in the cases of connections with preloading—was the objective of study.The transfer of forces and the influence of friction on the bonds without and with preloading were then characterized.The main objective of this project is to know the meaning of the calculated values in the preloaded and non-preloaded links by Eurocode 3. 展开更多
关键词 boltS connectionS collapsible PRELOADING EUROCODE 3
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竖向螺栓连接密拼叠合板受弯性能试验
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作者 关虓 程豪杰 +6 位作者 秦卿 师红杰 唐丽云 程亮 任翔 张程华 高志刚 《西安科技大学学报》 北大核心 2025年第2期340-350,共11页
为解决传统后浇带叠合板工序复杂、模板消耗量大以及底部不出筋密拼叠合板附加钢筋不易固定、拼缝截面处承载力偏低等问题,设计了3块竖向螺栓连接密拼叠合板和1块15G310-1图集做法密拼叠合板试件,开展受弯性能试验研究竖向螺栓的排列方... 为解决传统后浇带叠合板工序复杂、模板消耗量大以及底部不出筋密拼叠合板附加钢筋不易固定、拼缝截面处承载力偏低等问题,设计了3块竖向螺栓连接密拼叠合板和1块15G310-1图集做法密拼叠合板试件,开展受弯性能试验研究竖向螺栓的排列方式、数量对密拼叠合板的承载力、变形以及破坏机制等的影响规律,并验证其竖向螺栓密拼连接的有效性,提出竖向螺栓连接密拼叠合板受弯承载力计算模型。结果表明:竖向螺栓连接密拼叠合板的受弯承载力和变形能力均优于现阶段15G310-1图集底部不出筋密拼叠合板,竖向螺栓连接能更好保证预制层与现浇层的整体性;采用单排竖向螺栓连接时,随着螺栓数量的增加,叠合板的开裂荷载和极限荷载均提高,与单排螺栓连接相比,采用双排竖向螺栓连接的密拼叠合板的开裂荷载和极限荷载亦随之提高;经承载力验算竖向螺栓连接密拼叠合板拼缝位置处仍能满足规范要求。研究成果丰富了装配式叠合板的连接构造形式以及为计算竖向螺栓连接叠合板承载力提供参考。 展开更多
关键词 叠合板 拼缝 螺栓连接 受弯性能 承载力
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可接长注浆锚杆连接段破坏失效模式及参数优化
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作者 刘少伟 张玮钰 贺德印 《河南理工大学学报(自然科学版)》 北大核心 2025年第2期1-9,共9页
目的针对高应力软岩巷道存在变形量大、变形时间长、可锚性差等问题,目前多采用可接长注浆锚杆进行改性支护加固,如何提升其强度和抗变形能力成为控制围岩大变形的关键。为了提高可接长注浆锚杆的强度,方法基于可接长注浆锚杆的螺纹连... 目的针对高应力软岩巷道存在变形量大、变形时间长、可锚性差等问题,目前多采用可接长注浆锚杆进行改性支护加固,如何提升其强度和抗变形能力成为控制围岩大变形的关键。为了提高可接长注浆锚杆的强度,方法基于可接长注浆锚杆的螺纹连接特性,采用螺纹连接段工作力学性能理论分析和数值模拟相结合的方法,分析连接段的不同失效模式以及螺纹类型对锚杆力学性能的影响,对比常见不同类型螺纹的连接强度,分析连接段的连接长度、螺纹螺距和连接件外径对于锚杆强度和抗变形能力的影响。结果结果表明:螺纹连接段失效模式可分为螺纹滑脱破坏、连接件拉断破坏和锚杆拉断破坏,不同失效模式取决于螺纹抗剪强度、锚杆与连接件的最小抗拉强度。当连接段长度较短,连接段呈现螺纹滑脱破坏时,随着连接长度增加,连接段薄弱点由螺纹截面转为锚杆螺纹根部,呈现锚杆拉断破坏。随着螺纹螺距增加,峰值载荷先上升后下降,螺距为2.0 mm时达到载荷峰值。随着连接件外径增加,螺纹连接段失效模式由连接件拉断破坏变为螺纹滑脱破坏,最后转变为锚杆拉断破坏,连接强度呈先上升后下降的趋势。结论以外径22 mm,内径12 mm的中空注浆锚杆为例,连接长度20 mm、螺纹螺距2.0 mm、连接件外径28 mm时,锚杆连接段抗拉强度最佳,载荷峰值为118.8 kN,可以满足高应力软岩巷道的支护要求。 展开更多
关键词 中空注浆锚杆 锚杆支护 螺纹连接 螺纹螺距
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滑移螺杆连接的BRB-RC框架节点抗震性能试验研究
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作者 赵俊贤 张家广 王柏顺 《东南大学学报(自然科学版)》 北大核心 2025年第1期98-108,共11页
为减小大震下防屈曲支撑(BRB)钢筋混凝土(RC)框架节点开合效应对子结构抗震性能的不利影响,提出一种滑移螺杆连接方法,通过对预埋螺杆和锚板表面进行无黏结处理,减小节点板对RC子结构梁柱变形的切向约束,从而将BRB轴力以抗拉不抗剪的方... 为减小大震下防屈曲支撑(BRB)钢筋混凝土(RC)框架节点开合效应对子结构抗震性能的不利影响,提出一种滑移螺杆连接方法,通过对预埋螺杆和锚板表面进行无黏结处理,减小节点板对RC子结构梁柱变形的切向约束,从而将BRB轴力以抗拉不抗剪的方式有效传递至RC子结构。对2个滑移节点板连接和1个传统节点板连接的BRB-RC梁柱组合件进行拟静力试验,以验证滑移螺杆连接的有效性。试验结果表明,与传统焊接节点连接相比,滑移螺杆连接性能更加稳定,简化了子结构梁柱的受力状态。当层间位移角为2%时,子结构梁剪力和累积耗能降低幅度分别可达37.6%和29%,有效减轻了子结构损伤。 展开更多
关键词 防屈曲支撑(BRB) 钢筋混凝土(RC)框架 开合效应 滑移螺杆连接 大震作用
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方钢管柱-H型钢梁外套筒式全螺栓连接节点抗震性能研究
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作者 刘学春 李亚鹏 +2 位作者 冯徐泽 陈学森 余少乐 《建筑结构》 北大核心 2025年第5期1-8,共8页
针对传统栓焊连接节点在地震中易出现脆性断裂的问题,提出了一种新型的外套筒式全螺栓连接梁柱节点,并对其抗震性能进行了研究。基于ABAQUS建立了试件精细化有限元模型,通过改变套筒安装缝隙、盖板厚度、梁翼缘螺栓数量、摩擦系数以及... 针对传统栓焊连接节点在地震中易出现脆性断裂的问题,提出了一种新型的外套筒式全螺栓连接梁柱节点,并对其抗震性能进行了研究。基于ABAQUS建立了试件精细化有限元模型,通过改变套筒安装缝隙、盖板厚度、梁翼缘螺栓数量、摩擦系数以及加劲肋的设置等参数,获得了试件的破坏模式、滞回曲线、骨架曲线、耗能能力、承载力、延性、刚度退化等性能指标。研究结果表明:在小震作用下全螺栓试件初始刚度与焊接试件一致,在中、大地震作用下主要通过盖板与梁翼缘之间的滑移摩擦耗能;全螺栓试件破坏模式为拼接区外侧梁翼缘和腹板鼓曲并形成塑性铰,与传统焊接试件相比具有更高的承载力、更好的延性性能和转动能力。最后提出了节点受弯承载力计算公式,并验证了公式的可靠性。 展开更多
关键词 钢结构 方钢管柱 梁柱节点 全螺栓连接 抗震性能 滑移耗能
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木-混凝土螺栓连接力学性能试验及承载力计算模型
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作者 熊海贝 武喆 +2 位作者 欧阳禄 王治方 陈佳炜 《湖南大学学报(自然科学版)》 北大核心 2025年第1期34-48,共15页
连接节点的设计是保证木-混凝土混合结构中两种材料协同工作的基础.为研究常用工程木-混凝土螺栓连接节点的力学性能及破坏模式,分别选用正交胶合木(Crosslaminated timber,CLT)-混凝土螺栓连接和云杉-松木-冷杉(Spruce Pine Fir,SPF)... 连接节点的设计是保证木-混凝土混合结构中两种材料协同工作的基础.为研究常用工程木-混凝土螺栓连接节点的力学性能及破坏模式,分别选用正交胶合木(Crosslaminated timber,CLT)-混凝土螺栓连接和云杉-松木-冷杉(Spruce Pine Fir,SPF)规格材-混凝土螺栓连接作为试验对象,设计了27组单调加载试验和低周往复加载试验,归纳并对比了两类木-混凝土螺栓连接的典型破坏模式.结果表明:木-混凝土螺栓连接节点承载力大小与螺栓屈服模式相关,CLT-混凝土螺栓连接相较于SPF-混凝土螺栓连接更易发生双铰破坏,且CLT-混凝土螺栓连接具有更好的延性.基于对两类连接力学性能差异的影响机理分析,考虑钢垫板对承载力的影响,并引入CLT等效截面,提出了木-混凝土螺栓连接的承载力力学模型.计算结果与试验结果对比的平均误差为12.18%,表明计算值与试验值吻合良好,可为木-混凝土螺栓连接的设计与应用提供参考. 展开更多
关键词 木-混凝土混合结构 螺栓连接 破坏模式 力学性能 计算模型
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带拼接板螺栓连接耗能梁段的可恢复功能钢框筒结构抗震性能研究
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作者 连鸣 戴子琳 程倩倩 《工程力学》 北大核心 2025年第1期83-102,共20页
为了提升传统钢框筒结构的延性和耗能能力,提出采用拼接板螺栓连接的可恢复功能剪切耗能型钢框筒结构(FTS-SRSL),该结构结合了可更换剪切型耗能梁段和钢框筒结构具有良好的抗震性能。该文对一个2/3缩尺的单层单跨FTS-SRSL子结构试件进... 为了提升传统钢框筒结构的延性和耗能能力,提出采用拼接板螺栓连接的可恢复功能剪切耗能型钢框筒结构(FTS-SRSL),该结构结合了可更换剪切型耗能梁段和钢框筒结构具有良好的抗震性能。该文对一个2/3缩尺的单层单跨FTS-SRSL子结构试件进行了往复加载试验,试验结果表明,FTS-SRSL子结构试件具有良好的抗震性能,结构损伤集中于耗能梁段,且耗能梁段可实现更换。在试验的基础上,以耗能梁段长度比、耗能梁段腹板加劲肋间距、螺栓直径、翼缘拼接板和腹板拼接板厚度为参数,利用ABAQUS建立了15个足尺的单层单跨FTS-SRSL有限元模型,探究各模型的抗震性能,包括承载力、刚度、耗能以及塑性变形能力。有限元分析结果表明:改变拼接板螺栓连接的剪切型耗能梁段长度比会显著影响结构的承载力、刚度及耗能,建议FTS-SRSL中的拼接板螺栓连接剪切型耗能梁段长度比取0.73~1.09;改变耗能梁段腹板加劲肋间距对结构的承载力、刚度和耗能影响较小,基于该文的分析结果,建议FTS-SRSL中的拼接板螺栓连接剪切型耗能梁段腹板加劲肋间距取e/4~e/3(e为耗能梁段长度),且间距应满足我国抗规的规定;改变翼缘拼接板和腹板拼接板厚度对结构的承载力、刚度及耗能基本无影响;改变螺栓直径对结构承载力、刚度及耗能影响较小。 展开更多
关键词 可更换耗能梁段 拼接板螺栓连接 钢框筒结构 抗震性能 参数分析
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螺栓连接松动的监检测技术研究进展
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作者 龚裕 唐国良 +1 位作者 王孝然 刘增华 《北京工业大学学报》 北大核心 2025年第2期192-213,共22页
螺栓连接的完整性维护仍然是一个面临众多挑战的问题,特别是在遭受外部干扰(如振动)时,连接界面表面可能会发生大面积或局部的滑移。这种滑移现象会加剧界面间的相对运动,导致预紧力水平下降,也就是螺栓连接的松动。在过去的10年中,诸... 螺栓连接的完整性维护仍然是一个面临众多挑战的问题,特别是在遭受外部干扰(如振动)时,连接界面表面可能会发生大面积或局部的滑移。这种滑移现象会加剧界面间的相对运动,导致预紧力水平下降,也就是螺栓连接的松动。在过去的10年中,诸如振动法、导波法和机电阻抗法等检测方法已逐渐应用于检测螺栓连接的松动。伴随着计算能力的显著提升,机器学习算法包括神经网络和支持向量机已被开发出来,用于进一步提升螺栓松动检测方法的准确性。这些方法的融合为螺栓连接的实时健康监测提供了新的途径。该文综述了基于声弹性效应、振动、导波和机电阻抗的方法,以及基于机器学习算法的信号分析方法在螺栓连接松动检测和监测领域的应用,旨在展示近年来该领域的研究进展。 展开更多
关键词 螺栓连接 螺栓松动 机器学习 信号分析 无损检测 结构健康监测
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螺栓连接装配式钢丝网轻骨料混凝土剪力墙的抗震性能研究
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作者 李政龙 袁康 +1 位作者 闫建龙 郭军林 《石河子大学学报(自然科学版)》 北大核心 2025年第1期81-91,共11页
装配式建筑具有施工便捷、节能环保、质量可控等优点,符合村镇地区的需求,因此本文提出一种新型螺栓连接装配式钢丝网轻骨料混凝土剪力墙,并对其抗震性能开展研究。通过低周往复加载试验,对比分析了现浇剪力墙与螺栓连接剪力墙试件的破... 装配式建筑具有施工便捷、节能环保、质量可控等优点,符合村镇地区的需求,因此本文提出一种新型螺栓连接装配式钢丝网轻骨料混凝土剪力墙,并对其抗震性能开展研究。通过低周往复加载试验,对比分析了现浇剪力墙与螺栓连接剪力墙试件的破坏模式、滞回曲线与骨架曲线;采用有限元软件ABAQUS分析了连接件钢板厚度、螺栓高度、节点位置与节点补强等因素对墙体抗震性能的影响;针对栓接墙体不同破坏模式建立了相应承载力计算公式。结果表明:与现浇墙体相比,螺栓连接墙体试验试件的承载能力有所降低,但变形能力与延性更好;提高螺栓高度、节点补强可使墙体破坏模式由混凝土冲切破坏变为钢板局部承压破坏,墙体的抗震承载力、抗侧刚度与变形能力均得到提高;减小钢板厚度及内移节点位置会显著降低墙体承载力;建立的承载力计算公式与试验及模拟结果吻合较好,可为该螺栓连接剪力墙在村镇建筑中的工程应用提供理论依据。 展开更多
关键词 村镇建筑 螺栓连接 冷拔钢丝网 抗震性能 参数分析
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螺栓连接梯形波纹腹板钢梁受剪试验与分析
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作者 高立强 袁焕鑫 +2 位作者 王奥迪 何昆松 杜新喜 《建筑钢结构进展》 北大核心 2025年第2期54-63,共10页
为研究螺栓连接梯形波纹腹板钢梁的受剪力学性能,设计并加工制作了6根螺栓连接梯形波纹腹板钢梁试件,开展钢梁受剪试验,试验结果表明所有试件的波纹腹板均发生了剪切屈曲破坏,并得到了波纹腹板的剪切屈曲临界荷载以及钢梁的受剪承载力... 为研究螺栓连接梯形波纹腹板钢梁的受剪力学性能,设计并加工制作了6根螺栓连接梯形波纹腹板钢梁试件,开展钢梁受剪试验,试验结果表明所有试件的波纹腹板均发生了剪切屈曲破坏,并得到了波纹腹板的剪切屈曲临界荷载以及钢梁的受剪承载力指标。在考虑材料非线性、几何非线性以及几何初始缺陷的基础上,建立了螺栓连接梯形波纹腹板钢梁的有限元模型,并与钢梁受剪试验结果进行对比,验证了所建立有限元模型的准确性。进一步开展有限元参数分析,探究了波纹腹板高度和厚度、波纹宽度以及螺栓间距对钢梁受剪承载力的影响规律。根据试验数据、76个有限元算例的分析结果,以及目前关于焊接梯形波纹腹板钢梁受剪承载力的计算方法,综合考虑T型钢翼缘的抗剪贡献,提出了螺栓连接梯形波纹腹板钢梁受剪承载力计算公式。 展开更多
关键词 梯形波纹腹板钢梁 受剪性能 螺栓连接 剪切屈曲 试验研究 有限元分析
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螺栓钢板连接预制混凝土轴压性能及承载力计算公式
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作者 杨延婷 葛琪 +6 位作者 左文豪 李国 熊峰 吕洋 孟永杰 刘鹏 宋瑛涵 《工程科学与技术》 北大核心 2025年第1期167-176,共10页
预制混凝土墙板结合夹心保温技术可大幅提升墙体的保温隔热性,提高建造速度和节能效率。本文设计了螺栓钢板拼接预制混凝土夹心墙板试件,开展试件的轴向压力荷载试验,研究其轴压性能,提出了考虑螺栓钢板拼接影响下的墙板轴心受压极限承... 预制混凝土墙板结合夹心保温技术可大幅提升墙体的保温隔热性,提高建造速度和节能效率。本文设计了螺栓钢板拼接预制混凝土夹心墙板试件,开展试件的轴向压力荷载试验,研究其轴压性能,提出了考虑螺栓钢板拼接影响下的墙板轴心受压极限承载力计算公式。试验结果表明:夹心墙板破坏模式主要为螺栓钢板节点上方以及墙趾两端混凝土的压溃,混凝土面板与夹心保温层在墙体底部轻微分层,墙体侧面出现较大竖向裂缝。将试件的试验轴向荷载承载力与本文提出的公式及现有的公式进行了对比,结果表明:国内现有公式计算值与试验值的差值百分比为5%,国外现有计算公式与试验值的差值百分比为45.7%~77.2%,然而本文提出的公式与试验值差值百分比仅为0.4%。国外现有的公式非常保守,本文提出的公式能够准确预测此种螺栓连接墙板的轴向承载力。在试验研究基础上,考虑了长细比、墙体厚度、连接件布置、混凝土边肋等参数,进一步建立有限元模型验证本文提出的公式。分析结果表明:数值模型的计算结果与本文提出的计算公式误差在–8.05%~2.65%之内,国内现有公式和国外现有公式与计算值误差分别在–2.25%~8.58%和41.61%~78.41%范围内,本文公式预测结果较为准确。最后,分析了各个参数对螺栓钢板拼接预制混凝土夹心墙板轴向承载能力的影响,发现墙板的配筋率对极限承载力无明显影响;合理布置GFRP连接件、设置竖向混凝土肋、减小墙板长细比和增加混凝土板厚度可以提高墙体承载性能。 展开更多
关键词 预制混凝土夹心墙体 螺栓钢板连接 轴压性能 有限元分析 承载力计算公式
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