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Seismic performance of interior precast concrete beam-column connections with T-section steel inserts under cyclic loading 被引量:16
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作者 Rattapon Ketiyot Chayanon Hansapinyo 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2018年第2期355-369,共15页
An experimental investigation was conducted to study the performance of precast beam-column concrete connections using T-section steel inserts into the concrete beam and joint core,under reversed cyclic loading.Six 2/... An experimental investigation was conducted to study the performance of precast beam-column concrete connections using T-section steel inserts into the concrete beam and joint core,under reversed cyclic loading.Six 2/3-scale interior beam-column subassemblies,one monolithic concrete specimen and five precast concrete specimens were tested.One precast specimen was a simple connection for a gravity load resistant design.Other precast specimens were developed with different attributes to improve their seismic performance.The test results showed that the performance of the monolithic specimen M1 represented ductile seismic behavior.Failure of columns and joints could be prevented,and the failure of the frame occurred at the flexural plastic hinge formation at the beam ends,close to the column faces.For the precast specimens,the splitting crack along the longitudinal lapped splice was a major failure.The precast P5 specimen with double steel T-section inserts showed better seismic performance compared to the other precast models.However,the dowel bars connected to the steel inserts were too short to develop a bond.The design of the precast concrete beams with lap splice is needed for longer lap lengths and should be done at the beam mid span or at the low flexural stress region. 展开更多
关键词 precast concrete beam-column connection cyclic loading
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Experimental study of hollow rectangular bridge column performance under vertical and cyclically bilateral loads 被引量:14
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作者 Han Qiang Du Xiuli +1 位作者 Yihui Zhou George C. Lee 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2013年第3期433-445,共13页
To investigate the seismic performance of hollow reinforced concrete (RC) bridge columns of rectangular cross section under constant axial load and cyclically biaxial bending, five specimens were tested. A parametri... To investigate the seismic performance of hollow reinforced concrete (RC) bridge columns of rectangular cross section under constant axial load and cyclically biaxial bending, five specimens were tested. A parametric study is carried out for different axial load ratios, longitudinal reinforcement ratios and lateral reinforcement ratios. The experimental results showed that all tested specimens failed in the flexural failure mode and their ultimate performance was dominated by flexural capacity, which is represented by the rupture/buckling of tensile longitudinal rebars at the bottom of the bridge columns. Biaxial force and displacement hysteresis loops showed significant stiffness and strength degradations, and the pinching effect and coupling interaction effect of both directions severely decrease the structural seismic resistance. However, the measured ductility coefficient varying from 3.5 to 5.7 and the equivalent viscous damping ratio varying from 0.19 and 0.26 can meet the requirements of the seismic design. The hollow RC rectangular bridge columns with configurations of lateral reinforcement in this study have excellent performance under bidirectional earthquake excitations, and may be considered as a substitute for current hollow RC rectangular section configurations described in the Guideline for Seismic Design of Highway Bridges (JTG/T B02-01-2008). The length of the plastic hinge region was found to approach one sixth of the hollow RC rectangular bridge column height for all specimen columns, and it was much less than those specified in the current JTG/T. Thus, the length of the plastic hinge region is more concentrated for RC rectangular hollow bridge columns. 展开更多
关键词 bridge columns hollow section cyclic loading test biaxial bending seismic performance
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Influence of Axial Load Ratio on Shear Behavior of Through-Diaphragm Connections of Concrete-Filled Square Steel Tubular Columns 被引量:2
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作者 张广泰 韩建红 +1 位作者 荣彬 Apostolos Fafitis 《Transactions of Tianjin University》 EI CAS 2015年第4期341-346,共6页
Nonlinear finite element analysis and parametric studies were carried out to study the influence of axial load ratio on the shear behavior of the through-diaphragm connections of concrete-filled square steel tubular c... Nonlinear finite element analysis and parametric studies were carried out to study the influence of axial load ratio on the shear behavior of the through-diaphragm connections of concrete-filled square steel tubular columns. The analysis reveals that smaller axial load ratio can improve the shear bearing capacity and ductility while larger axial load ratio will decrease the shear behavior of the through-diaphragm connections. The parametric studies indicate that the axial load ratio should be limited to less than 0.4 and its influence should be considered in the analysis and design of such connections. 展开更多
关键词 through-diaphragm connection concrete-filled square steel TUBULAR column AXIAL load ratio shearbearing capacity DUCTILITY
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A Study of Retention Time Gradient Effect of Gradientally Loaded Columns
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作者 Yun Xiqin, Kou Dengmin, Li Yanhong and Lu Xianyu (Department of Chemistry, Nankai University, Tianjin) 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 1990年第4期276-280,共5页
In this work, the 'retention time gradient effect' of gradient GC columns is intensively studied to establish some equations and formulas for structure calculation of chromatographic columns. In addition, the ... In this work, the 'retention time gradient effect' of gradient GC columns is intensively studied to establish some equations and formulas for structure calculation of chromatographic columns. In addition, the relevant computer programs are designed. 展开更多
关键词 GC column Gradientally loaded GC column Retention time Gradient effect
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Effects of Length and Location of Steel Corrosion on the Behavior and Load Capacity of Reinforced Concrete Columns 被引量:4
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作者 王小惠 刘西拉 邓宝如 《Journal of Shanghai Jiaotong university(Science)》 EI 2012年第4期391-400,共10页
The effects of length and location of the steel corrosion on the structural behavior and load capacity of reinforced concrete (RC) columns have been investigated. Results of the accelerated corrosion process and eccen... The effects of length and location of the steel corrosion on the structural behavior and load capacity of reinforced concrete (RC) columns have been investigated. Results of the accelerated corrosion process and eccentric load test are presented in detail. Effects of the location of the partial length, the corrosion level within partial length and the asymmetrical deterioration of the concrete section on the mechanical behavior and load capacity of corroded RC columns are discussed. It is found that the mechanical behavior and load carrying capacity of corroded RC columns are simultaneously affected by the above mentioned factors. For the corroded RC columns with large eccentricity, a higher corrosion level in the tensile corroded length and a greater asymmetrical deterioration of the concrete section can result in less ductile behavior and larger load reduction of the column; while for the corroded RC columns with small eccentricity, the less ductile behavior and the larger load reduction of the column may result from the higher corrosion level in the compressive corroded length and the greater asymmetrical deterioration of the concrete 展开更多
关键词 reinforced concrete (RC) column CORROSION partial length mechanical behavior load capacity
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Dynamic performance of angle-steel concrete columns under low cyclic loading-II:parametric study 被引量:16
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作者 Zheng Wenzhong Ji Jing 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2008年第2期137-146,共10页
Tests of nine angle-steel concrete column (ASCC) specimens under low cyclic loading are described in a companion paper (Zheng and Ji, 2008). In this paper, the skeleton curves from the numerical simulation are pre... Tests of nine angle-steel concrete column (ASCC) specimens under low cyclic loading are described in a companion paper (Zheng and Ji, 2008). In this paper, the skeleton curves from the numerical simulation are presented, and show good agreement with the test results. Furthermore, parametric studies are conducted to explore the influence of factors such as the axial compression ratio, shear steel plate ratio, steel ratio, prismatic concrete compression strength, yield strength of angle steel and shear span ratio, etc., on the monotonic load-displacement curves of the ASCCs. Based on a statistical analysis of the calculated results, hysteretic models for load-displacement and moment-curvature are proposed, which agree well with the test results. Finally, some suggestions concerning the conformation of ASCCs are proposed, which could be useful in engineering practice. 展开更多
关键词 low cyclic loading angle-steel concrete column shear-span ratio steel plate stirrup hysteretic model
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Finding the buckling load of non-uniform columns using the iteration perturbation method
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作者 Aref Afsharfard Anooshiravan Farshidianfar 《Theoretical & Applied Mechanics Letters》 CAS 2014年第4期59-64,共6页
The aim of this study is to calculate the critical load of variable inertia columns. The example studied in this paper can be used as a paradigm for other non-uniform columns. The wavelength of equivalent vibratory sy... The aim of this study is to calculate the critical load of variable inertia columns. The example studied in this paper can be used as a paradigm for other non-uniform columns. The wavelength of equivalent vibratory system is used to calculate the critical load of the trigonometrically varied inertia column. In doing so, the equilibrium equation of the column is theoretically studied using the perturbation method. Accuracy of the calculated results is evaluated by comparing the solution with numerical results. Effect of improving the initial guess on the solution accuracy is investigated. Effects of varying parameters of the trigonometrically varied inertia and the uniformly tapered columns on their stability behavior are studied. Finally, using the so-called "perfectibility" parameter, two design goals, i.e., being lightweight and being strong, are studied for the discussed columns. 展开更多
关键词 perturbation method critical load non-uniform column perfectibility
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Experimental research on behavior of 460 MPa high strength steel I-section columns under cyclic loading 被引量:5
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作者 Wang Jiaojiao Shi Gang Shi Yongjiu 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2014年第4期611-622,共12页
To investigate the seismic behavior of I-section columns made of 460 MPa high strength steel (HSS), six specimens were tested under constant axial load and cyclic horizontal load. The specimens were designed with di... To investigate the seismic behavior of I-section columns made of 460 MPa high strength steel (HSS), six specimens were tested under constant axial load and cyclic horizontal load. The specimens were designed with different width-to-thickness ratios and loaded under different axial load ratios. For each specimen, the failure mode was observed and hysteretic curve was measured. Comparison of different specimens on hysteretic characteristic, energy dissipation capacity and deformation capacity were further investigated. Test results showed that the degradation of bearing capacity was due to local buckling of flange and web. Under the same axial load ratio, as width-to-thickness ratio increased, the deformation area of local buckling became smaller. And also, displacement level at both peak load and failure load became smaller. In addition, the full extent of hysteretic curve, energy dissipation capacity, ultimate story drift angle decreased, and capacity degradation occurred more rapidly with the increase of width-to-thickness ratio or axial load ratio. Based on the capacity of story drift angle, limiting values which shall not be exceeded are suggested respectively for flange and web plate of 460 MPa HSS I-section columns when used in SMFs and in IMFs in the case of axial load ratio no more than 0.2. Such values should be smaller when the axial load ratio increases. 展开更多
关键词 high strength steel width-to-thickness ratio axial load ratio seismic behavior I-section column
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Behavior of eccentrically loaded concrete-filled GFRP tubular short columns
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作者 王清湘 关宏波 阮冰峰 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2011年第6期127-132,共6页
The glass fiber reinforced polymer (GFRP) tube is an effective material that can increase the bearing capacity and ductility of concrete.To study the mechanical behavior of this composite structure,twenty-one concrete... The glass fiber reinforced polymer (GFRP) tube is an effective material that can increase the bearing capacity and ductility of concrete.To study the mechanical behavior of this composite structure,twenty-one concrete-filled GFRP tubular short columns were tested under an eccentric load.The principle influencing factors,such as the eccentricity ratio,concrete strength and ratio of longitudinal reinforcement were also studied.In addition,the course of deformation,failure mode,and failure mechanism were analyzed by observing the phenomena and summarizing the data.The test results indicated that the strength and deformation characteristics of core concrete increase as a result of the addition of the GFRP tube.However,the gain in strength due to the addition of the GFRP tube decreases as the ratio of e /d increases.An increase in the longitudinal steel ratio can improve the bearing capacity of the composite short column effectively.Furthermore,the study showed that the constraint effect of the GFRP tube on high-strength concrete is not as effective as that on common concrete.The reason is that the lateral deformation of the high-strength concrete is less than that of the common concrete when the concrete column was tested under the same axial compression ratio. 展开更多
关键词 GFRP tube eccentric loading concrete short column composite structure
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Finite Element Analysis (FEA) for the Beam-Column Joint Subjected to Cyclic Loading Was Performed Using ANSYS
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作者 B. Venkatesan R. Ilangovan +2 位作者 P. Jayabalan N. Mahendran N. Sakthieswaran 《Circuits and Systems》 2016年第8期1581-1597,共17页
This paper analyses the seismic performance of exterior beam-column joints strengthened with unconventional reinforcement detailing. The beam-column joint specimens were tested with reverse cyclic loading applied at t... This paper analyses the seismic performance of exterior beam-column joints strengthened with unconventional reinforcement detailing. The beam-column joint specimens were tested with reverse cyclic loading applied at the beam end. The samples were divided into two groups based on the joint reinforcement detailing. The first group (Group A) of three non-ductility specimens had joint detailing in accordance with the construction code of practice in India IS456-2000, and the second group (Group B) of three ductility specimens had joint reinforcement detailed as per IS13920-1993, with similar axial load cases as the first group. The experimental studies are proven with the analytical studies carried out by finite element models using ANSYS. The results show that the hysteresis simulation is satisfactory for both un-strengthened and ferrocement strengthened specimens. Furthermore, when ferrocement strengthening is employed, the strengthened beam-column joints exhibit better structural performance than the un-strengthened specimens of about 31.56% and 38.98 for DD-T1 and DD-T2 respectively. The analytical shear strength predictions were in line with the test results reported in the literature, thus adding confidence to the validity of the proposed models. 展开更多
关键词 Beam-column Joints Cyclic load FERROCEMENT DUCTILITY Hysteresis Curve ANSYS
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Seismic Behavor of RC Beam-Column Joint with Additional Bars under Cyclic Loading
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作者 LU Xilin Tonny H. URUKAP LI Sen 《结构工程师》 2011年第B01期306-312,共7页
The behavior of Beam-Column Joints in moment resisting frame structures are susceptible to damage caused by seismic effects due to poor performance of the joint.A good number of researches were carried out to understa... The behavior of Beam-Column Joints in moment resisting frame structures are susceptible to damage caused by seismic effects due to poor performance of the joint.A good number of researches were carried out to understand the complex mechanism of RC joints which are considered in seismic design code practices presently adopted.The traditional construction detailing of transverse reinforcement have shown serious joint failure. This paper introduces a new design philosophy involving the use of additional diagonal bars within the joint particularly suitable for low to medium seismic effects in earthquake zones throughout the world.In lieu to this study,ten(10) full-scale interior beam-column specimens were constructed with various additional reinforcement details and configurations as will be discussed in the later.The experiment provided adequate results to proof the idea of additional bars as suitable approach in reinforced concrete structures where earthquake is eminent.While compared with overall cracking observation during the test,the specimen with additional bars (diagonal and straight) had shown few cracks on the column than the ones without.Furthermore,concrete confinement is certainly an important design method as recommended by certain international codes. 展开更多
关键词 地震学 理论 方法 地震波
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Dynamic performance of angle-steel concrete columns under low cyclic loading-I:Experimental study 被引量:21
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作者 郑文忠 计 静 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2008年第1期67-75,共9页
This paper describes low cyclic loading testing of nine angle-steel concrete column (ASCC) specimens. In the tests, the influence of the shear-span ratio, axial compression ratio and shear steel plate ratio on the h... This paper describes low cyclic loading testing of nine angle-steel concrete column (ASCC) specimens. In the tests, the influence of the shear-span ratio, axial compression ratio and shear steel plate ratio on the hysteretic behavior, energy dissipation, strength degradation, stiffness degradation, skeleton curve and ductility of the ASCCs is studied. Based on the test results, some conclusions are presented. The P-A and sectional M -φ hysteretic models for the ASCCs are presented in a companion paper (Zheng and Ji, 2008). 展开更多
关键词 cyclic loading test DUCTILITY hysteretic model angle-steel concrete column shear-span ratio steel platestirrup steel jacketing seismic retrofitting
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局部残损长木柱轴压性能试验研究
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作者 褚云朋 曾梦倩 +2 位作者 李正兴 谭森龙 古松 《西安建筑科技大学学报(自然科学版)》 北大核心 2026年第1期1-14,34,共15页
在古建筑木结构中木柱常会发生局部残损破坏,导致承载性能明显降低.为获得残损圆形柱的承载性能退化规律,采用人工切除局部腐朽木材的方法模拟其局部残损.考虑残损面积、残损方式及残损位置等因素,对9根不同残损程度的柱进行轴压试验及... 在古建筑木结构中木柱常会发生局部残损破坏,导致承载性能明显降低.为获得残损圆形柱的承载性能退化规律,采用人工切除局部腐朽木材的方法模拟其局部残损.考虑残损面积、残损方式及残损位置等因素,对9根不同残损程度的柱进行轴压试验及有限元分析.获得其轴压性能,并通过与完好柱对比,分析残损柱的极限承载力和刚度退化规律.结果表明:柱的残损面积、残损方式及残损位置对柱的承载力都有影响,其中残损面积影响较大.随柱残损位置下降其破坏模式由受拉破坏转为受压破坏;残损位置越靠近柱中,受力越不利;柱的残损长度越长,承载力越低.柱的极限承载力随残损面积的增加而减小,当残损面积为70.20%时,极限承载力仅为完好柱的6.49%.柱的残损面积增大刚度会降低,当残损面积比为70.20%时,刚度退化系数为4.71%. 展开更多
关键词 残损木柱 轴压承载性能 承载力退化 极限承载力 破坏模式
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基于成层透明土的碎石桩承载特性研究
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作者 吴跃东 彭博览 +1 位作者 刘坚 吴正泽 《粉煤灰综合利用》 2026年第1期141-148,共8页
为揭示碎石桩的承载变形机理、探究碎石桩破坏机理,采用不同成层土分布、不同碎石粒径级配,基于透明土技术,开展成层透明土的碎石桩室内模型试验。结果表明:随着砂土层厚度增大,碎石桩承载力随之提高;碎石桩更适用于上砂下黏成层土中砂... 为揭示碎石桩的承载变形机理、探究碎石桩破坏机理,采用不同成层土分布、不同碎石粒径级配,基于透明土技术,开展成层透明土的碎石桩室内模型试验。结果表明:随着砂土层厚度增大,碎石桩承载力随之提高;碎石桩更适用于上砂下黏成层土中砂黏土层厚度比0.6~1.0的地基土;桩体最大鼓胀变形均易发生在黏土层顶部约1倍直径左右的深度处;在成层土中,不均匀系数较大、摩擦角较大的良好级配碎石桩,更能充分发挥其静力承载力与整体刚度。研究成果揭示了复杂土层环境下成层土分布和碎石粒径对碎石桩单桩承载能力特性的影响规律。 展开更多
关键词 成层土 碎石桩 透明土 静载试验 承载特性
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全螺栓拼接H型截面柱静力承载和滞回性能试验研究
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作者 郭盛 刘桥 +2 位作者 彭俊 高飞 陈俊波 《中南大学学报(自然科学版)》 北大核心 2026年第1期259-272,共14页
为设计一种满足装配式受力性能和工厂标准化生产要求的柱拼接节点,获得更高的承载力、更稳定的柱拼接形式,推动钢结构建筑进一步发展,助力实现建筑领域节能降碳,本文设计制作了3类全螺栓拼接H型截面拼接钢柱,通过静力试验和滞回试验得到... 为设计一种满足装配式受力性能和工厂标准化生产要求的柱拼接节点,获得更高的承载力、更稳定的柱拼接形式,推动钢结构建筑进一步发展,助力实现建筑领域节能降碳,本文设计制作了3类全螺栓拼接H型截面拼接钢柱,通过静力试验和滞回试验得到这3类拼接节点钢柱的破坏模式、静力承载力、滞回曲线、骨架曲线以及延性等,进而评价这3类拼接柱试件的静力承载与滞回性能。研究结果表明:静力试验中3类拼接试件的破坏模式类似,一字型拼接试件极限承载力和极限位移比其他试件的低,U型拼接试件的极限承载力最大,Z型拼接试件极限位移最大;滞回试验中3类拼接试件的极限荷载和极限位移均相近,一字型和Z型拼接试件的延性接近,相比之下,U型拼接试件延性有所提升,一字型拼接试件的耗能能力略低于其他拼接试件的耗能能力,Z型和U型拼接试件的耗能能力相近。U型拼接和Z型拼接各有优点,U型拼接装配简单、整体性更好,而Z型拼接由于拼接面存在高差,承载更稳定,可结合施工要求合理选择拼接形式。 展开更多
关键词 H型钢柱 全螺栓拼接节点 静力承载 滞回性能 延性
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柱壁加强型CFST框架异形柱节点抗震试验及构造优化研究
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作者 陈安英 袁礼正 +2 位作者 王波 完海鹰 王兆峰 《合肥工业大学学报(自然科学版)》 北大核心 2026年第1期102-110,118,共10页
为研究柱壁加强型钢管混凝土(concrete-filled steel tube,CFST)框架异形柱节点的抗震性能,文章通过改变柱壁加强区厚度与高度设计3个试验试件,并对其进行低周反复加载。结果表明:各试件主要发生钢梁翼缘的塑性铰破坏,滞回曲线整体为饱... 为研究柱壁加强型钢管混凝土(concrete-filled steel tube,CFST)框架异形柱节点的抗震性能,文章通过改变柱壁加强区厚度与高度设计3个试验试件,并对其进行低周反复加载。结果表明:各试件主要发生钢梁翼缘的塑性铰破坏,滞回曲线整体为饱满梭形,各试件承载力较好,节点具备良好的抗震性能;利用ABAQUS有限元软件建立3个试验试件的有限元模型,对比试验与有限元模拟的破坏模式、曲线以及应变分布规律,验证了有限元模拟方法的可靠性,并通过分析进一步明确了节点的抗震性能。试验过程中也出现了钢牛腿与钢梁翼缘的对接焊缝撕裂较早,影响节点耗能能力与延性的充分发挥,基于已验证的有限元模拟方法,研究减小钢牛腿壁板厚度与“狗骨式”构造对于节点抗震性能以及减小焊缝位置断裂风险的影响,结果表明这2种构造可以有效降低焊缝位置的断裂风险,基于设计要求,建议钢牛腿斜坡坡度不小于1∶6.25,钢梁翼缘削弱比例不大于0.267。 展开更多
关键词 钢管混凝土(CFST) 异形柱节点 低周反复加载 有限元分析 构造优化 断裂指数
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RC框架结构梁柱节点的轴力变化规律及加载制度
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作者 杨红 王子炎 蒋惠 《土木与环境工程学报(中英文)》 北大核心 2026年第1期127-141,共15页
钢筋混凝土(RC)梁柱节点的抗震性能一般是基于定轴力加载试验获得。由于缺乏有依据的变轴力加载制度,仅少数RC节点抗震性能试验研究考虑了变轴力的影响,且均假定轴力按简化的线性规律变化,难以反映水平地震作用下RC框架结构梁柱节点的... 钢筋混凝土(RC)梁柱节点的抗震性能一般是基于定轴力加载试验获得。由于缺乏有依据的变轴力加载制度,仅少数RC节点抗震性能试验研究考虑了变轴力的影响,且均假定轴力按简化的线性规律变化,难以反映水平地震作用下RC框架结构梁柱节点的真实受力特征。在OpenSees平台上,通过对6个不同层数、跨度的8度0.2g区平面RC框架进行单调加载和循环往复加载有限元模拟,分析水平荷载作用下节点轴力的变化机理以及影响节点轴力变化的因素。在理论分析的基础上,经统计回归,提出与轴力变化特征相符、能考虑材料非线性受力特性的节点变轴力加载制度。结果表明,混凝土、钢筋的材料非线性是节点轴力非线性变化的根本原因,梁端纵筋受拉屈服是节点轴力变化的主要影响因素;提出的节点轴力变化幅度计算式能合理考虑节点类型、结构总层数、梁跨度、梁纵筋面积、梁截面尺寸的影响;提出的节点变轴力加载制度的骨架曲线能较好地反映节点以上各楼层梁端纵筋受拉屈服后节点轴力变化速率逐渐减慢的特点,其滞回规则能合理地考虑材料非线性受力对卸载刚度退化的影响。 展开更多
关键词 钢筋混凝土 框架结构 梁柱节点 变轴力 轴力加载制度
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单柱式吸能支架-巷道围岩系统动力响应数值分析
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作者 唐治 程诗阳 《华北科技学院学报》 2026年第1期154-163,共10页
为探究单柱式吸能支架在动态冲击载荷下与巷道围岩的协同响应机制,采用ABAQUS数值模拟方法,通过分析巷道围岩应力、围岩变形、围岩塑性应变和支架变形等力学参数,研究吸能巷道支架在竖向、横向冲击下的动力响应特性。研究结果表明,在竖... 为探究单柱式吸能支架在动态冲击载荷下与巷道围岩的协同响应机制,采用ABAQUS数值模拟方法,通过分析巷道围岩应力、围岩变形、围岩塑性应变和支架变形等力学参数,研究吸能巷道支架在竖向、横向冲击下的动力响应特性。研究结果表明,在竖向冲击下,随着冲击能量的增加,巷道围岩应力、顶板下沉量、底鼓量、横向收缩量等指标均呈上升趋势,极易引发底板鼓起、侧帮变形及支柱钻底等破坏现象。与单体立柱支护相比,吸能巷道支架支护时围岩应力峰值接近,但应力集中区域缩小,顶板下沉量、底鼓量及横向收缩量均有不同程度降低,且支架与巷道在横、竖向位移上呈现协同效应,巷道围岩塑性变形呈“A”分布,主要集中巷道侧帮与巷道顶板连接处及侧帮部位。在横向冲击下,单体立柱向左偏移,发生侧向弯曲变形,导致承载能力大幅衰减。吸能支架支护能有效限制巷道横向位移,对顶底板错动及侧帮挤压有显著约束作用,吸能巷道支架的侧向支撑与吸能防冲器的协同作用显著改善单体立柱的偏载。研究结果为动载作用下巷道围岩控制提供参考。 展开更多
关键词 单柱式 巷道支架 动载 巷道围岩
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承载立柱在复合垫层装药结构下爆破破坏机理研究
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作者 王仕林 刘涛 +5 位作者 杨涛涛 李洪伟 刘伟 梁昊 张立果 许博 《爆破》 北大核心 2026年第1期11-19,共9页
为实现建筑物定向爆破拆除中最后一排承载立柱的减弱爆破损伤控制,提出运用复合垫层装药结构对最后一排承载立柱支撑结构进行减弱爆破。基于复合垫层作用的力学机制的基础上设计与现场为背景的相似模型试验,结合超动态应变仪、高速摄影... 为实现建筑物定向爆破拆除中最后一排承载立柱的减弱爆破损伤控制,提出运用复合垫层装药结构对最后一排承载立柱支撑结构进行减弱爆破。基于复合垫层作用的力学机制的基础上设计与现场为背景的相似模型试验,结合超动态应变仪、高速摄影、数字图像技术(DIC)等测量手段分析不同装药结构下的承载立柱爆破损伤,探究不同炸药当量下复合垫层装药结构对承载立柱的破坏特征、应变演化规律的影响特性并分析爆破后残余承重柱的极限承载力。结果表明:复合垫层装药结构具有明显的孔底损伤控制效果,反向聚能作用使得承载立柱的损伤主要在孔口所在面上,炮孔底部预保留混凝土保留较好,承重柱在倒塌方向形成缺口的同时保留后部混凝土使承重构件有足够的支撑强度形成转动铰支点,从而使建筑物能够精确按照设定方向倒塌。研究成果可为定向爆破提供一定参考依据,提高爆破安全性的同时提高精确性。 展开更多
关键词 减弱爆破 复合垫层 承载立柱 模型实验
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中心立柱型式对一种新型TLP浮式风机基础动力响应的影响研究
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作者 杨成林 杨辉 +1 位作者 钟文军 黄豪彩 《船海工程》 北大核心 2026年第1期14-23,共10页
提出一种新型的张力腿浮式风机基础,设计3种模型,探究中心立柱型式对其水动力响应的影响。研究平台纵荡、纵摇和垂荡运动在频域(包括附加质量及势流阻尼、RAO和波浪载荷传递函数)和时域(包括一阶波浪载荷与二阶和频波浪载荷)的响应,重... 提出一种新型的张力腿浮式风机基础,设计3种模型,探究中心立柱型式对其水动力响应的影响。研究平台纵荡、纵摇和垂荡运动在频域(包括附加质量及势流阻尼、RAO和波浪载荷传递函数)和时域(包括一阶波浪载荷与二阶和频波浪载荷)的响应,重点分析不同频率波浪对筋腱的张力响应的贡献情况。通过3种模型的对比,发现小水线面面积和桁架式结构是更优的设计,其对减小二阶和频波浪载荷及改善筋腱张力响应有重要作用。 展开更多
关键词 张力腿风电平台 中心立柱 水线面面积 和频波浪载荷 张力响应
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