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Experimental and numerical study regarding H-steel all-bolted connection steel frame with composite wall boards
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作者 Fan Min Guo Hongchao +2 位作者 Li Shen Wang Zhenshan Wang Huaqiang 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2024年第2期427-443,共17页
H-steel all-bolted connection steel frame structures with heat preservation and decoration composite wall boards were investigated and the seismic performances of three scaled specimens were studied.The failure modes,... H-steel all-bolted connection steel frame structures with heat preservation and decoration composite wall boards were investigated and the seismic performances of three scaled specimens were studied.The failure modes,hysteresis curves,bearing capacity,ductility,energy dissipation capacity,stiffness degradation and strain distribution were discussed.The calculation method of structural theoretical internal force was presented.The results showed that the overall structural seismic performance was better,and the structural ductility met the demands of elastic-plastic inter-story drift angle for seismic design.The H-steel weak-axis connection structure obtained better energy dissipation capacity,and its bearing capacity and stiffness were slightly different from the strong-axis connection.The heat preservation and decoration performance of composite wallboard and the all-bolted connection of the steel frame realized prefabrication during the whole construction period.The plastic hinge of the steel beam can be moved outwards because of the L-angles,which effectively avoids stress concentration in joint areas and expands the plastic hinge range.The errors between the theoretical structural capacity calculated by the plastic analysis method and the test results were within 2.44%.In addition,structural failure mechanisms and bearing capacities were verified by the finite element(FE)analysis,and the effects of the main parameters on the structures were investigated.The FE verification results were the same as in the test.The research results provide theoretical support and technical guidance for the application of thermal insulation and decorative composite wall panels in H-shaped steel all-bolted steel frames. 展开更多
关键词 composite wall boards all-bolted steel frame H-steel low-cyclic loading failure modes
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Experimental study on seismic behaviors of steel-concrete composite frames 被引量:2
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作者 戚菁菁 蒋丽忠 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第11期4396-4413,共18页
Steel-concrete composite frames are seeing increased use in earthquake region because of their excellent structural characteristics, including high strength, stiffness, and good ductility. However, there exist gaps in... Steel-concrete composite frames are seeing increased use in earthquake region because of their excellent structural characteristics, including high strength, stiffness, and good ductility. However, there exist gaps in the knowledge of seismic behavior and the design provisions for these structures. In order to better understand the seismic behaviors of composite frame systems, eight steel-concrete composite frames were designed. These composite frames were composed of steel-concrete composite beams and concrete filled steel tube columns. The axial compression ratio of column, slenderness ratio and linear stiffness ratio of beam to column were selected as main design parameters. The low reversed cyclic loading tests of composite frame system were carried out. Based on test results, the seismic behaviors of composite frames such as failure mode, hysteresis curve, strength degradation, rigidity degradation, ductility and energy dissipation were studied. Known from the test phenomenon, the main cause of damage is the out-of-plane deformation of steel beam and the yielding destruction of column heel. The hysteretic loops of composite frame appear a spindle shape and no obvious pinch phenomenon. The results demonstrate that this type of composite frame has favorable seismic behaviors. Furthermore, the effects of design parameters on seismic behaviors were also discussed. The results of the experiment show that the different design parameter has different influence rule on seismic behaviors of composite frame. 展开更多
关键词 composite frame STEEL-CONCRETE composite BEAM conc
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Effects of interface slip and semi-rigid joint on elastic seismic response of steel-concrete composite frames 被引量:5
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作者 戚菁菁 蒋丽忠 《Journal of Central South University》 SCIE EI CAS 2010年第6期1327-1335,共9页
The stiffness matrix of semi-rigidly connected composite beams considering interface slip was established and the calculation method for elastic seismic response of composite frame was derived.The corresponding calcul... The stiffness matrix of semi-rigidly connected composite beams considering interface slip was established and the calculation method for elastic seismic response of composite frame was derived.The corresponding calculation programs were developed.Introducing the dimensionless quantities that were related to the connector shearing stiffness and the joint rotation stiffness,the influences of interface slip and semi-rigid joint on composite frame were transferred to quantitative parameter analysis,taking account of cross sectional properties,materials and linear stiffness of composite beam synthetically.Based on the calculation programs,free vibration frequencies and seismic responses of semi-rigid joint steel-concrete composite frame considering interface slip were calculated.The influences of interface slip and semi rigid joint on dynamic characteristics and seismic response were analyzed and the seismic design advices were presented.The results show that the interface slip decreases the free vibration frequencies and increase the seismic responses of composite frame.The semi-rigid joint reduces the free vibration frequencies and increases seismic responses of composite frame compared with rigid joint.With the increase of joint rotational stiffness,the elastic seismic responses of composite frame increase firstly and then decrease.The effects are related to the ratio of joint rotation stiffness to linear stiffness of composite beam. 展开更多
关键词 composite frame interface slip semi-rigid joint dynamic characteristic shearing stiffness rotation stiffness seismicresponse
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Integrated design optimization of composite frames and materials for maximum fundamental frequency with continuous fiber winding angles 被引量:3
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作者 Zunyi Duan Jun Yan +2 位作者 Ikjin Lee Jingyuan Wang Tao Yu 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2018年第6期1084-1094,共11页
Fiber reinforced composite frame structure is an ideal lightweight and large-span structure in the fields of aerospace,satellite and wind turbine.Natural fundamental frequency is one of key indicators in the design re... Fiber reinforced composite frame structure is an ideal lightweight and large-span structure in the fields of aerospace,satellite and wind turbine.Natural fundamental frequency is one of key indicators in the design requirement of the composite frame since structural resonance can be effectively avoided with the increase of the fundamental frequency.Inspired by the concept of integrated design optmization of composite frame structures and materials,the design optimization for the maximum structural fundamental frequency of fiber reinforced frame structures is proposed.An optimization model oriented at the maximum structural fundamental frequency under a composite material volume constraint is established.Two kinds of independent design variables are optimized,in which one is variables represented structural topology,the other is variables of continuous fiber winding angles.Sensitivity analysis of the frequency with respect to the two kinds of independent design variables is implemented with the semi-analytical sensitivity method.Some representative examples in the manuscript demonstrate that the integrated design optimization of composite structures can effectively explore coupled effects between structural configurations and material properties to increase the structural fundamental frequency.The proposed integrated optimization model has great potential to improve composite frames structural dynamic performance in aerospace industries. 展开更多
关键词 Integrated OPTIMIZATION MAXIMUM FUNDAMENTAL frequency composite frame structures Continuous fiber WINDING angle SEMI-ANALYTICAL sensitivity analysis
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Concurrent multi-scale design optimization of composite frame structures using the Heaviside penalization of discrete material model 被引量:6
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作者 Jun Yan Zunyi Duan +1 位作者 Erik Lund Guozhong Zhao 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2016年第3期430-441,共12页
This paper deals with the concurrent multi-scale optimization design of frame structure composed of glass or carbon fiber reinforced polymer laminates. In the composite frame structure, the fiber winding angle at the ... This paper deals with the concurrent multi-scale optimization design of frame structure composed of glass or carbon fiber reinforced polymer laminates. In the composite frame structure, the fiber winding angle at the micro-material scale and the geometrical parameter of components of the frame in the macro-structural scale are introduced as the independent variables on the two geometrical scales. Considering manufacturing requirements, discrete fiber winding angles are specified for the micro design variable. The improved Heaviside penalization discrete material optimization interpolation scheme has been applied to achieve the discrete optimization design of the fiber winding angle. An optimization model based on the minimum structural compliance and the specified fiber material volume constraint has been established. The sensitivity information about the two geometrical scales design variables are also deduced considering the characteristics of discrete fiber winding angles. The optimization results of the fiber winding angle or the macro structural topology on the two single geometrical scales, together with the concurrent two-scale optimization, is separately studied and compared in the paper. Numerical examples in the paper show that the concurrent multi-scale optimization can further explore the coupling effect between the macro-structure and micro-material of the composite to achieve an ultralight design of the composite frame structure. The novel two geometrical scales optimization model provides a new opportunity for the design of composite structure in aerospace and other industries. 展开更多
关键词 composite frame structure Multi-scale optimization Topology optimization Fiber winding angle Structural compliance
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Seismic retrofitting of reinforced concrete frame structures using GFRP-tube-confined-concrete composite braces 被引量:1
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作者 Nasim S. Moghaddasi B Zhang Yunfeng Hu Xiaobin 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2012年第1期91-105,共15页
This paper presents a new type of structural bracing intended for seismic retrofitting use in framed structures. This special composite brace, termed glass-fiber-reinforced-polymer (GFRP)-tube-confined-concrete comp... This paper presents a new type of structural bracing intended for seismic retrofitting use in framed structures. This special composite brace, termed glass-fiber-reinforced-polymer (GFRP)-tube-confined-concrete composite brace, is comprised of concrete confined by a GFRP tube and an inner steel core for energy dissipation. Together with a contribution from the GFRP-tube confined concrete, the composite brace shows a substantially increased stiffness to control story drift, which is often a preferred feature in seismic retrofitting. An analysis model is established and implemented in a general finite element analysis program - OpenSees, for simulating the load-displacement behavior of the composite brace. Using this model, a parametric study of the hysteretic behavior (energy dissipation, stiffness, ductility and strength) of the composite brace was conducted under static cyclic loading and it was found that the area ratio of steel core to concrete has the greatest influence among all the parameters considered. To demonstrate the application of the composite brace in seismic retrofitting, a three-story nonductile reinforced concrete (RC) frame structure was retrofitted with the composite braces. Pushover analysis and nonlinear time-history analyses of the retrofitted RC frame structure was performed by employing a suite of 20 strong ground motion earthquake records. The analysis results show that the composite braces can effectively reduce the peak seismic responses of the RC frame structure without significantly increasing the base shear demand. 展开更多
关键词 BRACE composite confined concrete glass-fiber-reinforced polymer frame nonlinear analysis RETROFIT seismic
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Determination Method on Initial Pretension of Cables in Steel Mega Frame and Prestressed Composite Bracing Structure
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作者 唐柏鉴 王飞 顾盛 《Journal of Donghua University(English Edition)》 EI CAS 2013年第6期455-460,共6页
Determining initial pretension values of pre-stressed cables is one of the key problems for a steel mega frame and pre-stressed composite bracing structure.Through the mechanical analysis of the composite bracing unde... Determining initial pretension values of pre-stressed cables is one of the key problems for a steel mega frame and pre-stressed composite bracing structure.Through the mechanical analysis of the composite bracing under vertical loading,the critical factors deciding the initial pretention value were found.According to these factors,a rule for the initial pretension value was put forward.The determination equations were acquired based on the principle of force equilibrium at nodes.The numerical results indicate that the internal force disequilibrium in composite bracings resulted from symmetrical load can be eliminated only in a symmetrical way,so that initial pretention values are decided only by vertical loads.The influencing coefficient leveling method,taking into account interactions between story and story,is accurate and feasible. 展开更多
关键词 pre-stressed steel structure mega frame composite bracing initial presention influencin coefllcient levelinf method
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Roof Frame from Bamboo Concrete Composite
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作者 Sri Murni Dewi Tedy Wonlele 《材料科学与工程(中英文B版)》 2011年第1期113-116,共4页
关键词 混凝土复合材料 框架 屋顶 混凝土结构 压缩强度 森林保护 强度变化 轴向力
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Weighted Composition Operators That Preserve Frames On Weighted Hardy Spaces
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作者 Ya Li Dong Rui Liu Guo Xiang Lu 《Acta Mathematica Sinica,English Series》 SCIE CSCD 2024年第7期1645-1654,共10页
In this paper, we characterize weighted composition operators that preserve frames on the weighted Hardy spaces in the unit disk. In particular, we obtain the symbol properties of the bounded invertible weighted compo... In this paper, we characterize weighted composition operators that preserve frames on the weighted Hardy spaces in the unit disk. In particular, we obtain the symbol properties of the bounded invertible weighted composition operators. Moreover, we establish the equivalence between bounded invertible operators and frame-preserving operators. Furthermore, we show that weighted composition operator preserves frames if and only if it preserves the Riesz bases property. Additionally,we investigate the weighted composition operators that preserve tight or normalized tight frames on the Dirichlet space. 展开更多
关键词 Weighted composition operators Weighted Hardy spaces frames invertible
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Shear-resistant behavior of light composite shear wall
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作者 李升才 董毓利 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第7期2768-2775,共8页
Shear test results for a composite wall panel in a light composite structure system are compared with test results for shear walls in Japan.The analysis results show that this kind of composite wall panel works very w... Shear test results for a composite wall panel in a light composite structure system are compared with test results for shear walls in Japan.The analysis results show that this kind of composite wall panel works very well,and can be regarded as a solid panel.The composite wall panel with a hidden frame is essential for bringing its effect on shear resistance into full play.Comprehensive analysis of the shear-resistant behavior of the composite wall panel suggests that the shear of the composite shear wall panel can be controlled by the cracking strength of the web shearing diagonal crack. 展开更多
关键词 composite shear wall shear test hidden frame shear design cracking strength shearing diagonal crack
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装配式轻钢框架-轻钢骨架轻混凝土墙板结构抗震性能 被引量:5
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作者 曹万林 杨兆源 《北京工业大学学报》 CAS CSCD 北大核心 2024年第2期165-179,共15页
为研究装配式轻钢框架-轻钢骨架轻混凝土墙板结构抗震性能,对1个足尺轻钢框架结构试件和3个足尺轻钢框架-轻钢骨架轻混凝土墙板结构试件进行了低周反复荷载下的抗震性能试验及理论分析,试件变量包括:2种装配构造,即内嵌式装配墙板、外... 为研究装配式轻钢框架-轻钢骨架轻混凝土墙板结构抗震性能,对1个足尺轻钢框架结构试件和3个足尺轻钢框架-轻钢骨架轻混凝土墙板结构试件进行了低周反复荷载下的抗震性能试验及理论分析,试件变量包括:2种装配构造,即内嵌式装配墙板、外贴式装配墙板;2种轻钢骨架轻混凝土墙板,即框架式轻钢骨架轻混凝土墙板、桁架式轻钢骨架轻混凝土墙板。研究了各试件的破坏特征和损伤演化过程,分析了结构滞回特性、承载力、变形能力、刚度退化、耗能性能和应变。结果表明:装配式轻钢框架-轻钢骨架轻混凝土墙板结构共同工作性能良好,其水平承载力相比轻钢框架提高了204.7%~210.4%,抗侧刚度提高了257.3%~512.5%,结构变形及耗能能力有显著提高;内嵌墙板的自攻钉连接构造以及外贴墙板的螺栓连接构造传力性能可靠,结构具备2道抗震防线的受力特征;基于简化塑性分析模型以及拉压杆软化桁架模型,对试件承载力进行了计算,计算结果与试验符合较好。 展开更多
关键词 装配式组合结构 轻钢框架 轻钢骨架轻混凝土墙板 抗震性能 低周反复荷载试验 承载力计算
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装配式型钢混凝土叠合框架梁连接节点构造设置与安全分析 被引量:1
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作者 林琳 《佳木斯大学学报(自然科学版)》 CAS 2024年第1期111-114,共4页
住房和城乡建设部印发《“十四五”建筑业发展规划》提出大力发展装配式建筑、推动生产和施工智能化升级的主要任务。而国内目前采用的预制叠合框架梁存在着跨度大自重大吊装成本高、预制梁柱节点位置易发生钢筋碰撞吊装定位难度大等问... 住房和城乡建设部印发《“十四五”建筑业发展规划》提出大力发展装配式建筑、推动生产和施工智能化升级的主要任务。而国内目前采用的预制叠合框架梁存在着跨度大自重大吊装成本高、预制梁柱节点位置易发生钢筋碰撞吊装定位难度大等问题,限制了装配式建筑结构的发展。结合实际工程项目,提出一种新型的装配式型钢混凝土叠合框架梁,并对该叠合梁的构造设置、连接方式及安全性进行分析,从而为装配式框架结构、框架—剪力墙结构等装配式建筑中框架梁的深化设计提供一种新的拆分方案。 展开更多
关键词 装配式建筑 型钢混凝土结构 叠合框架梁 构造设置 安全性分析
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具有内阻的旋转锥形复合材料刀杆铣削过程稳定性的仿真分析
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作者 任勇生 张玉环 张金峰 《工程力学》 EI CSCD 北大核心 2024年第1期229-248,共20页
研究考虑材料内阻的旋转圆锥形复合材料刀杆铣削系统的再生颤振稳定性。基于复合材料粘弹性本构关系、Hamilton原理和Rayleigh梁理论,结合再生时滞铣削力模型,分别导出旋转坐标以及惯性坐标表示的颤振偏微分方程。采用Galerkin法对颤振... 研究考虑材料内阻的旋转圆锥形复合材料刀杆铣削系统的再生颤振稳定性。基于复合材料粘弹性本构关系、Hamilton原理和Rayleigh梁理论,结合再生时滞铣削力模型,分别导出旋转坐标以及惯性坐标表示的颤振偏微分方程。采用Galerkin法对颤振偏微分方程进行离散化。基于自由振动分析和能量法计算复合材料刀杆的模态损耗因子;基于特征值分析技术计算旋转复合材料刀杆的临界速度和失稳阈。采用时域半离散法和频域零阶近似解法,预测切削系统的稳定性。分析锥度比、长径比、铺层角、铺层方式,以及内、外阻对切削稳定性的影响。计算结果表明,轴对称旋转刀杆铣削过程在两种坐标系下的稳定性预测结果是一致的。研究发现,在高转速下,由于旋转复合材料刀杆内阻的作用,切削系统出现新的不稳定区域。这些新的不稳定区域的起始转速等于旋转复合材料刀杆的失稳阈。 展开更多
关键词 旋转复合材料刀杆 材料内阻 铣削颤振 对称刀杆 固定和旋转坐标系
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整体化“E”形复合材料框成型工艺设计
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作者 孟庆杰 张旺 +1 位作者 顾雪琳 张仁旺 《纤维复合材料》 CAS 2024年第3期39-42,共4页
随着航空先进复合材料应用愈发广泛,复合材料零件的形式逐渐增多,应用也愈发广泛,框是飞机的重要组成部分,常用作机身隔框或其他骨架零件,其直接影响着飞机的外形准确度和结构承载能力,“E”形复合材料框的巧妙设计和尝试提高了复合材... 随着航空先进复合材料应用愈发广泛,复合材料零件的形式逐渐增多,应用也愈发广泛,框是飞机的重要组成部分,常用作机身隔框或其他骨架零件,其直接影响着飞机的外形准确度和结构承载能力,“E”形复合材料框的巧妙设计和尝试提高了复合材料框的整体化水平,避免了金属框类零件难加工、疲劳性差等缺点,分析此“E”形复合材料框零件的结构特点,基于真空袋-热压罐成型方法,阐述了该类零件成型的工艺难点和关键控制点,巧妙设计成型工装方案,严格控制工艺操作流程,制造出内部质量好、外形尺寸精准、外观良好的复合材料“E”形框零件。 展开更多
关键词 复合材料 E形 真空袋-热压罐成型
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装配式轻钢框架-短肢组合墙结构抗震性能研究
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作者 曹万林 杨兆源 +1 位作者 刘岩 陈建伟 《建筑结构》 北大核心 2024年第20期10-18,共9页
为研究装配式轻钢框架-短肢组合墙结构的抗震性能,对3个足尺试件(1个轻钢框架结构、1个轻钢框架-短肢桁架结构、1个轻钢框架-短肢桁架组合墙结构)进行了低周反复荷载试验。分析了结构破坏模式、滞回曲线、承载力、刚度退化、变形性能、... 为研究装配式轻钢框架-短肢组合墙结构的抗震性能,对3个足尺试件(1个轻钢框架结构、1个轻钢框架-短肢桁架结构、1个轻钢框架-短肢桁架组合墙结构)进行了低周反复荷载试验。分析了结构破坏模式、滞回曲线、承载力、刚度退化、变形性能、耗能和应变。结果表明:短肢桁架以及短肢桁架组合墙作为结构第一道抗震防线,高效提升了轻钢框架结构的抗震性能;相对于轻钢框架结构试件,轻钢框架-短肢桁架组合墙结构试件的极限承载力提高了28482%,初始刚度提高了24446%;组合墙内的短肢钢桁架与混凝土的共同工作性能良好,混凝土的约束作用抑制了短肢桁架的屈曲失稳,短肢桁架提高了组合墙核心混凝土的变形能力。所提出的装配式轻钢框架-短肢组合墙结构传力路径明确、抗震性能优越、装配便捷,特别适用于低、多层装配式轻钢组合结构,其设计思路同样可用于其他装配式钢框架结构。 展开更多
关键词 装配式组合结构 轻钢框架 短肢组合墙 抗震性能 试验研究
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碳纤维/UiO66-NH2环氧复合材料的制备及其性能研究
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作者 赵敏 屈晴 杨舒琪 《陕西科技大学学报》 北大核心 2024年第3期98-105,共8页
本文首先合成出锆基MOF材料UiO66-NH_(2),并设计得到PA功能化的MOF材料UiO66-NH_(2)-PA,再将其分散在环氧树脂基体中,制备了性能优异的碳纤维/UiO66-NH_(2)环氧复合材料.随后,通过FT-IR、SEM、XRD对UiO66-NH_(2)以及UiO66-NH_(2)-PA进... 本文首先合成出锆基MOF材料UiO66-NH_(2),并设计得到PA功能化的MOF材料UiO66-NH_(2)-PA,再将其分散在环氧树脂基体中,制备了性能优异的碳纤维/UiO66-NH_(2)环氧复合材料.随后,通过FT-IR、SEM、XRD对UiO66-NH_(2)以及UiO66-NH_(2)-PA进行了表征,使用万能试验机对碳纤维/UiO66-NH_(2)环氧复合材料的力学性能进行了测试.结果表明,UiO66-NH_(2)-PA被成功制备,且改性后的碳纤维复合材料的抗弯曲和抗剪切强度分别提高了26.54%和29.09%.这是因为UiO66-NH_(2)-PA中氨基和磷基的作用增强了界面强度,既提高了碳纤维/UiO66-NH_(2)环氧复合材料的储能模量,又增强了复合材料的界面结合能力,从而实现了通过共同作用以提高碳纤维、环氧复合材料力学性能的目标. 展开更多
关键词 金属有机框架 力学性能 碳纤维环氧复合材料
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波形腹板钢箱-混凝土组合梁横向内力计算与分析
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作者 冀伟 余壮果 罗奎 《铁道学报》 EI CAS CSCD 北大核心 2024年第8期161-170,共10页
为精确分析波形腹板钢箱-混凝土组合梁(SBCCGCW)的横向内力,考虑波形钢腹板特性和箱梁的畸变效应,利用框架分析法推导SBCCGCW的横向弯矩计算公式;通过两座实桥横向弯矩的有限元和实测结果对所提公式的正确性进行验证;对SBCCGCW横向内力... 为精确分析波形腹板钢箱-混凝土组合梁(SBCCGCW)的横向内力,考虑波形钢腹板特性和箱梁的畸变效应,利用框架分析法推导SBCCGCW的横向弯矩计算公式;通过两座实桥横向弯矩的有限元和实测结果对所提公式的正确性进行验证;对SBCCGCW横向内力的影响因素进行研究,并根据有限元分析结果提出SBCCGCW横向内力的简化计算公式。结果表明:利用所提公式获取的横向弯矩值与有限元结果和实测结果吻合较好,误差在10%以内;横隔板会大幅度减少荷载作用点处的横向弯矩;宽高比、混凝土顶板厚度、荷载作用位置对混凝土顶板横向弯矩的影响较大,钢底板厚度变化对混凝土顶板横向弯矩的影响较小。研究成果可为SBCCGCW的横向内力计算与分析提供参考。 展开更多
关键词 桥梁工程 组合箱梁 横向内力 框架分析法 波形钢腹板 参数分析
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型钢组合加固震损RC框架抗震性能试验研究
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作者 褚云朋 龚寅东 +2 位作者 梁锋 蓝迪 易港鑫 《建筑结构》 北大核心 2024年第11期124-132,118,共10页
震损RC框架需在震后得到快速修复,考虑采用加强局部构造及提高整体结构抗震能力的方法,以恢复甚至提高震损框架的抗震能力。结合框架在地震作用下的受力特性及破坏模式,先对柱采取外包角钢与缀条的局部加固,后对整体框架分别采取薄壁钢... 震损RC框架需在震后得到快速修复,考虑采用加强局部构造及提高整体结构抗震能力的方法,以恢复甚至提高震损框架的抗震能力。结合框架在地震作用下的受力特性及破坏模式,先对柱采取外包角钢与缀条的局部加固,后对整体框架分别采取薄壁钢板剪力墙、斜支撑、V形屈曲约束支撑方式进行加固,并对加固后试件进行低周往复加载试验。结果表明:组合加固后试件抗震性能改善明显,将原框架的“强梁弱柱”转为符合抗震要求的“强节点弱构件,强柱弱梁”破坏。破坏时支撑及薄壁钢板先破坏,能有效避免主体框架过早破坏。试件加固后承载能力、初始刚度、延性及累积耗能均比未加固试件提高显著,且承载力及刚度退化均较缓慢,最后破坏为累积损伤所致。采用V形屈曲约束支撑加固的试件由于其具有多重耗能能力,其抗震性能及延性均好于其他两种组合加固方式的试件,综合考虑试件加固后的抗震性能及破坏模式,建议选用此种方法加固。 展开更多
关键词 震损RC框架 组合加固 V形屈曲约束支撑 抗震性能 破坏模式
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大跨梁-拱组合刚构桥船撞力和抗撞性能研究
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作者 张文明 王志伟 赖亚平 《中外公路》 2024年第5期132-142,共11页
梁-拱组合刚构桥是一种新桥型,船撞研究较少。该文以礼嘉嘉陵江大桥为工程背景,研究大跨度上承式梁-拱组合刚构桥梁的船撞力标准值和抗撞性能。首先确立了代表船型和船撞计算工况,利用ANSYS/LS-DYNA非线性有限元瞬态动力软件模拟了单墩... 梁-拱组合刚构桥是一种新桥型,船撞研究较少。该文以礼嘉嘉陵江大桥为工程背景,研究大跨度上承式梁-拱组合刚构桥梁的船撞力标准值和抗撞性能。首先确立了代表船型和船撞计算工况,利用ANSYS/LS-DYNA非线性有限元瞬态动力软件模拟了单墩模型在各工况下船桥碰撞过程,并对比了船撞力有限元仿真结果与多种经验公式计算结果。最后利用全桥模型和验算截面的极限承载力反推得到桥墩的极限抗船撞力,对桥墩的抗撞性能进行了评估。结果表明:船撞力具有很强的非线性波动特征,船艏最大撞深发生时刻滞后于最大撞击力发生时刻,船桥碰撞过程中的系统能量主要是由船舶动能转化为船艏局部变形内能;不同的船撞力经验公式的计算结果相差较大,推荐采用动力仿真模拟值;极限抗船撞力验算结果表明礼嘉嘉陵江大桥主墩的抗撞性能满足要求。 展开更多
关键词 梁-拱组合刚构 船桥碰撞 船撞力 抗撞性能 有限元法 经验公式
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提取多场景视频关键帧的复合HOG特征聚类方法
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作者 魏英姿 尹苏渝 张宇恒 《软件导刊》 2024年第9期187-192,共6页
由于直接利用帧差数据提取动态多场景视频关键帧往往会产生过多冗余帧,方向梯度直方图(HOG)特征对图像亮度、场景变化具有较好的稳定性。为此,提出了用于提取多场景视频关键帧的复合HOG特征聚类方法来提升关键帧提取效率。首先,通过提... 由于直接利用帧差数据提取动态多场景视频关键帧往往会产生过多冗余帧,方向梯度直方图(HOG)特征对图像亮度、场景变化具有较好的稳定性。为此,提出了用于提取多场景视频关键帧的复合HOG特征聚类方法来提升关键帧提取效率。首先,通过提取视频帧的HOG特征引入图像信息熵构成复合特征矢量,以保持数据特征相关性。其次,根据复合特征矢量统计视频帧间差异数据确定视频分割镜头、关键帧提取个数;再次,分别考虑镜头内帧集合和完整视频帧集合,无重复地将信息熵较大的视频帧选为初始聚类中心以引导聚类算法搜索方向,并通过K均值聚类抽取视频关键帧。与传统K均值聚类方法比较后发现,所提算法冗余度降低0.003~0.015,查准率提高了0.14~0.21,聚类时间得到下降,精度和效率较优。 展开更多
关键词 关键帧提取 视频分割 HOG特征 复合特征矢量 K均值聚类 图像熵
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