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Research on Optimal Attitude of Large Deformation Airplane in Full-Scale Aircraft Static Test
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作者 ZHENG Jianjun JIN Feng +2 位作者 LIU Wei ZHANG Yiming GUO Qiong 《Transactions of Nanjing University of Aeronautics and Astronautics》 2025年第3期354-367,共14页
The accuracy of the full-scale aircraft static tests is greatly influenced by the aircraft attitude.This paper proposes an aircraft attitude optimization method based on the characteristics of the test.The aim is to a... The accuracy of the full-scale aircraft static tests is greatly influenced by the aircraft attitude.This paper proposes an aircraft attitude optimization method based on the characteristics of the test.The aim is to address three typical problems of ttitude control in the full-scale aircraft static tests:(1)The coupling of rigid-body displacement and elastic deformation after large deformation,(2)the difficulty of characterizing the aircraft attitude by measurable structure,and(3)the insufficient adaptability of the center of gravity reference to complex loading conditions.The methodology involves the establishment of two observation coordinate systems,a ground coordinate system and an airframe coordinate system,and two deformation states,before and after airframe deformation.A subsequent analysis of the parameter changes of these two states under different coordinate systems is then undertaken,with the objective being to identify the key parameters affecting the attitude control accuracy of large deformation aircraft.Three optimization objective functions are established according to the test loading characteristics and the purpose of the test:(1)To minimize the full-scale aircraft loading angle error,(2)to minimize the full-scale aircraft loading additional load,and(3)to minimize the full-scale aircraft loading wing root additional bending moment.The optimization calculation results are obtained by using the particle swarm optimization algorithm,and the typical full-scale aircraft static test load condition of large passenger aircraft is taken as an example.The analysis of the results demonstrates that by customizing the measurable structure of the aircraft as the observation point for the aircraft attitude,and by obtaining the translational and rotational control parameters of the observation point during the test based on the optimization objective function,the results are reasonable,and the project can be implemented and used to control the aircraft's attitude more accurately in complex force test conditions. 展开更多
关键词 full-scale aircraft static test large deformation position optimization attitude control
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Non-contact overall 3D deformation measurement based on a multi-camera system for static testing of large aircraft wing structure
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作者 Bingwei Zhu Yan Liu +4 位作者 Zongyuan Lian Yiqiu Cai Hewei Zhu Liqiang Gao Qifeng Yu 《Acta Mechanica Sinica》 2025年第6期125-142,共18页
To obtain the certificate of airworthiness,it is essential to conduct a full-scale aircraft static test.During such test,accurate and comprehensive wing deformation measurement is crucial for assessing its strength,st... To obtain the certificate of airworthiness,it is essential to conduct a full-scale aircraft static test.During such test,accurate and comprehensive wing deformation measurement is crucial for assessing its strength,stiffness,and bearing capability.This paper proposes a novel and cost-effective videogrammetric method using multi-camera system to achieve the non-contact,highprecision,and 3D measurement of overall static deformation for the large-scale wing structure.To overcome the difficulties of making,carrying,and employing the large 2D or 3D target for calibrating the cameras with large field of view,a flexible stereo cameras calibration method combining 1D target and epipolar geometry is proposed.The global calibration method,aided by a total station,is employed to unify the 3D data obtained from various binocular subsystems.A series of static load tests using a 10-meter-long large-scale wing have been conducted to validate the proposed system and methods.Furthermore,the proposed method was applied to the practical wing deformation measurement of both wings with a wingspan of 33.6 m in the full-size civil aircraft static test.The overall 3D profile and displacement data of the tested wing under various loads can be accurately obtained.The maximum error of distance and displacement measurement is less than 4.5 mm within the measurement range of 35 m in all load cases.These results demonstrate that the proposed method achieves effective,high-accuracy,on-site,and visualized wing deformation measurement,making it a promising approach for full-scale aircraft wing static test. 展开更多
关键词 Videogrammetric technique Multi-camera system Aircraft static testing Large wing Non-contact 3D deformation measurement
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Digital Simulation of Full Scale Static Test of Aircraft 被引量:11
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作者 许泽 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2005年第2期138-141,共4页
Full scale aircraft static test is a very important process of aircraft design, it is costly and time consuming. The testing accuracy and validity mainly depend on the rationality of the test scheme design. When the a... Full scale aircraft static test is a very important process of aircraft design, it is costly and time consuming. The testing accuracy and validity mainly depend on the rationality of the test scheme design. When the aircraft is being tested, the specimen's safety mainly depends on monitoring and understanding the testing data by way of evaluating the coherence with the digital simulation data synchyononsly. The test digital simulation can aid realizing above requirements and improving the test efficiency significantly during test scheme design stage or testing stage respectively. The key technologies and the solving methods of test digital simulation are presented and the application example is given. 展开更多
关键词 the mechanics of flight vehicle aircraft structure static test digital simulation full scale
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Research on Dynamic and Static Test Methods for Evaluating the Poisson's Ratio of Orien ted Strand Board 被引量:1
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作者 Yuhao Zhou Yuhang He +1 位作者 Zhaoyu Shen Zheng Wang 《Journal of Renewable Materials》 SCIE EI 2022年第12期3459-3476,共18页
In this article,dynamic method and static method of testing Poisson's ratio of OSB(Oriented Strand Board)were proposed.Through modal and static numerical analyses,the position where the transverse stress is equal ... In this article,dynamic method and static method of testing Poisson's ratio of OSB(Oriented Strand Board)were proposed.Through modal and static numerical analyses,the position where the transverse stress is equal to zero was determined.The binary linear regression method was applied to express the gluing position of the strain gauge as a relational express ion that depended on the length-width ratio and width-thickness ratio of the canti-lever plate.Then the longitudinal and transverse Poisson's ratios of OSB were mea sured by the given dynamic and static methods.In addition,the test results of OSB Poisson's ratio were analyzed with the probability distribution of random variables.The results showed that using the proposed dynamic method and static method,the test results for longitudinal and transverse Poisson's ratios of OSB were quite consistent,despite the gluing position of the strain gauges being different.And these OSB Poisson's ratios were accorded with that obtained by the axial tensile method and the four-point bending method.OSB longitudinal and transverse Poisson's ratios followed Weibull distribution. 展开更多
关键词 OSB Poisson's ratio cantilever plate dynamic test static test
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Fuzzy Model Free Adaptive Control for Rotor Blade Full-Scale Static Testing
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作者 廖高华 乌建中 《Journal of Donghua University(English Edition)》 EI CAS 2015年第4期536-540,共5页
To eliminate the node traction coupling during wind turbine blade full-scale static testing,a model free adaptive control algorithm is presented based on fuzzy control performance function compensation. Based on the u... To eliminate the node traction coupling during wind turbine blade full-scale static testing,a model free adaptive control algorithm is presented based on fuzzy control performance function compensation. Based on the universal model theory,the fuzzy model free adaptive control( FMFAC) algorithm is designed by configuring the spot static testing experiences as compensation function F( ·). Then the algorithm implementation process is provided and its quick convergence is proved. Using software to establish static load coupling model of multi-nodes,simulate and verify the validity of FMFAC algorithm,which is applied to wind turbines blade full-scale static testing. The results show that the adaptive decoupling ability of FMFAC is better. The traction of four load points can stay steady and change coordinately. Process error is not over ± 6 k N. The error rate is lower than 1% in special phase.This algorithm effectively eliminates the traction coupling of the static testing process,and makes wind turbine blade testing steadily. 展开更多
关键词 WIND turbines FUZZY CONTROL performance DECOUPLING model free adaptive control(MFAC) algorithm static testing
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Structural damage identification using test static data based on grey system theory 被引量:4
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作者 陈孝珍 朱宏平 陈传尧 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2005年第8期790-796,共7页
A new structural damage identification method using limited test static displacement based on grey system theory is proposed in this paper. The grey relation coefficient of displacement curvature is defined and used t... A new structural damage identification method using limited test static displacement based on grey system theory is proposed in this paper. The grey relation coefficient of displacement curvature is defined and used to locate damage in the structure, and an iterative estimation scheme for solving nonlinear optimization programming problems based on the quadratic programming technique is used to identify the damage magnitude. A numerical example of a cantilever beam with single or multiple damages is used to examine the capability of the proposed grey-theory-based method to localize and identify damages. The factors of meas-urement noise and incomplete test data are also discussed. The numerical results showed that the damage in the structure can be localized correctly through using the grey-related coefficient of displacement curvature, and the damage magnitude can be iden-tified with a high degree of accuracy, regardless of the number of measured displacement nodes. This proposed method only requires limited static test data, which is easily available in practice, and has wide applications in structural damage detection. 展开更多
关键词 Damage identification Grey relation coefficient static test data
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Weak Fiber Bragg Grating Based Sensing System for Cryogenic Static Test of Launch Vehicle Oxygen Tank 被引量:2
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作者 Zhang Xuezhi Chen Guanlong +6 位作者 Jiang Junfeng Fan Xiaojun Liu Kun Wang Shuang Liu Yantao Ni Jingda Liu Tiegen 《激光与光电子学进展》 CSCD 北大核心 2021年第21期348-357,共10页
In this paper,a weak fiber Bragg grating(WFBG)based sensing system applied to the cryogenic static test of launch vehicle oxygen tanks has been developed and the results of an evaluation are reported.A customized sens... In this paper,a weak fiber Bragg grating(WFBG)based sensing system applied to the cryogenic static test of launch vehicle oxygen tanks has been developed and the results of an evaluation are reported.A customized sensor encapsulation and installation method allow for precise strain measurement at cryogenic temperatures.The reflection peaks of series-connected WFBGs with low optical loss are obtained,ensuring high system reliability in harsh environments.The experimental results show that the maximum full-scale error is less than 0.81%full-scale error.The temperature is as low as−193℃ during the test.This study also demonstrates a practical method in which WFBG can be used to obtain critical parameters for structural monitoring in a cryogenic environment. 展开更多
关键词 fiber optics weak fiber Bragg grating cryogenic static test oxygen tank strain
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Mechanical properties and supporting effect of CRLD bolts under static pull test conditions 被引量:12
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作者 Xiao-ming Sun Yong Zhang +3 位作者 Dong Wang Jun Yang Hui-chen Xu Man-chao He 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2017年第1期1-9,共9页
A device for supporting soft rock masses combined with a constant resistance structure characterized by constant resistance and large deformation at the end of a steel bar, known as the constant resistance and large d... A device for supporting soft rock masses combined with a constant resistance structure characterized by constant resistance and large deformation at the end of a steel bar, known as the constant resistance and large deformation(CRLD) bolt, has recently been developed to counteract soft rock swelling that often occurs during deep mining. In order to further study the mechanical properties of the CRLD bolt, we investigated its mechanical properties by comparison with the conventional strength bolt(rebar) using static pull tests on many aspects, including supporting capacity, elongation, radial deformation, and energy absorption. The tests verified that the mechanical defects of the rebar, which include the decrease of bolt diameter, reduction of supporting capacity, and emergence and evolution of fracture until failure during the whole pull process, were caused by the Poisson's ratio effect. Due to the special structure set on the CRLD bolt, the bolt presents a seemingly unusual phenomenon of the negative Poisson's ratio effect, i.e., the diameter of the constant resistance structure increases while under-pulling. It is the very effect that ensures the extraordinary mechanical properties, including high resistance, large elongation, and strong energy absorption. According to the comparison and analysis of numerical simulation and field test, we can conclude that the CRLD bolt works better than the rebar bolt. 展开更多
关键词 deep mining BOLTS mechanical properties rock support static pull test
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Static load test and load transfer mechanism study of squeezed branch and plate pile in collapsible loess foundation 被引量:9
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作者 GAO Xiao-juan WANG Jin-chang ZHU Xiang-rong 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2007年第7期1110-1117,共8页
As a special geological phenomenon, the character of collapsible loess foundation is collapsible when penetrated by water. This character leads to the soil losing load bearing capacity largely and may lead to foundati... As a special geological phenomenon, the character of collapsible loess foundation is collapsible when penetrated by water. This character leads to the soil losing load bearing capacity largely and may lead to foundation failure. Pile is a popular foundation used in collapsible loess. The squeezed branch and plate pile is a new type of pile developed in recent years and has not be used in a project before. In this paper three squeezed branch and plate piles are tested in collapsible loess after immersion processing. The results may be used for reference in similar construction project, and to provide theoretical references for de- signing of the squeezed branch and plate piles in engineering practice. 展开更多
关键词 Collapsible loess foundation Squeezed branch and plate pile Immersion processing Full-scale static load test
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Application of bi-directional static loading test to deep foundations 被引量:4
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作者 Guoliang Dai Weiming Gong 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE 2012年第3期269-275,共7页
Bi-directional static loading test adopting load cells is widely used around the world at present,with increase in diameter and length of deep foundations.In this paper,a new simple conversion method to predict the eq... Bi-directional static loading test adopting load cells is widely used around the world at present,with increase in diameter and length of deep foundations.In this paper,a new simple conversion method to predict the equivalent pile head load-settlement curve considering elastic shortening of deep foundation was put forward according to the load transfer mechanism.The proposed conversion method was applied to root caisson foundation in a bridge and to large diameter pipe piles in a sea wind power plant.Some new load cells,test procedure,and construction technology were adopted based on the applications to different deep foundations,which could enlarge the application scopes of bi-directional loading test.A new type of bi-directional loading test for pipe pile was conducted,in which the load cell was installed and loaded after the pipe pile with special connector has been set up.Unlike the conventional bi-directional loading test,the load cell can be reused and shows an evident economic benefit. 展开更多
关键词 deep foundations bi-directional static loading test root caisson foundation large diameter pipe pile
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Seismic performance evaluation of an infilled rocking wall frame structure through quasi-static cyclic testing 被引量:9
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作者 Pan Peng Wu Shoujun +1 位作者 Wang Haishen Nie Xin 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2018年第2期371-383,共13页
Earthquake investigations have illustrated that even code-compliant reinforced concrete frames may suffer from soft-story mechanism.This damage mode results in poor ductility and limited energy dissipation.Continuous ... Earthquake investigations have illustrated that even code-compliant reinforced concrete frames may suffer from soft-story mechanism.This damage mode results in poor ductility and limited energy dissipation.Continuous components offer alternatives that may avoid such failures.A novel infilled rocking wall frame system is proposed that takes advantage of continuous component and rocking characteristics.Previous studies have investigated similar systems that combine a reinforced concrete frame and a wall with rocking behavior used.However,a large-scale experimental study of a reinforced concrete frame combined with a rocking wall has not been reported.In this study,a seismic performance evaluation of the newly proposed infilled rocking wall frame structure was conducted through quasi-static cyclic testing.Critical joints were designed and verified.Numerical models were established and calibrated to estimate frame shear forces.The results evaluation demonstrate that an infilled rocking wall frame can effectively avoid soft-story mechanisms.Capacity and initial stiffness are greatly improved and self-centering behavior is achieved with the help of the infilled rocking wall.Drift distribution becomes more uniform with height.Concrete cracks and damage occurs in desired areas.The infilled rocking wall frame offers a promising approach to achieving seismic resilience. 展开更多
关键词 infilled rocking wall frame seismic performance displacement distribution quasi-static cyclic test
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Technical Analysis of Highway Bridge Static Load Test 被引量:1
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作者 Ke Tu Yingying Ye +2 位作者 Daqing Wu Yunyong Zhou Wenming Deng 《Journal of Architectural Research and Development》 2023年第3期58-63,共6页
Highway bridges are an important part of the transportation industry and can promote social economic construction and development.In actual operation,highway bridges are often damaged due to overload and natural facto... Highway bridges are an important part of the transportation industry and can promote social economic construction and development.In actual operation,highway bridges are often damaged due to overload and natural factors,which tend to affect the safety and shorten the service life of these bridges.Assessing the overall state and performance of highway bridges is therefore a key element.Static load test,which is a type of sustainable detection experiment,has many advantages,including low cost,high efficiency,and high accuracy.In this paper,the bridge structure is analyzed through the application of theoretical calculations and relevant comparisons,so as to judge the operating state of the bridge. 展开更多
关键词 Highway bridge static load test Detection technology
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Analysis of the Application of Static Load Test in Bridge Bearing Capacity Testing
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作者 Wei Fu Bo Liu 《Journal of Architectural Research and Development》 2024年第3期36-41,共6页
This article uses real engineering projects as examples to analyze how static load test technology is applied in testing the bridge-bearing capacity.The analysis covers aspects such as testing section layout,test load... This article uses real engineering projects as examples to analyze how static load test technology is applied in testing the bridge-bearing capacity.The analysis covers aspects such as testing section layout,test load and efficiency coefficient,loading plan,evaluation optimization,test result modification,and result evaluation.The aim is to support the accurate detection and evaluation of bridge-bearing capacity. 展开更多
关键词 Bridge engineering Bearing capacity static load test Loading plan test evaluation
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Static Load Test Detection of Continuous Rigid- Frame Railway Bridge
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作者 Jing Cao Lei An 《Journal of Architectural Research and Development》 2023年第5期1-7,共7页
The quality of the continuous rigid-frame railway bridge is related to the safety of train operation,so it is necessary to test its stiffness,strength,and other indicators.Static load test is a common technique for br... The quality of the continuous rigid-frame railway bridge is related to the safety of train operation,so it is necessary to test its stiffness,strength,and other indicators.Static load test is a common technique for bridge inspection.This article summarizes the purpose of the static load test for a continuous rigid-frame railway bridge,including the required equipment,operation methods,etc.,and lists examples to analyze the operation process and precautions of static load test,hoping to provide reference information for relevant personnel. 展开更多
关键词 Railway bridge Rigid-frame static load test
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局部设置无黏结钢筋的铁路自复位桥墩抗震性能研究
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作者 丁明波 姚远 +1 位作者 鲁锦华 陈兴冲 《世界地震工程》 北大核心 2026年第1期122-128,共7页
铁路重力式桥墩具有截面尺寸大、刚度大、配筋率低的特点。为了顺应韧性发展理念,提高铁路重力式桥墩的震后快速恢复能力,满足列车在运行过程中的刚度要求,提出了两种在墩底局部设置无黏结钢筋的铁路自复位桥墩,通过拟静力试验进行抗震... 铁路重力式桥墩具有截面尺寸大、刚度大、配筋率低的特点。为了顺应韧性发展理念,提高铁路重力式桥墩的震后快速恢复能力,满足列车在运行过程中的刚度要求,提出了两种在墩底局部设置无黏结钢筋的铁路自复位桥墩,通过拟静力试验进行抗震性能研究。试验结果表明:仅设置无黏结钢筋的桥墩模型在墩底出现了混凝土裂缝和混凝土压碎现象,而在设置无黏结钢筋的基础上设置分离面和增设基台,可以使铁路自复位桥墩在加载过程中处于提离摇摆状态,且其墩底并未出现明显的混凝土损伤现象。相较于仅设置无黏结钢筋的桥墩,设置分离面和增设基台桥墩模型的水平承载力有所提升,累积耗能最终提高了51.36%;且在相同位移水平下表现出更优的刚度性能和更小的残余位移。该研究成果为铁路桥梁抗震设计提供了新的技术路径。 展开更多
关键词 自复位桥墩 拟静力试验 无黏结钢筋 铁路桥梁 抗震性能
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钢框架-冷弯薄壁型钢剪力墙结构抗侧性能试验研究
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作者 石宇 高畅 +1 位作者 徐云鹏 张海宾 《工程力学》 北大核心 2026年第1期219-229,共11页
为了研究钢框架-冷弯薄壁型钢剪力墙结构的抗侧性能,对1个钢框架和3个钢框架-冷弯薄壁型钢剪力墙试件进行水平低周往复加载试验,对比了内填冷弯薄壁型钢剪力墙前后整体结构的抗侧性能,还考虑了镁晶板厚度、刚性斜撑对结构抗侧性能的影... 为了研究钢框架-冷弯薄壁型钢剪力墙结构的抗侧性能,对1个钢框架和3个钢框架-冷弯薄壁型钢剪力墙试件进行水平低周往复加载试验,对比了内填冷弯薄壁型钢剪力墙前后整体结构的抗侧性能,还考虑了镁晶板厚度、刚性斜撑对结构抗侧性能的影响。结果表明:钢框架与冷弯薄壁型钢剪力墙组合后具有良好的抗侧性能;对内填剪力墙增设刚性斜撑或增加镁晶板厚度均可提高墙体的抗剪承载力及弹性抗侧刚度,继而提升结构的整体抗侧性能。结合破坏特征,提出钢框架-冷弯薄壁型钢剪力墙结构2个受力阶段:前中期受力阶段主要由冷弯薄壁型钢剪力墙承担水平荷载,后期受力阶段主要由钢框架承担水平荷载。分析受力过程中水平剪力在钢框架和冷弯薄壁型钢剪力墙之间的分配关系及其变化情况,前期冷弯薄壁型钢剪力墙剪力分担率为70%~84%,后期钢框架剪力分担率增至72%~75%,表明此类结构是一种典型的双重抗侧力设防体系。 展开更多
关键词 钢框架 冷弯薄壁型钢剪力墙 拟静力试验 抗剪性能 剪力分配
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LDRA Testbed在动车EBCU软件测试中的应用与研究
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作者 王贤斌 《现代信息科技》 2025年第1期155-160,共6页
动车制动控制系统是高铁安全运行的重要保障。随着动车系统的复杂性和自动化程度的提高,对制动控制系统的软件测试也提出了更高的要求。文章通过将LDRA Testbed软件自动化测试工具应用于动车EBCU软件,详细介绍了静态分析、单元测试及集... 动车制动控制系统是高铁安全运行的重要保障。随着动车系统的复杂性和自动化程度的提高,对制动控制系统的软件测试也提出了更高的要求。文章通过将LDRA Testbed软件自动化测试工具应用于动车EBCU软件,详细介绍了静态分析、单元测试及集成测试的方法和步骤,并结合实际测试结果分析其有效性和重要性。通过全面的测试手段,不仅提高了EBCU软件的可靠性和安全性,还为动车制动控制系统的维护和优化提供了科学依据。 展开更多
关键词 动车 制动控制系统 testBED 静态分析 单元测试 集成测试
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2008年汶川8.0级地震北川老县城某底商多层建筑倒塌原因分析
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作者 王波 阙小勇 +3 位作者 宣越 阿拉塔 梁辉明 朱祺 《地震研究》 北大核心 2026年第2期291-301,共11页
为研究底商多层建筑的地震倒塌机理,选取2008年汶川8.0级地震极震区原北川县建设局办公楼为研究对象,结合底层构造特点,通过震害类比初步得出结构发生地震倒塌的原因在于底层具有不同抗侧刚度构件的“混搭”存在。按照实际构造特点,分... 为研究底商多层建筑的地震倒塌机理,选取2008年汶川8.0级地震极震区原北川县建设局办公楼为研究对象,结合底层构造特点,通过震害类比初步得出结构发生地震倒塌的原因在于底层具有不同抗侧刚度构件的“混搭”存在。按照实际构造特点,分别制作无墙框架和有墙框架2组缩尺模型开展平面框架拟静力试验,对比不同构造特点的模型在水平加载作用下框架柱端应变响应、滞回曲线、骨架曲线以及宏观破坏现象。结果表明:底层各柱的约束条件不同,其抗侧刚度和延性差异巨大,背街侧的填充墙-柱组合体构件因内力凝聚而率先破坏,引发结构倒塌,符合基于变形饱和理论的结构地震倒塌模式。 展开更多
关键词 多层建筑 地震倒塌 拟静力试验 抗侧刚度 填充墙 汶川8.0级地震
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冷弯薄壁型钢部分包覆轻质混凝土十形柱的抗震性能
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作者 李补拴 张坤 +3 位作者 周伟 梁仪伟 陈明 赵根田 《西南交通大学学报》 北大核心 2026年第1期136-146,共11页
针对冷弯薄壁型钢构件局部易屈曲和陶粒轻质混凝土易开裂问题,考虑建筑室内布置美学方面要求,提出一种可预制装配的冷弯薄壁型钢部分包覆轻质混凝土十形柱.以粗骨料取代率为参数设计并制作4根十形柱,完成低周往复加载试验;基于此,采用... 针对冷弯薄壁型钢构件局部易屈曲和陶粒轻质混凝土易开裂问题,考虑建筑室内布置美学方面要求,提出一种可预制装配的冷弯薄壁型钢部分包覆轻质混凝土十形柱.以粗骨料取代率为参数设计并制作4根十形柱,完成低周往复加载试验;基于此,采用有限元软件ABAQUS对轻骨料混凝土强度、钢板强度、钢板厚度和加载角度进行拓展分析.试验结果表明:4个试件滞回曲线均呈对称饱满的梭形,试件破坏形态呈现压弯破坏;随着粗骨料取代率由0%增大到30%、70%和100%,试件重量分别减轻77、176、252 kg/m^(3),碳减排量分别降低19.18%、38.11%和49.93%,极限承载力分别降低1.0%、4.7%和9.2%,延性系数先增大1.4%,后降低3.8%和4.2%,耗能分别降低8.6%、2.5%和6.7%;采用粉煤灰陶粒替代普通石子作为混凝土粗骨料对冷弯薄壁型钢部分包裹混凝土十形柱抗震性能影响不显著,但相比于普通混凝土具有巨大的碳排减潜力;提高轻骨料混凝土强度对试件的承载力、延性及耗能性能提升不明显;当钢板强度由Q235提高至Q355时,试件极限承载力提高45.1%;当钢板厚度由4 mm分别增加至5 mm和6 mm时,试件极限承载力分别提高14.8%和35.5%;试件的最不利加载角度为45°. 展开更多
关键词 冷弯薄壁型钢 轻质混凝土 异形柱 拟静力试验 抗震性能
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采用高强钢棒的混凝土短肢剪力墙抗震性能评估
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作者 袁维光 赵华 +2 位作者 肖强 马兰 魏丞瑾 《工程力学》 北大核心 2026年第2期169-179,共11页
为促进可恢复性结构发展,推动低粘结高强钢筋—高强钢棒在建筑结构中的应用,提出了一种以高强钢棒作为暗柱纵筋的混凝土短肢剪力墙。设计并完成了4片剪跨比为2的1/3缩尺短肢剪力墙的拟静力试验,对比分析了暗柱纵筋类型、轴压比和碳纤维... 为促进可恢复性结构发展,推动低粘结高强钢筋—高强钢棒在建筑结构中的应用,提出了一种以高强钢棒作为暗柱纵筋的混凝土短肢剪力墙。设计并完成了4片剪跨比为2的1/3缩尺短肢剪力墙的拟静力试验,对比分析了暗柱纵筋类型、轴压比和碳纤维布约束塑性铰区等参数对混凝土短肢剪力墙抗震性能的影响,并着重探讨了试件的承载能力和变形能力。结果表明:高强钢棒作为混凝土短肢剪力墙的暗柱纵筋,可实现混凝土短肢剪力墙在大变形下承载力随着侧向位移的增加而提高,且具有较小的残余变形,破坏形态均以弯曲破坏为主;在高轴压比作用下,碳纤维布约束塑性铰区可提高采用高强钢棒的混凝土短肢剪力墙的承载能力。基于NewRC模型计算的采用高强钢棒的钢筋混凝土短肢剪力墙抗弯承载力与试验结果吻合较好。各试件塑性铰区的弯曲变形与整体变形的比值基本保持恒定不变。 展开更多
关键词 短肢剪力墙 拟静力试验 高强钢棒 承载能力 变形能力
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