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An innovative test method for mechanical properties of sandstone under instantaneous unloading confining pressure
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作者 Xuesheng Liu Shenglong Yang +3 位作者 Yunliang Tan Jun Wang Xuebin Li Yu Zhang 《International Journal of Mining Science and Technology》 SCIE EI CAS CSCD 2024年第12期1677-1692,共16页
With the increase of underground engineering construction depth,the phenomenon of surrounding rock sudden failure caused by supporting structure failure occurs frequently.The conventional unloading con-fining pressure... With the increase of underground engineering construction depth,the phenomenon of surrounding rock sudden failure caused by supporting structure failure occurs frequently.The conventional unloading con-fining pressure(CUCP)test cannot simulate the plastic yielding and instantaneous unloading process of supporting structure to rock.Thus,a high stress loading-instantaneous unloading confining pressure(HSL-IUCP)test method was proposed and applied by considering bolt’s fracture under stress.The wall thickness of confining pressure plates and the material of bolts were changed to realize different confin-ing pressure loading stiffness(CPLS)and lateral maximum allowable deformation(LMAD).The superio-rity of HSL-ICPU method is verified compared with CUCP.The rock failure mechanism caused by sudden failure of supporting structure is obtained.The results show that when CPLS increases from 1.35 to 2.33 GN/m,rock’s peak strength and elastic modulus increase by 25.18%and 23.70%,respectively.The fracture characteristics change from tensile failure to tensile-shear mixed failure.When LMAD decreases from 0.40 to 0.16 mm,rock’s residual strength,peak strain,and residual strain decrease by 91.80%,16.94%,and 21.92%,respectively,and post-peak drop modulus increases by 140.47%.The test results obtained by this method are closer to rock’s real mechanical response characteristics compared with CUCP. 展开更多
关键词 High stress Instantaneous unloading confining pressure test method Confining pressure loading stiffness Lateral maximum allowable deformation Rock properties
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Surface Pressure Loading Technology of Ship Structures
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作者 DAI Ze-yu WEI Peng-yu +3 位作者 CHEN Xiao-ping JIANG Ze CHEN Zhe TANG Qin 《船舶力学》 EI CSCD 北大核心 2024年第12期1940-1952,共13页
A hull structure is prone to local deformation and damage due to the pressure load on the surface.How to simulate surface pressure is an important issue in ship structure test.The loading mode of hydraulic actuator co... A hull structure is prone to local deformation and damage due to the pressure load on the surface.How to simulate surface pressure is an important issue in ship structure test.The loading mode of hydraulic actuator combined with high-pressure flexible bladder was proposed,and the numerical model of the loading device based on flexible bladder was established.The design and analysis method of high-pressure flexible bladder based on aramid-fiber reinforced thermoplastic polyurethane was proposed to break through the surface pressure loading technology of ship structures.The surface pressure loading system based on flexible bladder was developed.The ultimate strength verification test of the box girder under the combined action of bending moment and pressure was carried out to systematically verify the feasibility and applicability of the loading system.The results show that the surface pressure loading technology can be used well for applying uniform pressure to ship structures.Compared with the traditional surface loading methods,the improved device can be applied with horizontal constant pressure load,with rapid response and safe process,and the pressure load is always stable with the increase of the bending moment load during the test.The requirement for uniform loading in the comprehensive strength test of large structural models is satisfied and the accuracy of the test results is improved by this system. 展开更多
关键词 surface pressure load loading system ship structure strength test flexible bladder
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Crack propagation and damage evolution of metallic cylindrical shells under internal explosive loading
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作者 Yusong Luo Weibing Li +2 位作者 Junbao Li Wenbin Li Xiaoming Wang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第9期133-146,共14页
This paper investigates the three-dimensional crack propagation and damage evolution process of metallic column shells under internal explosive loading.The calibration of four typical failure parameters for 40CrMnSiB ... This paper investigates the three-dimensional crack propagation and damage evolution process of metallic column shells under internal explosive loading.The calibration of four typical failure parameters for 40CrMnSiB steel was conducted through experiments and subsequently applied to simulations.The numerical simulation results employing the four failure criteria were compared with the differences and similarities observed in freeze-recovery tests and ultra-high-speed tests.This analysis addressed the critical issue of determining failure criteria for the fracture of a metal shell under internal explosive loads.Building upon this foundation,the damage parameter D_(c),linked to the cumulative crack density,was defined based on the evolution characteristics of a substantial number of cracks.The relationship between the damage parameter and crack velocity over time was established,and the influence of the internal central pressure on the damage parameter and crack velocity was investigated.Variations in the fracture modes were found under different failure criteria,with the principal strain failure criterion proving to be the most effective for simulating 3D crack propagation in a pure shear fracture mode.Through statistical analysis of the shell penetration fracture radius data,it was determined that the fracture radius remained essentially constant during the crack evolution process and could be considered a constant.The propagation velocity of axial cracks ranged between 5300 m/s and 12600 m/s,surpassing the Rayleigh wave velocity of the shell material and decreasing linearly with time.The increase in shell damage exhibited an initial rapid phase,followed by deceleration,demonstrating accelerated damage during the propagation stage of the blast wave and decelerated damage after the arrival of the rarefaction wave.This study provides an effective approach for investigating crack propagation and damage evolution.The derived crack propagation and damage evolution law serves as a valuable reference for the development of crack velocity theory and the construction of shell damage evolution modes. 展开更多
关键词 Internal explosive loading Failure criterion Crack propagation Damage evolution Freeze-recovery test
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GIGACYCLE FATIGUE BEHAVIOR OF CAST ALUMINUM IN TENSION AND TORSION LOADING 被引量:3
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作者 薛红前 吴铁鹰 Bathias C 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2011年第1期32-37,共6页
An improved understanding of fatigue behavior of a cast aluminum alloy(2-AS5U3G-Y35)in very high cycle regime is developed through the ultrasonic fatigue test in axial and torsion loading.The new developed torsion f... An improved understanding of fatigue behavior of a cast aluminum alloy(2-AS5U3G-Y35)in very high cycle regime is developed through the ultrasonic fatigue test in axial and torsion loading.The new developed torsion fatigue system is presented.The effects of loading condition and frequency on the very high cycle fatigue(VHCF)are investigated.The cyclic loading in axial and torsion at 35 Hz and 20 kHz with stress ratio R=-1 is used respectively to demonstrate the effect of loading condition.S-N curves show that the fatigue failure occurs in the range of 105—1010 cycles in axial or torsion loading and the asymptote of S-N curve is inclined,but no fatigue limit exists under the torsion and axial loading condition.The fatigue fracture surface shows that the fatigue crack initiates from the specimen surface subjected to the cyclic torsion loading.It is different from the fatigue fracture characteristic in axial loading in which fatigue crack initiates from subsurface defect in very high cycle regime.The fatigue initiation is on the maximum shear plane,the overall crack orientation is on a typical spiral 45° to the fracture plane and it is the maximum principle stress plane.The clear shear strip in the torsion fatigue fracture surface shows that the torsion fracture is the shear fracture. 展开更多
关键词 fatigue testing torsion fatigue very high cycle fatigue(VHCF) torsion loading cast aluminum
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NMR-based damage characterisation of backfill material in host rock under dynamic loading 被引量:23
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作者 Binglei Li Jiquan Lan +2 位作者 Guangyao Si Guopeng Lin Liuqing Hu 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2020年第3期329-335,共7页
It is not uncommon that backfill material used in underground mining being exposed to repetitive dynamic stresses induced by blasting operations or rockburst events. Understanding the strength and fracture evolution o... It is not uncommon that backfill material used in underground mining being exposed to repetitive dynamic stresses induced by blasting operations or rockburst events. Understanding the strength and fracture evolution of backfilled stopes is critical to maintain the long-term stope stability and ensure safe mining activities. This paper aims to study the damage evolution of the backfill material and its host rock behaviour under three-dimensional(3D) dynamic loading. Using a true-triaxial testing machine, multiple samples of backfill material enclosed by country rock were fabricated and tested under various dynamic loadings with different true-triaxial confining stress conditions. In addition, the nuclear magnetic resonance(NMR) measurement was conducted on the samples before and after exerting static and dynamic loading to obtain their porosity distribution changes. The experiment results suggested that with the increase of the dynamic loading, the porosity of the backfill sample goes through a two-stage process,which shows a slightly linear decrease and then followed by an exponential increase. The research findings can help understand the damage mechanism and fracture development of backfilled stopes and its host rock in deep underground mines, which are constantly subject to the combination of 3D static confining stress and dynamic loading. 展开更多
关键词 Dynamic loading Backfill-country rock system True triaxial test Coupled static and dynamic loads Nuclear magnetic resonance(NMR) Damage evolution
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Experimental study on permanent deformation characteristics of coarse-grained soil under repeated dynamic loading 被引量:5
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作者 Huihao Mei Sajjad Satvati Wuming Leng 《Railway Engineering Science》 2021年第1期94-107,共14页
Practical assessment of subgrade settlement induced by train operation requires developing suitable models capable of describing permanent deformation characteristics of subgrade filling under repeated dynamic loading... Practical assessment of subgrade settlement induced by train operation requires developing suitable models capable of describing permanent deformation characteristics of subgrade filling under repeated dynamic loading.In this paper,repeated load triaxial tests were performed on coarse-grained soil(CGS),and the axial permanent strain of CGS under different confining pressures and dynamic stress amplitudes was analysed.Permanent deformation behaviors of CGS were categorized based on the variation trend of permanent strain rate with accumulated permanent strain and the shakedown theory.A prediction model of permanent deformation considering stress state and number of load cycles was established,and the ranges of parameters for different types of dynamic behaviors were also divided.The results indicated that the variational trend of permanent strain rate with accumulated permanent strain can be used as a basis for classifying dynamic behaviors of CGS.The stress state(confining pressure and dynamic stress amplitude)has significant effects on the permanent strain rate.The accumulative characteristics of permanent deformation of CGS with the number of load cycles can be described by a power function,and the model parameters can reflect the influence of confining pressure and dynamic stress amplitude.The study’s results could help deepen understanding of the permanent deformation characteristics of CGS. 展开更多
关键词 Repeated load triaxial tests Coarse grained soil Shakedown theory Dynamic stress Accumulated permanent strain Railway subgrade
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Dynamic response of UHMWPE plates under combined shock and fragment loading 被引量:1
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作者 Chun-Zheng Zhao Lu-Sheng Qiang +4 位作者 Rui Zhang Qian-Cheng Zhang Jun-Yang Zhong Zhen-Yu Zhao Tian Jian Lu 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2023年第9期9-23,共15页
Ultra-high molecular weight polyethylene(UHMWPE)fiber composite has been extensively used to construct lightweight protective structures against ballistic impacts,yet little is known about its performance when subject... Ultra-high molecular weight polyethylene(UHMWPE)fiber composite has been extensively used to construct lightweight protective structures against ballistic impacts,yet little is known about its performance when subjected to combined blast and fragment impacts.Built upon a recently developed laboratory-scale experimental technique to generate simulated combined loading through the impact of a fragment-foam composite projectile launched from a light gas gun,the dynamic responses of fullyclamped UHMWPE plates subjected to combined loading were characterized experimentally,with corresponding deformation and failure modes compared with those measured with simulated blast loading alone.Subsequently,to explore the underlying physical mechanisms,three-dimensional(3D)numerical simulations with the method of finite elements(FE)were systematically carried out.Numerical predictions compared favorably well with experimental measurements,thus validating the feasibility of the established FE model.Relative to the case of blast loading alone,combined blast and fragment loading led to larger maximum deflections of clamped UHMWPE plates.The position of the FSP in the foam sabot affected significantly the performance of a UHMWPE target,either enhancing or decreasing its ballistic resistance.When the blast loading and fragment impact arrived simultaneously at the target,its ballistic resistance was superior to that achieved when subjected to fragment impact alone,and benefited from the accelerated movement of the target due to simultaneous blast loading. 展开更多
关键词 UHMWPE composite Ballistic performance Combined blast and fragment loading Impact test Finite element simulation
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Improved fault location method for AT traction power network based on EMU load test 被引量:1
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作者 Guosong Lin Xuguo Fu +1 位作者 Wei Quan Bin Hong 《Railway Engineering Science》 2022年第4期532-540,共9页
The autotransformer(AT)neutral current ratio method is widely used for fault location in the AT traction power network.With the development of high-speed electrified railways,a large number of data show that the relat... The autotransformer(AT)neutral current ratio method is widely used for fault location in the AT traction power network.With the development of high-speed electrified railways,a large number of data show that the relation between the AT neutral current ratio and the distance from the beginning of the fault AT section to the fault point(Q-L relation)is mostly nonlinear.Therefore,the linear Q-L relation in the traditional fault location method always leads to large errors.To solve this problem,a large number of load-related current data that can be used to describe the Q-L relation are obtained through the load test of the electric multiple unit(EMU).Thus,an improved fault location method based on the back propagation(BP)neural network is proposed in this paper.On this basis,a comparison between the improved method and the traditional method shows that the maximum absolute error and the average absolute error of the improved method are 0.651 km and 0.334 km lower than those of the traditional method,respectively,which demonstrates that the improved method can effectively eliminate the influence of nonlinear factors and greatly improve the accuracy of fault location for the AT traction power network.Finally,combined with a shortcircuit test,the accuracy of the improved method is verified. 展开更多
关键词 Fault location EMU load test BP neural network AT traction power network High-speed electrified railway
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Space-time evolution rules of acoustic emission location of unloaded coal sample at different loading rates 被引量:10
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作者 Ai Ting Zhang Ru +1 位作者 Liu Jianfeng Ren Li 《International Journal of Mining Science and Technology》 SCIE EI 2012年第6期847-854,共8页
By using MTS815 rock mechanics test system,a series of acoustic emission(AE) location experiments were performed under unloading confining pressure,increasing the axial stress.The AE space-time evolution regularities ... By using MTS815 rock mechanics test system,a series of acoustic emission(AE) location experiments were performed under unloading confining pressure,increasing the axial stress.The AE space-time evolution regularities and energy releasing characteristics during deformation and failure process of coal of different loading rates are compared,the influence mechanism of loading rates on the microscopic crack evolution were studied,combining the AE characteristics and the macroscopic failure modes of the specimens,and the precursory characteristics of coal failure were also analyzed quantitatively.The results indicate that as the loading rate is higher,the AE activity and the main fracture will begin earlier.The destruction of coal body is mainly the function of shear strain at lower loading rate and tension strain at higher rate,and will transform from brittleness to ductility at critical velocities.When the deformation of the coal is mainly plasticity,the amplitude of the AE ringing counting rate increases largely and the AE energy curves appear an obvious ''step'',which can be defined as the first failure precursor point.Statics of AE information shows that the strongest AE activity begins when the axial stress level was 92-98%,which can be defined as the other failure precursor point.As the loading rate is smaller,the coal more easily reaches the latter precursor point after the first one,so attention should be aroused to prevent dynamic disaster in coal mining when the AE activity reaches the first precursor point. 展开更多
关键词 Acoustic emission testing Acoustic emissions COAL Coal mines DEFORMATION Disaster prevention Fracture mechanics Rock mechanics Shear strain Strain rate UNloading
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Field load testing of copper extraction aeration pipes under simulated high heap pile
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作者 Shad M.Sargand Teruhisa Masada Jim Goddard 《International Journal of Mining Science and Technology》 SCIE EI 2013年第5期751-756,共6页
Recently a research team at Ohio University,USA,conducted a unique full-scale feld load test to simulate the aeration pipe installations at a copper extraction mine operated in Chile.The overliner material taken from ... Recently a research team at Ohio University,USA,conducted a unique full-scale feld load test to simulate the aeration pipe installations at a copper extraction mine operated in Chile.The overliner material taken from the mine was used in recreating the in situ conditions.Electric heaters were utilized to raise the temperature inside each pipe to simulate the essential element of the copper extraction process.The maximum vertical deflection reached by the test pipes was close to 20%,when the simulated heap pile height was 80 m.The plastic pipes and the overliner material were also tested in the laboratory.Based on the results,the maximum heap pile fll depth was recommended for the aeration system.The results indicated that the vertical deflection was the primary performance index for the aeration pipes installed in heap piles at mines.Lastly,the pipe made of polypropylene resin was super. 展开更多
关键词 Copper extraction Aeration pipe Heap pile Field load test Laboratory testing
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Behaviour of a Moment Resisting Composite Steel and Concrete Joint Under Alternate Loading
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作者 Alberto Zanchettin Bruno Briseghella Tobia Zordan 《施工技术》 CAS 北大核心 2011年第6期93-101,110,共10页
The authors show the results of a study conducted on a joint connecting a concrete column to a composite steel concrete floor,subjected to tension on the beams as a result of the decomposition of sagging bending momen... The authors show the results of a study conducted on a joint connecting a concrete column to a composite steel concrete floor,subjected to tension on the beams as a result of the decomposition of sagging bending moment.The beam to column connection is achieved by means of headed studs welded to the beam and embedded in the concrete cast.Five different configurations have been tested at failure and the results are compared to formulae proposed in literature.Different degrees of ductility,reliability and strength have been obtained varying geometry and reinforcement ratio on the joints tested. 展开更多
关键词 composite steel concrete joint laboratory test analysis alternate loading
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Similarity Criterion and Scale Effect for Ship Distortion Model Under Combined Loads
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作者 ZHANG Yi-long WEI Peng-yu +3 位作者 DAI Ze-yu WANG Lian ZENG Qing-bo TANG Qin 《船舶力学》 EI CSCD 北大核心 2024年第12期1880-1890,共11页
For the ultimate strength model test evaluation of large ship structures, the distortion model with non-uniform ratio between the main size and the plate thickness size is usually adopted. It is the key to carry out s... For the ultimate strength model test evaluation of large ship structures, the distortion model with non-uniform ratio between the main size and the plate thickness size is usually adopted. It is the key to carry out scale model test to establish a distortion model similar to the real ship structure under combined load. A similarity criterion for ship distortion model under the combined action of bending moment and surface pressure was proposed, and the scale effect for the criterion was verified by a se ries of numerical analysis and model tests. The results show that the similarity criterion for ship distor tion model under combined loads has a certain scale effect. For the model tests of ship cabin struc tures, it is suggested that the scale range between the plate thickness scale and the main dimension scale should be controlled within 2:1, which can be used as a reference for distortion model design and ultimate strength test of large-scale ship structures. 展开更多
关键词 distortion model combined load similarity criteria scale effect ultimate strength test
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Explosion resistance performance of reinforced concrete box girder coated with polyurea:Model test and numerical simulation
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作者 Guangpan Zhou Rong Wang +2 位作者 Mingyang Wang Jianguo Ding Yuye Zhang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第3期1-18,共18页
To study the anti-explosion protection effect of polyurea coating on reinforced concrete box girder,two segmental girder specimens were made at a scale of 1:3,numbered as G(without polyurea coating)and PCG(with polyur... To study the anti-explosion protection effect of polyurea coating on reinforced concrete box girder,two segmental girder specimens were made at a scale of 1:3,numbered as G(without polyurea coating)and PCG(with polyurea coating).The failure characteristics and dynamic responses of the specimens were compared through conducting explosion tests.The reliability of the numerical simulation using LS-DYNA software was verified by the test results.The effects of different scaled distances,reinforcement ratios,concrete strengths,coating thicknesses and ranges of polyurea were studied.The results show that the polyurea coating can effectively enhance the anti-explosion performance of the girder.The top plate of middle chamber in specimen G forms an elliptical penetrating hole,while that in specimen PCG only shows a very slight local dent.The peak vertical displacement and residual displacement of PCG decrease by 74.8% and 73.7%,respectively,compared with those of specimen G.For the TNT explosion with small equivalent,the polyurea coating has a more significant protective effect on reducing the size of fracture.With the increase of TNT equivalent,the protective effect of polyurea on reducing girder displacement becomes more significant.The optimal reinforcement ratio,concrete strength,thickness and range of polyurea coating were also drawn. 展开更多
关键词 Explosive load Explosion resistance performance Model test POLYUREA Concrete box girder Numerical simulation
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基于SmartRock传感技术的道砟静力循环平板载荷试验研究
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作者 王家全 张涛艺 +1 位作者 黄世斌 唐毅 《铁道学报》 北大核心 2025年第1期123-130,共8页
基床道砟在交通荷载重复作用下的位移变形机制尚不清晰,为了研究道砟在静力循环荷载作用下的沉降规律和道砟颗粒的位移旋转特性,利用自行设计的静力循环平板试验模型装置,对道砟填料开展不同幅值下的静力循环平板载荷试验,结合SmartRoc... 基床道砟在交通荷载重复作用下的位移变形机制尚不清晰,为了研究道砟在静力循环荷载作用下的沉降规律和道砟颗粒的位移旋转特性,利用自行设计的静力循环平板试验模型装置,对道砟填料开展不同幅值下的静力循环平板载荷试验,结合SmartRock无线传感器技术分析道砟层不同位置颗粒接触变形特性,揭示循环加卸载过程中道砟沉降及旋转特性。结果表明:低、中、高3种幅值下的累积塑性变形分别为2.92、3.91、12.37 mm,且低幅值和中幅值工况的累积塑性变形量为高幅值工况的22.94%、30.71%,表现为道砟承载塑性变形对基底高压力敏感性高;建立峰值沉降量与循环次数和荷载幅值之间数学模型,可较好预测经过多次循环后道砟的峰值沉降量;在静力循环加卸载过程中,低幅值和中幅值工况的x、y轴转角的最大值分别为高幅值工况的22.19%、34.90%和32.45%、39.55%,颗粒绕x、y轴转动的概率远大于z轴,在一个方向的转动响应弱,必然会在另一个方向的转动响应强,且循环荷载作用是道砟填料磨损严重的重要原因之一。 展开更多
关键词 静力循环 平板载荷试验 道砟 SmartRock传感器 沉降规律
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桩承式土工袋垫层加筋地基二维模型试验
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作者 刘斯宏 韩雪蕾 +1 位作者 李博文 鲁洋 《东南大学学报(自然科学版)》 北大核心 2025年第1期117-123,共7页
在地基加固中,土工袋与桩基础均可起到提高地基承载力,减小不均匀沉降的作用,但将两者联合用于地基处理缺乏深入研究。设计了可模拟桩承式地基差异性沉降的试验装置,开展了一系列二维模型试验。通过数字图像相关技术(DIC)获取了模型地... 在地基加固中,土工袋与桩基础均可起到提高地基承载力,减小不均匀沉降的作用,但将两者联合用于地基处理缺乏深入研究。设计了可模拟桩承式地基差异性沉降的试验装置,开展了一系列二维模型试验。通过数字图像相关技术(DIC)获取了模型地基位移场,利用称重传感器精确地测量了地基荷载变化,分析了土工袋垫层厚度、桩顶埋深、桩间距和地基表面荷载对地基变形模式及荷载传递规律的影响。结果表明:桩顶土工袋可扩大桩体作用范围,土工袋长度与桩宽的较优比例为2∶1;相较于桩承式地基,土工袋垫层可起到协调地基内部变形的作用;土工袋垫层厚度及桩顶埋深的增加对减小地基表面不均匀沉降有利;在地基表面施加荷载的过程中,土工袋垫层可使更多荷载传递至桩顶。 展开更多
关键词 土工袋垫层 模型试验 变形模式 荷载传递
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体外预应力钢绞线加固钢吊车梁受弯性能试验
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作者 高志刚 苗哲 +3 位作者 何佳晨 张程华 秦卿 张华 《西安科技大学学报》 北大核心 2025年第2期351-361,共11页
为有效解决传统加固钢吊车梁施工工艺复杂、难度高、周期长、成本高等问题,提出体外预应力钢绞线加固钢吊车梁法。共设计制作3根试验梁,加固组钢绞线施加预应力130 kN,通过静力加载试验,对加固梁和未加固梁的破坏形态、荷载-挠度曲线、... 为有效解决传统加固钢吊车梁施工工艺复杂、难度高、周期长、成本高等问题,提出体外预应力钢绞线加固钢吊车梁法。共设计制作3根试验梁,加固组钢绞线施加预应力130 kN,通过静力加载试验,对加固梁和未加固梁的破坏形态、荷载-挠度曲线、梁跨变形规律及上翼缘、腹板、下翼缘的应变分布规律进行分析。结果表明:试件梁的破坏形态均为典型弯曲破坏,直线布线加固梁破坏时钢绞线跨中与梁下翼缘接触,加载点处屈曲;折线布线加固梁钢绞线在跨中断裂破坏,加载点处屈曲,钢梁发生回弹;当许用挠度达到6.75 mm时,未加固梁荷载为63 kN,直线布线加固梁荷载为71 kN,折线布线加固梁荷载为115 kN;直线布线加固钢梁极限承载力提高了29.36%,屈服荷载提高了17.07%,折线布线加固钢梁极限承载力提高了85.32%,屈服荷载提高了107%。研究认为折线布线加固钢梁效果最佳,能够有效提高钢梁承载力,对现有服役期工作的钢吊车梁加固设计有一定参考价值。 展开更多
关键词 钢吊车梁 体外预应力 静力加载试验 变形 应变
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单块双肋梁装配式风电基础结构受力特性研究
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作者 王海军 刘昌 +3 位作者 郝华庚 郭耀华 王献文 赵广赫 《太阳能学报》 北大核心 2025年第1期34-41,共8页
以节约耗材、施工快速、质量可控等为目标,结合陆上风电梁板式基础结构特点,提出一种新型单块双肋梁装配式基础。目前对装配式梁板基础结构受力特性的研究较少,该文通过建立基础整体有限元模型及开展室内模型试验,研究预制装配式梁板基... 以节约耗材、施工快速、质量可控等为目标,结合陆上风电梁板式基础结构特点,提出一种新型单块双肋梁装配式基础。目前对装配式梁板基础结构受力特性的研究较少,该文通过建立基础整体有限元模型及开展室内模型试验,研究预制装配式梁板基础受V(竖向荷载)-H(水平荷载)-M(弯矩荷载)复合荷载下的结构受力特性,并重点分析基础肋梁、底板、台柱等的承载及破坏模式。研究表明,新型单块双肋梁装配式基础结构具有良好的承载及结构力学性能,安全储备可达设计值的1.44倍;基础整体稳定性良好,各项指标满足现有规范设计要求;同时,台柱-肋梁交接处为此类型基础结构承载及荷载传递的关键部位,设计及施工时应重点关注。 展开更多
关键词 预制结构 陆上风电 模型试验 复合加载 数值模拟 受力特性
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流线型构件对TTU模型风荷载影响的大涡模拟研究
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作者 杨易 王喆 张之远 《华南理工大学学报(自然科学版)》 北大核心 2025年第2期136-148,共13页
低矮建筑屋盖角区出现的高极值负压,是其围护结构抗风设计的重点。基于空气动力学原理,依据屋面角区绕流形态,基于TTU(Texas Tech University)标准建筑模型设计了一种屋面角区新型流线型附加构件,并通过改变附加构件高度、长度等参数,... 低矮建筑屋盖角区出现的高极值负压,是其围护结构抗风设计的重点。基于空气动力学原理,依据屋面角区绕流形态,基于TTU(Texas Tech University)标准建筑模型设计了一种屋面角区新型流线型附加构件,并通过改变附加构件高度、长度等参数,进行了10种工况的刚性模型测压风洞试验和大涡模拟(LES)对比研究,以探讨这类新型附加构件对屋面角区风荷载的影响和屋面抗风气动优化以及LES精度等问题。研究结果表明:屋面角区设置附加构件均可有效降低角区出现的极值负压,在所研究的10种工况中,屋面角区最不利平均负压最大可降低10%,最不利极值负压最大可降低25%;利用NSRFG(Narrowband Synthesis Random Flow Generation)方法生成入流湍流,采用LES得到的TTU模型各工况下的风荷载分布规律,虽然部分工况下屋面平均风压系数绝对值模拟结果偏大(平均误差为13.88%),而极值风压系数偏小(平均误差为9.72%),但整体上与风洞试验一致,表明利用NSRFG方法建立的低矮建筑绕流模型具有较好的精度;附加构件长度相对于高度而言对屋面角区风荷载的影响更大,等长附加构件高度增加1倍后,屋面角区极值风压系数降低6.15%,等高附件长度增加0.8倍后,屋面角区极值风压系数降低10.77%。 展开更多
关键词 低矮建筑 风荷载 大涡模拟 风洞试验 优化设计
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装配式智能调平锚桩静载试验设备研发与应用
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作者 吴跃东 毛伟 +1 位作者 刘坚 刘辉 《河海大学学报(自然科学版)》 北大核心 2025年第2期71-77,共7页
针对堆载法碎石桩承载力检测方法的局限性,通过引入智能调平系统,研发了一种适用于碎石桩承载力检测的装配式智能调平锚桩静载试验设备。该设备将锚索埋设于试桩周围的锚桩中,可提供锚桩法试验过程中所需的抗拔力;智能调平系统能自动调... 针对堆载法碎石桩承载力检测方法的局限性,通过引入智能调平系统,研发了一种适用于碎石桩承载力检测的装配式智能调平锚桩静载试验设备。该设备将锚索埋设于试桩周围的锚桩中,可提供锚桩法试验过程中所需的抗拔力;智能调平系统能自动调整反力梁角度,可有效防止其发生倾斜。工程现场试验结果表明,采用该设备进行的锚桩法静载试验与传统堆载法静载试验得到的试桩沉降变化规律一致,误差合理,试桩承载力满足工程设计要求;经锚索拉拔后的锚桩密实度并未大幅下降,其承载力仍满足工程设计要求;采用该设备进行锚桩法静载试验能缩短设备搭设时间,减少试验所需场地,可有效提高试验的安全性及稳定性。 展开更多
关键词 振冲碎石桩 承载力 静载试验 锚桩法 堆载法 智能调平
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六边形断面超高层建筑风荷载研究
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作者 王磊 尹伊 +2 位作者 陈凯 唐意 郝玮 《应用力学学报》 北大核心 2025年第1期164-173,共10页
为了研究六边形断面超高层建筑的静力和动力风荷载,开展了一系列刚性测压模型和多自由度气弹模型风洞试验,测量了刚性模型表面风压和气弹模型风致位移。对于静力风荷载,分析了体型系数和静风力系数的变化规律,建立了顺风向平均基底弯矩... 为了研究六边形断面超高层建筑的静力和动力风荷载,开展了一系列刚性测压模型和多自由度气弹模型风洞试验,测量了刚性模型表面风压和气弹模型风致位移。对于静力风荷载,分析了体型系数和静风力系数的变化规律,建立了顺风向平均基底弯矩系数和平均阻力系数的经验公式。对于动力风荷载,分析了横风向荷载功率谱和均方根基底弯矩,建立了横风向广义风荷载功率谱和归一化均方根基底弯矩系数的经验公式。最后,基于多自由度气弹模型的风致振动试验结果,验证了经验公式的精确性。 展开更多
关键词 超高层建筑 六边形断面 风荷载 风洞试验
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