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Effect of loading rate on the mechanical response and energy evolution of skarn rock subjected to constant-amplitude cyclic loading
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作者 WU Yun-feng WANG Yu +5 位作者 LI Chang-hong ZHOU Bao-kun LI Peng CAI Mei-feng SUN Chang-kun TIAN Zi-cheng 《Journal of Central South University》 2025年第3期1117-1140,共24页
This work aims to reveal the mechanical responses and energy evolution characteristics of skarn rock under constant amplitude-varied frequency loading paths.Testing results show that the fatigue lifetime,stress−strain... This work aims to reveal the mechanical responses and energy evolution characteristics of skarn rock under constant amplitude-varied frequency loading paths.Testing results show that the fatigue lifetime,stress−strain responses,deformation,energy dissipation and fracture morphology are all impacted by the loading rate.A pronounced influence of the loading rate on rock deformation is found,with slower loading rate eliciting enhanced strain development,alongside augmented energy absorption and dissipation.In addition,it is revealed that the loading rate and cyclic loading amplitude jointly influence the phase shift distribution,with accelerated rates leading to a narrower phase shift duration.It is suggested that lower loading rate leads to more significant energy dissipation.Finally,the tensile or shear failure modes were intrinsically linked to loading strategy,with cyclic loading predominantly instigating shear damage,as manifest in the increased presence of pulverized grain particles.This work would give new insights into the fortification of mining structures and the optimization of mining methodologies. 展开更多
关键词 cyclic loading loading rate constant amplitude deformation characteristics energy dissipation
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Ultimate Strength of Hull Perforated Plate Under Extreme Cyclic Loading
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作者 ZHENG Ji-qian FENG Liang CHEN Xu-guang 《船舶力学》 EI CSCD 北大核心 2024年第12期1925-1939,共15页
In this study, the influence of opening parameters on the ultimate strength of perforated plates subjected to extreme cyclic loading in the presence of material kinematic hardening and isotro pic hardening was analyze... In this study, the influence of opening parameters on the ultimate strength of perforated plates subjected to extreme cyclic loading in the presence of material kinematic hardening and isotro pic hardening was analyzed. It is found that the ultimate strength of the perforated plates decreases rapidly and stabilizes in the first four cycles. Plates with oblong openings have a greater ultimate strength compared to plates with rectangular openings, while the relative strengthening ratio decreases over the duration of the cycle. The location of the openings is also an important parameter that affects the strength of the structure, as the plates with openings close to the edges in the longitudinal direction have higher strengths, while in the transverse direction the strengths are higher when the openings are close to the center. Among the three opening-strengthening methods compared, the Carling stiffener method maintains a better strengthening effect under cyclic loads for many periods. 展开更多
关键词 extreme cyclic loading perforated plate ultimate strength
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Strength and damage evolution mechanism of rock mass with holes under cyclic loading
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作者 LIU Hong-tao HAN Zi-jun +6 位作者 GUO Xiao-fei LIU Qin-yu QIAO Zhong-jin LIANG Jia-lu CHENG Wen-cong ZHANG Xi-ying ZHANG Yu-qi 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第8期2717-2735,共19页
The damage and failure law of rock mass with holes is of great significance to the stability control of roadways. This study investigates the mechanical properties and failure modes of porous rock masses under cyclic ... The damage and failure law of rock mass with holes is of great significance to the stability control of roadways. This study investigates the mechanical properties and failure modes of porous rock masses under cyclic loading, elucidates the acoustic emission (AE) characteristics and their spatial evolution, and establishes the interrelation among AE, stress, strain, time, and cumulative damage. The results reveal that the rock mass with holes and the intact rock mass show softening and hardening characteristics after cyclic loading. The plastic strain of the rock mass with holes is smaller than that of the intact rock mass, and the stress −strain curve shows hysteresis characteristics. Under uniaxial compression, the pore-bearing rock mass shows the characteristics of higher ringing count, AE energy, b-value peak, and more cumulative ringing count in the failure stage, while it shows lower characteristics under cyclic action. At the initial stage of loading, compared with the intact rock mass, the pore-containing rock mass shows the characteristics of a low b-value. The AE positioning and cumulative damage percentage are larger, and the AE positioning is denser around the hole. The specimen with holes is mainly shear failure, and the complete specimen is mainly tensile shear failure. 展开更多
关键词 roadway surrounding rock control acoustic emission cyclic loading failure mode precursor of destruction
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Effects of axial cyclic loading at constant confining pressures on deformational characteristics of anisotropic argillite 被引量:2
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作者 张久长 周苏华 +1 位作者 方理刚 许湘华 《Journal of Central South University》 SCIE EI CAS 2013年第3期799-811,共13页
Triaxial cyclic loading tests have been performed to assess the influence of plastic deformation on inelastic deformational properties of anisotropic argillite with bedding planes which is regarded as a kind of transv... Triaxial cyclic loading tests have been performed to assess the influence of plastic deformation on inelastic deformational properties of anisotropic argillite with bedding planes which is regarded as a kind of transversely isotropic media.Considering argillite's anisotropy and inelastic deformational properties,theoretical formulae for calculating oriented elastic parameters were deduced by the unloading curves,which can be better fitted for the description of its elasticity than loading curves.Test results indicate that with the growth of accumulated plastic,strain,the apparent elastic modulus of argillite decreases in a form of exponential decay function,whereas the apparent Poisson ratio increase in a form of power equation.A ratio of unloading recoverable strain to the total strain increment occurred during a loading cycle is defined to illustrate the characteristic relations between anisotropic coupled elasto-plastic deformation and plastic strain.It is significant to observe that high stress level and plastic history have an inhibiting effect on argillite anisotropy. 展开更多
关键词 anisotropic argillite coupled elasto-plasticity cyclic loading tests elastic parameters plastic strain
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Analytical solution to one-dimensional consolidation in unsaturated soils under sinusoidal cyclic loading
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作者 冯君 巫锡勇 +1 位作者 朱宝龙 杨期祥 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第2期646-653,共8页
An analytical solution was presented to the unsaturated soil with a finite thickness under confinement in the lateral direction and sinusoidal cyclic loading in the vertical direction based on Fredlund's one-dimen... An analytical solution was presented to the unsaturated soil with a finite thickness under confinement in the lateral direction and sinusoidal cyclic loading in the vertical direction based on Fredlund's one-dimensional consolidation equation for unsaturated soil. The transfer relationship between the state vectors at the top surface and any depth was gained by applying the Laplace transform and Cayley-Hamilton mathematical methods to the governing equations of water and air, Darcy's law and Fick's law. The excess pore-air and pore-water pressures and settlement in the Laplace-transformed domain were obtained by using the Laplace transform with the initial and boundary conditions. The analytical solutions of the excess pore-air and pore-water pressures at any depth and settlement were obtained in the time domain by performing the inverse Laplace transforms. A typical example illustrates the consolidation characteristics of unsaturated soil under sinusoidal loading from analytical results. Finally, comparisons between the analytical solutions and results of the numerical method indicate that the analytical solution is correct. 展开更多
关键词 unsaturated soil analytical solution one-dimensional consolidation excess pore-water pressure excess pore-air pressure SETTLEMENT sinusoidal cyclic loading
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Numerical simulation on behavior of pile foundations under cyclic axial loads 被引量:5
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作者 ZHAO Ming-hua HENG Shuai ZHENG Yue 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第12期2906-2913,共8页
On the basis of the two dimensional finite element analysis model, the pile foundations' mechanical effect of the rigid pile composite foundation under the dynamic load was researched. Through the research, the de... On the basis of the two dimensional finite element analysis model, the pile foundations' mechanical effect of the rigid pile composite foundation under the dynamic load was researched. Through the research, the development law and deformation property of axial force of pile body, shaft resistance of pile, and cumulative settlement of pile head under vertical cyclic dynamic loads were concluded. Through the comparison and analysis of the test results of dynamic models, the test results of Poulos(1989) and cumulative settlement model of the single pile under cyclic loads were confirmed. Based on the above research, Fortran language was adopted to introduce the soil attenuation factor, the secondary development of relevant modules of ABAQUS was carried out, and the effect of soil attenuation factor on dynamic property of pile-soil was discussed further. 展开更多
关键词 PILE FOUNDATION ABAQUS cyclic dynamic load numerical simulation PILE-SOIL interaction SECONDARY development
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Closure behavior of rock joint under dynamic loading 被引量:6
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作者 王卫华 李夕兵 +1 位作者 张义平 左宇军 《Journal of Central South University of Technology》 EI 2007年第3期408-412,共5页
The normal compression tests on intact samples and artificial joints with different saw-tooth shape under cyclic loading and half-sine waves of different frequencies were performed by using Instron1342 servo-controlle... The normal compression tests on intact samples and artificial joints with different saw-tooth shape under cyclic loading and half-sine waves of different frequencies were performed by using Instron1342 servo-controlled material testing machine. The specimens were made artificially with mortar. The loading frequency ranged from 0.005 Hz to 0.1 Hz. The experimental results show that joint closure curves are non-linear and concave up. The stress-deformation curves under cyclic loading exhibit hysteresis and permanent set that diminish rapidly and keep constant finally on successive cycles. Normal displacement successively decreases from the joint J1 to J2, to J3 under the same normal loads regardless of frequency. Considering the loading frequency effect, normal displacement of joint J1 decreases with increasing the loading frequency except that the loading frequency is 0.05 Hz. Normal displacement of joint J2 increases with increasing the loading frequency. Normal displacement of joint J3 increases with increasing the loading frequency when the frequency ranges from 0.005 Hz to 0.05 Hz. Its normal displacement, however, becomes least when the loading frequency is 0.1 Hz. 展开更多
关键词 joint closure behavior cyclic load surface geometry load frequency
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Bearing characteristics and fatigue damage mechanism of multi-pillar system subjected to different cyclic loads 被引量:5
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作者 ZHOU Zi-long WANG Hai-quan +3 位作者 CAI Xin ZANG Hai-zhi CHEN Lu LIU Fu 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第2期542-553,共12页
Aiming to investigate the fatigue damage mechanism and bearing characteristics of multi-pillar system under cyclic loading,a series of axial cyclic loading tests with different cyclic amplitudes were carried out on tr... Aiming to investigate the fatigue damage mechanism and bearing characteristics of multi-pillar system under cyclic loading,a series of axial cyclic loading tests with different cyclic amplitudes were carried out on triple-pillar marble specimens.The acoustic emission(AE)and digital image correlation(DIC)were jointly applied to monitoring and recording damage evolution and failure behavior of each pillar,which reproduced the cataclysmic instability process of underground pillar groups.Experimental results indicated that the cyclic amplitude exceeding the threshold of damage initiation weakened the resistance to deformation,resulting in obvious release of dissipated energy and the reduction of bearing capacity.Conversely,after low-amplitude cyclic loading,both the pre-peak bearing capacity and the post-peak ductility of the pillar system increased due to the compaction of initial defects,indicating that the peak bearing capacity was closely related to the extent of pre-peak fatigue damage.The axial strain of each pillar was measured by DIC virtual extensometer to present the damage extent during cyclic loading phase.Meanwhile,fracture evolution of typical load drop points was also characterized by transverse strain fields(εxx),and observations showed that the damage extent of key pillar undergoing high-amplitude cyclic loads was more serious and violent,accompanied by the ejection of rock debris and loud noises. 展开更多
关键词 multi-pillar system cyclic loading fatigue damage bearing characteristics acoustic emission(AE) digital image correlation(DIC)
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循环荷载尾砂胶结充填体声发射特征 被引量:1
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作者 邱华富 李宇航 +1 位作者 刘浪 丁自伟 《西安科技大学学报》 北大核心 2025年第1期74-85,共12页
为了研究循环荷载作用下废石尾砂胶结充填体的力学特性与损伤规律,制备了4种不同废石含量的尾砂胶结充填体,开展了2种加载路径下单轴循环加卸载试验,并借助声发射监测系统,获取了不同加载路径下所释放的声信号,研究充填体损伤演化规律... 为了研究循环荷载作用下废石尾砂胶结充填体的力学特性与损伤规律,制备了4种不同废石含量的尾砂胶结充填体,开展了2种加载路径下单轴循环加卸载试验,并借助声发射监测系统,获取了不同加载路径下所释放的声信号,研究充填体损伤演化规律。结果表明:充填体力学强度随废石含量的增加呈现先增大后减小趋势,废石含量10%的充填体力学强度达到最大,在恒定下限循环加卸载和等幅循环加卸载路径下的强度分别为3.94 MPa和3.63 MPa,且充填体在等幅循环加卸载下的强度普遍高于恒定下限循环加卸载;恒定下限循环加卸载过程中,滞回环面积同循环次数呈二次函数关系,随循环次数的增多而增大,Felicity比值随循环次数增多而减小,充填体损伤程度不断加深;恒定下限循环加卸载和等幅循环加卸载过程中,充填体的声发射信号均呈“峰谷”现象,累计振铃计数和累计能量呈“阶梯式”上升趋势。研究可为矿山储库构建及稳定性无损检测分析提供理论基础。 展开更多
关键词 尾砂胶结充填体 循环加卸载 力学特性 声发射 损伤特性
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饱和水泥石力学特性及其对水泥环完整性的影响
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作者 郭辛阳 王晨阳 +2 位作者 张一凡 张洋洋 许玉强 《实验技术与管理》 北大核心 2025年第2期81-87,共7页
采用单轴和三轴力学实验研究了饱和水泥石在不同围压和循环载荷下的力学特性及不同弹性模量饱和水泥石在不同围压下的力学特性,分析了其对水泥环完整性的影响。实验结果表明,单轴条件下,饱和水泥石与自然含水水泥石力学特性类似;围压条... 采用单轴和三轴力学实验研究了饱和水泥石在不同围压和循环载荷下的力学特性及不同弹性模量饱和水泥石在不同围压下的力学特性,分析了其对水泥环完整性的影响。实验结果表明,单轴条件下,饱和水泥石与自然含水水泥石力学特性类似;围压条件下,饱和水泥石力学特性与有效应力密切相关,随着有效应力的增大,屈服应力增大,抗压强度增加,残余强度增加,塑性变形能力增强,更不易形成微间隙和微裂缝,更有利于水泥环的完整性;单轴和围压条件下,循环载荷越大,单次循环载荷造成的塑性应变越大,相同循环载荷时围压条件下的塑性应变比单轴条件更大。 展开更多
关键词 饱和水泥石 力学特性 循环载荷 完整性
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循环载荷对高温环境水泥石微观结构及力学性能的影响
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作者 初永涛 刘奎 +2 位作者 蒋新立 王磊 李鹏程 《石油钻探技术》 北大核心 2025年第4期55-64,共10页
深层、超深层非常规油气压裂开发对水泥环在高温环境中交变载荷作用下的力学性能及密封完整性提出了更高的要求,亟需明确高温环境下水泥石力学性能的变化规律,为提升深层油气井水泥环密封能力提供支撑。采用力学加载、电镜扫描(SEM)和... 深层、超深层非常规油气压裂开发对水泥环在高温环境中交变载荷作用下的力学性能及密封完整性提出了更高的要求,亟需明确高温环境下水泥石力学性能的变化规律,为提升深层油气井水泥环密封能力提供支撑。采用力学加载、电镜扫描(SEM)和核磁共振(NMR)方法,测试了高温环境及循环载荷作用下水泥石宏观力学性能的变化、塑性残余应变的变化和加载前后水泥石的微观孔隙结构,揭示了水泥石微观结构的演化规律,构建了水泥石累积塑性残余应变的本构关系。研究结果表明,养护温度越高,水泥石的平均孔径和孔隙率越大,水泥石弹性模量降低的同时,加载后水泥石塑性残余应变越大;随着循环次数增加,循环加卸载形成的滞回环曲线呈先疏后密的特点;微观结构力学分析结果显示,循环载荷作用下水泥石中狭长孔(b/a>100)的坍塌压缩是水泥石塑性残余应变的主要诱因;深层井下高温环境中,可通过颗粒级配和纳米颗粒材料提升水泥环的致密性、降低其孔径及孔隙率,以降低循环载荷引起的微观孔隙劣化和宏观残余应变。研究结果对研究保证高温环境下水泥环密封能力水泥浆体系和优化固井工艺具有指导作用。 展开更多
关键词 交变载荷 塑性残余应变 微观结构 微观机理 孔隙
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法向循环荷载下细颗粒氯盐渍土剪切特性研究
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作者 侯娟 张宸 +2 位作者 张金榜 马艳霞 张吾渝 《工程地质学报》 北大核心 2025年第3期898-907,共10页
为了研究法向循环荷载作用下盐渍土的剪切性能,本文针对青海地区的细颗粒氯盐渍土,开展了一系列法向循环荷载下的大型直剪试验。研究了初始含水率、静荷载、法向循环荷载初始应力、循环幅值和循环频率等对细颗粒氯盐渍土剪切特性的影响... 为了研究法向循环荷载作用下盐渍土的剪切性能,本文针对青海地区的细颗粒氯盐渍土,开展了一系列法向循环荷载下的大型直剪试验。研究了初始含水率、静荷载、法向循环荷载初始应力、循环幅值和循环频率等对细颗粒氯盐渍土剪切特性的影响。研究结果表明,含水率对细颗粒氯盐渍土的残余强度具有显著地影响。当含水率非常接近最优含水率时,细颗粒氯盐渍土仅出现微小的裂隙。但是,当含水率低于最优含水率时,细颗粒氯盐渍土在剪切初期会出现较多的裂隙,但在剪切后期裂隙会减少。当含水率高于最优值时,细颗粒氯盐渍土整体剪切界面会出现团粒状土样,团粒间裂缝较大,且土体抗剪强度明显下降。细颗粒盐渍土出现细小裂隙后随上覆动荷载迅速扩展,进而导致细颗粒盐渍土路基产生不均匀沉降。法向循环荷载作用下,较小的荷载频率仅对细颗粒氯盐渍土的残余强度有较明显地影响。但是,较大的荷载频率对细颗粒氯盐渍土的峰值强度和残余强度均有较明显的影响,且随着荷载频率的增大而增大。高循环荷载幅值下,细颗粒氯盐渍土的峰值剪切强度较静载有所增高。但低频率和低幅值的法向循环荷载会明显地降低细颗粒氯盐渍土的抗剪强度。同时,颗粒的重分布导致剪切应力峰值与法向应力峰值之间存在一个时间差。颗粒大小和级配影响时间差,进而影响法向循环荷载下土体的剪切性能。该研究结果可为细颗粒氯盐渍土的路基设计和施工提供理论指导和施工技术指标。 展开更多
关键词 氯盐渍土 剪切强度 交通荷载 含水率
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砂土中多筒导管架基础的循环承载特性
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作者 张浦阳 冯嘉成 +1 位作者 乐丛欢 丁红岩 《哈尔滨工程大学学报》 北大核心 2025年第4期683-695,共13页
为研究海上风机基础在周期性循环荷载下的承载特性,本文针对不同形式的多筒导管架基础结构和加载方向,采用模型试验与有限元相结合的方法,对多筒导管架基础在饱和砂土中的单调水平承载特性进行了系统研究。研究表明:加载角度对多筒导管... 为研究海上风机基础在周期性循环荷载下的承载特性,本文针对不同形式的多筒导管架基础结构和加载方向,采用模型试验与有限元相结合的方法,对多筒导管架基础在饱和砂土中的单调水平承载特性进行了系统研究。研究表明:加载角度对多筒导管架基础的单调极限承载力影响较小;在循环荷载作用下,基础的累积变形增长速率逐渐减缓,幅值比越大,循环累积转角越大,其中三筒导管架基础的累积转角略高于四筒导管架基础。此外,长周期循环荷载使基础卸载刚度最终趋于稳定,并维持在第1次循环后卸载刚度值的1.5~2倍。三筒和四筒导管架基础的塑性区主要集中在筒裙前侧顶部和端部,呈现楔形和勺型破坏模式,而筒底未形成贯通式破坏面。水平与弯矩加载作用下,基础的旋转中心位于筒基与泥面交界处,土压力集中分布在受压筒附近,后侧土体扰动较小。 展开更多
关键词 海上风电 多筒导管架基础 极限承载力 循环荷载 卸载刚度 累积转角 塑性变形 土压力
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冻融循环和循环荷载下裂隙砂岩断裂特性
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作者 刘涛影 崔梦园 +3 位作者 盛业山 董陇军 李地元 林杭 《中国有色金属学报》 北大核心 2025年第7期2538-2560,共23页
在高寒地区矿产开发中,冻融循环与循环荷载的耦合作用易引发岩体冻胀破坏,威胁工程安全。本文采用数字图像技术(DIC)和扫描电子显微镜(SEM)分析裂隙岩体的断裂特征,发现通过SEM研究发现冻融次数增加会加剧水冰相变对颗粒胶结力的弱化,... 在高寒地区矿产开发中,冻融循环与循环荷载的耦合作用易引发岩体冻胀破坏,威胁工程安全。本文采用数字图像技术(DIC)和扫描电子显微镜(SEM)分析裂隙岩体的断裂特征,发现通过SEM研究发现冻融次数增加会加剧水冰相变对颗粒胶结力的弱化,形成蜂窝状松散结构,孔洞和微裂隙增多,最终发展为贯通裂隙。冻融次数升高会促使砂岩裂纹扩展加剧,破坏形态由单斜面剪切转为X状共轭剪切,其中45°倾角砂岩损伤最显著。冻融循环使砂岩起裂强度、K_(Ⅰ)和K_(Ⅱ)线性下降,裂隙倾角对起裂强度的影响呈先降后升的二次函数规律,K_(Ⅰ)随倾角增大呈指数递减,而K_(Ⅱ)不受倾角影响。 展开更多
关键词 冻融循环 循环加卸载 数字图像技术 断裂特征
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循环荷载作用下温州海相软基土变形特性试验研究与数值模拟
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作者 张莎莎 郝智晨 +2 位作者 张天工 王志丰 徐建强 《建筑科学与工程学报》 北大核心 2025年第3期183-195,共13页
为了解海相软基土在交通荷载下的变形规律,对温州重塑海相软基土进行了一系列长期循环三轴试验,对比分析了不同排水条件下循环应力比(CSR)对海相软基土宏观变形特性的影响,揭示了塑性变形、应力-回弹应变滞回圈、回弹模量的变化规律,在... 为了解海相软基土在交通荷载下的变形规律,对温州重塑海相软基土进行了一系列长期循环三轴试验,对比分析了不同排水条件下循环应力比(CSR)对海相软基土宏观变形特性的影响,揭示了塑性变形、应力-回弹应变滞回圈、回弹模量的变化规律,在此基础上建立了塑性变形与CSR、循环次数之间的定量关系。通过颗粒流模拟揭示了循环荷载作用下海相软基土的微观变形特性。根据相关规范对软土地区容许变形的规定以及塑性变形不同发展模式,明确过渡状态的划分标准并得到塑性变形稳定发展的CSR值上限。结果表明:随着CSR的增大,塑性变形逐渐呈对数式增长,并且表现出4种不同的发展模式,相较于不排水条件,部分排水条件下的塑性变形增长了0.07%~3.2%;随循环次数的增加,应力-回弹应变滞回圈的面积先增加后减小,回弹模量在大幅度衰减后有所增加;颗粒运动从竖向挤压逐渐变为侧向滑移,并且其运动方向具有明显的各向异性。 展开更多
关键词 海相软基土 循环荷载 颗粒流模拟 循环应力比
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动载循环作用下砂岩的动态力学响应及破坏特征
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作者 赵光明 秦志宏 孟祥瑞 《采矿与岩层控制工程学报》 北大核心 2025年第1期18-33,共16页
针对深部矿井开采过程中岩体自稳能力差、动力灾害频发等问题,采用自主研发的ZST-1500微机控制电液伺服煤岩动静组合自适应耦合试验系统,开展了不同幅值与频率的砂岩单轴动载扰动试验,分析了动载作用下砂岩动态力学响应规律与破坏特征... 针对深部矿井开采过程中岩体自稳能力差、动力灾害频发等问题,采用自主研发的ZST-1500微机控制电液伺服煤岩动静组合自适应耦合试验系统,开展了不同幅值与频率的砂岩单轴动载扰动试验,分析了动载作用下砂岩动态力学响应规律与破坏特征。研究结果表明:(1)随动载幅值增加,砂岩滞回环由“疏-密”向“疏-密-疏”变化,依据动载循环期间试样塑性变形量,将动载周期划分为对数上升阶段Ⅰ、匀速损伤阶段Ⅱ和指数加速阶段Ⅲ。(2)动载对试样强度的弱化作用存在阈值,当动载水平为70%σ_(c)时,诱发砂岩发生破坏的幅值阈值在17.5%~22.5%σ_(c)范围内,低于阈值的动载作用不会造成砂岩失稳,越过阈值后砂岩强度、破坏前动载持续时间与动载幅值及频率均成负相关。(3)动载幅值与频率对砂岩弱化作用机制存在差异,动载幅值、频率均与动载单次循环平均塑性变形Δε_((i))^(-)成正相关,但Δε_((i))^(-)对动载幅值更为敏感,在阶段Ⅰ、Ⅱ内随幅值增大呈指数型增长。动载幅值主要通过提升塑性变形量来实现对砂岩的弱化作用;而动载频率提升降低了动载循环间隔,在砂岩内部形成小增量、短时、连续的损伤,从而实现对砂岩的弱化作用。(4)砂岩AE信号累计能量与振铃计数率随动载幅值的增大呈指数型变化,也随动载频率的增加同步增长。随着动载幅值增加,砂岩微观裂隙起裂、扩展程度递增,剪切裂纹占比增大;随着动载频率增大,砂岩拉伸裂纹占比增大。 展开更多
关键词 岩石力学 砂岩 循环动载 动态力学响应 渐进损伤
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砂土应力-应变包络线的唯一性初探
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作者 邵龙潭 高睿 +2 位作者 夏平心 郭晓霞 孙衍朴 《岩土工程学报》 北大核心 2025年第2期265-274,共10页
土体循环加卸载外包络线是否具有唯一性在认识土体固有属性上具有重要意义。基于土样全表面变形数字图像测量系统,选用硅微粉和福建标准砂为研究对象,开展了一系列三轴剪切试验和三轴循环加卸载试验,探索等应力幅值、阶梯应力幅值和随... 土体循环加卸载外包络线是否具有唯一性在认识土体固有属性上具有重要意义。基于土样全表面变形数字图像测量系统,选用硅微粉和福建标准砂为研究对象,开展了一系列三轴剪切试验和三轴循环加卸载试验,探索等应力幅值、阶梯应力幅值和随机应力幅值循环加卸载下应力-应变外包络线与相应的单调加载应力-应变曲线的一致性。试验结果表明土样在相同密度和围压条件下,单调加载的应力-应变曲线与经历不同循环应力历程的加卸载应力-应变外包络线近似一致,提出了砂土应力-应变外包络线的唯一性;讨论了循环应力历史和应力水平对曲线回归速度的影响以及应力-应变包络线唯一性在建立轴向应变累积模型中的应用。 展开更多
关键词 应力-应变外包络线 循环荷载 砂土 轴向累积应变
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循环荷载作用下带延性铸造连接件的防屈曲支撑受力性能参数分析
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作者 殷占忠 杨永安 张素峰 《兰州理工大学学报》 北大核心 2025年第3期107-112,共6页
中心支撑钢框架中支撑与框架梁柱连接时,节点区域容易发生三轴应力场而导致脆性破坏.为此,用延性铸造连接件代替节点板和梁柱连接,对不同参数带延性铸造连接件的防屈曲支撑在循环荷载下的受力性能进行模拟分析,研究该类型防屈曲支撑的... 中心支撑钢框架中支撑与框架梁柱连接时,节点区域容易发生三轴应力场而导致脆性破坏.为此,用延性铸造连接件代替节点板和梁柱连接,对不同参数带延性铸造连接件的防屈曲支撑在循环荷载下的受力性能进行模拟分析,研究该类型防屈曲支撑的破坏模式、滞回曲线与耗能性能;分析延性铸造件耗能段长度、耗能板和加劲肋对该类型防屈曲支撑性能的影响.结果表明:该类型支撑受力时,铸造连接件耗能段率先屈服,随着荷载增加,支撑内核管进入塑性阶段,与铸造连接件共同耗能;带延性铸造连接件的防屈曲支撑滞回曲线饱满、对称,具有良好的耗能能力. 展开更多
关键词 延性铸造件 防屈曲支撑 有限元分析 循环荷载
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循环动载作用下土工格栅筋土界面特性宏细观研究
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作者 梁小勇 王迪 +3 位作者 靳静 温馨 杨广庆 邵明杰 《铁道学报》 北大核心 2025年第8期182-192,共11页
为探究循环动载作用下土工格栅-砂土界面特性,通过土工格栅室内动载拉拔试验和离散元模拟,从宏细观角度对土工格栅-砂土界面开展研究。结果表明,循环动荷载频率和幅值水平均与土工格栅峰值拉拔力呈现正向相关性;动荷载频率和幅值较大时... 为探究循环动载作用下土工格栅-砂土界面特性,通过土工格栅室内动载拉拔试验和离散元模拟,从宏细观角度对土工格栅-砂土界面开展研究。结果表明,循环动荷载频率和幅值水平均与土工格栅峰值拉拔力呈现正向相关性;动荷载频率和幅值较大时筋土界面抗剪性能更强,界面摩擦角随荷载频率和幅值增大而逐渐增大,黏聚力与之相反,荷载频率从2 Hz增至6 Hz时界面摩擦角提升133.22%,黏聚力降低70.87%;循环动荷载幅值增大或频率减小会使砂土颗粒配位数显著增大,此时砂土内部颗粒运动也更剧烈,荷载频率为2 Hz时砂土配位数波峰与波谷的差值比6 Hz时大7倍;增大循环动荷载幅值可使砂土孔隙率明显减小,砂土颗粒的竖向位移也会得到更大限制。研究结论为进一步揭示土工格栅的加筋机理提供科学依据。 展开更多
关键词 土工格栅 加筋土结构 循环动荷载 拉拔试验 离散元法
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三轴压缩及峰后循环荷载下轴向孔洞砂岩力学及渗流特性影响研究
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作者 张培森 方家鑫 +5 位作者 裴海伦 许大强 鞠照强 王洪伟 李霄 赵铭 《煤炭工程》 北大核心 2025年第5期178-186,共9页
为探究峰后循环荷载作用对含轴向孔洞缺陷岩体力学、渗透性的影响,明确工程重复扰动对缺陷底板岩体突水的影响规律,基于岩石自适应多场耦合试验仪,开展了20 MPa围压下孔径为5、10、15、20 mm轴向孔洞砂岩峰后循环荷载试验研究。研究结... 为探究峰后循环荷载作用对含轴向孔洞缺陷岩体力学、渗透性的影响,明确工程重复扰动对缺陷底板岩体突水的影响规律,基于岩石自适应多场耦合试验仪,开展了20 MPa围压下孔径为5、10、15、20 mm轴向孔洞砂岩峰后循环荷载试验研究。研究结果表明:常规三轴压缩阶段,岩石渗透率随岩石内部裂隙的闭合、发育对应出现减小、增大的情况。5 mm孔径孔洞岩石脆性破坏特征明显,10、15、20 mm孔径孔洞岩石呈间歇性破坏形式,孔洞影响了岩石破坏特征。峰后循环阶段,岩石渗透率变化随轴压、围压作用呈规律性循环,循环卸载阶段岩石渗透率出现快速上升和快速下降现象。循环加卸载使岩石产生累积损伤,岩石循环承载能力随孔洞孔径增大而降低,峰后循环加卸载下含孔洞岩石渗流通道扩张总量大于渗流通道岩石颗粒堆积堵塞总量。含孔洞岩石破坏形式仍为贯通剪切破坏,循环荷载使次生剪切裂纹发育,且随孔洞孔径增大,裂纹发育程度越大,岩石破坏模式趋于复杂。 展开更多
关键词 岩石力学 峰后循环荷载 孔洞岩石 力学特性 渗流特性
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