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Shearing Characteristics of Jurassic Silty Mudstone Slip Zone under Different Water Contents and Normal Stresses Based on Ring Shear Tests
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作者 Nang Mon Mon Thaw Changdong Li +4 位作者 Zongxing Zou Wenqiang Chen Jingjing Long Aung Min Oo Dafalla Wadi 《Journal of Earth Science》 2025年第2期654-667,共14页
Landslides frequently occurred in Jurassic red strata in the Three Gorges Reservoir(TGR)region in China.The Jurassic strata consist of low mechanical strength and poor permeability of weak silty mudstone layer,which m... Landslides frequently occurred in Jurassic red strata in the Three Gorges Reservoir(TGR)region in China.The Jurassic strata consist of low mechanical strength and poor permeability of weak silty mudstone layer,which may cause slope instability during rainfall.In order to understand the strength behavior of Jurassic silty mudstone shear zone,the so-called Shizibao landslide located in Guojiaba Town,Zigui County,Three Gorges Reservoir(TGR)in China is selected as a case study.The shear strength of the silty mudstone shear zone is strongly influenced by both the water content and the normal stress.Therefore,a series of drained ring shear tests were carried out by varying the water contents(7%,12%,17%,and 20%,respectively)and normal stresses(200,300,400,and 500 kPa,respectively).The result revealed that the residual friction coefficient and residual friction angle were power function relationships with water content and normal stress.The peak cohesion of the silty mudstone slip zone increased with water content to a certain limit,above which the cohesion decreased.In contrast,the residual cohesion showed the opposite trend,indicating the cohesion recovery above a certain limit of water content.However,both the peak and residual friction angle of the silty mudstone slip zone were observed to decrease steadily with increased water content.Furthermore,the macroscopic morphological features of the shear surface showed that the sliding failure was developed under high normal stress at low water content,while discontinuous sliding surface and soil extrusion were occurred when the water content increased to a saturated degree.The localized liquefaction developed by excess pore water pressure reduced the frictional force within the shear zone.Finally,the combined effects of the slope excavation and precipitation ultimately lead to the failure of the silty mudstone slope;however,continuous rainfall is the main factor triggering sliding. 展开更多
关键词 silty mudstone slip zone water content normal stress drained ring shear test residual shear strength engineering geolgoy
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Trigger mechanism of loess-mudstone landslides inferred from ring shear tests and numerical simulation 被引量:2
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作者 WANG Xin-gang LIAN Bao-qin +1 位作者 Liu Kai Luo Li 《Journal of Mountain Science》 SCIE CSCD 2021年第9期2412-2426,共15页
Whereas loess-mudstone landslides are widely distributed and frequently occurred at the loess Plateau,this type of landslides is hard to detect due to its particularity,and easily generates serious losses.To clarify t... Whereas loess-mudstone landslides are widely distributed and frequently occurred at the loess Plateau,this type of landslides is hard to detect due to its particularity,and easily generates serious losses.To clarify the shear characteristics and formation mechanism of loess-mudstone landslides,field investigations,ring shear tests and numerical simulation analyses were performed on the loess specimens collected from the Dingjiagou landslide in Yan’an city,China.The test results showed that both the peak strength and residual strength of slip zone soils have a decreasing tendency with moisture content,while the increasing of normal stress caused an increase in the shear strength.These phenomena indicate that the rise in the moisture content induced by precipitation or the decreasing of normal stress due to excavation activities would result in the weakening of slip zone soils.Numerical simulations of the evolution process of slope failure using the finite element method were conducted based on the Mohr–Coulomb criterion.It was found that the heavy precipitation played a more important role in the slope instability compared with the excavation.In addition,the field investigation showed that loess soils with well-developed cracks and underlying mudstone soils provide material base for the formation of loess-mudstone landslides.Finally,the formation mechanism of this type of landslides was divided into three stages,namely,the local deformation stage,the penetration stage,the creeping-sliding stage.This study may provide a basis for understanding the sliding process of loess-mudstone landslides,as well as guidelines for the prevention and mitigation of loess-mudstone landslides. 展开更多
关键词 Loess-mudstone landslides Slip zone soil ring shear tests Numerical simulation Formation mechanism
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High-Speed Ring Shear Tests to Study the Motion and Acceleration Processes of the Yingong Landslide 被引量:10
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作者 HU Ming-jian Pan Hua-li +1 位作者 Zhu Chang-qi Wang Fa-wu 《Journal of Mountain Science》 SCIE CSCD 2015年第6期1534-1541,共8页
In this paper, the motion and acceleration process, as well as the mechanism of a high speed and long run landslide are investigated by adopting high speed ring shear test and taking the landslide occurred at Yigong R... In this paper, the motion and acceleration process, as well as the mechanism of a high speed and long run landslide are investigated by adopting high speed ring shear test and taking the landslide occurred at Yigong River in Bomi, Tibet on April 9, 2000 as the background. According to the motion characteristics of high-speed and long distance motion landside, the mechanism is studied under different conditions such as shear speed, consolidated drained and consolidated undrained status. Results show that high speed shearing process hinders and delays the dissipation of pore pressure, and drives pore water migrating to shear zone slowly. Both of water content and fine particle content at shear zone are obviously higher than those in other layers; and soil liquefaction occurs at shear zone in the saturated consolidated undrained ring shear tests. The effective internal friction angle of the consolidated undrained soil is much lower than that of the consolidated drained soil under ring shearing. The results also indicate that the shearing speed affecting the strength of soil to some extent. The higher the ring shearing speed is, the lower the strength of soil is. This investigation provides a preliminary interpretation of the mechanism of the motion and acceleration process of the Yigong landslide, occurred in Tibet in 2000. 展开更多
关键词 Yigong landslide ring shear tests shear zone Liquefaction Strength
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A new numerical model of ring shear tester for shear band soil considering friction-induced thermal pressurization
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作者 ZHAO Neng-hao SONG Kun +1 位作者 ZHANG Rong-tang YI Qing-lin 《Journal of Mountain Science》 SCIE CSCD 2022年第11期3302-3313,共12页
In this study,a new numerical model of ring shear tester for shear band soil of landslide was established.The special feature of this model is that it considers the mechanism of friction-induced thermal pressurization... In this study,a new numerical model of ring shear tester for shear band soil of landslide was established.The special feature of this model is that it considers the mechanism of friction-induced thermal pressurization,which is potentially an important cause of high-speed catastrophic landslides.The key to the construction of this numerical ring shear model is to realize the THM(thermo-hydro-mechanical)dynamic coupling of soil particles,which includes the processes of frictional heating,thermal pressurization,and strength softening during shearing of solid particles.All of these are completed by using discrete element method.Based on this new model,the characteristics of shear stress change with shear displacement,as well as the variation of temperature and pore pressure in the specimen,are studied at shear rates of 0.055 m/s,0.06 m/s,0.109 m/s and 1.09 m/s,respectively.The results show that the peak strength and residual strength of specimen are significantly reduced when the mechanism of frictioninduced thermal pressurization is considered.The greater the shear rate is,the higher the temperature as well as the pore pressure is.The effect of shear rate on the shear strength is bidirectional.The simulation results demonstrate that this model can effectively simulate the mechanism of friction-induced thermal pressurization of shear band soil during ring shear process,and the shear strength softening in the process.The new numerical ring shear model established in this study is of great significance for studying the dynamic mechanism of high-speed catastrophic landslides. 展开更多
关键词 ring shear model Discrete element method THM coupling Frictional heating Thermal pressurization
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A vector sum analysis method for stability evolution of expansive soil slope considering shear zone damage softening
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作者 Junbiao Yan Lingwei Kong +1 位作者 Cheng Chen Mingwei Guo 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2024年第9期3746-3759,共14页
Slope stability analysis is a classical mechanical problem in geotechnical engineering and engineering geology.It is of great significance to study the stability evolution of expansive soil slopes for engineering cons... Slope stability analysis is a classical mechanical problem in geotechnical engineering and engineering geology.It is of great significance to study the stability evolution of expansive soil slopes for engineering construction in expansive soil areas.Most of the existing studies evaluate the slope stability by analyzing the limit equilibrium state of the slope,and the analysis method for the stability evolution considering the damage softening of the shear zone is lacking.In this study,the large deformation shear mechanical behavior of expansive soil was investigated by ring shear test.The damage softening characteristic of expansive soil in the shear zone was analyzed,and a shear damage model reflecting the damage softening behavior of expansive soil was derived based on the damage theory.Finally,by skillfully combining the vector sum method and the shear damage model,an analysis method for the stability evolution of the expansive soil slope considering the shear zone damage softening was proposed.The results show that the shear zone subjected to large displacement shear deformation exhibits an obvious damage softening phenomenon.The damage variable equation based on the logistic function can be well used to describe the shear damage characteristics of expansive soil,and the proposed shear damage model is in good agreement with the ring shear test results.The vector sum method considering the damage softening behavior of the shear zone can be well applied to analyze the stability evolution characteristics of the expansive soil slope.The stability factor of the expansive soil slope decreases with the increase of shear displacement,showing an obvious progressive failure behavior. 展开更多
关键词 Expansive soil slope Stability analysis ring shear test Vector sum method Damage model Strain softening
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Shear Failure Criterion and Constant Volume Ring Shear Testing Method for Clayey Soil
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作者 Rafig Azzam 《Engineering(科研)》 2016年第8期545-560,共16页
This paper discusses the shortcomings of the traditional Coulomb shear criterion and the direct shear-box testing method used for clayey soil and presents a modified shear criterion that considers the elasto-plastic b... This paper discusses the shortcomings of the traditional Coulomb shear criterion and the direct shear-box testing method used for clayey soil and presents a modified shear criterion that considers the elasto-plastic behavior of cohesive soil. This modified approach involves direct shear testing under constant volume, a method that has been developed by the author. A modified ring shear apparatus and the theory behind the shear criterion and its implication for slope stability analysis are then discussed and the results of investigated tuffitic clayey sediments are presented. The results show that the presented new shear criterion does not consider the cohesion as material constant, but rather it depends on the void ratio. In this case, the stress state and the consolidation status and thus the elasto-plastic behavior of the clayey soil are considered. 展开更多
关键词 shear Criterion shear Testing Procedure shear Parameter ring shear Testing Slope Stability Analysis
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Deformation Analysis on Shear-Bending of Ring-Shaped Piezoelectric Actuator
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作者 康新 董帅 何小元 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2015年第6期585-590,共6页
Deformation of a simple single piezoelectric actuator is usually quite small.A ring-shaped piezoelectric actuator with large piezoelectrically generated displacement was proposed.The thickness of the actuator was1 mm,... Deformation of a simple single piezoelectric actuator is usually quite small.A ring-shaped piezoelectric actuator with large piezoelectrically generated displacement was proposed.The thickness of the actuator was1 mm,and the inner and outer diameters were 4 mm and 40 mm,respectively.The ring-shaped actuator was made of BiScO_3-PbTiO_3(BS-PT)ceramic and polarized in radial direction.An electric field was applied to thickness direction and a large shear-bending deformation emerged.Then Rayleigh-Ritz method and Bessel functions were adopted to analyze the shear-bending deformation.Results show that under an electric field of 7.5kV/cm,the maximum displacement at the inner edge of the actuator reached 5.07μm,which agreed well with the corresponding experimental results. 展开更多
关键词 ring-shaped piezoelectric actuator shear-bending Rayleigh-Ritz method
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A new shear rheological model for a soft interlayer with varying water content 被引量:7
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作者 Chong Ma Hong-bin Zhan +1 位作者 Wen-min Yao Hua-zhou Li 《Water Science and Engineering》 EI CAS CSCD 2018年第2期131-138,共8页
The rheological behavior of a soft interlayer is critical to understanding slope stability, which is closely related to the water content of the soft interlayer. This study used the soft interlayer of the Permian Maok... The rheological behavior of a soft interlayer is critical to understanding slope stability, which is closely related to the water content of the soft interlayer. This study used the soft interlayer of the Permian Maokou Formation in Southwest China as an example to perform ring shear creep tests with different water content amounts. The effect of water content on the creep properties of the soft interlayer was analyzed, and a new shear rheological model was established. This research produced several findings. First, the ring shear creep deformation of the soft interlayer samples varied with the water content and the maximum instantaneous shear strain increment occurred near the saturated water content. As the water content increased, the cumulative creep increment of the samples increased. Second, the water content significantly affected the long-term strength of the soft interlayer, which decreased with the increase of water content, exhibiting a negative linear correlation. Third, a constitutive equation for the new rheological model was derived, and through fitting of the ring shear creep test data, the validity and applicability of the constitutive equation were proven. This study has developed an important foundation for studying the long-term deformation characteristics of a soft interlayer with varying water content. 展开更多
关键词 Soft INTERLAYER ring shear CREEP test RHEOLOGICAL CONSTITUTIVE model Water content
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Characteristics of grain size distribution and the shear strength analysis of Chenjiaba long runout coseismic landslide 被引量:2
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作者 GETAHUN Ephrem QI Sheng-wen +2 位作者 GUO Song-feng ZOU Yu LIANG Ning 《Journal of Mountain Science》 SCIE CSCD 2019年第9期2110-2125,共16页
Study on the grain size distribution characteristics and the frictional strength behavior of the slide deposits are helpful to disclose the landslide runout process and understand the mechanism of a long runout landsl... Study on the grain size distribution characteristics and the frictional strength behavior of the slide deposits are helpful to disclose the landslide runout process and understand the mechanism of a long runout landslide. We performed grain size distribution analysis on samples collected from Chenjiaba landslide induced by Wenchuan earthquake. The grain size distribution of samples from the landslide sections quantitatively depicts a gradual coarsening upward grading from shear zone to the top section. Then a multistage-multiphase ring shearing approach was used to determine a comparative shear strength behavior of samples from each landslide section. In this method, a sample was sheared continuously for large displacement and fast rate on different normal stress conditions. The multiphase shear mode with a maximum of 105 mm/min rate has allowed observing the qualitative change and patterns of the frictional resistance behaviors of soils under different normal stresses. The results of coefficient of friction values under multiphase shear mode have shown substantial post peak shear weakening behaviors after large shear displacement that can be narrated with long runout processes. The shear strength test results indicate that the shear zone samples have developed higher friction angle values compared to overlying section samples, on the last phase of shear process, which may be very important to understand the braking mechanism of a long runout landslide. 展开更多
关键词 GRAIN size distribution Long RUNOUT LANDSLIDE Multistage-Multiphase ring shear
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一种新型环剪仪的研制及其应用
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作者 陈琼 崔德山 +1 位作者 张扬景皓 朱俊峰 《地质科技通报》 北大核心 2025年第1期205-215,共11页
研发一种测量并控制孔隙水压力的环剪仪能够获得试样受到的总应力、孔隙水压力和有效应力,从而有效地揭示试样应力-应变-孔隙水压力演化特征。采用自主研发的、可以控制排水条件的全自动环剪仪,实现了环剪过程中控制孔隙水压力,测量孔... 研发一种测量并控制孔隙水压力的环剪仪能够获得试样受到的总应力、孔隙水压力和有效应力,从而有效地揭示试样应力-应变-孔隙水压力演化特征。采用自主研发的、可以控制排水条件的全自动环剪仪,实现了环剪过程中控制孔隙水压力,测量孔隙水压力、试样排水体积、扭矩和轴向位移等参数。以黄土坡滑坡滑带土为例,分别开展了固结排水环剪试验、固结不排水环剪试验、变孔隙水压力环剪试验和环剪试样渗透试验。试验结果表明:采用侧边密封+顶底部设置三通阀门的方式,可以保证环剪室承受0~1000 kPa的孔隙水压力;当下环剪盒底部进水阀打开并连接体积压力控制器时,可以控制孔隙水压力,测量某一孔隙水压力下试样排水或吸水体积,体积量程为0~200 cm^(3);当上环剪盒顶部出水阀打开并连接孔隙水压力传感器时,可以测量不排水条件下试样内部的孔隙水压力,其量程为0~1000 kPa。试验过程中,剪胀剪缩由轴向位移传感器来测量,其量程为0~10 mm;环剪力由高精度扭矩传感器测量,其量程为0~300 N·m。除了上述功能之外,结合新型环剪仪还可开展孔隙水压力动态变化对环剪强度的影响试验、固结或环剪过程中试样常水头渗透试验等。这种新型环剪仪可以精确地开展试样在大变形、不同孔隙水压力条件下的环剪试验,可以为揭示滑坡长距离滑动过程中孔隙水压力的演化机理提供技术支撑。 展开更多
关键词 环剪仪 环剪试验 变孔隙水压力 常水头渗透试验 滑带土 滑坡
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滑坡非匀速变形过程中滑带土残余强度环剪试验研究
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作者 宋琨 向舒畅 +3 位作者 陈健翔 阮迪 吕泓霖 闫巍 《岩土工程学报》 北大核心 2025年第S1期127-131,共5页
滑坡受降雨、库水位波动等外界因素的影响常呈现台阶状的非匀速变形,滑带土经受减速、加速等非匀速剪切循环状态,其抗剪强度可能是变量而非常量。以白家包滑坡滑带土为例,开展了一系列加速率和减速率阶梯式剪切环剪试验,并通过三维形貌... 滑坡受降雨、库水位波动等外界因素的影响常呈现台阶状的非匀速变形,滑带土经受减速、加速等非匀速剪切循环状态,其抗剪强度可能是变量而非常量。以白家包滑坡滑带土为例,开展了一系列加速率和减速率阶梯式剪切环剪试验,并通过三维形貌检测系统对不同速率条件下的剪切面进行宏观分析,研究滑带土残余强度在非匀速剪切条件下的变化规律。结果表明:剪切速率为0.3~9.9 mm/min阶梯式加速剪切,滑带土残余强度随剪切速率呈递减趋势,相对降低3.0%~24.1%,残余强度随阶梯式减速剪切增加2.9%~34.6%;加速剪切时剪切面划痕逐渐加深,减速剪切时划痕形态趋于平滑和有序;滑带土强度的综合内摩擦角与剪切速率呈对数递减关系,满足φ_(e)=-1.56ln(v+0.15)+22.1的关系方程。揭示了滑坡在非匀速变形过程中滑带土残余强度变化规律,对滑坡稳定性评价与监测预警工作具有重要意义。 展开更多
关键词 滑带土 残余强度 非匀速变形 速率效应 环剪试验
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力流变工艺对轴承滚道表面质量与精度的影响 被引量:1
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作者 郭路广 戴卓豪 +3 位作者 王东峰 王旭 吕冰海 袁巨龙 《中国机械工程》 北大核心 2025年第2期271-279,共9页
为获得高质量的套圈滚动面形貌,改善形状精度,提高轴承服役性能,采用力流变抛光技术设计了正交试验方案,确认了试验参数范围,研究了力流变加工过程中抛光速度、磨粒粒径和磨粒浓度对材料去除率(MRR)和表面粗糙度Ra的影响规律。对数据进... 为获得高质量的套圈滚动面形貌,改善形状精度,提高轴承服役性能,采用力流变抛光技术设计了正交试验方案,确认了试验参数范围,研究了力流变加工过程中抛光速度、磨粒粒径和磨粒浓度对材料去除率(MRR)和表面粗糙度Ra的影响规律。对数据进行信噪比分析,采用方差分析方法得到工艺参数对加工结果的影响权重和最优工艺参数。对比了最优参数加工前后套圈的形状精度,建立了力流变加工模型来分析精度改善机理。结果表明,抛光速度对材料去除率和表面粗糙度的影响都最为显著,磨粒粒径和浓度的影响相对较低。在最优工艺参数(抛光盘转速90 r/min,磨粒粒径2.5μm,质量分数6%)下抛光90 min,Ra从初始的322 nm下降到12.982 nm,且方差不超过2.158 nm^(2),平均圆度从抛光前的约3.05μm下降到约1.67μm。仿真模型揭示了形状精度改善的原因是凸出部位易形成更高的材料去除率。研究结果表明,采用优化的力流变抛光工艺可有效提高轴承套圈滚道的表面质量和形状精度。在提高轴承服役性能的高质量加工方面,力流变抛光技术提供了一种可行方案。 展开更多
关键词 力流变抛光 轴承 套圈 超精密加工 剪切增稠
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盾构隧道环间剪切效应模拟分析——以隧道开孔为例 被引量:1
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作者 高一民 柳献 +2 位作者 RAMOS Gonzalo TURMO Jose 朱瑶宏 《铁道科学与工程学报》 北大核心 2025年第5期2242-2256,共15页
盾构隧道处于不对称荷载下或结构体系发生变化时(如隧道联络通道开孔等),环缝剪切对盾构隧道的结构响应影响增大,环间剪切效应将进一步影响结构的极限承载力。然而现有的模型对环缝接头进行了不同程度的简化,这给在此过程中对隧道内环... 盾构隧道处于不对称荷载下或结构体系发生变化时(如隧道联络通道开孔等),环缝剪切对盾构隧道的结构响应影响增大,环间剪切效应将进一步影响结构的极限承载力。然而现有的模型对环缝接头进行了不同程度的简化,这给在此过程中对隧道内环间剪切分布进行全面细致分析带来了困难。为此,以接触原理为基础,建立一种“壳-接触”精细化模型,并与机械法联络通道主隧道开孔足尺试验结果对比,探明该过程的盾构隧道的环间剪切效应机理。研究结果表明:壳-接触模型采用“软接触”的方式,在保证可以模拟接头转动的前提下,也可以实现接头位置压力与剪切的耦合模拟,与实际环缝力学性质相符;在机械法联络通道开孔案例中,考虑摩擦损失的精细化模型结果对足尺实验结果模拟较好;开孔管片的环间剪切力以径向剪切力为主;结构体系发生变化时,环缝的剪切力不再满足自平衡现象;且环缝剪切力的突变位置均为纵缝的位置;环间的最大径向剪切力发生位置揭示了盾构隧道开孔后的“环间传力”方向:从开孔位置逐渐向顶部靠近并最终消失;在实际工程中,应关注环间最大剪切力移动方向,经济高效地对环间剪切进行加固,确保有效环间传力。研究成果补充了机械法联络通道盾构隧道中开孔后的环间剪切效应,可为易发生环间错台的盾构隧道工程给出指导建议。 展开更多
关键词 盾构隧道 环间剪切效应 壳-接触模型 环间摩擦模拟 机械法联络通道 摩擦损失 环间传力
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全风化花岗岩残积土长距离剪切特性试验研究 被引量:1
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作者 毛无卫 潘龙 +4 位作者 冯晨锐 牟旭 崔寅兵 郭桢 黄雨 《中国地质灾害与防治学报》 2025年第2期96-106,共11页
近年来,随着全球气候变化和人类工程活动的加剧,我国东南地区因降雨引发的群发性滑坡事件频发,严重威胁着人民的生命和财产安全。全风化花岗岩残积土作为这类滑坡灾害的主要地质载体,深入研究其力学特性对于揭示群发性滑坡的孕育演化机... 近年来,随着全球气候变化和人类工程活动的加剧,我国东南地区因降雨引发的群发性滑坡事件频发,严重威胁着人民的生命和财产安全。全风化花岗岩残积土作为这类滑坡灾害的主要地质载体,深入研究其力学特性对于揭示群发性滑坡的孕育演化机制具有重要意义。文章选取全风化花岗岩残积土为研究对象,综合考虑正应力(20 kPa,50 kPa,100 kPa,150 kPa)、含水率(0,5%,10%,20%和30%)和剪切速率(10°/min,20°/min,40°/min,和80°/min)的影响,开展了一系列环剪试验,旨在探究全风化花岗岩残积土在滑坡启动阶段及长距离运动阶段的力学行为,尤其是长距离剪切特性。试验结果表明:土体的抗剪强度与含水率有着密切关系,随着含水率的增加,抗剪强度先降低后升高再降低,当含水率达到30%时,土体会出现明显的应变硬化现象。此外,土体的抗剪强度还与正应力、剪切速率和相对密实度密切相关。具体表现为,正应力越大,土体的峰值抗剪强度和残余抗剪强度越高,且对峰值抗剪强度的影响更为显著,同时应变软化现象也更加明显;剪切速率越大,土体的峰值抗剪强度和残余抗剪强度总体呈下降趋势,对峰值抗剪强度的影响大于对残余抗剪强度的影响,且表观黏度降低。研究成果可为群发滑坡灾害防治提供重要的理论支持。 展开更多
关键词 花岗岩残积土 环剪试验 含水率 正应力 剪切速率 抗剪强度
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土工格室-砂土大型叠环式剪切试验和数值模拟研究
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作者 左义成 李波 +1 位作者 胡波 董建刚 《吉林建筑大学学报》 2025年第3期17-24,共8页
土工格室作为三维土工合成材料,可有效减缓结构体沉降和变形,但土工格室与土体相互作用特性复杂,筋土界面剪切特性尚不明确。采用自主研制的DW1280L电液伺服直剪拉拔试验系统进行大型叠环式剪切试验,研究不同法向应力条件下原型土工格... 土工格室作为三维土工合成材料,可有效减缓结构体沉降和变形,但土工格室与土体相互作用特性复杂,筋土界面剪切特性尚不明确。采用自主研制的DW1280L电液伺服直剪拉拔试验系统进行大型叠环式剪切试验,研究不同法向应力条件下原型土工格室界面剪切特性;基于大型叠环剪切试验参数建立三维界面剪切数值模型进行对比分析。叠环式剪切试验得到土工格室与填料的界面强度为31.6 kPa,内摩擦角为26.5°,距离剪切面5 cm和55 cm处叠环水平位移分别为33.9 mm和10.5 mm。分析表明,随着土工格室高度的增加,土工格室-砂土界面剪切强度和影响范围逐渐增大,并且增大土工格室模量和填料强度均可提高加筋土的抗剪强度,对内摩擦角影响较小,黏聚力影响较大。 展开更多
关键词 土工格室 大型叠环剪切试验 叠环水平位移 数值模拟
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偏桥子岩土复合滑坡发生机理和抗剪强度反分析 被引量:1
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作者 杨建伟 肖欣 +2 位作者 李文彬 片磊 贾超 《矿产勘查》 2025年第9期2192-2201,共10页
岩土复合滑坡是滑坡中一种典型的类型,其滑坡机制比较复杂,研究深度存在一定的不足,尤其滑带土抗剪强度的准确确定是关键,用反分析法确定岩土体抗剪强度是一种行之有效的方法。但是影响滑坡稳定性的不同物理力学参数的敏感性不同,仍存... 岩土复合滑坡是滑坡中一种典型的类型,其滑坡机制比较复杂,研究深度存在一定的不足,尤其滑带土抗剪强度的准确确定是关键,用反分析法确定岩土体抗剪强度是一种行之有效的方法。但是影响滑坡稳定性的不同物理力学参数的敏感性不同,仍存在一定的难点,许多工程中反演结果不理想。本文根据偏桥子滑坡勘查成果,查明该滑坡属于岩土复合滑坡,地质条件复杂,进一步分析了滑坡的发生机理;然后取两个主剖面对滑带土抗剪强度参数C、ϕ值进行敏感性分析,并采用传递系数法对滑带土抗剪强度进行反演分析;最后与动态环剪试验和工程经验相结合综合确定抗剪强度指标。最终应用抗剪强度指标进行滑坡稳定性评价,提出抗滑桩治理方法,滑坡治理后处于稳定状态。本文对岩土复合滑坡的研究和抗剪强度确定具有较高的参考作用。 展开更多
关键词 滑坡 反分析 敏感度 动态环剪试验 抗剪强度
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煤矿矸石膏体充填材料性能试验研究
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作者 田银素 朱阳亚 +1 位作者 黄振华 程志斌 《江西煤炭科技》 2025年第2期66-71,共6页
煤矿开采矸石升井后大量的矸石堆积给地面带来环境污染、煤矸石自燃风险等问题,同时采空区的垮落引起的地表沉陷给“三下”开采带来本质性的困难。神东煤炭补连塔煤矿每年产生矸石达300万t,为初步达到100万t/a的矸石回井量,拟采用煤矿... 煤矿开采矸石升井后大量的矸石堆积给地面带来环境污染、煤矸石自燃风险等问题,同时采空区的垮落引起的地表沉陷给“三下”开采带来本质性的困难。神东煤炭补连塔煤矿每年产生矸石达300万t,为初步达到100万t/a的矸石回井量,拟采用煤矿膏体充填方法逐步实现矸石完全回井;通过对充填膏体进行配比试验和环管试验,得出了膏体浓度、灰集比、抗压强度之间的关系,并结合流速与压力损失率最终确定了适合该矿采煤工艺要求的充填材料最优配比和料浆流速,为充填系统设计提供了重要依据。 展开更多
关键词 煤矸石 资源化利用 膏体充填材料 配比试验 环管试验
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半转速核电机组周期性振动波动的诊断与消除
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作者 张立军 张卫军 +1 位作者 张恒 胡启龙 《电站系统工程》 2025年第6期46-50,共5页
就某核电站机组出现的周期性振动波动现象,结合振动特征和检修缺陷,通过建立有限元模型,对密封瓦热变形和轴颈表面温差进行计算。结果表明,振动波动的原因是密封瓦卡涩和油膜黏性剪切作用导致的热弯曲。运行中,通过提高润滑油温度(或压... 就某核电站机组出现的周期性振动波动现象,结合振动特征和检修缺陷,通过建立有限元模型,对密封瓦热变形和轴颈表面温差进行计算。结果表明,振动波动的原因是密封瓦卡涩和油膜黏性剪切作用导致的热弯曲。运行中,通过提高润滑油温度(或压力)抑制油膜黏性剪切作用可改善周期性振动波动;检修中,提高密封瓦加工质量可消除机组轴系振动波动问题。 展开更多
关键词 核电汽轮发电机组 周期性振动波动 密封瓦 油膜黏性剪切作用 热弯曲
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竖缝密拼钢锚环灌浆连接装配式高层剪力墙抗震性能试验研究
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作者 莫海钊 陈凯 +3 位作者 黄晨光 季永新 桂峥嵘 张在晨 《科技和产业》 2025年第23期53-63,共11页
基于结构连接简化、施工便捷性和经济性的协同优化,提出适用于装配式高层剪力墙结构的新型高效连接体系,即竖向接缝钢锚环灌浆连接和水平接缝套筒灌浆连接。为系统评估该连接体系的力学性能与工程可应用性,设计并实施了3组竖向接缝的直... 基于结构连接简化、施工便捷性和经济性的协同优化,提出适用于装配式高层剪力墙结构的新型高效连接体系,即竖向接缝钢锚环灌浆连接和水平接缝套筒灌浆连接。为系统评估该连接体系的力学性能与工程可应用性,设计并实施了3组竖向接缝的直剪试验和4组足尺剪力墙试件的拟静力试验。结果表明,该连接体系的连接性能可靠,并表现出较好的刚度、延性及承载力等抗震性能指标。研究成果可为装配式高层剪力墙结构的接缝连接提供理论支撑和设计依据。 展开更多
关键词 装配式剪力墙结构 钢锚环灌浆连接 竖缝密拼 拟静力试验 抗震性能
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残积土抗剪强度的环剪试验研究 被引量:48
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作者 吴迪 简文彬 徐超 《岩土力学》 EI CAS CSCD 北大核心 2011年第7期2045-2050,共6页
残积土风化剧烈,研究其大变形下的工程特性很有必要。利用环剪仪的试验特点,可以研究土体在较大剪切位移下抗剪强度的变化规律。通过对残积土残余和峰值强度的环剪试验测定和对试验数据的整理与对比分析,得到了含水率与残余强度指标之... 残积土风化剧烈,研究其大变形下的工程特性很有必要。利用环剪仪的试验特点,可以研究土体在较大剪切位移下抗剪强度的变化规律。通过对残积土残余和峰值强度的环剪试验测定和对试验数据的整理与对比分析,得到了含水率与残余强度指标之间的关系,证明大变形下残积土具有浸水软化的特性;从应变阈值角度分析了残积土应变软化的性质,不同剪切位移下的残积土具有不同的抗剪强度,所研究的残积土达到峰值强度对应的应变介于0.02~0.06之间,而到达基本稳定的残余强度所需要的应变介于0.06~0.20区域内。研究还发现,矿物成分不同直接影响到残积土的残余强度,是残积土不均匀性的内部因素。 展开更多
关键词 残积土 工程特性 抗剪强度 环剪试验 残余强度
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